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@ -705,54 +705,55 @@
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#if ENABLED(HAVE_TMCDRIVER)
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//#define X_IS_TMC
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#define X_MAX_CURRENT 1000 //in mA
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#define X_SENSE_RESISTOR 91 //in mOhms
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#define X_MICROSTEPS 16 //number of microsteps
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//#define X2_IS_TMC
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#define X2_MAX_CURRENT 1000 //in mA
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#define X2_SENSE_RESISTOR 91 //in mOhms
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#define X2_MICROSTEPS 16 //number of microsteps
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//#define Y_IS_TMC
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#define Y_MAX_CURRENT 1000 //in mA
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#define Y_SENSE_RESISTOR 91 //in mOhms
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#define Y_MICROSTEPS 16 //number of microsteps
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//#define Y2_IS_TMC
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#define Y2_MAX_CURRENT 1000 //in mA
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#define Y2_SENSE_RESISTOR 91 //in mOhms
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#define Y2_MICROSTEPS 16 //number of microsteps
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//#define Z_IS_TMC
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#define Z_MAX_CURRENT 1000 //in mA
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#define Z_SENSE_RESISTOR 91 //in mOhms
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#define Z_MICROSTEPS 16 //number of microsteps
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//#define Z2_IS_TMC
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#define Z2_MAX_CURRENT 1000 //in mA
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#define Z2_SENSE_RESISTOR 91 //in mOhms
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#define Z2_MICROSTEPS 16 //number of microsteps
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//#define E0_IS_TMC
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#define E0_MAX_CURRENT 1000 //in mA
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#define E0_SENSE_RESISTOR 91 //in mOhms
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#define E0_MICROSTEPS 16 //number of microsteps
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//#define E1_IS_TMC
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#define E1_MAX_CURRENT 1000 //in mA
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#define E1_SENSE_RESISTOR 91 //in mOhms
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#define E1_MICROSTEPS 16 //number of microsteps
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//#define E2_IS_TMC
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#define E2_MAX_CURRENT 1000 //in mA
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#define E2_SENSE_RESISTOR 91 //in mOhms
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#define E2_MICROSTEPS 16 //number of microsteps
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//#define E3_IS_TMC
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#define E3_MAX_CURRENT 1000 //in mA
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#define E3_SENSE_RESISTOR 91 //in mOhms
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#define E3_MICROSTEPS 16 //number of microsteps
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#define X_MAX_CURRENT 1000 // in mA
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#define X_SENSE_RESISTOR 91 // in mOhms
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#define X_MICROSTEPS 16 // number of microsteps
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#define X2_MAX_CURRENT 1000
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#define X2_SENSE_RESISTOR 91
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#define X2_MICROSTEPS 16
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#define Y_MAX_CURRENT 1000
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#define Y_SENSE_RESISTOR 91
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#define Y_MICROSTEPS 16
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#define Y2_MAX_CURRENT 1000
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#define Y2_SENSE_RESISTOR 91
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#define Y2_MICROSTEPS 16
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#define Z_MAX_CURRENT 1000
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#define Z_SENSE_RESISTOR 91
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#define Z_MICROSTEPS 16
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#define Z2_MAX_CURRENT 1000
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#define Z2_SENSE_RESISTOR 91
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#define Z2_MICROSTEPS 16
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#define E0_MAX_CURRENT 1000
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#define E0_SENSE_RESISTOR 91
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#define E0_MICROSTEPS 16
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#define E1_MAX_CURRENT 1000
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#define E1_SENSE_RESISTOR 91
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#define E1_MICROSTEPS 16
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#define E2_MAX_CURRENT 1000
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#define E2_SENSE_RESISTOR 91
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#define E2_MICROSTEPS 16
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#define E3_MAX_CURRENT 1000
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#define E3_SENSE_RESISTOR 91
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#define E3_MICROSTEPS 16
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#endif
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@ -963,70 +964,77 @@
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#endif // HAVE_TMC2130DRIVER
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// @section l6470
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// @section L6470
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/**
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* Enable this section if you have L6470 motor drivers.
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* You need to import the L6470 library into the Arduino IDE for this.
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* (https://github.com/ameyer/Arduino-L6470)
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*/
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//#define HAVE_L6470DRIVER
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#if ENABLED(HAVE_L6470DRIVER)
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//#define X_IS_L6470
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#define X_MICROSTEPS 16 //number of microsteps
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#define X_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define X_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define X_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define X2_IS_L6470
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#define X2_MICROSTEPS 16 //number of microsteps
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#define X2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define X2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define X2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define Y_IS_L6470
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#define Y_MICROSTEPS 16 //number of microsteps
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#define Y_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define Y_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define Y_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define Y2_IS_L6470
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#define Y2_MICROSTEPS 16 //number of microsteps
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#define Y2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define Y2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define Y2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define Z_IS_L6470
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#define Z_MICROSTEPS 16 //number of microsteps
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#define Z_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define Z_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define Z_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define Z2_IS_L6470
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#define Z2_MICROSTEPS 16 //number of microsteps
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#define Z2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define Z2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define Z2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define E0_IS_L6470
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#define E0_MICROSTEPS 16 //number of microsteps
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#define E0_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define E0_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define E0_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define E1_IS_L6470
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#define E1_MICROSTEPS 16 //number of microsteps
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#define E1_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define E1_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define E1_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define E2_IS_L6470
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#define E2_MICROSTEPS 16 //number of microsteps
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#define E2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define E2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define E2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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//#define E3_IS_L6470
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#define E3_MICROSTEPS 16 //number of microsteps
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#define E3_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define E3_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
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#define E3_STALLCURRENT 1500 //current in mA where the driver will detect a stall
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#define X_MICROSTEPS 16 // number of microsteps
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#define X_K_VAL 50 // 0 - 255, Higher values, are higher power. Be careful not to go too high
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#define X_OVERCURRENT 2000 // maxc current in mA. If the current goes over this value, the driver will switch off
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#define X_STALLCURRENT 1500 // current in mA where the driver will detect a stall
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#define X2_MICROSTEPS 16
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#define X2_K_VAL 50
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#define X2_OVERCURRENT 2000
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#define X2_STALLCURRENT 1500
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#define Y_MICROSTEPS 16
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#define Y_K_VAL 50
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#define Y_OVERCURRENT 2000
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#define Y_STALLCURRENT 1500
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#define Y2_MICROSTEPS 16
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#define Y2_K_VAL 50
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#define Y2_OVERCURRENT 2000
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#define Y2_STALLCURRENT 1500
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#define Z_MICROSTEPS 16
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#define Z_K_VAL 50
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#define Z_OVERCURRENT 2000
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#define Z_STALLCURRENT 1500
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#define Z2_MICROSTEPS 16
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#define Z2_K_VAL 50
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#define Z2_OVERCURRENT 2000
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#define Z2_STALLCURRENT 1500
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#define E0_MICROSTEPS 16
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#define E0_K_VAL 50
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#define E0_OVERCURRENT 2000
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#define E0_STALLCURRENT 1500
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#define E1_MICROSTEPS 16
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#define E1_K_VAL 50
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#define E1_OVERCURRENT 2000
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#define E1_STALLCURRENT 1500
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#define E2_MICROSTEPS 16
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#define E2_K_VAL 50
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#define E2_OVERCURRENT 2000
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#define E2_STALLCURRENT 1500
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#define E3_MICROSTEPS 16
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#define E3_K_VAL 50
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#define E3_OVERCURRENT 2000
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#define E3_STALLCURRENT 1500
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#endif
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