mirror of
https://github.com/MarlinFirmware/Configurations.git
synced 2025-07-13 09:48:01 -06:00
parent
9bc5615485
commit
004f67ed52
302 changed files with 906 additions and 906 deletions
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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||||||
#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#ifdef Z4_DRIVER_TYPE
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#ifdef Z4_DRIVER_TYPE
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
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||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
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#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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@ -843,20 +843,20 @@
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
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||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
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#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
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#endif
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#endif
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||||||
#ifdef Z3_DRIVER_TYPE
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#ifdef Z3_DRIVER_TYPE
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
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#if ENABLED(Z_MULTI_ENDSTOPS)
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#if ENABLED(Z_MULTI_ENDSTOPS)
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||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
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||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
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#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
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||||||
#endif
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#endif
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||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _ZMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _ZMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -848,20 +848,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -842,20 +842,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -839,20 +839,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
|
@ -843,20 +843,20 @@
|
||||||
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
//#define Z_MULTI_ENDSTOPS // Other Z axes have their own endstops
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z2_USE_ENDSTOP _XMAX_ // Z2 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Y endstop
|
#define Z2_ENDSTOP_ADJUSTMENT 0 // Z2 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z3_DRIVER_TYPE
|
#ifdef Z3_DRIVER_TYPE
|
||||||
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
//#define INVERT_Z3_VS_Z_DIR // Z3 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z3_USE_ENDSTOP _YMAX_ // Z3 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Y endstop
|
#define Z3_ENDSTOP_ADJUSTMENT 0 // Z3 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#ifdef Z4_DRIVER_TYPE
|
#ifdef Z4_DRIVER_TYPE
|
||||||
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
//#define INVERT_Z4_VS_Z_DIR // Z4 direction signal is the opposite of Z
|
||||||
#if ENABLED(Z_MULTI_ENDSTOPS)
|
#if ENABLED(Z_MULTI_ENDSTOPS)
|
||||||
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
#define Z4_USE_ENDSTOP _ZMAX_ // Z4 endstop board plug. Don't forget to enable USE_*_PLUG.
|
||||||
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Y endstop
|
#define Z4_ENDSTOP_ADJUSTMENT 0 // Z4 offset relative to Z endstop
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
#endif
|
#endif
|
||||||
|
|
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Add table
Add a link
Reference in a new issue