More redundant temp sensor changes. (After testing and debugging by reifsnderb)
This commit is contained in:
parent
9be61cdc02
commit
5090c56651
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@ -93,8 +93,8 @@
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#define TEMP_SENSOR_BED 0
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#define TEMP_SENSOR_BED 0
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// This makes temp sensor 1 a redundant sensor for sensor 0. If the temperatures difference between these sensors is to high the print will be aborted.
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// This makes temp sensor 1 a redundant sensor for sensor 0. If the temperatures difference between these sensors is to high the print will be aborted.
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#define TEMP_SENSOR_1_AS_REDUNDANT
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//#define TEMP_SENSOR_1_AS_REDUNDANT
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#define MAX_REDUNDANT_TEMP_SENSOR_DIFF 5
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#define MAX_REDUNDANT_TEMP_SENSOR_DIFF 10
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// Actual temperature must be close to target for this long before M109 returns success
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// Actual temperature must be close to target for this long before M109 returns success
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#define TEMP_RESIDENCY_TIME 10 // (seconds)
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#define TEMP_RESIDENCY_TIME 10 // (seconds)
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@ -318,6 +318,9 @@ const unsigned int dropsegments=5; //everything with less than this number of st
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//===========================================================================
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//===========================================================================
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//============================= Define Defines ============================
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//============================= Define Defines ============================
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//===========================================================================
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//===========================================================================
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#if EXTRUDERS > 1 && defined TEMP_SENSOR_1_AS_REDUNDANT
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#error "You cannot use TEMP_SENSOR_1_AS_REDUNDANT if EXTRUDERS > 1"
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#endif
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#if TEMP_SENSOR_0 > 0
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#if TEMP_SENSOR_0 > 0
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#define THERMISTORHEATER_0 TEMP_SENSOR_0
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#define THERMISTORHEATER_0 TEMP_SENSOR_0
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@ -367,8 +370,5 @@ const unsigned int dropsegments=5; //everything with less than this number of st
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#undef BED_MAXTEMP
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#undef BED_MAXTEMP
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#endif
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#endif
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#if EXTRUDERS > 1 && defined TEMP_SENSOR_1_AS_REDUNDANT
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#error "You cannot use TEMP_SENSOR_1_AS_REDUNDANT if EXTRUDERS > 1"
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#endif
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#endif //__CONFIGURATION_ADV_H
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#endif //__CONFIGURATION_ADV_H
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@ -1055,7 +1055,7 @@ void process_commands()
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case 105 : // M105
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case 105 : // M105
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if(setTargetedHotend(105)){
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if(setTargetedHotend(105)){
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break;
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break;
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}
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}
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#if defined(TEMP_0_PIN) && TEMP_0_PIN > -1
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#if defined(TEMP_0_PIN) && TEMP_0_PIN > -1
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SERIAL_PROTOCOLPGM("ok T:");
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SERIAL_PROTOCOLPGM("ok T:");
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SERIAL_PROTOCOL_F(degHotend(tmp_extruder),1);
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SERIAL_PROTOCOL_F(degHotend(tmp_extruder),1);
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321
Marlin/pins.h
321
Marlin/pins.h
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@ -313,189 +313,200 @@
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#if MOTHERBOARD == 33 || MOTHERBOARD == 34
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#if MOTHERBOARD == 33 || MOTHERBOARD == 34
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#define LARGE_FLASH true
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#define LARGE_FLASH true
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#define X_STEP_PIN 54
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#define X_STEP_PIN 54
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#define X_DIR_PIN 55
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#define X_DIR_PIN 55
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#define X_ENABLE_PIN 38
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#define X_ENABLE_PIN 38
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#define X_MIN_PIN 3
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#define X_MIN_PIN 3
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#define X_MAX_PIN 2
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#define X_MAX_PIN 2
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#define Y_STEP_PIN 60
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#define Y_STEP_PIN 60
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#define Y_DIR_PIN 61
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#define Y_DIR_PIN 61
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#define Y_ENABLE_PIN 56
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#define Y_ENABLE_PIN 56
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#define Y_MIN_PIN 14
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#define Y_MIN_PIN 14
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#define Y_MAX_PIN 15
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#define Y_MAX_PIN 15
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#define Z_STEP_PIN 46
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#define Z_STEP_PIN 46
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#define Z_DIR_PIN 48
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#define Z_DIR_PIN 48
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#define Z_ENABLE_PIN 62
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#define Z_ENABLE_PIN 62
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#define Z_MIN_PIN 18
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#define Z_MIN_PIN 18
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#define Z_MAX_PIN 19
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#define Z_MAX_PIN 19
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#define Z2_STEP_PIN 36
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#define Z2_STEP_PIN 36
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#define Z2_DIR_PIN 34
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#define Z2_DIR_PIN 34
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#define Z2_ENABLE_PIN 30
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#define Z2_ENABLE_PIN 30
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#define E0_STEP_PIN 26
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#define E0_STEP_PIN 26
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#define E0_DIR_PIN 28
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#define E0_DIR_PIN 28
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#define E0_ENABLE_PIN 24
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#define E0_ENABLE_PIN 24
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#define E1_STEP_PIN 36
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#define E1_STEP_PIN 36
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#define E1_DIR_PIN 34
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#define E1_DIR_PIN 34
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#define E1_ENABLE_PIN 30
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#define E1_ENABLE_PIN 30
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#define SDPOWER -1
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#define SDPOWER -1
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#define SDSS 53
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#define SDSS 53
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#define LED_PIN 13
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#define LED_PIN 13
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#if MOTHERBOARD == 33
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#if MOTHERBOARD == 33
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#define FAN_PIN 9 // (Sprinter config)
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#define FAN_PIN 9 // (Sprinter config)
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#else
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#else
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#define FAN_PIN 4 // IO pin. Buffer needed
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#define FAN_PIN 4 // IO pin. Buffer needed
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#endif
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#define PS_ON_PIN 12
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#if defined(REPRAP_DISCOUNT_SMART_CONTROLLER) || defined(G3D_PANEL)
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#define KILL_PIN 41
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#else
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#define KILL_PIN -1
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#endif
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#define HEATER_0_PIN 10 // EXTRUDER 1
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#if MOTHERBOARD == 33
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#define HEATER_1_PIN -1
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#else
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#define HEATER_1_PIN 9 // EXTRUDER 2 (FAN On Sprinter)
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#endif
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#define HEATER_2_PIN -1
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#define TEMP_0_PIN 13 // ANALOG NUMBERING
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#define TEMP_1_PIN 15 // ANALOG NUMBERING
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#define TEMP_2_PIN -1 // ANALOG NUMBERING
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#define HEATER_BED_PIN 8 // BED
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#define TEMP_BED_PIN 14 // ANALOG NUMBERING
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#ifdef NUM_SERVOS
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#define SERVO0_PIN 11
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#if NUM_SERVOS > 1
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#define SERVO1_PIN 6
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#endif
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#endif
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#if NUM_SERVOS > 2
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#define SERVO2_PIN 5
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#define PS_ON_PIN 12
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#if defined(REPRAP_DISCOUNT_SMART_CONTROLLER) || defined(G3D_PANEL)
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#define KILL_PIN 41
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#else
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#define KILL_PIN -1
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#endif
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#endif
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#if NUM_SERVOS > 2
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#define SERVO3_PIN 4
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#define HEATER_0_PIN 10 // EXTRUDER 1
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#if MOTHERBOARD == 33
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#define HEATER_1_PIN -1
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#else
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#define HEATER_1_PIN 9 // EXTRUDER 2 (FAN On Sprinter)
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#endif
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#endif
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#endif
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#ifdef ULTRA_LCD
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#define HEATER_2_PIN -1
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#define TEMP_0_PIN 13 // ANALOG NUMBERING
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#define TEMP_1_PIN 15 // ANALOG NUMBERING
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#define TEMP_2_PIN -1 // ANALOG NUMBERING
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#define HEATER_BED_PIN 8 // BED
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#define TEMP_BED_PIN 14 // ANALOG NUMBERING
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#ifdef NEWPANEL
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#define LCD_PINS_RS 16
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#define LCD_PINS_ENABLE 17
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#define LCD_PINS_D4 23
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#define LCD_PINS_D5 25
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#define LCD_PINS_D6 27
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#define LCD_PINS_D7 29
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#ifdef REPRAP_DISCOUNT_SMART_CONTROLLER
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#define BEEPER 37
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#define BTN_EN1 31
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#ifdef NUM_SERVOS
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#define BTN_EN2 33
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#define SERVO0_PIN 11
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#define BTN_ENC 35
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#define SDCARDDETECT 49
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#if NUM_SERVOS > 1
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#else
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#define SERVO1_PIN 6
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//arduino pin which triggers an piezzo beeper
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#define BEEPER 33 // Beeper on AUX-4
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//buttons are directly attached using AUX-2
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#ifdef REPRAPWORLD_KEYPAD
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#define BTN_EN1 64 // encoder
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#define BTN_EN2 59 // encoder
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#define BTN_ENC 63 // enter button
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#define SHIFT_OUT 40 // shift register
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#define SHIFT_CLK 44 // shift register
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#define SHIFT_LD 42 // shift register
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#else
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#define BTN_EN1 37
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#define BTN_EN2 35
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#define BTN_ENC 31 //the click
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#endif
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#ifdef G3D_PANEL
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#define SDCARDDETECT 49
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#else
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#define SDCARDDETECT -1 // Ramps does not use this port
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#endif
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#endif
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#endif
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#else //old style panel with shift register
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#if NUM_SERVOS > 2
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//arduino pin witch triggers an piezzo beeper
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#define SERVO2_PIN 5
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#define BEEPER 33 // No Beeper added
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#endif
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//buttons are attached to a shift register
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#if NUM_SERVOS > 2
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// Not wired this yet
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#define SERVO3_PIN 4
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//#define SHIFT_CLK 38
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#endif
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//#define SHIFT_LD 42
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//#define SHIFT_OUT 40
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//#define SHIFT_EN 17
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#define LCD_PINS_RS 16
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#define LCD_PINS_ENABLE 17
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#define LCD_PINS_D4 23
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#define LCD_PINS_D5 25
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#define LCD_PINS_D6 27
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#define LCD_PINS_D7 29
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#endif
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#endif
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#endif //ULTRA_LCD
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#ifdef ULTRA_LCD
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#ifdef NEWPANEL
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#define LCD_PINS_RS 16
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#define LCD_PINS_ENABLE 17
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#define LCD_PINS_D4 23
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#define LCD_PINS_D5 25
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#define LCD_PINS_D6 27
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#define LCD_PINS_D7 29
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#ifdef REPRAP_DISCOUNT_SMART_CONTROLLER
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#define BEEPER 37
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#define BTN_EN1 31
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#define BTN_EN2 33
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#define BTN_ENC 35
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#define SDCARDDETECT 49
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#else
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//arduino pin which triggers an piezzo beeper
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#define BEEPER 33 // Beeper on AUX-4
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//buttons are directly attached using AUX-2
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#ifdef REPRAPWORLD_KEYPAD
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#define BTN_EN1 64 // encoder
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#define BTN_EN2 59 // encoder
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#define BTN_ENC 63 // enter button
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#define SHIFT_OUT 40 // shift register
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#define SHIFT_CLK 44 // shift register
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#define SHIFT_LD 42 // shift register
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#else
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#define BTN_EN1 37
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#define BTN_EN2 35
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#define BTN_ENC 31 //the click
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#endif
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#ifdef G3D_PANEL
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#define SDCARDDETECT 49
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#else
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#define SDCARDDETECT -1 // Ramps does not use this port
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#endif
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#endif
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#else //old style panel with shift register
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//arduino pin witch triggers an piezzo beeper
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#define BEEPER 33 // No Beeper added
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//buttons are attached to a shift register
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// Not wired this yet
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//#define SHIFT_CLK 38
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//#define SHIFT_LD 42
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//#define SHIFT_OUT 40
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//#define SHIFT_EN 17
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#define LCD_PINS_RS 16
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#define LCD_PINS_ENABLE 17
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#define LCD_PINS_D4 23
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#define LCD_PINS_D5 25
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#define LCD_PINS_D6 27
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#define LCD_PINS_D7 29
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#endif
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#endif //ULTRA_LCD
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#else // RAMPS_V_1_1 or RAMPS_V_1_2 as default (MOTHERBOARD == 3)
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#else // RAMPS_V_1_1 or RAMPS_V_1_2 as default (MOTHERBOARD == 3)
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#define X_STEP_PIN 26
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#define X_STEP_PIN 26
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#define X_DIR_PIN 28
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#define X_DIR_PIN 28
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#define X_ENABLE_PIN 24
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#define X_ENABLE_PIN 24
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#define X_MIN_PIN 3
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#define X_MIN_PIN 3
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#define X_MAX_PIN -1 //2
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#define X_MAX_PIN -1 //2
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#define Y_STEP_PIN 38
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#define Y_STEP_PIN 38
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#define Y_DIR_PIN 40
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#define Y_DIR_PIN 40
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#define Y_ENABLE_PIN 36
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#define Y_ENABLE_PIN 36
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#define Y_MIN_PIN 16
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#define Y_MIN_PIN 16
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#define Y_MAX_PIN -1 //17
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#define Y_MAX_PIN -1 //17
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#define Z_STEP_PIN 44
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#define Z_STEP_PIN 44
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#define Z_DIR_PIN 46
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#define Z_DIR_PIN 46
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#define Z_ENABLE_PIN 42
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#define Z_ENABLE_PIN 42
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#define Z_MIN_PIN 18
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#define Z_MIN_PIN 18
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#define Z_MAX_PIN -1 //19
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#define Z_MAX_PIN -1 //19
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#define E0_STEP_PIN 32
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#define E0_STEP_PIN 32
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#define E0_DIR_PIN 34
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#define E0_DIR_PIN 34
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#define E0_ENABLE_PIN 30
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#define E0_ENABLE_PIN 30
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#define SDPOWER 48
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#define SDPOWER 48
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#define SDSS 53
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#define SDSS 53
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#define LED_PIN 13
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#define LED_PIN 13
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#define PS_ON_PIN -1
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#define PS_ON_PIN -1
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#define KILL_PIN -1
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#define KILL_PIN -1
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#ifdef RAMPS_V_1_0 // RAMPS_V_1_0
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#define HEATER_0_PIN 12 // RAMPS 1.0
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#define HEATER_BED_PIN -1 // RAMPS 1.0
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#define FAN_PIN 11 // RAMPS 1.0
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#else // RAMPS_V_1_1 or RAMPS_V_1_2
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#define HEATER_0_PIN 10 // RAMPS 1.1
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#define HEATER_BED_PIN 8 // RAMPS 1.1
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#define FAN_PIN 9 // RAMPS 1.1
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#endif
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#define HEATER_1_PIN -1
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#define HEATER_2_PIN -1
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#define TEMP_0_PIN 2 // MUST USE ANALOG INPUT NUMBERING NOT DIGITAL OUTPUT NUMBERING!!!!!!!!!
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#define TEMP_1_PIN -1
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#define TEMP_2_PIN -1
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#define TEMP_BED_PIN 1 // MUST USE ANALOG INPUT NUMBERING NOT DIGITAL OUTPUT NUMBERING!!!!!!!!!
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#ifdef RAMPS_V_1_0 // RAMPS_V_1_0
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#define HEATER_0_PIN 12 // RAMPS 1.0
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#define HEATER_BED_PIN -1 // RAMPS 1.0
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#define FAN_PIN 11 // RAMPS 1.0
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#else // RAMPS_V_1_1 or RAMPS_V_1_2
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#define HEATER_0_PIN 10 // RAMPS 1.1
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#define HEATER_BED_PIN 8 // RAMPS 1.1
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#define FAN_PIN 9 // RAMPS 1.1
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#endif
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#define HEATER_1_PIN -1
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#define HEATER_2_PIN -1
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#define TEMP_0_PIN 2 // MUST USE ANALOG INPUT NUMBERING NOT DIGITAL OUTPUT NUMBERING!!!!!!!!!
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#define TEMP_1_PIN -1
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#define TEMP_2_PIN -1
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#define TEMP_BED_PIN 1 // MUST USE ANALOG INPUT NUMBERING NOT DIGITAL OUTPUT NUMBERING!!!!!!!!!
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#endif// MOTHERBOARD == 33 || MOTHERBOARD == 34
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#endif// MOTHERBOARD == 33 || MOTHERBOARD == 34
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// SPI for Max6675 Thermocouple
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// SPI for Max6675 Thermocouple
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@ -109,13 +109,13 @@ static volatile bool temp_meas_ready = false;
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#endif
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#endif
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#if EXTRUDERS > 3
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#if EXTRUDERS > 3
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# error Unsupported number of extruders
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# error Unsupported number of extruders
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#elif EXTRUDERS > 2
|
#elif EXTRUDERS > 2
|
||||||
# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1, v2, v3 }
|
# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1, v2, v3 }
|
||||||
#elif EXTRUDERS > 1
|
#elif EXTRUDERS > 1
|
||||||
# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1, v2 }
|
# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1, v2 }
|
||||||
#else
|
#else
|
||||||
# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1 }
|
# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1 }
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
// Init min and max temp with extreme values to prevent false errors during startup
|
// Init min and max temp with extreme values to prevent false errors during startup
|
||||||
|
@ -127,8 +127,14 @@ static int maxttemp[EXTRUDERS] = ARRAY_BY_EXTRUDERS( 16383, 16383, 16383 );
|
||||||
#ifdef BED_MAXTEMP
|
#ifdef BED_MAXTEMP
|
||||||
static int bed_maxttemp_raw = HEATER_BED_RAW_HI_TEMP;
|
static int bed_maxttemp_raw = HEATER_BED_RAW_HI_TEMP;
|
||||||
#endif
|
#endif
|
||||||
static void *heater_ttbl_map[EXTRUDERS] = ARRAY_BY_EXTRUDERS( (void *)HEATER_0_TEMPTABLE, (void *)HEATER_1_TEMPTABLE, (void *)HEATER_2_TEMPTABLE );
|
|
||||||
static uint8_t heater_ttbllen_map[EXTRUDERS] = ARRAY_BY_EXTRUDERS( HEATER_0_TEMPTABLE_LEN, HEATER_1_TEMPTABLE_LEN, HEATER_2_TEMPTABLE_LEN );
|
#ifdef TEMP_SENSOR_1_AS_REDUNDANT
|
||||||
|
static void *heater_ttbl_map[2] = {(void *)HEATER_0_TEMPTABLE, (void *)HEATER_1_TEMPTABLE };
|
||||||
|
static uint8_t heater_ttbllen_map[2] = { HEATER_0_TEMPTABLE_LEN, HEATER_1_TEMPTABLE_LEN };
|
||||||
|
#else
|
||||||
|
static void *heater_ttbl_map[EXTRUDERS] = ARRAY_BY_EXTRUDERS( (void *)HEATER_0_TEMPTABLE, (void *)HEATER_1_TEMPTABLE, (void *)HEATER_2_TEMPTABLE );
|
||||||
|
static uint8_t heater_ttbllen_map[EXTRUDERS] = ARRAY_BY_EXTRUDERS( HEATER_0_TEMPTABLE_LEN, HEATER_1_TEMPTABLE_LEN, HEATER_2_TEMPTABLE_LEN );
|
||||||
|
#endif
|
||||||
|
|
||||||
static float analog2temp(int raw, uint8_t e);
|
static float analog2temp(int raw, uint8_t e);
|
||||||
static float analog2tempBed(int raw);
|
static float analog2tempBed(int raw);
|
||||||
|
@ -475,11 +481,11 @@ void manage_heater()
|
||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
#ifdef TEMP_SENSOR_1_AS_REDUNDANT
|
#ifdef TEMP_SENSOR_1_AS_REDUNDANT
|
||||||
if(fabs(current_temperature[1] - redundant_temperature) > MAX_REDUNDANT_TEMP_SENSOR_DIFF) {
|
if(fabs(current_temperature[0] - redundant_temperature) > MAX_REDUNDANT_TEMP_SENSOR_DIFF) {
|
||||||
disable_heater();
|
disable_heater();
|
||||||
if(IsStopped() == false) {
|
if(IsStopped() == false) {
|
||||||
SERIAL_ERROR_START;
|
SERIAL_ERROR_START;
|
||||||
SERIAL_ERRORLNPGM("Extruder switched off. Temperature difference between temp sensors is to high !");
|
SERIAL_ERRORLNPGM("Extruder switched off. Temperature difference between temp sensors is too high !");
|
||||||
LCD_ALERTMESSAGEPGM("Err: REDUNDANT TEMP ERROR");
|
LCD_ALERTMESSAGEPGM("Err: REDUNDANT TEMP ERROR");
|
||||||
}
|
}
|
||||||
#ifndef BOGUS_TEMPERATURE_FAILSAFE_OVERRIDE
|
#ifndef BOGUS_TEMPERATURE_FAILSAFE_OVERRIDE
|
||||||
|
@ -580,7 +586,11 @@ void manage_heater()
|
||||||
// Derived from RepRap FiveD extruder::getTemperature()
|
// Derived from RepRap FiveD extruder::getTemperature()
|
||||||
// For hot end temperature measurement.
|
// For hot end temperature measurement.
|
||||||
static float analog2temp(int raw, uint8_t e) {
|
static float analog2temp(int raw, uint8_t e) {
|
||||||
|
#ifdef TEMP_SENSOR_1_AS_REDUNDANT
|
||||||
|
if(e > EXTRUDERS)
|
||||||
|
#else
|
||||||
if(e >= EXTRUDERS)
|
if(e >= EXTRUDERS)
|
||||||
|
#endif
|
||||||
{
|
{
|
||||||
SERIAL_ERROR_START;
|
SERIAL_ERROR_START;
|
||||||
SERIAL_ERROR((int)e);
|
SERIAL_ERROR((int)e);
|
||||||
|
@ -660,7 +670,7 @@ static void updateTemperaturesFromRawValues()
|
||||||
}
|
}
|
||||||
current_temperature_bed = analog2tempBed(current_temperature_bed_raw);
|
current_temperature_bed = analog2tempBed(current_temperature_bed_raw);
|
||||||
#ifdef TEMP_SENSOR_1_AS_REDUNDANT
|
#ifdef TEMP_SENSOR_1_AS_REDUNDANT
|
||||||
redundant_temperature =analog2temp(redundant_temperature_raw, 1);
|
redundant_temperature = analog2temp(redundant_temperature_raw, 1);
|
||||||
#endif
|
#endif
|
||||||
//Reset the watchdog after we know we have a temperature measurement.
|
//Reset the watchdog after we know we have a temperature measurement.
|
||||||
watchdog_reset();
|
watchdog_reset();
|
||||||
|
|
Loading…
Reference in a new issue