224 lines
5.8 KiB
INI
224 lines
5.8 KiB
INI
[temperature_sensor MCU]
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sensor_type: temperature_mcu
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[temperature_sensor SoC]
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sensor_type: temperature_host
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#####################################################################
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# Bed Heater
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#####################################################################
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[heater_bed]
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## SSR Pin - HE1
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heater_pin: PA1
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## Check what thermistor type you have. See https://www.klipper3d.org/Config_Reference.html#common-thermistors for common thermistor types.
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## Use "Generic 3950" for NTC 100k 3950 thermistors
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#sensor_type:
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sensor_pin: PB1
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## Adjust max_power so it doesn't exceed the SSR rating. The Omron G3NA-210B-DC5 SSR is rated at 4 amps without a heatsink.
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## The formula is "4 / (Wattage_of_bed_heater / Mains_voltage) = max_power"
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## If max_power is greater than 1.0, use 1.0
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sensor_type: Generic 3950
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max_power: 0.96
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min_temp: 0
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max_temp: 120
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control: pid
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pid_kp: 62.117
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pid_ki: 3.210
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pid_kd: 300.492
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#####################################################################
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# Fan Control
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#####################################################################
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[multi_pin ebay_fans_pin]
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pins: PF7, PF9, PF6, PF8
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[temperature_fan ebay_fans]
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# Print Cooling Fan - CNC_FAN0
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pin: multi_pin:ebay_fans_pin
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hardware_pwm: true
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control: watermark
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max_delta: 5
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sensor_type: temperature_host
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min_temp: 15
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max_temp: 80
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target_temp: 50
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#[heater_fan hotend_fan]
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## Hotend Fan - CNC_FAN1
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#pin: PF9
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#max_power: 1.0
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#kick_start_time: 0.5
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#heater: extruder
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#heater_temp: 50.0
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## If you are experiencing back flow, you can reduce fan_speed
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#fan_speed: 1.0
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#[heater_fan controller_fan]
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## Controller fan - CNC_FAN2
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#pin: PF6
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#kick_start_time: 0.5
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#heater: heater_bed
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#heater_temp: 45.0
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#[heater_fan exhaust_fan]
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## Exhaust fan - CNC_FAN3
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#pin: PF8
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#max_power: 1.0
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#shutdown_speed: 0.0
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#kick_start_time: 5.0
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#heater: heater_bed
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#heater_temp: 60
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#fan_speed: 1.0
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#[heater_fan fan4]
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#pin: PA4
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#[heater_fan fan5]
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#pin: PA6
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#tachometer_pin: PC2
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#[heater_fan fan6]
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#pin: PA2
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#tachometer_pin: PC1
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#####################################################################
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# LED Control
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#####################################################################
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#[output_pin caselight]
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# Chamber Lighting - HE2 Connector (Optional)
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#pin: PA3
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#pwm:true
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#shutdown_value: 0
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#value:1
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#cycle_time: 0.01
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#####################################################################
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# Homing and Gantry Adjustment Routines
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#####################################################################
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[idle_timeout]
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timeout: 1800
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[safe_z_home]
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home_xy_position:175,175
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speed:200
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z_hop:10
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[quad_gantry_level]
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## Gantry Corners for 350mm Build
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## Uncomment for 350mm build
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gantry_corners:
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-60,-10
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410,420
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# Probe points
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points:
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50,25
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50,275
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300,275
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300,25
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#--------------------------------------------------------------------
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speed: 250
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horizontal_move_z: 10
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retries: 5
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retry_tolerance: 0.0075
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max_adjust: 10
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[board_pins]
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aliases:
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# EXP1 header
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EXP1_1=PE7, EXP1_2=PG1,
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EXP1_3=PG0, EXP1_4=PF15,
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EXP1_5=PF14, EXP1_6=PF13, # Slot in the socket on this side
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EXP1_7=PF12, EXP1_8=PF11,
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EXP1_9=<GND>, EXP1_10=<5V>,
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# EXP2 header
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EXP2_1=PE13, EXP2_2=PE12,
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EXP2_3=PE15, EXP2_4=PE11,
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EXP2_5=PE10, EXP2_6=PE14, # Slot in the socket on this side
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EXP2_7=PE8, EXP2_8=<RST>,
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EXP2_9=<GND>, EXP2_10=<NC>
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# See the sample-lcd.cfg file for definitions of common LCD displays.
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#####################################################################
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# Displays
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#####################################################################
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## Uncomment the display that you have
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#--------------------------------------------------------------------
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#[display]
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## RepRapDiscount 128x64 Full Graphic Smart Controller
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#lcd_type: st7920
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#cs_pin: EXP1_4
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#sclk_pin: EXP1_5
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#sid_pin: EXP1_3
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#menu_timeout: 40
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#encoder_pins: ^EXP2_5, ^EXP2_3
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#click_pin: ^!EXP1_2
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#[output_pin beeper]
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#pin: EXP1_1
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#--------------------------------------------------------------------
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#####################################################################
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# Macros
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#####################################################################
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[gcode_macro G32]
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gcode:
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BED_MESH_CLEAR
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G28
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QUAD_GANTRY_LEVEL
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G28
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## Uncomment for for your size printer:
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#--------------------------------------------------------------------
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## Uncomment for 250mm build
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#G0 X125 Y125 Z30 F3600
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## Uncomment for 300 build
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#G0 X150 Y150 Z30 F3600
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## Uncomment for 350mm build
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#G0 X175 Y175 Z30 F3600
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#--------------------------------------------------------------------
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[gcode_macro PRINT_START]
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# Use PRINT_START for the slicer starting script - please customise for your slicer of choice
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gcode:
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G32 ; home all axes
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G1 Z20 F3000 ; move nozzle away from bed
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[gcode_macro PRINT_END]
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# Use PRINT_END for the slicer ending script - please customise for your slicer of choice
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gcode:
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SAVE_GCODE_STATE NAME=STATE_PRINT_END
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M400 ; wait for buffer to clear
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G92 E0 ; zero the extruder
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G1 E-10.0 F3600 ; retract filament
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G91 ; relative positioning
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G0 Z1.00 X20.0 Y20.0 F20000 ; move nozzle to remove stringing
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TURN_OFF_HEATERS
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M107 ; turn off fan
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G1 Z2 F3000 ; move nozzle up 2mm
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G90 ; absolute positioning
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G0 X125 Y250 F3600 ; park nozzle at rear
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BED_MESH_CLEAR
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# The purpose of the SAVE_GCODE_STATE/RESTORE_GCODE_STATE
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# command pair is to restore the printer's coordinate system
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# and speed settings since the commands above change them.
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# However, to prevent any accidental, unintentional toolhead
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# moves when restoring the state, explicitly set MOVE=0.
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RESTORE_GCODE_STATE NAME=STATE_PRINT_END MOVE=0
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