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✏️ GT2560_V41b followup
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@ -51,7 +51,7 @@
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* X AXIS Y AXIS Z1 AXIS Z0 AXIS
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* --- --- --- ---
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* | 1 | 5V | 1 | 5V | 1 | 5V | 1 | 5V
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* | 2 | 24 X_MIN | 2 | 28 Y_MIN | 2 | 80 Z1_MIN | 2 | 30 Z0_MIN
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* | 2 | 24 X_MIN | 2 | 28 Y_MIN | 2 | 80 Z1_MIN | 2 | 30 Z0_MIN
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* | 3 | GND | 3 | GND | 3 | GND | 3 | GND
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* --- --- --- ---
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* J3 J4 J5 J6
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@ -60,8 +60,9 @@
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#define Z_STOP_PIN 4
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/**
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* NOTE: Useful if extra TMC2209 are to be used as independent axes.
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* We need to configure the new digital PIN, for this we could configure on the board the extra pin of this stepper, for example as a MIN_PIN/MAX_PIN. This pin is the D14.
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* NOTE: For extra TMC2209 used as independent axes a new digital PIN is needed.
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* We can configure on the board the extra pin of this stepper,
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* e.g., as a MIN_PIN/MAX_PIN. This pin is D14.
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*/
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//#define Z2_STOP_PIN 14
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//#define X2_STOP_PIN 14
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@ -105,7 +106,7 @@
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// This board have the option to use an extra TMC2209 stepper, one of the use could be as a second extruder.
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#if EXTRUDERS < 2
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// TODO: Corregir aquí que cuando tenemos dos extrusores o lo que sea, utiliza los endstop que le sobran, osea los max, no hay Z2_endstop
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// TODO: Correct here that when we have two extruders (or whatever), use the extra endstops. i.e., The max, there is no Z2_endstop.
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#if NUM_Z_STEPPERS > 1
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#define Z2_STOP_PIN 14
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#endif
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@ -117,8 +118,8 @@
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#undef Z3_DRIVER_TYPE
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#undef Z4_DRIVER_TYPE
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// Si tenemos más de un extrusor lo que hacemos es definir el nuevo extrusor así como sus pines
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// Acordarse de definir el #define TEMP_SENSOR_1, ya que este contiene el tipo de sonda del extrusor E1
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// For more than one extruder define the new extruder and its pins.
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// Remember to #define TEMP_SENSOR_1, since this contains the E1 sensor type.
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#define FIL_RUNOUT2_PIN 14
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@ -166,13 +167,9 @@
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#define EXP3_08_PIN EXP1_08_PIN
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#endif
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/************************************/
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/***** Configurations Section ******/
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/************************************/
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/**
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* This sections starts with the pins_RAMPS_144.h as example, after if you need any new
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* display, you could use normal duponts and connect it with with the scheme showed before.
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* This section is based on pins_RAMPS_144.h. To use a new display, you
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* could use normal duponts and connect with the scheme shown before.
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* Tested:
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* - Ender-3 Old display (Character LCD)
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* - Ender-3 New Serial DWING Display
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@ -427,7 +424,7 @@
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// TO TEST
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//#define BEEPER_PIN EXP2_05_PIN
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// not connected to a pin
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//#define LCD_BACKLIGHT_PIN 57 // backlight LED on A11/D? (Mega/Due:65 - AGCM4:57)
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//#define LCD_BACKLIGHT_PIN 57 // Backlight LED on A11/D? (Mega/Due:65 - AGCM4:57)
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//#define DOGLCD_A0 EXP2_07_PIN
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//#define DOGLCD_CS 58 // Mega/Due:66 - AGCM4:58
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@ -502,8 +499,8 @@
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#if HAS_TMC_UART
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/**
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* Address for the UART Configuration of the TMC2209. Override in Configuration files.
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* To test TMC2209 Steppers enable TMC_DEBUG in Configuration_adv.h and test the M122 command with voltage on the steppers.
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* TMC2209 UART Address. Override in Configuration files.
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* To test TMC2209 Steppers enable TMC_DEBUG and test M122 with voltage on the steppers.
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*/
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#ifndef X_SLAVE_ADDRESS
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#define X_SLAVE_ADDRESS 0b00
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@ -523,8 +520,8 @@
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/**
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* TMC2208/TMC2209 stepper drivers
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* It seems to work perfectly fine on Software Serial, if an advanced user wants to test, you could use the SAMD51 Serial1 and Serial 2. Be careful with the Sercom configurations.
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* Steppers 1,2,3,4 (X,Y,Z,E0) are on the Serial1, Sercom (RX = 0, TX = 1), extra stepper 5 (E1 or any axis you want) is on Serial2, Sercom (RX = 17, TX = 16)
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* Seems to work fine with Software Serial. If you want to test, use SAMD51 Serial1 and Serial2. Be careful with the Sercom configurations.
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* Steppers 1,2,3,4 (X,Y,Z,E0) are on Serial1, Sercom (RX=0, TX=1), extra stepper 5 (E1 or any axis you want) is on Serial2, Sercom (RX=17, TX=16)
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*/
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//#define X_HARDWARE_SERIAL Serial1
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