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configadv gtr

Feb 24th, 2020
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  1. /**
  2. * Marlin 3D Printer Firmware
  3. * Copyright (c) 2020 MarlinFirmware [https://github.com/MarlinFirmware/Marlin]
  4. *
  5. * Based on Sprinter and grbl.
  6. * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm
  7. *
  8. * This program is free software: you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation, either version 3 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  20. *
  21. */
  22. #pragma once
  23.  
  24. /**
  25. * Configuration_adv.h
  26. *
  27. * Advanced settings.
  28. * Only change these if you know exactly what you're doing.
  29. * Some of these settings can damage your printer if improperly set!
  30. *
  31. * Basic settings can be found in Configuration.h
  32. *
  33. */
  34. #define CONFIGURATION_ADV_H_VERSION 020004
  35.  
  36. // @section temperature
  37.  
  38. //===========================================================================
  39. //=============================Thermal Settings ============================
  40. //===========================================================================
  41.  
  42. //
  43. // Custom Thermistor 1000 parameters
  44. //
  45. #if TEMP_SENSOR_0 == 1000
  46. #define HOTEND0_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  47. #define HOTEND0_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  48. #define HOTEND0_BETA 3950 // Beta value
  49. #endif
  50.  
  51. #if TEMP_SENSOR_1 == 1000
  52. #define HOTEND1_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  53. #define HOTEND1_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  54. #define HOTEND1_BETA 3950 // Beta value
  55. #endif
  56.  
  57. #if TEMP_SENSOR_2 == 1000
  58. #define HOTEND2_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  59. #define HOTEND2_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  60. #define HOTEND2_BETA 3950 // Beta value
  61. #endif
  62.  
  63. #if TEMP_SENSOR_3 == 1000
  64. #define HOTEND3_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  65. #define HOTEND3_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  66. #define HOTEND3_BETA 3950 // Beta value
  67. #endif
  68.  
  69. #if TEMP_SENSOR_4 == 1000
  70. #define HOTEND4_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  71. #define HOTEND4_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  72. #define HOTEND4_BETA 3950 // Beta value
  73. #endif
  74.  
  75. #if TEMP_SENSOR_5 == 1000
  76. #define HOTEND5_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  77. #define HOTEND5_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  78. #define HOTEND5_BETA 3950 // Beta value
  79. #endif
  80.  
  81. #if TEMP_SENSOR_6 == 1000
  82. #define HOTEND6_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  83. #define HOTEND6_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  84. #define HOTEND6_BETA 3950 // Beta value
  85. #endif
  86.  
  87. #if TEMP_SENSOR_7 == 1000
  88. #define HOTEND7_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  89. #define HOTEND7_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  90. #define HOTEND7_BETA 3950 // Beta value
  91. #endif
  92.  
  93. #if TEMP_SENSOR_BED == 1000
  94. #define BED_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  95. #define BED_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  96. #define BED_BETA 3950 // Beta value
  97. #endif
  98.  
  99. #if TEMP_SENSOR_CHAMBER == 1000
  100. #define CHAMBER_PULLUP_RESISTOR_OHMS 4700 // Pullup resistor
  101. #define CHAMBER_RESISTANCE_25C_OHMS 100000 // Resistance at 25C
  102. #define CHAMBER_BETA 3950 // Beta value
  103. #endif
  104.  
  105. //
  106. // Hephestos 2 24V heated bed upgrade kit.
  107. // https://store.bq.com/en/heated-bed-kit-hephestos2
  108. //
  109. //#define HEPHESTOS2_HEATED_BED_KIT
  110. #if ENABLED(HEPHESTOS2_HEATED_BED_KIT)
  111. #undef TEMP_SENSOR_BED
  112. #define TEMP_SENSOR_BED 70
  113. #define HEATER_BED_INVERTING true
  114. #endif
  115.  
  116. /**
  117. * Heated Chamber settings
  118. */
  119. #if TEMP_SENSOR_CHAMBER
  120. #define CHAMBER_MINTEMP 5
  121. #define CHAMBER_MAXTEMP 60
  122. #define TEMP_CHAMBER_HYSTERESIS 1 // (°C) Temperature proximity considered "close enough" to the target
  123. //#define CHAMBER_LIMIT_SWITCHING
  124. //#define HEATER_CHAMBER_PIN 44 // Chamber heater on/off pin
  125. //#define HEATER_CHAMBER_INVERTING false
  126. #endif
  127.  
  128. #if DISABLED(PIDTEMPBED)
  129. #define BED_CHECK_INTERVAL 5000 // ms between checks in bang-bang control
  130. #if ENABLED(BED_LIMIT_SWITCHING)
  131. #define BED_HYSTERESIS 2 // Only disable heating if T>target+BED_HYSTERESIS and enable heating if T>target-BED_HYSTERESIS
  132. #endif
  133. #endif
  134.  
  135. /**
  136. * Thermal Protection provides additional protection to your printer from damage
  137. * and fire. Marlin always includes safe min and max temperature ranges which
  138. * protect against a broken or disconnected thermistor wire.
  139. *
  140. * The issue: If a thermistor falls out, it will report the much lower
  141. * temperature of the air in the room, and the the firmware will keep
  142. * the heater on.
  143. *
  144. * The solution: Once the temperature reaches the target, start observing.
  145. * If the temperature stays too far below the target (hysteresis) for too
  146. * long (period), the firmware will halt the machine as a safety precaution.
  147. *
  148. * If you get false positives for "Thermal Runaway", increase
  149. * THERMAL_PROTECTION_HYSTERESIS and/or THERMAL_PROTECTION_PERIOD
  150. */
  151. #if ENABLED(THERMAL_PROTECTION_HOTENDS)
  152. #define THERMAL_PROTECTION_PERIOD 40 // Seconds
  153. #define THERMAL_PROTECTION_HYSTERESIS 4 // Degrees Celsius
  154.  
  155. //#define ADAPTIVE_FAN_SLOWING // Slow part cooling fan if temperature drops
  156. #if BOTH(ADAPTIVE_FAN_SLOWING, PIDTEMP)
  157. //#define NO_FAN_SLOWING_IN_PID_TUNING // Don't slow fan speed during M303
  158. #endif
  159.  
  160. /**
  161. * Whenever an M104, M109, or M303 increases the target temperature, the
  162. * firmware will wait for the WATCH_TEMP_PERIOD to expire. If the temperature
  163. * hasn't increased by WATCH_TEMP_INCREASE degrees, the machine is halted and
  164. * requires a hard reset. This test restarts with any M104/M109/M303, but only
  165. * if the current temperature is far enough below the target for a reliable
  166. * test.
  167. *
  168. * If you get false positives for "Heating failed", increase WATCH_TEMP_PERIOD
  169. * and/or decrease WATCH_TEMP_INCREASE. WATCH_TEMP_INCREASE should not be set
  170. * below 2.
  171. */
  172. #define WATCH_TEMP_PERIOD 20 // Seconds
  173. #define WATCH_TEMP_INCREASE 2 // Degrees Celsius
  174. #endif
  175.  
  176. /**
  177. * Thermal Protection parameters for the bed are just as above for hotends.
  178. */
  179. #if ENABLED(THERMAL_PROTECTION_BED)
  180. #define THERMAL_PROTECTION_BED_PERIOD 20 // Seconds
  181. #define THERMAL_PROTECTION_BED_HYSTERESIS 2 // Degrees Celsius
  182.  
  183. /**
  184. * As described above, except for the bed (M140/M190/M303).
  185. */
  186. #define WATCH_BED_TEMP_PERIOD 60 // Seconds
  187. #define WATCH_BED_TEMP_INCREASE 2 // Degrees Celsius
  188. #endif
  189.  
  190. /**
  191. * Thermal Protection parameters for the heated chamber.
  192. */
  193. #if ENABLED(THERMAL_PROTECTION_CHAMBER)
  194. #define THERMAL_PROTECTION_CHAMBER_PERIOD 20 // Seconds
  195. #define THERMAL_PROTECTION_CHAMBER_HYSTERESIS 2 // Degrees Celsius
  196.  
  197. /**
  198. * Heated chamber watch settings (M141/M191).
  199. */
  200. #define WATCH_CHAMBER_TEMP_PERIOD 60 // Seconds
  201. #define WATCH_CHAMBER_TEMP_INCREASE 2 // Degrees Celsius
  202. #endif
  203.  
  204. #if ENABLED(PIDTEMP)
  205. // Add an experimental additional term to the heater power, proportional to the extrusion speed.
  206. // A well-chosen Kc value should add just enough power to melt the increased material volume.
  207. //#define PID_EXTRUSION_SCALING
  208. #if ENABLED(PID_EXTRUSION_SCALING)
  209. #define DEFAULT_Kc (100) //heating power=Kc*(e_speed)
  210. #define LPQ_MAX_LEN 50
  211. #endif
  212.  
  213. /**
  214. * Add an experimental additional term to the heater power, proportional to the fan speed.
  215. * A well-chosen Kf value should add just enough power to compensate for power-loss from the cooling fan.
  216. * You can either just add a constant compensation with the DEFAULT_Kf value
  217. * or follow the instruction below to get speed-dependent compensation.
  218. *
  219. * Constant compensation (use only with fanspeeds of 0% and 100%)
  220. * ---------------------------------------------------------------------
  221. * A good starting point for the Kf-value comes from the calculation:
  222. * kf = (power_fan * eff_fan) / power_heater * 255
  223. * where eff_fan is between 0.0 and 1.0, based on fan-efficiency and airflow to the nozzle / heater.
  224. *
  225. * Example:
  226. * Heater: 40W, Fan: 0.1A * 24V = 2.4W, eff_fan = 0.8
  227. * Kf = (2.4W * 0.8) / 40W * 255 = 12.24
  228. *
  229. * Fan-speed dependent compensation
  230. * --------------------------------
  231. * 1. To find a good Kf value, set the hotend temperature, wait for it to settle, and enable the fan (100%).
  232. * Make sure PID_FAN_SCALING_LIN_FACTOR is 0 and PID_FAN_SCALING_ALTERNATIVE_DEFINITION is not enabled.
  233. * If you see the temperature drop repeat the test, increasing the Kf value slowly, until the temperature
  234. * drop goes away. If the temperature overshoots after enabling the fan, the Kf value is too big.
  235. * 2. Note the Kf-value for fan-speed at 100%
  236. * 3. Determine a good value for PID_FAN_SCALING_MIN_SPEED, which is around the speed, where the fan starts moving.
  237. * 4. Repeat step 1. and 2. for this fan speed.
  238. * 5. Enable PID_FAN_SCALING_ALTERNATIVE_DEFINITION and enter the two identified Kf-values in
  239. * PID_FAN_SCALING_AT_FULL_SPEED and PID_FAN_SCALING_AT_MIN_SPEED. Enter the minimum speed in PID_FAN_SCALING_MIN_SPEED
  240. */
  241. //#define PID_FAN_SCALING
  242. #if ENABLED(PID_FAN_SCALING)
  243. //#define PID_FAN_SCALING_ALTERNATIVE_DEFINITION
  244. #if ENABLED(PID_FAN_SCALING_ALTERNATIVE_DEFINITION)
  245. // The alternative definition is used for an easier configuration.
  246. // Just figure out Kf at fullspeed (255) and PID_FAN_SCALING_MIN_SPEED.
  247. // DEFAULT_Kf and PID_FAN_SCALING_LIN_FACTOR are calculated accordingly.
  248.  
  249. #define PID_FAN_SCALING_AT_FULL_SPEED 13.0 //=PID_FAN_SCALING_LIN_FACTOR*255+DEFAULT_Kf
  250. #define PID_FAN_SCALING_AT_MIN_SPEED 6.0 //=PID_FAN_SCALING_LIN_FACTOR*PID_FAN_SCALING_MIN_SPEED+DEFAULT_Kf
  251. #define PID_FAN_SCALING_MIN_SPEED 10.0 // Minimum fan speed at which to enable PID_FAN_SCALING
  252.  
  253. #define DEFAULT_Kf (255.0*PID_FAN_SCALING_AT_MIN_SPEED-PID_FAN_SCALING_AT_FULL_SPEED*PID_FAN_SCALING_MIN_SPEED)/(255.0-PID_FAN_SCALING_MIN_SPEED)
  254. #define PID_FAN_SCALING_LIN_FACTOR (PID_FAN_SCALING_AT_FULL_SPEED-DEFAULT_Kf)/255.0
  255.  
  256. #else
  257. #define PID_FAN_SCALING_LIN_FACTOR (0) // Power loss due to cooling = Kf * (fan_speed)
  258. #define DEFAULT_Kf 10 // A constant value added to the PID-tuner
  259. #define PID_FAN_SCALING_MIN_SPEED 10 // Minimum fan speed at which to enable PID_FAN_SCALING
  260. #endif
  261. #endif
  262. #endif
  263.  
  264. /**
  265. * Automatic Temperature:
  266. * The hotend target temperature is calculated by all the buffered lines of gcode.
  267. * The maximum buffered steps/sec of the extruder motor is called "se".
  268. * Start autotemp mode with M109 S<mintemp> B<maxtemp> F<factor>
  269. * The target temperature is set to mintemp+factor*se[steps/sec] and is limited by
  270. * mintemp and maxtemp. Turn this off by executing M109 without F*
  271. * Also, if the temperature is set to a value below mintemp, it will not be changed by autotemp.
  272. * On an Ultimaker, some initial testing worked with M109 S215 B260 F1 in the start.gcode
  273. */
  274. #define AUTOTEMP
  275. #if ENABLED(AUTOTEMP)
  276. #define AUTOTEMP_OLDWEIGHT 0.98
  277. #endif
  278.  
  279. // Show extra position information with 'M114 D'
  280. //#define M114_DETAIL
  281.  
  282. // Show Temperature ADC value
  283. // Enable for M105 to include ADC values read from temperature sensors.
  284. //#define SHOW_TEMP_ADC_VALUES
  285.  
  286. /**
  287. * High Temperature Thermistor Support
  288. *
  289. * Thermistors able to support high temperature tend to have a hard time getting
  290. * good readings at room and lower temperatures. This means HEATER_X_RAW_LO_TEMP
  291. * will probably be caught when the heating element first turns on during the
  292. * preheating process, which will trigger a min_temp_error as a safety measure
  293. * and force stop everything.
  294. * To circumvent this limitation, we allow for a preheat time (during which,
  295. * min_temp_error won't be triggered) and add a min_temp buffer to handle
  296. * aberrant readings.
  297. *
  298. * If you want to enable this feature for your hotend thermistor(s)
  299. * uncomment and set values > 0 in the constants below
  300. */
  301.  
  302. // The number of consecutive low temperature errors that can occur
  303. // before a min_temp_error is triggered. (Shouldn't be more than 10.)
  304. //#define MAX_CONSECUTIVE_LOW_TEMPERATURE_ERROR_ALLOWED 0
  305.  
  306. // The number of milliseconds a hotend will preheat before starting to check
  307. // the temperature. This value should NOT be set to the time it takes the
  308. // hot end to reach the target temperature, but the time it takes to reach
  309. // the minimum temperature your thermistor can read. The lower the better/safer.
  310. // This shouldn't need to be more than 30 seconds (30000)
  311. //#define MILLISECONDS_PREHEAT_TIME 0
  312.  
  313. // @section extruder
  314.  
  315. // Extruder runout prevention.
  316. // If the machine is idle and the temperature over MINTEMP
  317. // then extrude some filament every couple of SECONDS.
  318. //#define EXTRUDER_RUNOUT_PREVENT
  319. #if ENABLED(EXTRUDER_RUNOUT_PREVENT)
  320. #define EXTRUDER_RUNOUT_MINTEMP 190
  321. #define EXTRUDER_RUNOUT_SECONDS 30
  322. #define EXTRUDER_RUNOUT_SPEED 1500 // (mm/m)
  323. #define EXTRUDER_RUNOUT_EXTRUDE 5 // (mm)
  324. #endif
  325.  
  326. // @section temperature
  327.  
  328. // Calibration for AD595 / AD8495 sensor to adjust temperature measurements.
  329. // The final temperature is calculated as (measuredTemp * GAIN) + OFFSET.
  330. #define TEMP_SENSOR_AD595_OFFSET 0.0
  331. #define TEMP_SENSOR_AD595_GAIN 1.0
  332. #define TEMP_SENSOR_AD8495_OFFSET 0.0
  333. #define TEMP_SENSOR_AD8495_GAIN 1.0
  334.  
  335. /**
  336. * Controller Fan
  337. * To cool down the stepper drivers and MOSFETs.
  338. *
  339. * The fan will turn on automatically whenever any stepper is enabled
  340. * and turn off after a set period after all steppers are turned off.
  341. */
  342. #define USE_CONTROLLER_FAN
  343. #if ENABLED(USE_CONTROLLER_FAN)
  344. #define CONTROLLER_FAN_PIN PE6 // Set a custom pin for the controller fan
  345. #define CONTROLLERFAN_SECS 60 // Duration in seconds for the fan to run after all motors are disabled
  346. #define CONTROLLERFAN_SPEED 255 // 255 == full speed
  347. #define CONTROLLERFAN_SPEED_Z_ONLY 127 // Reduce noise on machines that keep Z enabled
  348. #endif
  349.  
  350. // When first starting the main fan, run it at full speed for the
  351. // given number of milliseconds. This gets the fan spinning reliably
  352. // before setting a PWM value. (Does not work with software PWM for fan on Sanguinololu)
  353. //#define FAN_KICKSTART_TIME 100
  354.  
  355. // Some coolers may require a non-zero "off" state.
  356. //#define FAN_OFF_PWM 1
  357.  
  358. /**
  359. * PWM Fan Scaling
  360. *
  361. * Define the min/max speeds for PWM fans (as set with M106).
  362. *
  363. * With these options the M106 0-255 value range is scaled to a subset
  364. * to ensure that the fan has enough power to spin, or to run lower
  365. * current fans with higher current. (e.g., 5V/12V fans with 12V/24V)
  366. * Value 0 always turns off the fan.
  367. *
  368. * Define one or both of these to override the default 0-255 range.
  369. */
  370. //#define FAN_MIN_PWM 50
  371. //#define FAN_MAX_PWM 128
  372.  
  373. /**
  374. * FAST PWM FAN Settings
  375. *
  376. * Use to change the FAST FAN PWM frequency (if enabled in Configuration.h)
  377. * Combinations of PWM Modes, prescale values and TOP resolutions are used internally to produce a
  378. * frequency as close as possible to the desired frequency.
  379. *
  380. * FAST_PWM_FAN_FREQUENCY [undefined by default]
  381. * Set this to your desired frequency.
  382. * If left undefined this defaults to F = F_CPU/(2*255*1)
  383. * i.e., F = 31.4kHz on 16MHz microcontrollers or F = 39.2kHz on 20MHz microcontrollers.
  384. * These defaults are the same as with the old FAST_PWM_FAN implementation - no migration is required
  385. * NOTE: Setting very low frequencies (< 10 Hz) may result in unexpected timer behavior.
  386. *
  387. * USE_OCR2A_AS_TOP [undefined by default]
  388. * Boards that use TIMER2 for PWM have limitations resulting in only a few possible frequencies on TIMER2:
  389. * 16MHz MCUs: [62.5KHz, 31.4KHz (default), 7.8KHz, 3.92KHz, 1.95KHz, 977Hz, 488Hz, 244Hz, 60Hz, 122Hz, 30Hz]
  390. * 20MHz MCUs: [78.1KHz, 39.2KHz (default), 9.77KHz, 4.9KHz, 2.44KHz, 1.22KHz, 610Hz, 305Hz, 153Hz, 76Hz, 38Hz]
  391. * A greater range can be achieved by enabling USE_OCR2A_AS_TOP. But note that this option blocks the use of
  392. * PWM on pin OC2A. Only use this option if you don't need PWM on 0C2A. (Check your schematic.)
  393. * USE_OCR2A_AS_TOP sacrifices duty cycle control resolution to achieve this broader range of frequencies.
  394. */
  395. #if ENABLED(FAST_PWM_FAN)
  396. //#define FAST_PWM_FAN_FREQUENCY 31400
  397. //#define USE_OCR2A_AS_TOP
  398. #endif
  399.  
  400. // @section extruder
  401.  
  402. /**
  403. * Extruder cooling fans
  404. *
  405. * Extruder auto fans automatically turn on when their extruders'
  406. * temperatures go above EXTRUDER_AUTO_FAN_TEMPERATURE.
  407. *
  408. * Your board's pins file specifies the recommended pins. Override those here
  409. * or set to -1 to disable completely.
  410. *
  411. * Multiple extruders can be assigned to the same pin in which case
  412. * the fan will turn on when any selected extruder is above the threshold.
  413. */
  414. #define E0_AUTO_FAN_PIN PE5
  415. #define E1_AUTO_FAN_PIN -1
  416. #define E2_AUTO_FAN_PIN -1
  417. #define E3_AUTO_FAN_PIN -1
  418. #define E4_AUTO_FAN_PIN -1
  419. #define E5_AUTO_FAN_PIN -1
  420. #define CHAMBER_AUTO_FAN_PIN -1
  421.  
  422. #define EXTRUDER_AUTO_FAN_TEMPERATURE 50
  423. #define EXTRUDER_AUTO_FAN_SPEED 255 // 255 == full speed
  424. #define CHAMBER_AUTO_FAN_TEMPERATURE 30
  425. #define CHAMBER_AUTO_FAN_SPEED 255
  426.  
  427. /**
  428. * Part-Cooling Fan Multiplexer
  429. *
  430. * This feature allows you to digitally multiplex the fan output.
  431. * The multiplexer is automatically switched at tool-change.
  432. * Set FANMUX[012]_PINs below for up to 2, 4, or 8 multiplexed fans.
  433. */
  434. #define FANMUX0_PIN PC8
  435. #define FANMUX1_PIN -1
  436. #define FANMUX2_PIN -1
  437.  
  438. /**
  439. * M355 Case Light on-off / brightness
  440. */
  441. //#define CASE_LIGHT_ENABLE
  442. #if ENABLED(CASE_LIGHT_ENABLE)
  443. //#define CASE_LIGHT_PIN 4 // Override the default pin if needed
  444. #define INVERT_CASE_LIGHT false // Set true if Case Light is ON when pin is LOW
  445. #define CASE_LIGHT_DEFAULT_ON true // Set default power-up state on
  446. #define CASE_LIGHT_DEFAULT_BRIGHTNESS 105 // Set default power-up brightness (0-255, requires PWM pin)
  447. //#define CASE_LIGHT_MAX_PWM 128 // Limit pwm
  448. //#define CASE_LIGHT_MENU // Add Case Light options to the LCD menu
  449. //#define CASE_LIGHT_NO_BRIGHTNESS // Disable brightness control. Enable for non-PWM lighting.
  450. //#define CASE_LIGHT_USE_NEOPIXEL // Use Neopixel LED as case light, requires NEOPIXEL_LED.
  451. #if ENABLED(CASE_LIGHT_USE_NEOPIXEL)
  452. #define CASE_LIGHT_NEOPIXEL_COLOR { 255, 255, 255, 255 } // { Red, Green, Blue, White }
  453. #endif
  454. #endif
  455.  
  456. // @section homing
  457.  
  458. // If you want endstops to stay on (by default) even when not homing
  459. // enable this option. Override at any time with M120, M121.
  460. //#define ENDSTOPS_ALWAYS_ON_DEFAULT
  461.  
  462. // @section extras
  463.  
  464. //#define Z_LATE_ENABLE // Enable Z the last moment. Needed if your Z driver overheats.
  465.  
  466. // Employ an external closed loop controller. Override pins here if needed.
  467. //#define EXTERNAL_CLOSED_LOOP_CONTROLLER
  468. #if ENABLED(EXTERNAL_CLOSED_LOOP_CONTROLLER)
  469. //#define CLOSED_LOOP_ENABLE_PIN -1
  470. //#define CLOSED_LOOP_MOVE_COMPLETE_PIN -1
  471. #endif
  472.  
  473. /**
  474. * Dual Steppers / Dual Endstops
  475. *
  476. * This section will allow you to use extra E drivers to drive a second motor for X, Y, or Z axes.
  477. *
  478. * For example, set X_DUAL_STEPPER_DRIVERS setting to use a second motor. If the motors need to
  479. * spin in opposite directions set INVERT_X2_VS_X_DIR. If the second motor needs its own endstop
  480. * set X_DUAL_ENDSTOPS. This can adjust for "racking." Use X2_USE_ENDSTOP to set the endstop plug
  481. * that should be used for the second endstop. Extra endstops will appear in the output of 'M119'.
  482. *
  483. * Use X_DUAL_ENDSTOP_ADJUSTMENT to adjust for mechanical imperfection. After homing both motors
  484. * this offset is applied to the X2 motor. To find the offset home the X axis, and measure the error
  485. * in X2. Dual endstop offsets can be set at runtime with 'M666 X<offset> Y<offset> Z<offset>'.
  486. */
  487.  
  488. //#define X_DUAL_STEPPER_DRIVERS
  489. #if ENABLED(X_DUAL_STEPPER_DRIVERS)
  490. #define INVERT_X2_VS_X_DIR true // Set 'true' if X motors should rotate in opposite directions
  491. //#define X_DUAL_ENDSTOPS
  492. #if ENABLED(X_DUAL_ENDSTOPS)
  493. #define X2_USE_ENDSTOP _XMAX_
  494. #define X2_ENDSTOP_ADJUSTMENT 0
  495. #endif
  496. #endif
  497.  
  498. //#define Y_DUAL_STEPPER_DRIVERS
  499. #if ENABLED(Y_DUAL_STEPPER_DRIVERS)
  500. #define INVERT_Y2_VS_Y_DIR true // Set 'true' if Y motors should rotate in opposite directions
  501. //#define Y_DUAL_ENDSTOPS
  502. #if ENABLED(Y_DUAL_ENDSTOPS)
  503. #define Y2_USE_ENDSTOP _YMAX_
  504. #define Y2_ENDSTOP_ADJUSTMENT 0
  505. #endif
  506. #endif
  507.  
  508. //
  509. // For Z set the number of stepper drivers
  510. //
  511. #define NUM_Z_STEPPER_DRIVERS 1 // (1-4) Z options change based on how many
  512.  
  513. #if NUM_Z_STEPPER_DRIVERS > 1
  514. //#define Z_MULTI_ENDSTOPS
  515. #if ENABLED(Z_MULTI_ENDSTOPS)
  516. #define Z2_USE_ENDSTOP _XMAX_
  517. #define Z2_ENDSTOP_ADJUSTMENT 0
  518. #if NUM_Z_STEPPER_DRIVERS >= 3
  519. #define Z3_USE_ENDSTOP _YMAX_
  520. #define Z3_ENDSTOP_ADJUSTMENT 0
  521. #endif
  522. #if NUM_Z_STEPPER_DRIVERS >= 4
  523. #define Z4_USE_ENDSTOP _ZMAX_
  524. #define Z4_ENDSTOP_ADJUSTMENT 0
  525. #endif
  526. #endif
  527. #endif
  528.  
  529. /**
  530. * Dual X Carriage
  531. *
  532. * This setup has two X carriages that can move independently, each with its own hotend.
  533. * The carriages can be used to print an object with two colors or materials, or in
  534. * "duplication mode" it can print two identical or X-mirrored objects simultaneously.
  535. * The inactive carriage is parked automatically to prevent oozing.
  536. * X1 is the left carriage, X2 the right. They park and home at opposite ends of the X axis.
  537. * By default the X2 stepper is assigned to the first unused E plug on the board.
  538. *
  539. * The following Dual X Carriage modes can be selected with M605 S<mode>:
  540. *
  541. * 0 : (FULL_CONTROL) The slicer has full control over both X-carriages and can achieve optimal travel
  542. * results as long as it supports dual X-carriages. (M605 S0)
  543. *
  544. * 1 : (AUTO_PARK) The firmware automatically parks and unparks the X-carriages on tool-change so
  545. * that additional slicer support is not required. (M605 S1)
  546. *
  547. * 2 : (DUPLICATION) The firmware moves the second X-carriage and extruder in synchronization with
  548. * the first X-carriage and extruder, to print 2 copies of the same object at the same time.
  549. * Set the constant X-offset and temperature differential with M605 S2 X[offs] R[deg] and
  550. * follow with M605 S2 to initiate duplicated movement.
  551. *
  552. * 3 : (MIRRORED) Formbot/Vivedino-inspired mirrored mode in which the second extruder duplicates
  553. * the movement of the first except the second extruder is reversed in the X axis.
  554. * Set the initial X offset and temperature differential with M605 S2 X[offs] R[deg] and
  555. * follow with M605 S3 to initiate mirrored movement.
  556. */
  557. //#define DUAL_X_CARRIAGE
  558. #if ENABLED(DUAL_X_CARRIAGE)
  559. #define X1_MIN_POS X_MIN_POS // Set to X_MIN_POS
  560. #define X1_MAX_POS X_BED_SIZE // Set a maximum so the first X-carriage can't hit the parked second X-carriage
  561. #define X2_MIN_POS 80 // Set a minimum to ensure the second X-carriage can't hit the parked first X-carriage
  562. #define X2_MAX_POS 353 // Set this to the distance between toolheads when both heads are homed
  563. #define X2_HOME_DIR 1 // Set to 1. The second X-carriage always homes to the maximum endstop position
  564. #define X2_HOME_POS X2_MAX_POS // Default X2 home position. Set to X2_MAX_POS.
  565. // However: In this mode the HOTEND_OFFSET_X value for the second extruder provides a software
  566. // override for X2_HOME_POS. This also allow recalibration of the distance between the two endstops
  567. // without modifying the firmware (through the "M218 T1 X???" command).
  568. // Remember: you should set the second extruder x-offset to 0 in your slicer.
  569.  
  570. // This is the default power-up mode which can be later using M605.
  571. #define DEFAULT_DUAL_X_CARRIAGE_MODE DXC_AUTO_PARK_MODE
  572.  
  573. // Default x offset in duplication mode (typically set to half print bed width)
  574. #define DEFAULT_DUPLICATION_X_OFFSET 100
  575.  
  576. #endif // DUAL_X_CARRIAGE
  577.  
  578. // Activate a solenoid on the active extruder with M380. Disable all with M381.
  579. // Define SOL0_PIN, SOL1_PIN, etc., for each extruder that has a solenoid.
  580. //#define EXT_SOLENOID
  581.  
  582. // @section homing
  583.  
  584. // Homing hits each endstop, retracts by these distances, then does a slower bump.
  585. #define X_HOME_BUMP_MM 5
  586. #define Y_HOME_BUMP_MM 5
  587. #define Z_HOME_BUMP_MM 2
  588. #define HOMING_BUMP_DIVISOR { 2, 2, 4 } // Re-Bump Speed Divisor (Divides the Homing Feedrate)
  589. #define QUICK_HOME // If homing includes X and Y, do a diagonal move initially
  590. //#define HOMING_BACKOFF_MM { 2, 2, 2 } // (mm) Move away from the endstops after homing
  591.  
  592. // When G28 is called, this option will make Y home before X
  593. //#define HOME_Y_BEFORE_X
  594.  
  595. // Enable this if X or Y can't home without homing the other axis first.
  596. //#define CODEPENDENT_XY_HOMING
  597.  
  598. #if ENABLED(BLTOUCH)
  599. /**
  600. * Either: Use the defaults (recommended) or: For special purposes, use the following DEFINES
  601. * Do not activate settings that the probe might not understand. Clones might misunderstand
  602. * advanced commands.
  603. *
  604. * Note: If the probe is not deploying, check a "Cmd: Reset" and "Cmd: Self-Test" and then
  605. * check the wiring of the BROWN, RED and ORANGE wires.
  606. *
  607. * Note: If the trigger signal of your probe is not being recognized, it has been very often
  608. * because the BLACK and WHITE wires needed to be swapped. They are not "interchangeable"
  609. * like they would be with a real switch. So please check the wiring first.
  610. *
  611. * Settings for all BLTouch and clone probes:
  612. */
  613.  
  614. // Safety: The probe needs time to recognize the command.
  615. // Minimum command delay (ms). Enable and increase if needed.
  616. //#define BLTOUCH_DELAY 500
  617.  
  618. /**
  619. * Settings for BLTOUCH Classic 1.2, 1.3 or BLTouch Smart 1.0, 2.0, 2.2, 3.0, 3.1, and most clones:
  620. */
  621.  
  622. // Feature: Switch into SW mode after a deploy. It makes the output pulse longer. Can be useful
  623. // in special cases, like noisy or filtered input configurations.
  624. //#define BLTOUCH_FORCE_SW_MODE
  625.  
  626. /**
  627. * Settings for BLTouch Smart 3.0 and 3.1
  628. * Summary:
  629. * - Voltage modes: 5V and OD (open drain - "logic voltage free") output modes
  630. * - High-Speed mode
  631. * - Disable LCD voltage options
  632. */
  633.  
  634. /**
  635. * Danger: Don't activate 5V mode unless attached to a 5V-tolerant controller!
  636. * V3.0 or 3.1: Set default mode to 5V mode at Marlin startup.
  637. * If disabled, OD mode is the hard-coded default on 3.0
  638. * On startup, Marlin will compare its eeprom to this vale. If the selected mode
  639. * differs, a mode set eeprom write will be completed at initialization.
  640. * Use the option below to force an eeprom write to a V3.1 probe regardless.
  641. */
  642. //#define BLTOUCH_SET_5V_MODE
  643.  
  644. /**
  645. * Safety: Activate if connecting a probe with an unknown voltage mode.
  646. * V3.0: Set a probe into mode selected above at Marlin startup. Required for 5V mode on 3.0
  647. * V3.1: Force a probe with unknown mode into selected mode at Marlin startup ( = Probe EEPROM write )
  648. * To preserve the life of the probe, use this once then turn it off and re-flash.
  649. */
  650. //#define BLTOUCH_FORCE_MODE_SET
  651.  
  652. /**
  653. * Use "HIGH SPEED" mode for probing.
  654. * Danger: Disable if your probe sometimes fails. Only suitable for stable well-adjusted systems.
  655. * This feature was designed for Delta's with very fast Z moves however higher speed cartesians may function
  656. * If the machine cannot raise the probe fast enough after a trigger, it may enter a fault state.
  657. */
  658. #define BLTOUCH_HS_MODE
  659.  
  660. // Safety: Enable voltage mode settings in the LCD menu.
  661. //#define BLTOUCH_LCD_VOLTAGE_MENU
  662.  
  663. #endif // BLTOUCH
  664.  
  665. /**
  666. * Z Steppers Auto-Alignment
  667. * Add the G34 command to align multiple Z steppers using a bed probe.
  668. */
  669. //#define Z_STEPPER_AUTO_ALIGN
  670. #if ENABLED(Z_STEPPER_AUTO_ALIGN)
  671. // Define probe X and Y positions for Z1, Z2 [, Z3 [, Z4]]
  672. // If not defined, probe limits will be used.
  673. // Override with 'M422 S<index> X<pos> Y<pos>'
  674. //#define Z_STEPPER_ALIGN_XY { { 10, 190 }, { 100, 10 }, { 190, 190 } }
  675.  
  676. /**
  677. * Orientation for the automatically-calculated probe positions.
  678. * Override Z stepper align points with 'M422 S<index> X<pos> Y<pos>'
  679. *
  680. * 2 Steppers: (0) (1)
  681. * | | 2 |
  682. * | 1 2 | |
  683. * | | 1 |
  684. *
  685. * 3 Steppers: (0) (1) (2) (3)
  686. * | 3 | 1 | 2 1 | 2 |
  687. * | | 3 | | 3 |
  688. * | 1 2 | 2 | 3 | 1 |
  689. *
  690. * 4 Steppers: (0) (1) (2) (3)
  691. * | 4 3 | 1 4 | 2 1 | 3 2 |
  692. * | | | | |
  693. * | 1 2 | 2 3 | 3 4 | 4 1 |
  694. *
  695. */
  696. #ifndef Z_STEPPER_ALIGN_XY
  697. //#define Z_STEPPERS_ORIENTATION 0
  698. #endif
  699.  
  700. // Provide Z stepper positions for more rapid convergence in bed alignment.
  701. // Requires triple stepper drivers (i.e., set NUM_Z_STEPPER_DRIVERS to 3)
  702. //#define Z_STEPPER_ALIGN_KNOWN_STEPPER_POSITIONS
  703. #if ENABLED(Z_STEPPER_ALIGN_KNOWN_STEPPER_POSITIONS)
  704. // Define Stepper XY positions for Z1, Z2, Z3 corresponding to
  705. // the Z screw positions in the bed carriage.
  706. // Define one position per Z stepper in stepper driver order.
  707. #define Z_STEPPER_ALIGN_STEPPER_XY { { 210.7, 102.5 }, { 152.6, 220.0 }, { 94.5, 102.5 } }
  708. #else
  709. // Amplification factor. Used to scale the correction step up or down in case
  710. // the stepper (spindle) position is farther out than the test point.
  711. #define Z_STEPPER_ALIGN_AMP 1.0 // Use a value > 1.0 NOTE: This may cause instability!
  712. #endif
  713.  
  714. // On a 300mm bed a 5% grade would give a misalignment of ~1.5cm
  715. #define G34_MAX_GRADE 5 // (%) Maximum incline that G34 will handle
  716. #define Z_STEPPER_ALIGN_ITERATIONS 5 // Number of iterations to apply during alignment
  717. #define Z_STEPPER_ALIGN_ACC 0.02 // Stop iterating early if the accuracy is better than this
  718. #define RESTORE_LEVELING_AFTER_G34 // Restore leveling after G34 is done?
  719. #endif
  720.  
  721. // @section motion
  722.  
  723. #define AXIS_RELATIVE_MODES { false, false, false, false }
  724.  
  725. // Add a Duplicate option for well-separated conjoined nozzles
  726. //#define MULTI_NOZZLE_DUPLICATION
  727.  
  728. // By default pololu step drivers require an active high signal. However, some high power drivers require an active low signal as step.
  729. #define INVERT_X_STEP_PIN false
  730. #define INVERT_Y_STEP_PIN false
  731. #define INVERT_Z_STEP_PIN false
  732. #define INVERT_E_STEP_PIN false
  733.  
  734. // Default stepper release if idle. Set to 0 to deactivate.
  735. // Steppers will shut down DEFAULT_STEPPER_DEACTIVE_TIME seconds after the last move when DISABLE_INACTIVE_? is true.
  736. // Time can be set by M18 and M84.
  737. #define DEFAULT_STEPPER_DEACTIVE_TIME 120
  738. #define DISABLE_INACTIVE_X true
  739. #define DISABLE_INACTIVE_Y true
  740. #define DISABLE_INACTIVE_Z true // Set to false if the nozzle will fall down on your printed part when print has finished.
  741. #define DISABLE_INACTIVE_E true
  742.  
  743. #define DEFAULT_MINIMUMFEEDRATE 0.0 // minimum feedrate
  744. #define DEFAULT_MINTRAVELFEEDRATE 0.0
  745.  
  746. //#define HOME_AFTER_DEACTIVATE // Require rehoming after steppers are deactivated
  747.  
  748. // Minimum time that a segment needs to take if the buffer is emptied
  749. #define DEFAULT_MINSEGMENTTIME 20000 // (ms)
  750.  
  751. // If defined the movements slow down when the look ahead buffer is only half full
  752. #define SLOWDOWN
  753.  
  754. // Frequency limit
  755. // See nophead's blog for more info
  756. // Not working O
  757. //#define XY_FREQUENCY_LIMIT 15
  758.  
  759. // Minimum planner junction speed. Sets the default minimum speed the planner plans for at the end
  760. // of the buffer and all stops. This should not be much greater than zero and should only be changed
  761. // if unwanted behavior is observed on a user's machine when running at very slow speeds.
  762. #define MINIMUM_PLANNER_SPEED 0.05 // (mm/s)
  763.  
  764. //
  765. // Backlash Compensation
  766. // Adds extra movement to axes on direction-changes to account for backlash.
  767. //
  768. //#define BACKLASH_COMPENSATION
  769. #if ENABLED(BACKLASH_COMPENSATION)
  770. // Define values for backlash distance and correction.
  771. // If BACKLASH_GCODE is enabled these values are the defaults.
  772. #define BACKLASH_DISTANCE_MM { 0, 0, 0 } // (mm)
  773. #define BACKLASH_CORRECTION 0.0 // 0.0 = no correction; 1.0 = full correction
  774.  
  775. // Set BACKLASH_SMOOTHING_MM to spread backlash correction over multiple segments
  776. // to reduce print artifacts. (Enabling this is costly in memory and computation!)
  777. //#define BACKLASH_SMOOTHING_MM 3 // (mm)
  778.  
  779. // Add runtime configuration and tuning of backlash values (M425)
  780. //#define BACKLASH_GCODE
  781.  
  782. #if ENABLED(BACKLASH_GCODE)
  783. // Measure the Z backlash when probing (G29) and set with "M425 Z"
  784. #define MEASURE_BACKLASH_WHEN_PROBING
  785.  
  786. #if ENABLED(MEASURE_BACKLASH_WHEN_PROBING)
  787. // When measuring, the probe will move up to BACKLASH_MEASUREMENT_LIMIT
  788. // mm away from point of contact in BACKLASH_MEASUREMENT_RESOLUTION
  789. // increments while checking for the contact to be broken.
  790. #define BACKLASH_MEASUREMENT_LIMIT 0.5 // (mm)
  791. #define BACKLASH_MEASUREMENT_RESOLUTION 0.005 // (mm)
  792. #define BACKLASH_MEASUREMENT_FEEDRATE Z_PROBE_SPEED_SLOW // (mm/m)
  793. #endif
  794. #endif
  795. #endif
  796.  
  797. /**
  798. * Automatic backlash, position and hotend offset calibration
  799. *
  800. * Enable G425 to run automatic calibration using an electrically-
  801. * conductive cube, bolt, or washer mounted on the bed.
  802. *
  803. * G425 uses the probe to touch the top and sides of the calibration object
  804. * on the bed and measures and/or correct positional offsets, axis backlash
  805. * and hotend offsets.
  806. *
  807. * Note: HOTEND_OFFSET and CALIBRATION_OBJECT_CENTER must be set to within
  808. * ±5mm of true values for G425 to succeed.
  809. */
  810. //#define CALIBRATION_GCODE
  811. #if ENABLED(CALIBRATION_GCODE)
  812.  
  813. #define CALIBRATION_MEASUREMENT_RESOLUTION 0.01 // mm
  814.  
  815. #define CALIBRATION_FEEDRATE_SLOW 60 // mm/m
  816. #define CALIBRATION_FEEDRATE_FAST 1200 // mm/m
  817. #define CALIBRATION_FEEDRATE_TRAVEL 3000 // mm/m
  818.  
  819. // The following parameters refer to the conical section of the nozzle tip.
  820. #define CALIBRATION_NOZZLE_TIP_HEIGHT 1.0 // mm
  821. #define CALIBRATION_NOZZLE_OUTER_DIAMETER 2.0 // mm
  822.  
  823. // Uncomment to enable reporting (required for "G425 V", but consumes PROGMEM).
  824. //#define CALIBRATION_REPORTING
  825.  
  826. // The true location and dimension the cube/bolt/washer on the bed.
  827. #define CALIBRATION_OBJECT_CENTER { 264.0, -22.0, -2.0 } // mm
  828. #define CALIBRATION_OBJECT_DIMENSIONS { 10.0, 10.0, 10.0 } // mm
  829.  
  830. // Comment out any sides which are unreachable by the probe. For best
  831. // auto-calibration results, all sides must be reachable.
  832. #define CALIBRATION_MEASURE_RIGHT
  833. #define CALIBRATION_MEASURE_FRONT
  834. #define CALIBRATION_MEASURE_LEFT
  835. #define CALIBRATION_MEASURE_BACK
  836.  
  837. // Probing at the exact top center only works if the center is flat. If
  838. // probing on a screwhead or hollow washer, probe near the edges.
  839. //#define CALIBRATION_MEASURE_AT_TOP_EDGES
  840.  
  841. // Define the pin to read during calibration
  842. #ifndef CALIBRATION_PIN
  843. //#define CALIBRATION_PIN -1 // Define here to override the default pin
  844. #define CALIBRATION_PIN_INVERTING false // Set to true to invert the custom pin
  845. //#define CALIBRATION_PIN_PULLDOWN
  846. #define CALIBRATION_PIN_PULLUP
  847. #endif
  848. #endif
  849.  
  850. /**
  851. * Adaptive Step Smoothing increases the resolution of multi-axis moves, particularly at step frequencies
  852. * below 1kHz (for AVR) or 10kHz (for ARM), where aliasing between axes in multi-axis moves causes audible
  853. * vibration and surface artifacts. The algorithm adapts to provide the best possible step smoothing at the
  854. * lowest stepping frequencies.
  855. */
  856. #define ADAPTIVE_STEP_SMOOTHING
  857.  
  858. /**
  859. * Custom Microstepping
  860. * Override as-needed for your setup. Up to 3 MS pins are supported.
  861. */
  862. //#define MICROSTEP1 LOW,LOW,LOW
  863. //#define MICROSTEP2 HIGH,LOW,LOW
  864. //#define MICROSTEP4 LOW,HIGH,LOW
  865. //#define MICROSTEP8 HIGH,HIGH,LOW
  866. //#define MICROSTEP16 LOW,LOW,HIGH
  867. //#define MICROSTEP32 HIGH,LOW,HIGH
  868.  
  869. // Microstep setting (Only functional when stepper driver microstep pins are connected to MCU.
  870. #define MICROSTEP_MODES { 16, 16, 16, 16, 16, 16 } // [1,2,4,8,16]
  871.  
  872. /**
  873. * @section stepper motor current
  874. *
  875. * Some boards have a means of setting the stepper motor current via firmware.
  876. *
  877. * The power on motor currents are set by:
  878. * PWM_MOTOR_CURRENT - used by MINIRAMBO & ULTIMAIN_2
  879. * known compatible chips: A4982
  880. * DIGIPOT_MOTOR_CURRENT - used by BQ_ZUM_MEGA_3D, RAMBO & SCOOVO_X9H
  881. * known compatible chips: AD5206
  882. * DAC_MOTOR_CURRENT_DEFAULT - used by PRINTRBOARD_REVF & RIGIDBOARD_V2
  883. * known compatible chips: MCP4728
  884. * DIGIPOT_I2C_MOTOR_CURRENTS - used by 5DPRINT, AZTEEG_X3_PRO, AZTEEG_X5_MINI_WIFI, MIGHTYBOARD_REVE
  885. * known compatible chips: MCP4451, MCP4018
  886. *
  887. * Motor currents can also be set by M907 - M910 and by the LCD.
  888. * M907 - applies to all.
  889. * M908 - BQ_ZUM_MEGA_3D, RAMBO, PRINTRBOARD_REVF, RIGIDBOARD_V2 & SCOOVO_X9H
  890. * M909, M910 & LCD - only PRINTRBOARD_REVF & RIGIDBOARD_V2
  891. */
  892. //#define PWM_MOTOR_CURRENT { 1300, 1300, 1250 } // Values in milliamps
  893. //#define DIGIPOT_MOTOR_CURRENT { 135,135,135,135,135 } // Values 0-255 (RAMBO 135 = ~0.75A, 185 = ~1A)
  894. //#define DAC_MOTOR_CURRENT_DEFAULT { 70, 80, 90, 80 } // Default drive percent - X, Y, Z, E axis
  895.  
  896. // Use an I2C based DIGIPOT (e.g., Azteeg X3 Pro)
  897. //#define DIGIPOT_I2C
  898. #if ENABLED(DIGIPOT_I2C) && !defined(DIGIPOT_I2C_ADDRESS_A)
  899. /**
  900. * Common slave addresses:
  901. *
  902. * A (A shifted) B (B shifted) IC
  903. * Smoothie 0x2C (0x58) 0x2D (0x5A) MCP4451
  904. * AZTEEG_X3_PRO 0x2C (0x58) 0x2E (0x5C) MCP4451
  905. * AZTEEG_X5_MINI 0x2C (0x58) 0x2E (0x5C) MCP4451
  906. * AZTEEG_X5_MINI_WIFI 0x58 0x5C MCP4451
  907. * MIGHTYBOARD_REVE 0x2F (0x5E) MCP4018
  908. */
  909. #define DIGIPOT_I2C_ADDRESS_A 0x2C // unshifted slave address for first DIGIPOT
  910. #define DIGIPOT_I2C_ADDRESS_B 0x2D // unshifted slave address for second DIGIPOT
  911. #endif
  912.  
  913. //#define DIGIPOT_MCP4018 // Requires library from https://github.com/stawel/SlowSoftI2CMaster
  914. #define DIGIPOT_I2C_NUM_CHANNELS 8 // 5DPRINT: 4 AZTEEG_X3_PRO: 8 MKS SBASE: 5
  915. // Actual motor currents in Amps. The number of entries must match DIGIPOT_I2C_NUM_CHANNELS.
  916. // These correspond to the physical drivers, so be mindful if the order is changed.
  917. #define DIGIPOT_I2C_MOTOR_CURRENTS { 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0 } // AZTEEG_X3_PRO
  918.  
  919. //===========================================================================
  920. //=============================Additional Features===========================
  921. //===========================================================================
  922.  
  923. // @section lcd
  924.  
  925. #if EITHER(ULTIPANEL, EXTENSIBLE_UI)
  926. #define MANUAL_FEEDRATE { 50*60, 50*60, 4*60, 60 } // Feedrates for manual moves along X, Y, Z, E from panel
  927. #define SHORT_MANUAL_Z_MOVE 0.025 // (mm) Smallest manual Z move (< 0.1mm)
  928. #if ENABLED(ULTIPANEL)
  929. #define MANUAL_E_MOVES_RELATIVE // Display extruder move distance rather than "position"
  930. #define ULTIPANEL_FEEDMULTIPLY // Encoder sets the feedrate multiplier on the Status Screen
  931. #endif
  932. #endif
  933.  
  934. // Change values more rapidly when the encoder is rotated faster
  935. #define ENCODER_RATE_MULTIPLIER
  936. #if ENABLED(ENCODER_RATE_MULTIPLIER)
  937. #define ENCODER_10X_STEPS_PER_SEC 30 // (steps/s) Encoder rate for 10x speed
  938. #define ENCODER_100X_STEPS_PER_SEC 80 // (steps/s) Encoder rate for 100x speed
  939. #endif
  940.  
  941. // Play a beep when the feedrate is changed from the Status Screen
  942. //#define BEEP_ON_FEEDRATE_CHANGE
  943. #if ENABLED(BEEP_ON_FEEDRATE_CHANGE)
  944. #define FEEDRATE_CHANGE_BEEP_DURATION 10
  945. #define FEEDRATE_CHANGE_BEEP_FREQUENCY 440
  946. #endif
  947.  
  948. #if HAS_LCD_MENU
  949.  
  950. // Include a page of printer information in the LCD Main Menu
  951. //#define LCD_INFO_MENU
  952. #if ENABLED(LCD_INFO_MENU)
  953. //#define LCD_PRINTER_INFO_IS_BOOTSCREEN // Show bootscreen(s) instead of Printer Info pages
  954. #endif
  955.  
  956. // BACK menu items keep the highlight at the top
  957. #define TURBO_BACK_MENU_ITEM
  958.  
  959. /**
  960. * LED Control Menu
  961. * Add LED Control to the LCD menu
  962. */
  963. //#define LED_CONTROL_MENU
  964. #if ENABLED(LED_CONTROL_MENU)
  965. #define LED_COLOR_PRESETS // Enable the Preset Color menu option
  966. #if ENABLED(LED_COLOR_PRESETS)
  967. #define LED_USER_PRESET_RED 255 // User defined RED value
  968. #define LED_USER_PRESET_GREEN 128 // User defined GREEN value
  969. #define LED_USER_PRESET_BLUE 0 // User defined BLUE value
  970. #define LED_USER_PRESET_WHITE 255 // User defined WHITE value
  971. #define LED_USER_PRESET_BRIGHTNESS 255 // User defined intensity
  972. //#define LED_USER_PRESET_STARTUP // Have the printer display the user preset color on startup
  973. #endif
  974. #endif
  975.  
  976. #endif // HAS_LCD_MENU
  977.  
  978. // Scroll a longer status message into view
  979. #define STATUS_MESSAGE_SCROLLING
  980.  
  981. // On the Info Screen, display XY with one decimal place when possible
  982. #define LCD_DECIMAL_SMALL_XY
  983.  
  984. // The timeout (in ms) to return to the status screen from sub-menus
  985. //#define LCD_TIMEOUT_TO_STATUS 15000
  986.  
  987. // Add an 'M73' G-code to set the current percentage
  988. //#define LCD_SET_PROGRESS_MANUALLY
  989.  
  990. // Show the E position (filament used) during printing
  991. #define LCD_SHOW_E_TOTAL
  992.  
  993. #if HAS_GRAPHICAL_LCD && HAS_PRINT_PROGRESS
  994. #define PRINT_PROGRESS_SHOW_DECIMALS // Show progress with decimal digits
  995. #define SHOW_REMAINING_TIME // Display estimated time to completion
  996. #if ENABLED(SHOW_REMAINING_TIME)
  997. #define USE_M73_REMAINING_TIME // Use remaining time from M73 command instead of estimation
  998. #define ROTATE_PROGRESS_DISPLAY // Display (P)rogress, (E)lapsed, and (R)emaining time
  999. #endif
  1000. #endif
  1001.  
  1002. #if HAS_CHARACTER_LCD && HAS_PRINT_PROGRESS
  1003. //#define LCD_PROGRESS_BAR // Show a progress bar on HD44780 LCDs for SD printing
  1004. #if ENABLED(LCD_PROGRESS_BAR)
  1005. #define PROGRESS_BAR_BAR_TIME 2000 // (ms) Amount of time to show the bar
  1006. #define PROGRESS_BAR_MSG_TIME 3000 // (ms) Amount of time to show the status message
  1007. #define PROGRESS_MSG_EXPIRE 0 // (ms) Amount of time to retain the status message (0=forever)
  1008. //#define PROGRESS_MSG_ONCE // Show the message for MSG_TIME then clear it
  1009. //#define LCD_PROGRESS_BAR_TEST // Add a menu item to test the progress bar
  1010. #endif
  1011. #endif
  1012.  
  1013. #if ENABLED(SDSUPPORT)
  1014.  
  1015. // Some RAMPS and other boards don't detect when an SD card is inserted. You can work
  1016. // around this by connecting a push button or single throw switch to the pin defined
  1017. // as SD_DETECT_PIN in your board's pins definitions.
  1018. // This setting should be disabled unless you are using a push button, pulling the pin to ground.
  1019. // Note: This is always disabled for ULTIPANEL (except ELB_FULL_GRAPHIC_CONTROLLER).
  1020. #define SD_DETECT_INVERTED
  1021.  
  1022. #define SD_FINISHED_STEPPERRELEASE true // Disable steppers when SD Print is finished
  1023. #define SD_FINISHED_RELEASECOMMAND "M84 X Y Z E" // You might want to keep the Z enabled so your bed stays in place.
  1024.  
  1025. // Reverse SD sort to show "more recent" files first, according to the card's FAT.
  1026. // Since the FAT gets out of order with usage, SDCARD_SORT_ALPHA is recommended.
  1027. #define SDCARD_RATHERRECENTFIRST
  1028.  
  1029. #define SD_MENU_CONFIRM_START // Confirm the selected SD file before printing
  1030.  
  1031. //#define MENU_ADDAUTOSTART // Add a menu option to run auto#.g files
  1032.  
  1033. #define EVENT_GCODE_SD_STOP "G28XY" // G-code to run on Stop Print (e.g., "G28XY" or "G27")
  1034.  
  1035. /**
  1036. * Continue after Power-Loss (Creality3D)
  1037. *
  1038. * Store the current state to the SD Card at the start of each layer
  1039. * during SD printing. If the recovery file is found at boot time, present
  1040. * an option on the LCD screen to continue the print from the last-known
  1041. * point in the file.
  1042. */
  1043. //#define POWER_LOSS_RECOVERY
  1044. #if ENABLED(POWER_LOSS_RECOVERY)
  1045. //#define BACKUP_POWER_SUPPLY // Backup power / UPS to move the steppers on power loss
  1046. //#define POWER_LOSS_ZRAISE 2 // (mm) Z axis raise on resume (on power loss with UPS)
  1047. //#define POWER_LOSS_PIN 44 // Pin to detect power loss
  1048. //#define POWER_LOSS_STATE HIGH // State of pin indicating power loss
  1049. //#define POWER_LOSS_PULL // Set pullup / pulldown as appropriate
  1050. //#define POWER_LOSS_PURGE_LEN 20 // (mm) Length of filament to purge on resume
  1051. //#define POWER_LOSS_RETRACT_LEN 10 // (mm) Length of filament to retract on fail. Requires backup power.
  1052.  
  1053. // Without a POWER_LOSS_PIN the following option helps reduce wear on the SD card,
  1054. // especially with "vase mode" printing. Set too high and vases cannot be continued.
  1055. #define POWER_LOSS_MIN_Z_CHANGE 0.05 // (mm) Minimum Z change before saving power-loss data
  1056. #endif
  1057.  
  1058. /**
  1059. * Sort SD file listings in alphabetical order.
  1060. *
  1061. * With this option enabled, items on SD cards will be sorted
  1062. * by name for easier navigation.
  1063. *
  1064. * By default...
  1065. *
  1066. * - Use the slowest -but safest- method for sorting.
  1067. * - Folders are sorted to the top.
  1068. * - The sort key is statically allocated.
  1069. * - No added G-code (M34) support.
  1070. * - 40 item sorting limit. (Items after the first 40 are unsorted.)
  1071. *
  1072. * SD sorting uses static allocation (as set by SDSORT_LIMIT), allowing the
  1073. * compiler to calculate the worst-case usage and throw an error if the SRAM
  1074. * limit is exceeded.
  1075. *
  1076. * - SDSORT_USES_RAM provides faster sorting via a static directory buffer.
  1077. * - SDSORT_USES_STACK does the same, but uses a local stack-based buffer.
  1078. * - SDSORT_CACHE_NAMES will retain the sorted file listing in RAM. (Expensive!)
  1079. * - SDSORT_DYNAMIC_RAM only uses RAM when the SD menu is visible. (Use with caution!)
  1080. */
  1081. //#define SDCARD_SORT_ALPHA
  1082.  
  1083. // SD Card Sorting options
  1084. #if ENABLED(SDCARD_SORT_ALPHA)
  1085. #define SDSORT_LIMIT 40 // Maximum number of sorted items (10-256). Costs 27 bytes each.
  1086. #define FOLDER_SORTING -1 // -1=above 0=none 1=below
  1087. #define SDSORT_GCODE false // Allow turning sorting on/off with LCD and M34 g-code.
  1088. #define SDSORT_USES_RAM false // Pre-allocate a static array for faster pre-sorting.
  1089. #define SDSORT_USES_STACK false // Prefer the stack for pre-sorting to give back some SRAM. (Negated by next 2 options.)
  1090. #define SDSORT_CACHE_NAMES false // Keep sorted items in RAM longer for speedy performance. Most expensive option.
  1091. #define SDSORT_DYNAMIC_RAM false // Use dynamic allocation (within SD menus). Least expensive option. Set SDSORT_LIMIT before use!
  1092. #define SDSORT_CACHE_VFATS 2 // Maximum number of 13-byte VFAT entries to use for sorting.
  1093. // Note: Only affects SCROLL_LONG_FILENAMES with SDSORT_CACHE_NAMES but not SDSORT_DYNAMIC_RAM.
  1094. #endif
  1095.  
  1096. // This allows hosts to request long names for files and folders with M33
  1097. #define LONG_FILENAME_HOST_SUPPORT
  1098.  
  1099. // Enable this option to scroll long filenames in the SD card menu
  1100. #define SCROLL_LONG_FILENAMES
  1101.  
  1102. // Leave the heaters on after Stop Print (not recommended!)
  1103. //#define SD_ABORT_NO_COOLDOWN
  1104.  
  1105. /**
  1106. * This option allows you to abort SD printing when any endstop is triggered.
  1107. * This feature must be enabled with "M540 S1" or from the LCD menu.
  1108. * To have any effect, endstops must be enabled during SD printing.
  1109. */
  1110. //#define SD_ABORT_ON_ENDSTOP_HIT
  1111.  
  1112. /**
  1113. * This option makes it easier to print the same SD Card file again.
  1114. * On print completion the LCD Menu will open with the file selected.
  1115. * You can just click to start the print, or navigate elsewhere.
  1116. */
  1117. //#define SD_REPRINT_LAST_SELECTED_FILE
  1118.  
  1119. /**
  1120. * Auto-report SdCard status with M27 S<seconds>
  1121. */
  1122. //#define AUTO_REPORT_SD_STATUS
  1123.  
  1124. /**
  1125. * Support for USB thumb drives using an Arduino USB Host Shield or
  1126. * equivalent MAX3421E breakout board. The USB thumb drive will appear
  1127. * to Marlin as an SD card.
  1128. *
  1129. * The MAX3421E can be assigned the same pins as the SD card reader, with
  1130. * the following pin mapping:
  1131. *
  1132. * SCLK, MOSI, MISO --> SCLK, MOSI, MISO
  1133. * INT --> SD_DETECT_PIN [1]
  1134. * SS --> SDSS
  1135. *
  1136. * [1] On AVR an interrupt-capable pin is best for UHS3 compatibility.
  1137. */
  1138. //#define USB_FLASH_DRIVE_SUPPORT
  1139. #if ENABLED(USB_FLASH_DRIVE_SUPPORT)
  1140. #define USB_CS_PIN SDSS
  1141. #define USB_INTR_PIN SD_DETECT_PIN
  1142.  
  1143. /**
  1144. * USB Host Shield Library
  1145. *
  1146. * - UHS2 uses no interrupts and has been production-tested
  1147. * on a LulzBot TAZ Pro with a 32-bit Archim board.
  1148. *
  1149. * - UHS3 is newer code with better USB compatibility. But it
  1150. * is less tested and is known to interfere with Servos.
  1151. * [1] This requires USB_INTR_PIN to be interrupt-capable.
  1152. */
  1153. //#define USE_UHS3_USB
  1154. #endif
  1155.  
  1156. /**
  1157. * When using a bootloader that supports SD-Firmware-Flashing,
  1158. * add a menu item to activate SD-FW-Update on the next reboot.
  1159. *
  1160. * Requires ATMEGA2560 (Arduino Mega)
  1161. *
  1162. * Tested with this bootloader:
  1163. * https://github.com/FleetProbe/MicroBridge-Arduino-ATMega2560
  1164. */
  1165. //#define SD_FIRMWARE_UPDATE
  1166. #if ENABLED(SD_FIRMWARE_UPDATE)
  1167. #define SD_FIRMWARE_UPDATE_EEPROM_ADDR 0x1FF
  1168. #define SD_FIRMWARE_UPDATE_ACTIVE_VALUE 0xF0
  1169. #define SD_FIRMWARE_UPDATE_INACTIVE_VALUE 0xFF
  1170. #endif
  1171.  
  1172. // Add an optimized binary file transfer mode, initiated with 'M28 B1'
  1173. //#define BINARY_FILE_TRANSFER
  1174.  
  1175. #if HAS_SDCARD_CONNECTION
  1176. /**
  1177. * Set this option to one of the following (or the board's defaults apply):
  1178. *
  1179. * LCD - Use the SD drive in the external LCD controller.
  1180. * ONBOARD - Use the SD drive on the control board. (No SD_DETECT_PIN. M21 to init.)
  1181. * CUSTOM_CABLE - Use a custom cable to access the SD (as defined in a pins file).
  1182. *
  1183. * :[ 'LCD', 'ONBOARD', 'CUSTOM_CABLE' ]
  1184. */
  1185. //#define SDCARD_CONNECTION LCD
  1186. #endif
  1187.  
  1188. #endif // SDSUPPORT
  1189.  
  1190. /**
  1191. * By default an onboard SD card reader may be shared as a USB mass-
  1192. * storage device. This option hides the SD card from the host PC.
  1193. */
  1194. //#define NO_SD_HOST_DRIVE // Disable SD Card access over USB (for security).
  1195.  
  1196. /**
  1197. * Additional options for Graphical Displays
  1198. *
  1199. * Use the optimizations here to improve printing performance,
  1200. * which can be adversely affected by graphical display drawing,
  1201. * especially when doing several short moves, and when printing
  1202. * on DELTA and SCARA machines.
  1203. *
  1204. * Some of these options may result in the display lagging behind
  1205. * controller events, as there is a trade-off between reliable
  1206. * printing performance versus fast display updates.
  1207. */
  1208. #if HAS_GRAPHICAL_LCD
  1209. // Show SD percentage next to the progress bar
  1210. #define DOGM_SD_PERCENT
  1211.  
  1212. // Enable to save many cycles by drawing a hollow frame on the Info Screen
  1213. #define XYZ_HOLLOW_FRAME
  1214.  
  1215. // Enable to save many cycles by drawing a hollow frame on Menu Screens
  1216. #define MENU_HOLLOW_FRAME
  1217.  
  1218. // A bigger font is available for edit items. Costs 3120 bytes of PROGMEM.
  1219. // Western only. Not available for Cyrillic, Kana, Turkish, Greek, or Chinese.
  1220. //#define USE_BIG_EDIT_FONT
  1221.  
  1222. // A smaller font may be used on the Info Screen. Costs 2300 bytes of PROGMEM.
  1223. // Western only. Not available for Cyrillic, Kana, Turkish, Greek, or Chinese.
  1224. //#define USE_SMALL_INFOFONT
  1225.  
  1226. // Enable this option and reduce the value to optimize screen updates.
  1227. // The normal delay is 10µs. Use the lowest value that still gives a reliable display.
  1228. //#define DOGM_SPI_DELAY_US 5
  1229.  
  1230. // Swap the CW/CCW indicators in the graphics overlay
  1231. //#define OVERLAY_GFX_REVERSE
  1232.  
  1233. /**
  1234. * ST7920-based LCDs can emulate a 16 x 4 character display using
  1235. * the ST7920 character-generator for very fast screen updates.
  1236. * Enable LIGHTWEIGHT_UI to use this special display mode.
  1237. *
  1238. * Since LIGHTWEIGHT_UI has limited space, the position and status
  1239. * message occupy the same line. Set STATUS_EXPIRE_SECONDS to the
  1240. * length of time to display the status message before clearing.
  1241. *
  1242. * Set STATUS_EXPIRE_SECONDS to zero to never clear the status.
  1243. * This will prevent position updates from being displayed.
  1244. */
  1245. #if ENABLED(U8GLIB_ST7920)
  1246. //#define LIGHTWEIGHT_UI
  1247. #if ENABLED(LIGHTWEIGHT_UI)
  1248. #define STATUS_EXPIRE_SECONDS 20
  1249. #endif
  1250. #endif
  1251.  
  1252. /**
  1253. * Status (Info) Screen customizations
  1254. * These options may affect code size and screen render time.
  1255. * Custom status screens can forcibly override these settings.
  1256. */
  1257. //#define STATUS_COMBINE_HEATERS // Use combined heater images instead of separate ones
  1258. //#define STATUS_HOTEND_NUMBERLESS // Use plain hotend icons instead of numbered ones (with 2+ hotends)
  1259. #define STATUS_HOTEND_INVERTED // Show solid nozzle bitmaps when heating (Requires STATUS_HOTEND_ANIM)
  1260. #define STATUS_HOTEND_ANIM // Use a second bitmap to indicate hotend heating
  1261. //#define STATUS_BED_ANIM // Use a second bitmap to indicate bed heating
  1262. #define STATUS_CHAMBER_ANIM // Use a second bitmap to indicate chamber heating
  1263. #define STATUS_ALT_BED_BITMAP // Use the alternative bed bitmap
  1264. //#define STATUS_ALT_FAN_BITMAP // Use the alternative fan bitmap
  1265. #define STATUS_FAN_FRAMES 3 // :[0,1,2,3,4] Number of fan animation frames
  1266. #define STATUS_HEAT_PERCENT // Show heating in a progress bar
  1267. //#define BOOT_MARLIN_LOGO_SMALL // Show a smaller Marlin logo on the Boot Screen (saving 399 bytes of flash)
  1268. //#define BOOT_MARLIN_LOGO_ANIMATED // Animated Marlin logo. Costs ~‭3260 (or ~940) bytes of PROGMEM.
  1269.  
  1270. // Frivolous Game Options
  1271. //#define MARLIN_BRICKOUT
  1272. //#define MARLIN_INVADERS
  1273. //#define MARLIN_SNAKE
  1274. //#define GAMES_EASTER_EGG // Add extra blank lines above the "Games" sub-menu
  1275.  
  1276. #endif // HAS_GRAPHICAL_LCD
  1277.  
  1278. //
  1279. // Additional options for DGUS / DWIN displays
  1280. //
  1281. #if HAS_DGUS_LCD
  1282. #define DGUS_SERIAL_PORT 2
  1283. #define DGUS_BAUDRATE 115200
  1284.  
  1285. #define DGUS_RX_BUFFER_SIZE 128
  1286. #define DGUS_TX_BUFFER_SIZE 48
  1287. //#define DGUS_SERIAL_STATS_RX_BUFFER_OVERRUNS // Fix Rx overrun situation (Currently only for AVR)
  1288.  
  1289. #define DGUS_UPDATE_INTERVAL_MS 500 // (ms) Interval between automatic screen updates
  1290. #define BOOTSCREEN_TIMEOUT 3000 // (ms) Duration to display the boot screen
  1291.  
  1292. #if EITHER(DGUS_LCD_UI_FYSETC, DGUS_LCD_UI_HIPRECY)
  1293. #define DGUS_PRINT_FILENAME // Display the filename during printing
  1294. #define DGUS_PREHEAT_UI // Display a preheat screen during heatup
  1295.  
  1296. #if ENABLED(DGUS_LCD_UI_FYSETC)
  1297. //#define DUGS_UI_MOVE_DIS_OPTION // Disabled by default for UI_FYSETC
  1298. #else
  1299. #define DUGS_UI_MOVE_DIS_OPTION // Enabled by default for UI_HIPRECY
  1300. #endif
  1301.  
  1302. #define DGUS_FILAMENT_LOADUNLOAD
  1303. #if ENABLED(DGUS_FILAMENT_LOADUNLOAD)
  1304. #define DGUS_FILAMENT_PURGE_LENGTH 10
  1305. #define DGUS_FILAMENT_LOAD_LENGTH_PER_TIME 0.5 // (mm) Adjust in proportion to DGUS_UPDATE_INTERVAL_MS
  1306. #endif
  1307.  
  1308. #define DGUS_UI_WAITING // Show a "waiting" screen between some screens
  1309. #if ENABLED(DGUS_UI_WAITING)
  1310. #define DGUS_UI_WAITING_STATUS 10
  1311. #define DGUS_UI_WAITING_STATUS_PERIOD 8 // Increase to slower waiting status looping
  1312. #endif
  1313. #endif
  1314. #endif // HAS_DGUS_LCD
  1315.  
  1316. //
  1317. // Touch UI for the FTDI Embedded Video Engine (EVE)
  1318. //
  1319. #if ENABLED(TOUCH_UI_FTDI_EVE)
  1320. // Display board used
  1321. //#define LCD_FTDI_VM800B35A // FTDI 3.5" with FT800 (320x240)
  1322. //#define LCD_4DSYSTEMS_4DLCD_FT843 // 4D Systems 4.3" (480x272)
  1323. //#define LCD_HAOYU_FT800CB // Haoyu with 4.3" or 5" (480x272)
  1324. //#define LCD_HAOYU_FT810CB // Haoyu with 5" (800x480)
  1325. //#define LCD_ALEPHOBJECTS_CLCD_UI // Aleph Objects Color LCD UI
  1326.  
  1327. // Correct the resolution if not using the stock TFT panel.
  1328. //#define TOUCH_UI_320x240
  1329. //#define TOUCH_UI_480x272
  1330. //#define TOUCH_UI_800x480
  1331.  
  1332. // Mappings for boards with a standard RepRapDiscount Display connector
  1333. //#define AO_EXP1_PINMAP // AlephObjects CLCD UI EXP1 mapping
  1334. //#define AO_EXP2_PINMAP // AlephObjects CLCD UI EXP2 mapping
  1335. //#define CR10_TFT_PINMAP // Rudolph Riedel's CR10 pin mapping
  1336. //#define S6_TFT_PINMAP // FYSETC S6 pin mapping
  1337.  
  1338. //#define OTHER_PIN_LAYOUT // Define pins manually below
  1339. #if ENABLED(OTHER_PIN_LAYOUT)
  1340. // Pins for CS and MOD_RESET (PD) must be chosen
  1341. #define CLCD_MOD_RESET 9
  1342. #define CLCD_SPI_CS 10
  1343.  
  1344. // If using software SPI, specify pins for SCLK, MOSI, MISO
  1345. //#define CLCD_USE_SOFT_SPI
  1346. #if ENABLED(CLCD_USE_SOFT_SPI)
  1347. #define CLCD_SOFT_SPI_MOSI 11
  1348. #define CLCD_SOFT_SPI_MISO 12
  1349. #define CLCD_SOFT_SPI_SCLK 13
  1350. #endif
  1351. #endif
  1352.  
  1353. // Display Orientation. An inverted (i.e. upside-down) display
  1354. // is supported on the FT800. The FT810 and beyond also support
  1355. // portrait and mirrored orientations.
  1356. //#define TOUCH_UI_INVERTED
  1357. //#define TOUCH_UI_PORTRAIT
  1358. //#define TOUCH_UI_MIRRORED
  1359.  
  1360. // UTF8 processing and rendering.
  1361. // Unsupported characters are shown as '?'.
  1362. //#define TOUCH_UI_USE_UTF8
  1363. #if ENABLED(TOUCH_UI_USE_UTF8)
  1364. // Western accents support. These accented characters use
  1365. // combined bitmaps and require relatively little storage.
  1366. #define TOUCH_UI_UTF8_WESTERN_CHARSET
  1367. #if ENABLED(TOUCH_UI_UTF8_WESTERN_CHARSET)
  1368. // Additional character groups. These characters require
  1369. // full bitmaps and take up considerable storage:
  1370. //#define TOUCH_UI_UTF8_SUPERSCRIPTS // ¹ ² ³
  1371. //#define TOUCH_UI_UTF8_COPYRIGHT // © ®
  1372. //#define TOUCH_UI_UTF8_GERMANIC // ß
  1373. //#define TOUCH_UI_UTF8_SCANDINAVIAN // Æ Ð Ø Þ æ ð ø þ
  1374. //#define TOUCH_UI_UTF8_PUNCTUATION // « » ¿ ¡
  1375. //#define TOUCH_UI_UTF8_CURRENCY // ¢ £ ¤ ¥
  1376. //#define TOUCH_UI_UTF8_ORDINALS // º ª
  1377. //#define TOUCH_UI_UTF8_MATHEMATICS // ± × ÷
  1378. //#define TOUCH_UI_UTF8_FRACTIONS // ¼ ½ ¾
  1379. //#define TOUCH_UI_UTF8_SYMBOLS // µ ¶ ¦ § ¬
  1380. #endif
  1381. #endif
  1382.  
  1383. // Use a smaller font when labels don't fit buttons
  1384. #define TOUCH_UI_FIT_TEXT
  1385.  
  1386. // Allow language selection from menu at run-time (otherwise use LCD_LANGUAGE)
  1387. //#define LCD_LANGUAGE_1 en
  1388. //#define LCD_LANGUAGE_2 fr
  1389. //#define LCD_LANGUAGE_3 de
  1390. //#define LCD_LANGUAGE_4 es
  1391. //#define LCD_LANGUAGE_5 it
  1392.  
  1393. // Use a numeric passcode for "Screen lock" keypad.
  1394. // (recommended for smaller displays)
  1395. //#define TOUCH_UI_PASSCODE
  1396.  
  1397. // Output extra debug info for Touch UI events
  1398. //#define TOUCH_UI_DEBUG
  1399.  
  1400. // Developer menu (accessed by touching "About Printer" copyright text)
  1401. //#define TOUCH_UI_DEVELOPER_MENU
  1402. #endif
  1403.  
  1404. //
  1405. // FSMC Graphical TFT
  1406. //
  1407. #if ENABLED(FSMC_GRAPHICAL_TFT)
  1408. //#define TFT_MARLINUI_COLOR 0xFFFF // White
  1409. //#define TFT_MARLINBG_COLOR 0x0000 // Black
  1410. //#define TFT_DISABLED_COLOR 0x0003 // Almost black
  1411. //#define TFT_BTCANCEL_COLOR 0xF800 // Red
  1412. //#define TFT_BTARROWS_COLOR 0xDEE6 // 11011 110111 00110 Yellow
  1413. //#define TFT_BTOKMENU_COLOR 0x145F // 00010 100010 11111 Cyan
  1414. #endif
  1415.  
  1416. //
  1417. // ADC Button Debounce
  1418. //
  1419. #if HAS_ADC_BUTTONS
  1420. #define ADC_BUTTON_DEBOUNCE_DELAY 16 // (ms) Increase if buttons bounce or repeat too fast
  1421. #endif
  1422.  
  1423. // @section safety
  1424.  
  1425. /**
  1426. * The watchdog hardware timer will do a reset and disable all outputs
  1427. * if the firmware gets too overloaded to read the temperature sensors.
  1428. *
  1429. * If you find that watchdog reboot causes your AVR board to hang forever,
  1430. * enable WATCHDOG_RESET_MANUAL to use a custom timer instead of WDTO.
  1431. * NOTE: This method is less reliable as it can only catch hangups while
  1432. * interrupts are enabled.
  1433. */
  1434. #define USE_WATCHDOG
  1435. #if ENABLED(USE_WATCHDOG)
  1436. //#define WATCHDOG_RESET_MANUAL
  1437. #endif
  1438.  
  1439. // @section lcd
  1440.  
  1441. /**
  1442. * Babystepping enables movement of the axes by tiny increments without changing
  1443. * the current position values. This feature is used primarily to adjust the Z
  1444. * axis in the first layer of a print in real-time.
  1445. *
  1446. * Warning: Does not respect endstops!
  1447. */
  1448. #define BABYSTEPPING
  1449. #if ENABLED(BABYSTEPPING)
  1450. #define INTEGRATED_BABYSTEPPING // EXPERIMENTAL integration of babystepping into the Stepper ISR
  1451. #define BABYSTEP_WITHOUT_HOMING
  1452. //#define BABYSTEP_XY // Also enable X/Y Babystepping. Not supported on DELTA!
  1453. #define BABYSTEP_INVERT_Z false // Change if Z babysteps should go the other way
  1454. #define BABYSTEP_MULTIPLICATOR_Z 1 // Babysteps are very small. Increase for faster motion.
  1455. //#define BABYSTEP_MULTIPLICATOR_XY 1
  1456.  
  1457. #define DOUBLECLICK_FOR_Z_BABYSTEPPING // Double-click on the Status Screen for Z Babystepping.
  1458. #if ENABLED(DOUBLECLICK_FOR_Z_BABYSTEPPING)
  1459. #define DOUBLECLICK_MAX_INTERVAL 1250 // Maximum interval between clicks, in milliseconds.
  1460. // Note: Extra time may be added to mitigate controller latency.
  1461. #define BABYSTEP_ALWAYS_AVAILABLE // Allow babystepping at all times (not just during movement).
  1462. //#define MOVE_Z_WHEN_IDLE // Jump to the move Z menu on doubleclick when printer is idle.
  1463. #if ENABLED(MOVE_Z_WHEN_IDLE)
  1464. #define MOVE_Z_IDLE_MULTIPLICATOR 1 // Multiply 1mm by this factor for the move step size.
  1465. #endif
  1466. #endif
  1467.  
  1468. #define BABYSTEP_DISPLAY_TOTAL // Display total babysteps since last G28
  1469.  
  1470. #define BABYSTEP_ZPROBE_OFFSET // Combine M851 Z and Babystepping
  1471. #if ENABLED(BABYSTEP_ZPROBE_OFFSET)
  1472. //#define BABYSTEP_HOTEND_Z_OFFSET // For multiple hotends, babystep relative Z offsets
  1473. #define BABYSTEP_ZPROBE_GFX_OVERLAY // Enable graphical overlay on Z-offset editor
  1474. #endif
  1475. #endif
  1476.  
  1477. // @section extruder
  1478.  
  1479. /**
  1480. * Linear Pressure Control v1.5
  1481. *
  1482. * Assumption: advance [steps] = k * (delta velocity [steps/s])
  1483. * K=0 means advance disabled.
  1484. *
  1485. * NOTE: K values for LIN_ADVANCE 1.5 differ from earlier versions!
  1486. *
  1487. * Set K around 0.22 for 3mm PLA Direct Drive with ~6.5cm between the drive gear and heatbreak.
  1488. * Larger K values will be needed for flexible filament and greater distances.
  1489. * If this algorithm produces a higher speed offset than the extruder can handle (compared to E jerk)
  1490. * print acceleration will be reduced during the affected moves to keep within the limit.
  1491. *
  1492. * See http://marlinfw.org/docs/features/lin_advance.html for full instructions.
  1493. * Mention @Sebastianv650 on GitHub to alert the author of any issues.
  1494. */
  1495. //#define LIN_ADVANCE
  1496. #if ENABLED(LIN_ADVANCE)
  1497. //#define EXTRA_LIN_ADVANCE_K // Enable for second linear advance constants
  1498. #define LIN_ADVANCE_K 0.22 // Unit: mm compression per 1mm/s extruder speed
  1499. //#define LA_DEBUG // If enabled, this will generate debug information output over USB.
  1500. #endif
  1501.  
  1502. // @section leveling
  1503.  
  1504. /**
  1505. * Points to probe for all 3-point Leveling procedures.
  1506. * Override if the automatically selected points are inadequate.
  1507. */
  1508. #if EITHER(AUTO_BED_LEVELING_3POINT, AUTO_BED_LEVELING_UBL)
  1509. //#define PROBE_PT_1_X 15
  1510. //#define PROBE_PT_1_Y 180
  1511. //#define PROBE_PT_2_X 15
  1512. //#define PROBE_PT_2_Y 20
  1513. //#define PROBE_PT_3_X 170
  1514. //#define PROBE_PT_3_Y 20
  1515. #endif
  1516.  
  1517. /**
  1518. * Override MIN_PROBE_EDGE for each side of the build plate
  1519. * Useful to get probe points to exact positions on targets or
  1520. * to allow leveling to avoid plate clamps on only specific
  1521. * sides of the bed. With NOZZLE_AS_PROBE negative values are
  1522. * allowed, to permit probing outside the bed.
  1523. *
  1524. * If you are replacing the prior *_PROBE_BED_POSITION options,
  1525. * LEFT and FRONT values in most cases will map directly over
  1526. * RIGHT and REAR would be the inverse such as
  1527. * (X/Y_BED_SIZE - RIGHT/BACK_PROBE_BED_POSITION)
  1528. *
  1529. * This will allow all positions to match at compilation, however
  1530. * should the probe position be modified with M851XY then the
  1531. * probe points will follow. This prevents any change from causing
  1532. * the probe to be unable to reach any points.
  1533. */
  1534. #if PROBE_SELECTED && !IS_KINEMATIC
  1535. #define MIN_PROBE_EDGE_LEFT MIN_PROBE_EDGE
  1536. #define MIN_PROBE_EDGE_RIGHT MIN_PROBE_EDGE
  1537. #define MIN_PROBE_EDGE_FRONT MIN_PROBE_EDGE
  1538. #define MIN_PROBE_EDGE_BACK MIN_PROBE_EDGE
  1539. #endif
  1540.  
  1541. #if EITHER(MESH_BED_LEVELING, AUTO_BED_LEVELING_UBL)
  1542. // Override the mesh area if the automatic (max) area is too large
  1543. //#define MESH_MIN_X MESH_INSET
  1544. //#define MESH_MIN_Y MESH_INSET
  1545. //#define MESH_MAX_X X_BED_SIZE - (MESH_INSET)
  1546. //#define MESH_MAX_Y Y_BED_SIZE - (MESH_INSET)
  1547. #endif
  1548.  
  1549. /**
  1550. * Repeatedly attempt G29 leveling until it succeeds.
  1551. * Stop after G29_MAX_RETRIES attempts.
  1552. */
  1553. //#define G29_RETRY_AND_RECOVER
  1554. #if ENABLED(G29_RETRY_AND_RECOVER)
  1555. #define G29_MAX_RETRIES 3
  1556. #define G29_HALT_ON_FAILURE
  1557. /**
  1558. * Specify the GCODE commands that will be executed when leveling succeeds,
  1559. * between attempts, and after the maximum number of retries have been tried.
  1560. */
  1561. #define G29_SUCCESS_COMMANDS "M117 Bed leveling done."
  1562. #define G29_RECOVER_COMMANDS "M117 Probe failed. Rewiping.\nG28\nG12 P0 S12 T0"
  1563. #define G29_FAILURE_COMMANDS "M117 Bed leveling failed.\nG0 Z10\nM300 P25 S880\nM300 P50 S0\nM300 P25 S880\nM300 P50 S0\nM300 P25 S880\nM300 P50 S0\nG4 S1"
  1564.  
  1565. #endif
  1566.  
  1567. /**
  1568. * Thermal Probe Compensation
  1569. * Probe measurements are adjusted to compensate for temperature distortion.
  1570. * Use G76 to calibrate this feature. Use M871 to set values manually.
  1571. * For a more detailed explanation of the process see G76_M871.cpp.
  1572. */
  1573. #if HAS_BED_PROBE && TEMP_SENSOR_PROBE && TEMP_SENSOR_BED
  1574. // Enable thermal first layer compensation using bed and probe temperatures
  1575. #define PROBE_TEMP_COMPENSATION
  1576.  
  1577. // Add additional compensation depending on hotend temperature
  1578. // Note: this values cannot be calibrated and have to be set manually
  1579. #if ENABLED(PROBE_TEMP_COMPENSATION)
  1580. // Max temperature that can be reached by heated bed.
  1581. // This is required only for the calibration process.
  1582. #define PTC_MAX_BED_TEMP 110
  1583.  
  1584. // Park position to wait for probe cooldown
  1585. #define PTC_PARK_POS_X 0.0F
  1586. #define PTC_PARK_POS_Y 0.0F
  1587. #define PTC_PARK_POS_Z 100.0F
  1588.  
  1589. // Probe position to probe and wait for probe to reach target temperature
  1590. #define PTC_PROBE_POS_X 90.0F
  1591. #define PTC_PROBE_POS_Y 100.0F
  1592.  
  1593. // Enable additional compensation using hotend temperature
  1594. // Note: this values cannot be calibrated automatically but have to be set manually
  1595. //#define USE_TEMP_EXT_COMPENSATION
  1596. #endif
  1597. #endif
  1598.  
  1599. // @section extras
  1600.  
  1601. //
  1602. // G60/G61 Position Save and Return
  1603. //
  1604. //#define SAVED_POSITIONS 1 // Each saved position slot costs 12 bytes
  1605.  
  1606. //
  1607. // G2/G3 Arc Support
  1608. //
  1609. #define ARC_SUPPORT // Disable this feature to save ~3226 bytes
  1610. #if ENABLED(ARC_SUPPORT)
  1611. #define MM_PER_ARC_SEGMENT 1 // (mm) Length (or minimum length) of each arc segment
  1612. //#define ARC_SEGMENTS_PER_R 1 // Max segment length, MM_PER = Min
  1613. #define MIN_ARC_SEGMENTS 24 // Minimum number of segments in a complete circle
  1614. //#define ARC_SEGMENTS_PER_SEC 50 // Use feedrate to choose segment length (with MM_PER_ARC_SEGMENT as the minimum)
  1615. #define N_ARC_CORRECTION 25 // Number of interpolated segments between corrections
  1616. //#define ARC_P_CIRCLES // Enable the 'P' parameter to specify complete circles
  1617. //#define CNC_WORKSPACE_PLANES // Allow G2/G3 to operate in XY, ZX, or YZ planes
  1618. #endif
  1619.  
  1620. // Support for G5 with XYZE destination and IJPQ offsets. Requires ~2666 bytes.
  1621. //#define BEZIER_CURVE_SUPPORT
  1622.  
  1623. /**
  1624. * G38 Probe Target
  1625. *
  1626. * This option adds G38.2 and G38.3 (probe towards target)
  1627. * and optionally G38.4 and G38.5 (probe away from target).
  1628. * Set MULTIPLE_PROBING for G38 to probe more than once.
  1629. */
  1630. //#define G38_PROBE_TARGET
  1631. #if ENABLED(G38_PROBE_TARGET)
  1632. //#define G38_PROBE_AWAY // Include G38.4 and G38.5 to probe away from target
  1633. #define G38_MINIMUM_MOVE 0.0275 // (mm) Minimum distance that will produce a move.
  1634. #endif
  1635.  
  1636. // Moves (or segments) with fewer steps than this will be joined with the next move
  1637. #define MIN_STEPS_PER_SEGMENT 6
  1638.  
  1639. /**
  1640. * Minimum delay before and after setting the stepper DIR (in ns)
  1641. * 0 : No delay (Expect at least 10µS since one Stepper ISR must transpire)
  1642. * 20 : Minimum for TMC2xxx drivers
  1643. * 200 : Minimum for A4988 drivers
  1644. * 400 : Minimum for A5984 drivers
  1645. * 500 : Minimum for LV8729 drivers (guess, no info in datasheet)
  1646. * 650 : Minimum for DRV8825 drivers
  1647. * 1500 : Minimum for TB6600 drivers (guess, no info in datasheet)
  1648. * 15000 : Minimum for TB6560 drivers (guess, no info in datasheet)
  1649. *
  1650. * Override the default value based on the driver type set in Configuration.h.
  1651. */
  1652. //#define MINIMUM_STEPPER_POST_DIR_DELAY 650
  1653. //#define MINIMUM_STEPPER_PRE_DIR_DELAY 650
  1654.  
  1655. /**
  1656. * Minimum stepper driver pulse width (in µs)
  1657. * 0 : Smallest possible width the MCU can produce, compatible with TMC2xxx drivers
  1658. * 0 : Minimum 500ns for LV8729, adjusted in stepper.h
  1659. * 1 : Minimum for A4988 and A5984 stepper drivers
  1660. * 2 : Minimum for DRV8825 stepper drivers
  1661. * 3 : Minimum for TB6600 stepper drivers
  1662. * 30 : Minimum for TB6560 stepper drivers
  1663. *
  1664. * Override the default value based on the driver type set in Configuration.h.
  1665. */
  1666. //#define MINIMUM_STEPPER_PULSE 2
  1667.  
  1668. /**
  1669. * Maximum stepping rate (in Hz) the stepper driver allows
  1670. * If undefined, defaults to 1MHz / (2 * MINIMUM_STEPPER_PULSE)
  1671. * 5000000 : Maximum for TMC2xxx stepper drivers
  1672. * 1000000 : Maximum for LV8729 stepper driver
  1673. * 500000 : Maximum for A4988 stepper driver
  1674. * 250000 : Maximum for DRV8825 stepper driver
  1675. * 150000 : Maximum for TB6600 stepper driver
  1676. * 15000 : Maximum for TB6560 stepper driver
  1677. *
  1678. * Override the default value based on the driver type set in Configuration.h.
  1679. */
  1680. //#define MAXIMUM_STEPPER_RATE 250000
  1681.  
  1682. // @section temperature
  1683.  
  1684. // Control heater 0 and heater 1 in parallel.
  1685. //#define HEATERS_PARALLEL
  1686.  
  1687. //===========================================================================
  1688. //================================= Buffers =================================
  1689. //===========================================================================
  1690.  
  1691. // @section hidden
  1692.  
  1693. // The number of linear motions that can be in the plan at any give time.
  1694. // THE BLOCK_BUFFER_SIZE NEEDS TO BE A POWER OF 2 (e.g. 8, 16, 32) because shifts and ors are used to do the ring-buffering.
  1695. #if ENABLED(SDSUPPORT)
  1696. #define BLOCK_BUFFER_SIZE 16 // SD,LCD,Buttons take more memory, block buffer needs to be smaller
  1697. #else
  1698. #define BLOCK_BUFFER_SIZE 16 // maximize block buffer
  1699. #endif
  1700.  
  1701. // @section serial
  1702.  
  1703. // The ASCII buffer for serial input
  1704. #define MAX_CMD_SIZE 96
  1705. #define BUFSIZE 4
  1706.  
  1707. // Transmission to Host Buffer Size
  1708. // To save 386 bytes of PROGMEM (and TX_BUFFER_SIZE+3 bytes of RAM) set to 0.
  1709. // To buffer a simple "ok" you need 4 bytes.
  1710. // For ADVANCED_OK (M105) you need 32 bytes.
  1711. // For debug-echo: 128 bytes for the optimal speed.
  1712. // Other output doesn't need to be that speedy.
  1713. // :[0, 2, 4, 8, 16, 32, 64, 128, 256]
  1714. #define TX_BUFFER_SIZE 0
  1715.  
  1716. // Host Receive Buffer Size
  1717. // Without XON/XOFF flow control (see SERIAL_XON_XOFF below) 32 bytes should be enough.
  1718. // To use flow control, set this buffer size to at least 1024 bytes.
  1719. // :[0, 2, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2048]
  1720. //#define RX_BUFFER_SIZE 1024
  1721.  
  1722. #if RX_BUFFER_SIZE >= 1024
  1723. // Enable to have the controller send XON/XOFF control characters to
  1724. // the host to signal the RX buffer is becoming full.
  1725. //#define SERIAL_XON_XOFF
  1726. #endif
  1727.  
  1728. // Add M575 G-code to change the baud rate
  1729. //#define BAUD_RATE_GCODE
  1730.  
  1731. #if ENABLED(SDSUPPORT)
  1732. // Enable this option to collect and display the maximum
  1733. // RX queue usage after transferring a file to SD.
  1734. //#define SERIAL_STATS_MAX_RX_QUEUED
  1735.  
  1736. // Enable this option to collect and display the number
  1737. // of dropped bytes after a file transfer to SD.
  1738. //#define SERIAL_STATS_DROPPED_RX
  1739. #endif
  1740.  
  1741. // Enable an emergency-command parser to intercept certain commands as they
  1742. // enter the serial receive buffer, so they cannot be blocked.
  1743. // Currently handles M108, M112, M410
  1744. // Does not work on boards using AT90USB (USBCON) processors!
  1745. //#define EMERGENCY_PARSER
  1746.  
  1747. // Bad Serial-connections can miss a received command by sending an 'ok'
  1748. // Therefore some clients abort after 30 seconds in a timeout.
  1749. // Some other clients start sending commands while receiving a 'wait'.
  1750. // This "wait" is only sent when the buffer is empty. 1 second is a good value here.
  1751. //#define NO_TIMEOUTS 1000 // Milliseconds
  1752.  
  1753. // Some clients will have this feature soon. This could make the NO_TIMEOUTS unnecessary.
  1754. //#define ADVANCED_OK
  1755.  
  1756. // Printrun may have trouble receiving long strings all at once.
  1757. // This option inserts short delays between lines of serial output.
  1758. #define SERIAL_OVERRUN_PROTECTION
  1759.  
  1760. // @section extras
  1761.  
  1762. /**
  1763. * Extra Fan Speed
  1764. * Adds a secondary fan speed for each print-cooling fan.
  1765. * 'M106 P<fan> T3-255' : Set a secondary speed for <fan>
  1766. * 'M106 P<fan> T2' : Use the set secondary speed
  1767. * 'M106 P<fan> T1' : Restore the previous fan speed
  1768. */
  1769. //#define EXTRA_FAN_SPEED
  1770.  
  1771. /**
  1772. * Firmware-based and LCD-controlled retract
  1773. *
  1774. * Add G10 / G11 commands for automatic firmware-based retract / recover.
  1775. * Use M207 and M208 to define parameters for retract / recover.
  1776. *
  1777. * Use M209 to enable or disable auto-retract.
  1778. * With auto-retract enabled, all G1 E moves within the set range
  1779. * will be converted to firmware-based retract/recover moves.
  1780. *
  1781. * Be sure to turn off auto-retract during filament change.
  1782. *
  1783. * Note that M207 / M208 / M209 settings are saved to EEPROM.
  1784. *
  1785. */
  1786. //#define FWRETRACT
  1787. #if ENABLED(FWRETRACT)
  1788. #define FWRETRACT_AUTORETRACT // Override slicer retractions
  1789. #if ENABLED(FWRETRACT_AUTORETRACT)
  1790. #define MIN_AUTORETRACT 0.1 // (mm) Don't convert E moves under this length
  1791. #define MAX_AUTORETRACT 10.0 // (mm) Don't convert E moves over this length
  1792. #endif
  1793. #define RETRACT_LENGTH 3 // (mm) Default retract length (positive value)
  1794. #define RETRACT_LENGTH_SWAP 13 // (mm) Default swap retract length (positive value)
  1795. #define RETRACT_FEEDRATE 45 // (mm/s) Default feedrate for retracting
  1796. #define RETRACT_ZRAISE 0 // (mm) Default retract Z-raise
  1797. #define RETRACT_RECOVER_LENGTH 0 // (mm) Default additional recover length (added to retract length on recover)
  1798. #define RETRACT_RECOVER_LENGTH_SWAP 0 // (mm) Default additional swap recover length (added to retract length on recover from toolchange)
  1799. #define RETRACT_RECOVER_FEEDRATE 8 // (mm/s) Default feedrate for recovering from retraction
  1800. #define RETRACT_RECOVER_FEEDRATE_SWAP 8 // (mm/s) Default feedrate for recovering from swap retraction
  1801. #if ENABLED(MIXING_EXTRUDER)
  1802. //#define RETRACT_SYNC_MIXING // Retract and restore all mixing steppers simultaneously
  1803. #endif
  1804. #endif
  1805.  
  1806. /**
  1807. * Universal tool change settings.
  1808. * Applies to all types of extruders except where explicitly noted.
  1809. */
  1810. #if EXTRUDERS > 1
  1811. // Z raise distance for tool-change, as needed for some extruders
  1812. #define TOOLCHANGE_ZRAISE 2 // (mm)
  1813. //#define TOOLCHANGE_NO_RETURN // Never return to the previous position on tool-change
  1814. #if ENABLED(TOOLCHANGE_NO_RETURN)
  1815. //#define EVENT_GCODE_AFTER_TOOLCHANGE "G12X" // G-code to run after tool-change is complete
  1816. #endif
  1817.  
  1818. // Retract and prime filament on tool-change
  1819. //#define TOOLCHANGE_FILAMENT_SWAP
  1820. #if ENABLED(TOOLCHANGE_FILAMENT_SWAP)
  1821. #define TOOLCHANGE_FIL_SWAP_LENGTH 12 // (mm)
  1822. #define TOOLCHANGE_FIL_EXTRA_PRIME 2 // (mm)
  1823. #define TOOLCHANGE_FIL_SWAP_RETRACT_SPEED 3600 // (mm/m)
  1824. #define TOOLCHANGE_FIL_SWAP_PRIME_SPEED 3600 // (mm/m)
  1825. #endif
  1826.  
  1827. /**
  1828. * Position to park head during tool change.
  1829. * Doesn't apply to SWITCHING_TOOLHEAD, DUAL_X_CARRIAGE, or PARKING_EXTRUDER
  1830. */
  1831. //#define TOOLCHANGE_PARK
  1832. #if ENABLED(TOOLCHANGE_PARK)
  1833. #define TOOLCHANGE_PARK_XY { X_MIN_POS + 10, Y_MIN_POS + 10 }
  1834. #define TOOLCHANGE_PARK_XY_FEEDRATE 6000 // (mm/m)
  1835. #endif
  1836. #endif
  1837.  
  1838. /**
  1839. * Advanced Pause
  1840. * Experimental feature for filament change support and for parking the nozzle when paused.
  1841. * Adds the GCode M600 for initiating filament change.
  1842. * If PARK_HEAD_ON_PAUSE enabled, adds the GCode M125 to pause printing and park the nozzle.
  1843. *
  1844. * Requires an LCD display.
  1845. * Requires NOZZLE_PARK_FEATURE.
  1846. * This feature is required for the default FILAMENT_RUNOUT_SCRIPT.
  1847. */
  1848. #define ADVANCED_PAUSE_FEATURE
  1849. #if ENABLED(ADVANCED_PAUSE_FEATURE)
  1850. #define PAUSE_PARK_RETRACT_FEEDRATE 60 // (mm/s) Initial retract feedrate.
  1851. #define PAUSE_PARK_RETRACT_LENGTH 2 // (mm) Initial retract.
  1852. // This short retract is done immediately, before parking the nozzle.
  1853. #define FILAMENT_CHANGE_UNLOAD_FEEDRATE 10 // (mm/s) Unload filament feedrate. This can be pretty fast.
  1854. #define FILAMENT_CHANGE_UNLOAD_ACCEL 25 // (mm/s^2) Lower acceleration may allow a faster feedrate.
  1855. #define FILAMENT_CHANGE_UNLOAD_LENGTH 100 // (mm) The length of filament for a complete unload.
  1856. // For Bowden, the full length of the tube and nozzle.
  1857. // For direct drive, the full length of the nozzle.
  1858. // Set to 0 for manual unloading.
  1859. #define FILAMENT_CHANGE_SLOW_LOAD_FEEDRATE 6 // (mm/s) Slow move when starting load.
  1860. #define FILAMENT_CHANGE_SLOW_LOAD_LENGTH 0 // (mm) Slow length, to allow time to insert material.
  1861. // 0 to disable start loading and skip to fast load only
  1862. #define FILAMENT_CHANGE_FAST_LOAD_FEEDRATE 6 // (mm/s) Load filament feedrate. This can be pretty fast.
  1863. #define FILAMENT_CHANGE_FAST_LOAD_ACCEL 25 // (mm/s^2) Lower acceleration may allow a faster feedrate.
  1864. #define FILAMENT_CHANGE_FAST_LOAD_LENGTH 0 // (mm) Load length of filament, from extruder gear to nozzle.
  1865. // For Bowden, the full length of the tube and nozzle.
  1866. // For direct drive, the full length of the nozzle.
  1867. //#define ADVANCED_PAUSE_CONTINUOUS_PURGE // Purge continuously up to the purge length until interrupted.
  1868. #define ADVANCED_PAUSE_PURGE_FEEDRATE 3 // (mm/s) Extrude feedrate (after loading). Should be slower than load feedrate.
  1869. #define ADVANCED_PAUSE_PURGE_LENGTH 50 // (mm) Length to extrude after loading.
  1870. // Set to 0 for manual extrusion.
  1871. // Filament can be extruded repeatedly from the Filament Change menu
  1872. // until extrusion is consistent, and to purge old filament.
  1873. #define ADVANCED_PAUSE_RESUME_PRIME 0 // (mm) Extra distance to prime nozzle after returning from park.
  1874. //#define ADVANCED_PAUSE_FANS_PAUSE // Turn off print-cooling fans while the machine is paused.
  1875.  
  1876. // Filament Unload does a Retract, Delay, and Purge first:
  1877. #define FILAMENT_UNLOAD_PURGE_RETRACT 13 // (mm) Unload initial retract length.
  1878. #define FILAMENT_UNLOAD_PURGE_DELAY 5000 // (ms) Delay for the filament to cool after retract.
  1879. #define FILAMENT_UNLOAD_PURGE_LENGTH 8 // (mm) An unretract is done, then this length is purged.
  1880. #define FILAMENT_UNLOAD_PURGE_FEEDRATE 25 // (mm/s) feedrate to purge before unload
  1881.  
  1882. #define PAUSE_PARK_NOZZLE_TIMEOUT 45 // (seconds) Time limit before the nozzle is turned off for safety.
  1883. #define FILAMENT_CHANGE_ALERT_BEEPS 10 // Number of alert beeps to play when a response is needed.
  1884. #define PAUSE_PARK_NO_STEPPER_TIMEOUT // Enable for XYZ steppers to stay powered on during filament change.
  1885.  
  1886. #define PARK_HEAD_ON_PAUSE // Park the nozzle during pause and filament change.
  1887. //#define HOME_BEFORE_FILAMENT_CHANGE // Ensure homing has been completed prior to parking for filament change
  1888.  
  1889. #define FILAMENT_LOAD_UNLOAD_GCODES // Add M701/M702 Load/Unload G-codes, plus Load/Unload in the LCD Prepare menu.
  1890. //#define FILAMENT_UNLOAD_ALL_EXTRUDERS // Allow M702 to unload all extruders above a minimum target temp (as set by M302)
  1891. #endif
  1892.  
  1893. // @section tmc
  1894.  
  1895. /**
  1896. * TMC26X Stepper Driver options
  1897. *
  1898. * The TMC26XStepper library is required for this stepper driver.
  1899. * https://github.com/trinamic/TMC26XStepper
  1900. */
  1901. #if HAS_DRIVER(TMC26X)
  1902.  
  1903. #if AXIS_DRIVER_TYPE_X(TMC26X)
  1904. #define X_MAX_CURRENT 1000 // (mA)
  1905. #define X_SENSE_RESISTOR 91 // (mOhms)
  1906. #define X_MICROSTEPS 16 // Number of microsteps
  1907. #endif
  1908.  
  1909. #if AXIS_DRIVER_TYPE_X2(TMC26X)
  1910. #define X2_MAX_CURRENT 1000
  1911. #define X2_SENSE_RESISTOR 91
  1912. #define X2_MICROSTEPS 16
  1913. #endif
  1914.  
  1915. #if AXIS_DRIVER_TYPE_Y(TMC26X)
  1916. #define Y_MAX_CURRENT 1000
  1917. #define Y_SENSE_RESISTOR 91
  1918. #define Y_MICROSTEPS 16
  1919. #endif
  1920.  
  1921. #if AXIS_DRIVER_TYPE_Y2(TMC26X)
  1922. #define Y2_MAX_CURRENT 1000
  1923. #define Y2_SENSE_RESISTOR 91
  1924. #define Y2_MICROSTEPS 16
  1925. #endif
  1926.  
  1927. #if AXIS_DRIVER_TYPE_Z(TMC26X)
  1928. #define Z_MAX_CURRENT 1000
  1929. #define Z_SENSE_RESISTOR 91
  1930. #define Z_MICROSTEPS 16
  1931. #endif
  1932.  
  1933. #if AXIS_DRIVER_TYPE_Z2(TMC26X)
  1934. #define Z2_MAX_CURRENT 1000
  1935. #define Z2_SENSE_RESISTOR 91
  1936. #define Z2_MICROSTEPS 16
  1937. #endif
  1938.  
  1939. #if AXIS_DRIVER_TYPE_Z3(TMC26X)
  1940. #define Z3_MAX_CURRENT 1000
  1941. #define Z3_SENSE_RESISTOR 91
  1942. #define Z3_MICROSTEPS 16
  1943. #endif
  1944.  
  1945. #if AXIS_DRIVER_TYPE_Z4(TMC26X)
  1946. #define Z4_MAX_CURRENT 1000
  1947. #define Z4_SENSE_RESISTOR 91
  1948. #define Z4_MICROSTEPS 16
  1949. #endif
  1950.  
  1951. #if AXIS_DRIVER_TYPE_E0(TMC26X)
  1952. #define E0_MAX_CURRENT 1000
  1953. #define E0_SENSE_RESISTOR 91
  1954. #define E0_MICROSTEPS 16
  1955. #endif
  1956.  
  1957. #if AXIS_DRIVER_TYPE_E1(TMC26X)
  1958. #define E1_MAX_CURRENT 1000
  1959. #define E1_SENSE_RESISTOR 91
  1960. #define E1_MICROSTEPS 16
  1961. #endif
  1962.  
  1963. #if AXIS_DRIVER_TYPE_E2(TMC26X)
  1964. #define E2_MAX_CURRENT 1000
  1965. #define E2_SENSE_RESISTOR 91
  1966. #define E2_MICROSTEPS 16
  1967. #endif
  1968.  
  1969. #if AXIS_DRIVER_TYPE_E3(TMC26X)
  1970. #define E3_MAX_CURRENT 1000
  1971. #define E3_SENSE_RESISTOR 91
  1972. #define E3_MICROSTEPS 16
  1973. #endif
  1974.  
  1975. #if AXIS_DRIVER_TYPE_E4(TMC26X)
  1976. #define E4_MAX_CURRENT 1000
  1977. #define E4_SENSE_RESISTOR 91
  1978. #define E4_MICROSTEPS 16
  1979. #endif
  1980.  
  1981. #if AXIS_DRIVER_TYPE_E5(TMC26X)
  1982. #define E5_MAX_CURRENT 1000
  1983. #define E5_SENSE_RESISTOR 91
  1984. #define E5_MICROSTEPS 16
  1985. #endif
  1986.  
  1987. #if AXIS_DRIVER_TYPE_E6(TMC26X)
  1988. #define E6_MAX_CURRENT 1000
  1989. #define E6_SENSE_RESISTOR 91
  1990. #define E6_MICROSTEPS 16
  1991. #endif
  1992.  
  1993. #if AXIS_DRIVER_TYPE_E7(TMC26X)
  1994. #define E7_MAX_CURRENT 1000
  1995. #define E7_SENSE_RESISTOR 91
  1996. #define E7_MICROSTEPS 16
  1997. #endif
  1998.  
  1999. #endif // TMC26X
  2000.  
  2001. // @section tmc_smart
  2002.  
  2003. /**
  2004. * To use TMC2130, TMC2160, TMC2660, TMC5130, TMC5160 stepper drivers in SPI mode
  2005. * connect your SPI pins to the hardware SPI interface on your board and define
  2006. * the required CS pins in your `pins_MYBOARD.h` file. (e.g., RAMPS 1.4 uses AUX3
  2007. * pins `X_CS_PIN 53`, `Y_CS_PIN 49`, etc.).
  2008. * You may also use software SPI if you wish to use general purpose IO pins.
  2009. *
  2010. * To use TMC2208 stepper UART-configurable stepper drivers connect #_SERIAL_TX_PIN
  2011. * to the driver side PDN_UART pin with a 1K resistor.
  2012. * To use the reading capabilities, also connect #_SERIAL_RX_PIN to PDN_UART without
  2013. * a resistor.
  2014. * The drivers can also be used with hardware serial.
  2015. *
  2016. * TMCStepper library is required to use TMC stepper drivers.
  2017. * https://github.com/teemuatlut/TMCStepper
  2018. */
  2019. #if HAS_TRINAMIC
  2020.  
  2021. #define HOLD_MULTIPLIER 0.5 // Scales down the holding current from run current
  2022. #define INTERPOLATE true // Interpolate X/Y/Z_MICROSTEPS to 256
  2023.  
  2024. #if AXIS_IS_TMC(X)
  2025. #define X_CURRENT 800 // (mA) RMS current. Multiply by 1.414 for peak current.
  2026. #define X_CURRENT_HOME X_CURRENT // (mA) RMS current for sensorless homing
  2027. #define X_MICROSTEPS 16 // 0..256
  2028. #define X_RSENSE 0.11
  2029. #define X_CHAIN_POS -1 // <=0 : Not chained. 1 : MCU MOSI connected. 2 : Next in chain, ...
  2030. #endif
  2031.  
  2032. #if AXIS_IS_TMC(X2)
  2033. #define X2_CURRENT 800
  2034. #define X2_CURRENT_HOME X2_CURRENT
  2035. #define X2_MICROSTEPS 16
  2036. #define X2_RSENSE 0.11
  2037. #define X2_CHAIN_POS -1
  2038. #endif
  2039.  
  2040. #if AXIS_IS_TMC(Y)
  2041. #define Y_CURRENT 800
  2042. #define Y_CURRENT_HOME Y_CURRENT
  2043. #define Y_MICROSTEPS 16
  2044. #define Y_RSENSE 0.11
  2045. #define Y_CHAIN_POS -1
  2046. #endif
  2047.  
  2048. #if AXIS_IS_TMC(Y2)
  2049. #define Y2_CURRENT 800
  2050. #define Y2_CURRENT_HOME Y2_CURRENT
  2051. #define Y2_MICROSTEPS 16
  2052. #define Y2_RSENSE 0.11
  2053. #define Y2_CHAIN_POS -1
  2054. #endif
  2055.  
  2056. #if AXIS_IS_TMC(Z)
  2057. #define Z_CURRENT 800
  2058. #define Z_CURRENT_HOME Z_CURRENT
  2059. #define Z_MICROSTEPS 16
  2060. #define Z_RSENSE 0.11
  2061. #define Z_CHAIN_POS -1
  2062. #endif
  2063.  
  2064. #if AXIS_IS_TMC(Z2)
  2065. #define Z2_CURRENT 800
  2066. #define Z2_CURRENT_HOME Z2_CURRENT
  2067. #define Z2_MICROSTEPS 16
  2068. #define Z2_RSENSE 0.11
  2069. #define Z2_CHAIN_POS -1
  2070. #endif
  2071.  
  2072. #if AXIS_IS_TMC(Z3)
  2073. #define Z3_CURRENT 800
  2074. #define Z3_CURRENT_HOME Z3_CURRENT
  2075. #define Z3_MICROSTEPS 16
  2076. #define Z3_RSENSE 0.11
  2077. #define Z3_CHAIN_POS -1
  2078. #endif
  2079.  
  2080. #if AXIS_IS_TMC(Z4)
  2081. #define Z4_CURRENT 800
  2082. #define Z4_CURRENT_HOME Z4_CURRENT
  2083. #define Z4_MICROSTEPS 16
  2084. #define Z4_RSENSE 0.11
  2085. #define Z4_CHAIN_POS -1
  2086. #endif
  2087.  
  2088. #if AXIS_IS_TMC(E0)
  2089. #define E0_CURRENT 650
  2090. #define E0_MICROSTEPS 16
  2091. #define E0_RSENSE 0.11
  2092. #define E0_CHAIN_POS -1
  2093. #endif
  2094.  
  2095. #if AXIS_IS_TMC(E1)
  2096. #define E1_CURRENT 800
  2097. #define E1_MICROSTEPS 16
  2098. #define E1_RSENSE 0.11
  2099. #define E1_CHAIN_POS -1
  2100. #endif
  2101.  
  2102. #if AXIS_IS_TMC(E2)
  2103. #define E2_CURRENT 800
  2104. #define E2_MICROSTEPS 16
  2105. #define E2_RSENSE 0.11
  2106. #define E2_CHAIN_POS -1
  2107. #endif
  2108.  
  2109. #if AXIS_IS_TMC(E3)
  2110. #define E3_CURRENT 800
  2111. #define E3_MICROSTEPS 16
  2112. #define E3_RSENSE 0.11
  2113. #define E3_CHAIN_POS -1
  2114. #endif
  2115.  
  2116. #if AXIS_IS_TMC(E4)
  2117. #define E4_CURRENT 800
  2118. #define E4_MICROSTEPS 16
  2119. #define E4_RSENSE 0.11
  2120. #define E4_CHAIN_POS -1
  2121. #endif
  2122.  
  2123. #if AXIS_IS_TMC(E5)
  2124. #define E5_CURRENT 800
  2125. #define E5_MICROSTEPS 16
  2126. #define E5_RSENSE 0.11
  2127. #define E5_CHAIN_POS -1
  2128. #endif
  2129.  
  2130. #if AXIS_IS_TMC(E6)
  2131. #define E6_CURRENT 800
  2132. #define E6_MICROSTEPS 16
  2133. #define E6_RSENSE 0.11
  2134. #define E6_CHAIN_POS -1
  2135. #endif
  2136.  
  2137. #if AXIS_IS_TMC(E7)
  2138. #define E7_CURRENT 800
  2139. #define E7_MICROSTEPS 16
  2140. #define E7_RSENSE 0.11
  2141. #define E7_CHAIN_POS -1
  2142. #endif
  2143.  
  2144. /**
  2145. * Override default SPI pins for TMC2130, TMC2160, TMC2660, TMC5130 and TMC5160 drivers here.
  2146. * The default pins can be found in your board's pins file.
  2147. */
  2148. //#define X_CS_PIN -1
  2149. //#define Y_CS_PIN -1
  2150. //#define Z_CS_PIN -1
  2151. //#define X2_CS_PIN -1
  2152. //#define Y2_CS_PIN -1
  2153. //#define Z2_CS_PIN -1
  2154. //#define Z3_CS_PIN -1
  2155. //#define E0_CS_PIN -1
  2156. //#define E1_CS_PIN -1
  2157. //#define E2_CS_PIN -1
  2158. //#define E3_CS_PIN -1
  2159. //#define E4_CS_PIN -1
  2160. //#define E5_CS_PIN -1
  2161. //#define E6_CS_PIN -1
  2162. //#define E7_CS_PIN -1
  2163.  
  2164. /**
  2165. * Software option for SPI driven drivers (TMC2130, TMC2160, TMC2660, TMC5130 and TMC5160).
  2166. * The default SW SPI pins are defined the respective pins files,
  2167. * but you can override or define them here.
  2168. */
  2169. //#define TMC_USE_SW_SPI
  2170. //#define TMC_SW_MOSI -1
  2171. //#define TMC_SW_MISO -1
  2172. //#define TMC_SW_SCK -1
  2173.  
  2174. /**
  2175. * Four TMC2209 drivers can use the same HW/SW serial port with hardware configured addresses.
  2176. * Set the address using jumpers on pins MS1 and MS2.
  2177. * Address | MS1 | MS2
  2178. * 0 | LOW | LOW
  2179. * 1 | HIGH | LOW
  2180. * 2 | LOW | HIGH
  2181. * 3 | HIGH | HIGH
  2182. *
  2183. * Set *_SERIAL_TX_PIN and *_SERIAL_RX_PIN to match for all drivers
  2184. * on the same serial port, either here or in your board's pins file.
  2185. */
  2186. #define X_SLAVE_ADDRESS 0
  2187. #define Y_SLAVE_ADDRESS 0
  2188. #define Z_SLAVE_ADDRESS 0
  2189. #define X2_SLAVE_ADDRESS 0
  2190. #define Y2_SLAVE_ADDRESS 0
  2191. #define Z2_SLAVE_ADDRESS 0
  2192. #define Z3_SLAVE_ADDRESS 0
  2193. #define Z4_SLAVE_ADDRESS 0
  2194. #define E0_SLAVE_ADDRESS 0
  2195. #define E1_SLAVE_ADDRESS 0
  2196. #define E2_SLAVE_ADDRESS 0
  2197. #define E3_SLAVE_ADDRESS 0
  2198. #define E4_SLAVE_ADDRESS 0
  2199. #define E5_SLAVE_ADDRESS 0
  2200. #define E6_SLAVE_ADDRESS 0
  2201. #define E7_SLAVE_ADDRESS 0
  2202.  
  2203. /**
  2204. * Software enable
  2205. *
  2206. * Use for drivers that do not use a dedicated enable pin, but rather handle the same
  2207. * function through a communication line such as SPI or UART.
  2208. */
  2209. //#define SOFTWARE_DRIVER_ENABLE
  2210.  
  2211. /**
  2212. * TMC2130, TMC2160, TMC2208, TMC2209, TMC5130 and TMC5160 only
  2213. * Use Trinamic's ultra quiet stepping mode.
  2214. * When disabled, Marlin will use spreadCycle stepping mode.
  2215. */
  2216. #define STEALTHCHOP_XY
  2217. #define STEALTHCHOP_Z
  2218. //#define STEALTHCHOP_E
  2219.  
  2220. /**
  2221. * Optimize spreadCycle chopper parameters by using predefined parameter sets
  2222. * or with the help of an example included in the library.
  2223. * Provided parameter sets are
  2224. * CHOPPER_DEFAULT_12V
  2225. * CHOPPER_DEFAULT_19V
  2226. * CHOPPER_DEFAULT_24V
  2227. * CHOPPER_DEFAULT_36V
  2228. * CHOPPER_PRUSAMK3_24V // Imported parameters from the official Prusa firmware for MK3 (24V)
  2229. * CHOPPER_MARLIN_119 // Old defaults from Marlin v1.1.9
  2230. *
  2231. * Define you own with
  2232. * { <off_time[1..15]>, <hysteresis_end[-3..12]>, hysteresis_start[1..8] }
  2233. */
  2234. #define CHOPPER_TIMING CHOPPER_DEFAULT_24V
  2235.  
  2236. /**
  2237. * Monitor Trinamic drivers for error conditions,
  2238. * like overtemperature and short to ground.
  2239. * In the case of overtemperature Marlin can decrease the driver current until error condition clears.
  2240. * Other detected conditions can be used to stop the current print.
  2241. * Relevant g-codes:
  2242. * M906 - Set or get motor current in milliamps using axis codes X, Y, Z, E. Report values if no axis codes given.
  2243. * M911 - Report stepper driver overtemperature pre-warn condition.
  2244. * M912 - Clear stepper driver overtemperature pre-warn condition flag.
  2245. * M122 - Report driver parameters (Requires TMC_DEBUG)
  2246. */
  2247. #define MONITOR_DRIVER_STATUS
  2248.  
  2249. #if ENABLED(MONITOR_DRIVER_STATUS)
  2250. #define CURRENT_STEP_DOWN 50 // [mA]
  2251. #define REPORT_CURRENT_CHANGE
  2252. #define STOP_ON_ERROR
  2253. #endif
  2254.  
  2255. /**
  2256. * TMC2130, TMC2160, TMC2208, TMC2209, TMC5130 and TMC5160 only
  2257. * The driver will switch to spreadCycle when stepper speed is over HYBRID_THRESHOLD.
  2258. * This mode allows for faster movements at the expense of higher noise levels.
  2259. * STEALTHCHOP_(XY|Z|E) must be enabled to use HYBRID_THRESHOLD.
  2260. * M913 X/Y/Z/E to live tune the setting
  2261. */
  2262. //#define HYBRID_THRESHOLD
  2263.  
  2264. #define X_HYBRID_THRESHOLD 100 // [mm/s]
  2265. #define X2_HYBRID_THRESHOLD 100
  2266. #define Y_HYBRID_THRESHOLD 100
  2267. #define Y2_HYBRID_THRESHOLD 100
  2268. #define Z_HYBRID_THRESHOLD 3
  2269. #define Z2_HYBRID_THRESHOLD 3
  2270. #define Z3_HYBRID_THRESHOLD 3
  2271. #define Z4_HYBRID_THRESHOLD 3
  2272. #define E0_HYBRID_THRESHOLD 30
  2273. #define E1_HYBRID_THRESHOLD 30
  2274. #define E2_HYBRID_THRESHOLD 30
  2275. #define E3_HYBRID_THRESHOLD 30
  2276. #define E4_HYBRID_THRESHOLD 30
  2277. #define E5_HYBRID_THRESHOLD 30
  2278. #define E6_HYBRID_THRESHOLD 30
  2279. #define E7_HYBRID_THRESHOLD 30
  2280.  
  2281. /**
  2282. * Use StallGuard2 to home / probe X, Y, Z.
  2283. *
  2284. * TMC2130, TMC2160, TMC2209, TMC2660, TMC5130, and TMC5160 only
  2285. * Connect the stepper driver's DIAG1 pin to the X/Y endstop pin.
  2286. * X, Y, and Z homing will always be done in spreadCycle mode.
  2287. *
  2288. * X/Y/Z_STALL_SENSITIVITY is the default stall threshold.
  2289. * Use M914 X Y Z to set the stall threshold at runtime:
  2290. *
  2291. * Sensitivity TMC2209 Others
  2292. * HIGHEST 255 -64 (Too sensitive => False positive)
  2293. * LOWEST 0 63 (Too insensitive => No trigger)
  2294. *
  2295. * It is recommended to set [XYZ]_HOME_BUMP_MM to 0.
  2296. *
  2297. * SPI_ENDSTOPS *** Beta feature! *** TMC2130 Only ***
  2298. * Poll the driver through SPI to determine load when homing.
  2299. * Removes the need for a wire from DIAG1 to an endstop pin.
  2300. *
  2301. * IMPROVE_HOMING_RELIABILITY tunes acceleration and jerk when
  2302. * homing and adds a guard period for endstop triggering.
  2303. */
  2304. //#define SENSORLESS_HOMING // StallGuard capable drivers only
  2305.  
  2306. /**
  2307. * Use StallGuard2 to probe the bed with the nozzle.
  2308. *
  2309. * CAUTION: This could cause damage to machines that use a lead screw or threaded rod
  2310. * to move the Z axis. Take extreme care when attempting to enable this feature.
  2311. */
  2312. //#define SENSORLESS_PROBING // StallGuard capable drivers only
  2313.  
  2314. #if EITHER(SENSORLESS_HOMING, SENSORLESS_PROBING)
  2315. // TMC2209: 0...255. TMC2130: -64...63
  2316. #define X_STALL_SENSITIVITY 8
  2317. #define X2_STALL_SENSITIVITY X_STALL_SENSITIVITY
  2318. #define Y_STALL_SENSITIVITY 8
  2319. //#define Z_STALL_SENSITIVITY 8
  2320. //#define SPI_ENDSTOPS // TMC2130 only
  2321. //#define IMPROVE_HOMING_RELIABILITY
  2322. #endif
  2323.  
  2324. /**
  2325. * Beta feature!
  2326. * Create a 50/50 square wave step pulse optimal for stepper drivers.
  2327. */
  2328. #define SQUARE_WAVE_STEPPING
  2329.  
  2330. /**
  2331. * Enable M122 debugging command for TMC stepper drivers.
  2332. * M122 S0/1 will enable continous reporting.
  2333. */
  2334. #define TMC_DEBUG
  2335.  
  2336. /**
  2337. * You can set your own advanced settings by filling in predefined functions.
  2338. * A list of available functions can be found on the library github page
  2339. * https://github.com/teemuatlut/TMCStepper
  2340. *
  2341. * Example:
  2342. * #define TMC_ADV() { \
  2343. * stepperX.diag0_otpw(1); \
  2344. * stepperY.intpol(0); \
  2345. * }
  2346. */
  2347. #define TMC_ADV() { }
  2348.  
  2349. #endif // HAS_TRINAMIC
  2350.  
  2351. // @section L64XX
  2352.  
  2353. /**
  2354. * L64XX Stepper Driver options
  2355. *
  2356. * Arduino-L6470 library (0.8.0 or higher) is required.
  2357. * https://github.com/ameyer/Arduino-L6470
  2358. *
  2359. * Requires the following to be defined in your pins_YOUR_BOARD file
  2360. * L6470_CHAIN_SCK_PIN
  2361. * L6470_CHAIN_MISO_PIN
  2362. * L6470_CHAIN_MOSI_PIN
  2363. * L6470_CHAIN_SS_PIN
  2364. * ENABLE_RESET_L64XX_CHIPS(Q) where Q is 1 to enable and 0 to reset
  2365. */
  2366.  
  2367. #if HAS_L64XX
  2368.  
  2369. //#define L6470_CHITCHAT // Display additional status info
  2370.  
  2371. #if AXIS_IS_L64XX(X)
  2372. #define X_MICROSTEPS 128 // Number of microsteps (VALID: 1, 2, 4, 8, 16, 32, 128) - L6474 max is 16
  2373. #define X_OVERCURRENT 2000 // (mA) Current where the driver detects an over current
  2374. // L6470 & L6474 - VALID: 375 x (1 - 16) - 6A max - rounds down
  2375. // POWERSTEP01: VALID: 1000 x (1 - 32) - 32A max - rounds down
  2376. #define X_STALLCURRENT 1500 // (mA) Current where the driver detects a stall (VALID: 31.25 * (1-128) - 4A max - rounds down)
  2377. // L6470 & L6474 - VALID: 31.25 * (1-128) - 4A max - rounds down
  2378. // POWERSTEP01: VALID: 200 x (1 - 32) - 6.4A max - rounds down
  2379. // L6474 - STALLCURRENT setting is used to set the nominal (TVAL) current
  2380. #define X_MAX_VOLTAGE 127 // 0-255, Maximum effective voltage seen by stepper - not used by L6474
  2381. #define X_CHAIN_POS -1 // Position in SPI chain, 0=Not in chain, 1=Nearest MOSI
  2382. #define X_SLEW_RATE 1 // 0-3, Slew 0 is slowest, 3 is fastest
  2383. #endif
  2384.  
  2385. #if AXIS_IS_L64XX(X2)
  2386. #define X2_MICROSTEPS 128
  2387. #define X2_OVERCURRENT 2000
  2388. #define X2_STALLCURRENT 1500
  2389. #define X2_MAX_VOLTAGE 127
  2390. #define X2_CHAIN_POS -1
  2391. #define X2_SLEW_RATE 1
  2392. #endif
  2393.  
  2394. #if AXIS_IS_L64XX(Y)
  2395. #define Y_MICROSTEPS 128
  2396. #define Y_OVERCURRENT 2000
  2397. #define Y_STALLCURRENT 1500
  2398. #define Y_MAX_VOLTAGE 127
  2399. #define Y_CHAIN_POS -1
  2400. #define Y_SLEW_RATE 1
  2401. #endif
  2402.  
  2403. #if AXIS_IS_L64XX(Y2)
  2404. #define Y2_MICROSTEPS 128
  2405. #define Y2_OVERCURRENT 2000
  2406. #define Y2_STALLCURRENT 1500
  2407. #define Y2_MAX_VOLTAGE 127
  2408. #define Y2_CHAIN_POS -1
  2409. #define Y2_SLEW_RATE 1
  2410. #endif
  2411.  
  2412. #if AXIS_IS_L64XX(Z)
  2413. #define Z_MICROSTEPS 128
  2414. #define Z_OVERCURRENT 2000
  2415. #define Z_STALLCURRENT 1500
  2416. #define Z_MAX_VOLTAGE 127
  2417. #define Z_CHAIN_POS -1
  2418. #define Z_SLEW_RATE 1
  2419. #endif
  2420.  
  2421. #if AXIS_IS_L64XX(Z2)
  2422. #define Z2_MICROSTEPS 128
  2423. #define Z2_OVERCURRENT 2000
  2424. #define Z2_STALLCURRENT 1500
  2425. #define Z2_MAX_VOLTAGE 127
  2426. #define Z2_CHAIN_POS -1
  2427. #define Z2_SLEW_RATE 1
  2428. #endif
  2429.  
  2430. #if AXIS_IS_L64XX(Z3)
  2431. #define Z3_MICROSTEPS 128
  2432. #define Z3_OVERCURRENT 2000
  2433. #define Z3_STALLCURRENT 1500
  2434. #define Z3_MAX_VOLTAGE 127
  2435. #define Z3_CHAIN_POS -1
  2436. #define Z3_SLEW_RATE 1
  2437. #endif
  2438.  
  2439. #if AXIS_IS_L64XX(Z4)
  2440. #define Z4_MICROSTEPS 128
  2441. #define Z4_OVERCURRENT 2000
  2442. #define Z4_STALLCURRENT 1500
  2443. #define Z4_MAX_VOLTAGE 127
  2444. #define Z4_CHAIN_POS -1
  2445. #define Z4_SLEW_RATE 1
  2446. #endif
  2447.  
  2448. #if AXIS_IS_L64XX(E0)
  2449. #define E0_MICROSTEPS 128
  2450. #define E0_OVERCURRENT 2000
  2451. #define E0_STALLCURRENT 1500
  2452. #define E0_MAX_VOLTAGE 127
  2453. #define E0_CHAIN_POS -1
  2454. #define E0_SLEW_RATE 1
  2455. #endif
  2456.  
  2457. #if AXIS_IS_L64XX(E1)
  2458. #define E1_MICROSTEPS 128
  2459. #define E1_OVERCURRENT 2000
  2460. #define E1_STALLCURRENT 1500
  2461. #define E1_MAX_VOLTAGE 127
  2462. #define E1_CHAIN_POS -1
  2463. #define E1_SLEW_RATE 1
  2464. #endif
  2465.  
  2466. #if AXIS_IS_L64XX(E2)
  2467. #define E2_MICROSTEPS 128
  2468. #define E2_OVERCURRENT 2000
  2469. #define E2_STALLCURRENT 1500
  2470. #define E2_MAX_VOLTAGE 127
  2471. #define E2_CHAIN_POS -1
  2472. #define E2_SLEW_RATE 1
  2473. #endif
  2474.  
  2475. #if AXIS_IS_L64XX(E3)
  2476. #define E3_MICROSTEPS 128
  2477. #define E3_OVERCURRENT 2000
  2478. #define E3_STALLCURRENT 1500
  2479. #define E3_MAX_VOLTAGE 127
  2480. #define E3_CHAIN_POS -1
  2481. #define E3_SLEW_RATE 1
  2482. #endif
  2483.  
  2484. #if AXIS_IS_L64XX(E4)
  2485. #define E4_MICROSTEPS 128
  2486. #define E4_OVERCURRENT 2000
  2487. #define E4_STALLCURRENT 1500
  2488. #define E4_MAX_VOLTAGE 127
  2489. #define E4_CHAIN_POS -1
  2490. #define E4_SLEW_RATE 1
  2491. #endif
  2492.  
  2493. #if AXIS_IS_L64XX(E5)
  2494. #define E5_MICROSTEPS 128
  2495. #define E5_OVERCURRENT 2000
  2496. #define E5_STALLCURRENT 1500
  2497. #define E5_MAX_VOLTAGE 127
  2498. #define E5_CHAIN_POS -1
  2499. #define E5_SLEW_RATE 1
  2500. #endif
  2501.  
  2502. #if AXIS_IS_L64XX(E6)
  2503. #define E6_MICROSTEPS 128
  2504. #define E6_OVERCURRENT 2000
  2505. #define E6_STALLCURRENT 1500
  2506. #define E6_MAX_VOLTAGE 127
  2507. #define E6_CHAIN_POS -1
  2508. #define E6_SLEW_RATE 1
  2509. #endif
  2510.  
  2511. #if AXIS_IS_L64XX(E7)
  2512. #define E7_MICROSTEPS 128
  2513. #define E7_OVERCURRENT 2000
  2514. #define E7_STALLCURRENT 1500
  2515. #define E7_MAX_VOLTAGE 127
  2516. #define E7_CHAIN_POS -1
  2517. #define E7_SLEW_RATE 1
  2518. #endif
  2519.  
  2520. /**
  2521. * Monitor L6470 drivers for error conditions like over temperature and over current.
  2522. * In the case of over temperature Marlin can decrease the drive until the error condition clears.
  2523. * Other detected conditions can be used to stop the current print.
  2524. * Relevant g-codes:
  2525. * M906 - I1/2/3/4/5 Set or get motor drive level using axis codes X, Y, Z, E. Report values if no axis codes given.
  2526. * I not present or I0 or I1 - X, Y, Z or E0
  2527. * I2 - X2, Y2, Z2 or E1
  2528. * I3 - Z3 or E3
  2529. * I4 - Z4 or E4
  2530. * I5 - E5
  2531. * M916 - Increase drive level until get thermal warning
  2532. * M917 - Find minimum current thresholds
  2533. * M918 - Increase speed until max or error
  2534. * M122 S0/1 - Report driver parameters
  2535. */
  2536. //#define MONITOR_L6470_DRIVER_STATUS
  2537.  
  2538. #if ENABLED(MONITOR_L6470_DRIVER_STATUS)
  2539. #define KVAL_HOLD_STEP_DOWN 1
  2540. //#define L6470_STOP_ON_ERROR
  2541. #endif
  2542.  
  2543. #endif // HAS_L64XX
  2544.  
  2545. // @section i2cbus
  2546.  
  2547. //
  2548. // I2C Master ID for LPC176x LCD and Digital Current control
  2549. // Does not apply to other peripherals based on the Wire library.
  2550. //
  2551. //#define I2C_MASTER_ID 1 // Set a value from 0 to 2
  2552.  
  2553. /**
  2554. * TWI/I2C BUS
  2555. *
  2556. * This feature is an EXPERIMENTAL feature so it shall not be used on production
  2557. * machines. Enabling this will allow you to send and receive I2C data from slave
  2558. * devices on the bus.
  2559. *
  2560. * ; Example #1
  2561. * ; This macro send the string "Marlin" to the slave device with address 0x63 (99)
  2562. * ; It uses multiple M260 commands with one B<base 10> arg
  2563. * M260 A99 ; Target slave address
  2564. * M260 B77 ; M
  2565. * M260 B97 ; a
  2566. * M260 B114 ; r
  2567. * M260 B108 ; l
  2568. * M260 B105 ; i
  2569. * M260 B110 ; n
  2570. * M260 S1 ; Send the current buffer
  2571. *
  2572. * ; Example #2
  2573. * ; Request 6 bytes from slave device with address 0x63 (99)
  2574. * M261 A99 B5
  2575. *
  2576. * ; Example #3
  2577. * ; Example serial output of a M261 request
  2578. * echo:i2c-reply: from:99 bytes:5 data:hello
  2579. */
  2580.  
  2581. //#define EXPERIMENTAL_I2CBUS
  2582. #if ENABLED(EXPERIMENTAL_I2CBUS)
  2583. #define I2C_SLAVE_ADDRESS 0 // Set a value from 8 to 127 to act as a slave
  2584. #endif
  2585.  
  2586. // @section extras
  2587.  
  2588. /**
  2589. * Photo G-code
  2590. * Add the M240 G-code to take a photo.
  2591. * The photo can be triggered by a digital pin or a physical movement.
  2592. */
  2593. //#define PHOTO_GCODE
  2594. #if ENABLED(PHOTO_GCODE)
  2595. // A position to move to (and raise Z) before taking the photo
  2596. //#define PHOTO_POSITION { X_MAX_POS - 5, Y_MAX_POS, 0 } // { xpos, ypos, zraise } (M240 X Y Z)
  2597. //#define PHOTO_DELAY_MS 100 // (ms) Duration to pause before moving back (M240 P)
  2598. //#define PHOTO_RETRACT_MM 6.5 // (mm) E retract/recover for the photo move (M240 R S)
  2599.  
  2600. // Canon RC-1 or homebrew digital camera trigger
  2601. // Data from: http://www.doc-diy.net/photo/rc-1_hacked/
  2602. //#define PHOTOGRAPH_PIN 23
  2603.  
  2604. // Canon Hack Development Kit
  2605. // http://captain-slow.dk/2014/03/09/3d-printing-timelapses/
  2606. //#define CHDK_PIN 4
  2607.  
  2608. // Optional second move with delay to trigger the camera shutter
  2609. //#define PHOTO_SWITCH_POSITION { X_MAX_POS, Y_MAX_POS } // { xpos, ypos } (M240 I J)
  2610.  
  2611. // Duration to hold the switch or keep CHDK_PIN high
  2612. //#define PHOTO_SWITCH_MS 50 // (ms) (M240 D)
  2613.  
  2614. /**
  2615. * PHOTO_PULSES_US may need adjustment depending on board and camera model.
  2616. * Pin must be running at 48.4kHz.
  2617. * Be sure to use a PHOTOGRAPH_PIN which can rise and fall quick enough.
  2618. * (e.g., MKS SBase temp sensor pin was too slow, so used P1.23 on J8.)
  2619. *
  2620. * Example pulse data for Nikon: https://bit.ly/2FKD0Aq
  2621. * IR Wiring: https://git.io/JvJf7
  2622. */
  2623. //#define PHOTO_PULSES_US { 2000, 27850, 400, 1580, 400, 3580, 400 } // (µs) Durations for each 48.4kHz oscillation
  2624. #ifdef PHOTO_PULSES_US
  2625. #define PHOTO_PULSE_DELAY_US 13 // (µs) Approximate duration of each HIGH and LOW pulse in the oscillation
  2626. #endif
  2627. #endif
  2628.  
  2629. /**
  2630. * Spindle & Laser control
  2631. *
  2632. * Add the M3, M4, and M5 commands to turn the spindle/laser on and off, and
  2633. * to set spindle speed, spindle direction, and laser power.
  2634. *
  2635. * SuperPid is a router/spindle speed controller used in the CNC milling community.
  2636. * Marlin can be used to turn the spindle on and off. It can also be used to set
  2637. * the spindle speed from 5,000 to 30,000 RPM.
  2638. *
  2639. * You'll need to select a pin for the ON/OFF function and optionally choose a 0-5V
  2640. * hardware PWM pin for the speed control and a pin for the rotation direction.
  2641. *
  2642. * See http://marlinfw.org/docs/configuration/laser_spindle.html for more config details.
  2643. */
  2644. //#define SPINDLE_FEATURE
  2645. //#define LASER_FEATURE
  2646. #if EITHER(SPINDLE_FEATURE, LASER_FEATURE)
  2647. #define SPINDLE_LASER_ACTIVE_HIGH false // Set to "true" if the on/off function is active HIGH
  2648. #define SPINDLE_LASER_PWM true // Set to "true" if your controller supports setting the speed/power
  2649. #define SPINDLE_LASER_PWM_INVERT true // Set to "true" if the speed/power goes up when you want it to go slower
  2650. #define SPINDLE_LASER_POWERUP_DELAY 5000 // (ms) Delay to allow the spindle/laser to come up to speed/power
  2651. #define SPINDLE_LASER_POWERDOWN_DELAY 5000 // (ms) Delay to allow the spindle to stop
  2652.  
  2653. #if ENABLED(SPINDLE_FEATURE)
  2654. //#define SPINDLE_CHANGE_DIR // Enable if your spindle controller can change spindle direction
  2655. #define SPINDLE_CHANGE_DIR_STOP // Enable if the spindle should stop before changing spin direction
  2656. #define SPINDLE_INVERT_DIR false // Set to "true" if the spin direction is reversed
  2657.  
  2658. /**
  2659. * The M3 & M4 commands use the following equation to convert PWM duty cycle to speed/power
  2660. *
  2661. * SPEED/POWER = PWM duty cycle * SPEED_POWER_SLOPE + SPEED_POWER_INTERCEPT
  2662. * where PWM duty cycle varies from 0 to 255
  2663. *
  2664. * set the following for your controller (ALL MUST BE SET)
  2665. */
  2666. #define SPEED_POWER_SLOPE 118.4
  2667. #define SPEED_POWER_INTERCEPT 0
  2668. #define SPEED_POWER_MIN 5000
  2669. #define SPEED_POWER_MAX 30000 // SuperPID router controller 0 - 30,000 RPM
  2670. #else
  2671. #define SPEED_POWER_SLOPE 0.3922
  2672. #define SPEED_POWER_INTERCEPT 0
  2673. #define SPEED_POWER_MIN 10
  2674. #define SPEED_POWER_MAX 100 // 0-100%
  2675. #endif
  2676. #endif
  2677.  
  2678. /**
  2679. * Coolant Control
  2680. *
  2681. * Add the M7, M8, and M9 commands to turn mist or flood coolant on and off.
  2682. *
  2683. * Note: COOLANT_MIST_PIN and/or COOLANT_FLOOD_PIN must also be defined.
  2684. */
  2685. //#define COOLANT_CONTROL
  2686. #if ENABLED(COOLANT_CONTROL)
  2687. #define COOLANT_MIST // Enable if mist coolant is present
  2688. #define COOLANT_FLOOD // Enable if flood coolant is present
  2689. #define COOLANT_MIST_INVERT false // Set "true" if the on/off function is reversed
  2690. #define COOLANT_FLOOD_INVERT false // Set "true" if the on/off function is reversed
  2691. #endif
  2692.  
  2693. /**
  2694. * Filament Width Sensor
  2695. *
  2696. * Measures the filament width in real-time and adjusts
  2697. * flow rate to compensate for any irregularities.
  2698. *
  2699. * Also allows the measured filament diameter to set the
  2700. * extrusion rate, so the slicer only has to specify the
  2701. * volume.
  2702. *
  2703. * Only a single extruder is supported at this time.
  2704. *
  2705. * 34 RAMPS_14 : Analog input 5 on the AUX2 connector
  2706. * 81 PRINTRBOARD : Analog input 2 on the Exp1 connector (version B,C,D,E)
  2707. * 301 RAMBO : Analog input 3
  2708. *
  2709. * Note: May require analog pins to be defined for other boards.
  2710. */
  2711. //#define FILAMENT_WIDTH_SENSOR
  2712.  
  2713. #if ENABLED(FILAMENT_WIDTH_SENSOR)
  2714. #define FILAMENT_SENSOR_EXTRUDER_NUM 0 // Index of the extruder that has the filament sensor. :[0,1,2,3,4]
  2715. #define MEASUREMENT_DELAY_CM 14 // (cm) The distance from the filament sensor to the melting chamber
  2716.  
  2717. #define FILWIDTH_ERROR_MARGIN 1.0 // (mm) If a measurement differs too much from nominal width ignore it
  2718. #define MAX_MEASUREMENT_DELAY 20 // (bytes) Buffer size for stored measurements (1 byte per cm). Must be larger than MEASUREMENT_DELAY_CM.
  2719.  
  2720. #define DEFAULT_MEASURED_FILAMENT_DIA DEFAULT_NOMINAL_FILAMENT_DIA // Set measured to nominal initially
  2721.  
  2722. // Display filament width on the LCD status line. Status messages will expire after 5 seconds.
  2723. //#define FILAMENT_LCD_DISPLAY
  2724. #endif
  2725.  
  2726. /**
  2727. * CNC Coordinate Systems
  2728. *
  2729. * Enables G53 and G54-G59.3 commands to select coordinate systems
  2730. * and G92.1 to reset the workspace to native machine space.
  2731. */
  2732. //#define CNC_COORDINATE_SYSTEMS
  2733.  
  2734. /**
  2735. * Auto-report temperatures with M155 S<seconds>
  2736. */
  2737. #define AUTO_REPORT_TEMPERATURES
  2738.  
  2739. /**
  2740. * Include capabilities in M115 output
  2741. */
  2742. #define EXTENDED_CAPABILITIES_REPORT
  2743.  
  2744. /**
  2745. * Expected Printer Check
  2746. * Add the M16 G-code to compare a string to the MACHINE_NAME.
  2747. * M16 with a non-matching string causes the printer to halt.
  2748. */
  2749. //#define EXPECTED_PRINTER_CHECK
  2750.  
  2751. /**
  2752. * Disable all Volumetric extrusion options
  2753. */
  2754. //#define NO_VOLUMETRICS
  2755.  
  2756. #if DISABLED(NO_VOLUMETRICS)
  2757. /**
  2758. * Volumetric extrusion default state
  2759. * Activate to make volumetric extrusion the default method,
  2760. * with DEFAULT_NOMINAL_FILAMENT_DIA as the default diameter.
  2761. *
  2762. * M200 D0 to disable, M200 Dn to set a new diameter.
  2763. */
  2764. //#define VOLUMETRIC_DEFAULT_ON
  2765. #endif
  2766.  
  2767. /**
  2768. * Enable this option for a leaner build of Marlin that removes all
  2769. * workspace offsets, simplifying coordinate transformations, leveling, etc.
  2770. *
  2771. * - M206 and M428 are disabled.
  2772. * - G92 will revert to its behavior from Marlin 1.0.
  2773. */
  2774. //#define NO_WORKSPACE_OFFSETS
  2775.  
  2776. /**
  2777. * Set the number of proportional font spaces required to fill up a typical character space.
  2778. * This can help to better align the output of commands like `G29 O` Mesh Output.
  2779. *
  2780. * For clients that use a fixed-width font (like OctoPrint), leave this set to 1.0.
  2781. * Otherwise, adjust according to your client and font.
  2782. */
  2783. #define PROPORTIONAL_FONT_RATIO 1.0
  2784.  
  2785. /**
  2786. * Spend 28 bytes of SRAM to optimize the GCode parser
  2787. */
  2788. #define FASTER_GCODE_PARSER
  2789.  
  2790. #if ENABLED(FASTER_GCODE_PARSER)
  2791. //#define GCODE_QUOTED_STRINGS // Support for quoted string parameters
  2792. #endif
  2793.  
  2794. /**
  2795. * CNC G-code options
  2796. * Support CNC-style G-code dialects used by laser cutters, drawing machine cams, etc.
  2797. * Note that G0 feedrates should be used with care for 3D printing (if used at all).
  2798. * High feedrates may cause ringing and harm print quality.
  2799. */
  2800. //#define PAREN_COMMENTS // Support for parentheses-delimited comments
  2801. //#define GCODE_MOTION_MODES // Remember the motion mode (G0 G1 G2 G3 G5 G38.X) and apply for X Y Z E F, etc.
  2802.  
  2803. // Enable and set a (default) feedrate for all G0 moves
  2804. //#define G0_FEEDRATE 3000 // (mm/m)
  2805. #ifdef G0_FEEDRATE
  2806. //#define VARIABLE_G0_FEEDRATE // The G0 feedrate is set by F in G0 motion mode
  2807. #endif
  2808.  
  2809. /**
  2810. * Startup commands
  2811. *
  2812. * Execute certain G-code commands immediately after power-on.
  2813. */
  2814. //#define STARTUP_COMMANDS "M17 Z"
  2815.  
  2816. /**
  2817. * G-code Macros
  2818. *
  2819. * Add G-codes M810-M819 to define and run G-code macros.
  2820. * Macros are not saved to EEPROM.
  2821. */
  2822. //#define GCODE_MACROS
  2823. #if ENABLED(GCODE_MACROS)
  2824. #define GCODE_MACROS_SLOTS 5 // Up to 10 may be used
  2825. #define GCODE_MACROS_SLOT_SIZE 50 // Maximum length of a single macro
  2826. #endif
  2827.  
  2828. /**
  2829. * User-defined menu items that execute custom GCode
  2830. */
  2831. //#define CUSTOM_USER_MENUS
  2832. #if ENABLED(CUSTOM_USER_MENUS)
  2833. //#define CUSTOM_USER_MENU_TITLE "Custom Commands"
  2834. #define USER_SCRIPT_DONE "M117 User Script Done"
  2835. #define USER_SCRIPT_AUDIBLE_FEEDBACK
  2836. //#define USER_SCRIPT_RETURN // Return to status screen after a script
  2837.  
  2838. #define USER_DESC_1 "Home & UBL Info"
  2839. #define USER_GCODE_1 "G28\nG29 W"
  2840.  
  2841. #define USER_DESC_2 "Preheat for " PREHEAT_1_LABEL
  2842. #define USER_GCODE_2 "M140 S" STRINGIFY(PREHEAT_1_TEMP_BED) "\nM104 S" STRINGIFY(PREHEAT_1_TEMP_HOTEND)
  2843.  
  2844. #define USER_DESC_3 "Preheat for " PREHEAT_2_LABEL
  2845. #define USER_GCODE_3 "M140 S" STRINGIFY(PREHEAT_2_TEMP_BED) "\nM104 S" STRINGIFY(PREHEAT_2_TEMP_HOTEND)
  2846.  
  2847. #define USER_DESC_4 "Heat Bed/Home/Level"
  2848. #define USER_GCODE_4 "M140 S" STRINGIFY(PREHEAT_2_TEMP_BED) "\nG28\nG29"
  2849.  
  2850. #define USER_DESC_5 "Home & Info"
  2851. #define USER_GCODE_5 "G28\nM503"
  2852. #endif
  2853.  
  2854. /**
  2855. * Host Action Commands
  2856. *
  2857. * Define host streamer action commands in compliance with the standard.
  2858. *
  2859. * See https://reprap.org/wiki/G-code#Action_commands
  2860. * Common commands ........ poweroff, pause, paused, resume, resumed, cancel
  2861. * G29_RETRY_AND_RECOVER .. probe_rewipe, probe_failed
  2862. *
  2863. * Some features add reason codes to extend these commands.
  2864. *
  2865. * Host Prompt Support enables Marlin to use the host for user prompts so
  2866. * filament runout and other processes can be managed from the host side.
  2867. */
  2868. //#define HOST_ACTION_COMMANDS
  2869. #if ENABLED(HOST_ACTION_COMMANDS)
  2870. //#define HOST_PROMPT_SUPPORT
  2871. #endif
  2872.  
  2873. /**
  2874. * Cancel Objects
  2875. *
  2876. * Implement M486 to allow Marlin to skip objects
  2877. */
  2878. //#define CANCEL_OBJECTS
  2879.  
  2880. /**
  2881. * I2C position encoders for closed loop control.
  2882. * Developed by Chris Barr at Aus3D.
  2883. *
  2884. * Wiki: http://wiki.aus3d.com.au/Magnetic_Encoder
  2885. * Github: https://github.com/Aus3D/MagneticEncoder
  2886. *
  2887. * Supplier: http://aus3d.com.au/magnetic-encoder-module
  2888. * Alternative Supplier: http://reliabuild3d.com/
  2889. *
  2890. * Reliabuild encoders have been modified to improve reliability.
  2891. */
  2892.  
  2893. //#define I2C_POSITION_ENCODERS
  2894. #if ENABLED(I2C_POSITION_ENCODERS)
  2895.  
  2896. #define I2CPE_ENCODER_CNT 1 // The number of encoders installed; max of 5
  2897. // encoders supported currently.
  2898.  
  2899. #define I2CPE_ENC_1_ADDR I2CPE_PRESET_ADDR_X // I2C address of the encoder. 30-200.
  2900. #define I2CPE_ENC_1_AXIS X_AXIS // Axis the encoder module is installed on. <X|Y|Z|E>_AXIS.
  2901. #define I2CPE_ENC_1_TYPE I2CPE_ENC_TYPE_LINEAR // Type of encoder: I2CPE_ENC_TYPE_LINEAR -or-
  2902. // I2CPE_ENC_TYPE_ROTARY.
  2903. #define I2CPE_ENC_1_TICKS_UNIT 2048 // 1024 for magnetic strips with 2mm poles; 2048 for
  2904. // 1mm poles. For linear encoders this is ticks / mm,
  2905. // for rotary encoders this is ticks / revolution.
  2906. //#define I2CPE_ENC_1_TICKS_REV (16 * 200) // Only needed for rotary encoders; number of stepper
  2907. // steps per full revolution (motor steps/rev * microstepping)
  2908. //#define I2CPE_ENC_1_INVERT // Invert the direction of axis travel.
  2909. #define I2CPE_ENC_1_EC_METHOD I2CPE_ECM_MICROSTEP // Type of error error correction.
  2910. #define I2CPE_ENC_1_EC_THRESH 0.10 // Threshold size for error (in mm) above which the
  2911. // printer will attempt to correct the error; errors
  2912. // smaller than this are ignored to minimize effects of
  2913. // measurement noise / latency (filter).
  2914.  
  2915. #define I2CPE_ENC_2_ADDR I2CPE_PRESET_ADDR_Y // Same as above, but for encoder 2.
  2916. #define I2CPE_ENC_2_AXIS Y_AXIS
  2917. #define I2CPE_ENC_2_TYPE I2CPE_ENC_TYPE_LINEAR
  2918. #define I2CPE_ENC_2_TICKS_UNIT 2048
  2919. //#define I2CPE_ENC_2_TICKS_REV (16 * 200)
  2920. //#define I2CPE_ENC_2_INVERT
  2921. #define I2CPE_ENC_2_EC_METHOD I2CPE_ECM_MICROSTEP
  2922. #define I2CPE_ENC_2_EC_THRESH 0.10
  2923.  
  2924. #define I2CPE_ENC_3_ADDR I2CPE_PRESET_ADDR_Z // Encoder 3. Add additional configuration options
  2925. #define I2CPE_ENC_3_AXIS Z_AXIS // as above, or use defaults below.
  2926.  
  2927. #define I2CPE_ENC_4_ADDR I2CPE_PRESET_ADDR_E // Encoder 4.
  2928. #define I2CPE_ENC_4_AXIS E_AXIS
  2929.  
  2930. #define I2CPE_ENC_5_ADDR 34 // Encoder 5.
  2931. #define I2CPE_ENC_5_AXIS E_AXIS
  2932.  
  2933. // Default settings for encoders which are enabled, but without settings configured above.
  2934. #define I2CPE_DEF_TYPE I2CPE_ENC_TYPE_LINEAR
  2935. #define I2CPE_DEF_ENC_TICKS_UNIT 2048
  2936. #define I2CPE_DEF_TICKS_REV (16 * 200)
  2937. #define I2CPE_DEF_EC_METHOD I2CPE_ECM_NONE
  2938. #define I2CPE_DEF_EC_THRESH 0.1
  2939.  
  2940. //#define I2CPE_ERR_THRESH_ABORT 100.0 // Threshold size for error (in mm) error on any given
  2941. // axis after which the printer will abort. Comment out to
  2942. // disable abort behavior.
  2943.  
  2944. #define I2CPE_TIME_TRUSTED 10000 // After an encoder fault, there must be no further fault
  2945. // for this amount of time (in ms) before the encoder
  2946. // is trusted again.
  2947.  
  2948. /**
  2949. * Position is checked every time a new command is executed from the buffer but during long moves,
  2950. * this setting determines the minimum update time between checks. A value of 100 works well with
  2951. * error rolling average when attempting to correct only for skips and not for vibration.
  2952. */
  2953. #define I2CPE_MIN_UPD_TIME_MS 4 // (ms) Minimum time between encoder checks.
  2954.  
  2955. // Use a rolling average to identify persistant errors that indicate skips, as opposed to vibration and noise.
  2956. #define I2CPE_ERR_ROLLING_AVERAGE
  2957.  
  2958. #endif // I2C_POSITION_ENCODERS
  2959.  
  2960. /**
  2961. * Analog Joystick(s)
  2962. */
  2963. //#define JOYSTICK
  2964. #if ENABLED(JOYSTICK)
  2965. #define JOY_X_PIN 5 // RAMPS: Suggested pin A5 on AUX2
  2966. #define JOY_Y_PIN 10 // RAMPS: Suggested pin A10 on AUX2
  2967. #define JOY_Z_PIN 12 // RAMPS: Suggested pin A12 on AUX2
  2968. #define JOY_EN_PIN 44 // RAMPS: Suggested pin D44 on AUX2
  2969.  
  2970. //#define INVERT_JOY_X // Enable if X direction is reversed
  2971. //#define INVERT_JOY_Y // Enable if Y direction is reversed
  2972. //#define INVERT_JOY_Z // Enable if Z direction is reversed
  2973.  
  2974. // Use M119 with JOYSTICK_DEBUG to find reasonable values after connecting:
  2975. #define JOY_X_LIMITS { 5600, 8190-100, 8190+100, 10800 } // min, deadzone start, deadzone end, max
  2976. #define JOY_Y_LIMITS { 5600, 8250-100, 8250+100, 11000 }
  2977. #define JOY_Z_LIMITS { 4800, 8080-100, 8080+100, 11550 }
  2978. #endif
  2979.  
  2980. /**
  2981. * MAX7219 Debug Matrix
  2982. *
  2983. * Add support for a low-cost 8x8 LED Matrix based on the Max7219 chip as a realtime status display.
  2984. * Requires 3 signal wires. Some useful debug options are included to demonstrate its usage.
  2985. */
  2986. //#define MAX7219_DEBUG
  2987. #if ENABLED(MAX7219_DEBUG)
  2988. #define MAX7219_CLK_PIN 64
  2989. #define MAX7219_DIN_PIN 57
  2990. #define MAX7219_LOAD_PIN 44
  2991.  
  2992. //#define MAX7219_GCODE // Add the M7219 G-code to control the LED matrix
  2993. #define MAX7219_INIT_TEST 2 // Do a test pattern at initialization (Set to 2 for spiral)
  2994. #define MAX7219_NUMBER_UNITS 1 // Number of Max7219 units in chain.
  2995. #define MAX7219_ROTATE 0 // Rotate the display clockwise (in multiples of +/- 90°)
  2996. // connector at: right=0 bottom=-90 top=90 left=180
  2997. //#define MAX7219_REVERSE_ORDER // The individual LED matrix units may be in reversed order
  2998. //#define MAX7219_SIDE_BY_SIDE // Big chip+matrix boards can be chained side-by-side
  2999.  
  3000. /**
  3001. * Sample debug features
  3002. * If you add more debug displays, be careful to avoid conflicts!
  3003. */
  3004. #define MAX7219_DEBUG_PRINTER_ALIVE // Blink corner LED of 8x8 matrix to show that the firmware is functioning
  3005. #define MAX7219_DEBUG_PLANNER_HEAD 3 // Show the planner queue head position on this and the next LED matrix row
  3006. #define MAX7219_DEBUG_PLANNER_TAIL 5 // Show the planner queue tail position on this and the next LED matrix row
  3007.  
  3008. #define MAX7219_DEBUG_PLANNER_QUEUE 0 // Show the current planner queue depth on this and the next LED matrix row
  3009. // If you experience stuttering, reboots, etc. this option can reveal how
  3010. // tweaks made to the configuration are affecting the printer in real-time.
  3011. #endif
  3012.  
  3013. /**
  3014. * NanoDLP Sync support
  3015. *
  3016. * Add support for Synchronized Z moves when using with NanoDLP. G0/G1 axis moves will output "Z_move_comp"
  3017. * string to enable synchronization with DLP projector exposure. This change will allow to use
  3018. * [[WaitForDoneMessage]] instead of populating your gcode with M400 commands
  3019. */
  3020. //#define NANODLP_Z_SYNC
  3021. #if ENABLED(NANODLP_Z_SYNC)
  3022. //#define NANODLP_ALL_AXIS // Enables "Z_move_comp" output on any axis move.
  3023. // Default behavior is limited to Z axis only.
  3024. #endif
  3025.  
  3026. /**
  3027. * WiFi Support (Espressif ESP32 WiFi)
  3028. */
  3029. //#define WIFISUPPORT // Marlin embedded WiFi managenent
  3030. #define ESP3D_WIFISUPPORT // ESP3D Library WiFi management (https://github.com/luc-github/ESP3DLib)
  3031.  
  3032. #if EITHER(WIFISUPPORT, ESP3D_WIFISUPPORT)
  3033. //#define WEBSUPPORT // Start a webserver (which may include auto-discovery)
  3034. //#define OTASUPPORT // Support over-the-air firmware updates
  3035. //#define WIFI_CUSTOM_COMMAND // Accept feature config commands (e.g., WiFi ESP3D) from the host
  3036.  
  3037. /**
  3038. * To set a default WiFi SSID / Password, create a file called Configuration_Secure.h with
  3039. * the following defines, customized for your network. This specific file is excluded via
  3040. * .gitignore to prevent it from accidentally leaking to the public.
  3041. *
  3042. * #define WIFI_SSID "WiFi SSID"
  3043. * #define WIFI_PWD "WiFi Password"
  3044. */
  3045. //#include "Configuration_Secure.h" // External file with WiFi SSID / Password
  3046. #endif
  3047.  
  3048. /**
  3049. * Prusa Multi-Material Unit v2
  3050. * Enable in Configuration.h
  3051. */
  3052. #if ENABLED(PRUSA_MMU2)
  3053.  
  3054. // Serial port used for communication with MMU2.
  3055. // For AVR enable the UART port used for the MMU. (e.g., internalSerial)
  3056. // For 32-bit boards check your HAL for available serial ports. (e.g., Serial2)
  3057. #define INTERNAL_SERIAL_PORT 2
  3058. #define MMU2_SERIAL internalSerial
  3059.  
  3060. // Use hardware reset for MMU if a pin is defined for it
  3061. //#define MMU2_RST_PIN 23
  3062.  
  3063. // Enable if the MMU2 has 12V stepper motors (MMU2 Firmware 1.0.2 and up)
  3064. //#define MMU2_MODE_12V
  3065.  
  3066. // G-code to execute when MMU2 F.I.N.D.A. probe detects filament runout
  3067. #define MMU2_FILAMENT_RUNOUT_SCRIPT "M600"
  3068.  
  3069. // Add an LCD menu for MMU2
  3070. //#define MMU2_MENUS
  3071. #if ENABLED(MMU2_MENUS)
  3072. // Settings for filament load / unload from the LCD menu.
  3073. // This is for Prusa MK3-style extruders. Customize for your hardware.
  3074. #define MMU2_FILAMENTCHANGE_EJECT_FEED 80.0
  3075. #define MMU2_LOAD_TO_NOZZLE_SEQUENCE \
  3076. { 7.2, 562 }, \
  3077. { 14.4, 871 }, \
  3078. { 36.0, 1393 }, \
  3079. { 14.4, 871 }, \
  3080. { 50.0, 198 }
  3081.  
  3082. #define MMU2_RAMMING_SEQUENCE \
  3083. { 1.0, 1000 }, \
  3084. { 1.0, 1500 }, \
  3085. { 2.0, 2000 }, \
  3086. { 1.5, 3000 }, \
  3087. { 2.5, 4000 }, \
  3088. { -15.0, 5000 }, \
  3089. { -14.0, 1200 }, \
  3090. { -6.0, 600 }, \
  3091. { 10.0, 700 }, \
  3092. { -10.0, 400 }, \
  3093. { -50.0, 2000 }
  3094.  
  3095. #endif
  3096.  
  3097. //#define MMU2_DEBUG // Write debug info to serial output
  3098.  
  3099. #endif // PRUSA_MMU2
  3100.  
  3101. /**
  3102. * Advanced Print Counter settings
  3103. */
  3104. #if ENABLED(PRINTCOUNTER)
  3105. #define SERVICE_WARNING_BUZZES 3
  3106. // Activate up to 3 service interval watchdogs
  3107. //#define SERVICE_NAME_1 "Service S"
  3108. //#define SERVICE_INTERVAL_1 100 // print hours
  3109. //#define SERVICE_NAME_2 "Service L"
  3110. //#define SERVICE_INTERVAL_2 200 // print hours
  3111. //#define SERVICE_NAME_3 "Service 3"
  3112. //#define SERVICE_INTERVAL_3 1 // print hours
  3113. #endif
  3114.  
  3115. // @section develop
  3116.  
  3117. //
  3118. // M100 Free Memory Watcher to debug memory usage
  3119. //
  3120. //#define M100_FREE_MEMORY_WATCHER
  3121.  
  3122. //
  3123. // M43 - display pin status, toggle pins, watch pins, watch endstops & toggle LED, test servo probe
  3124. //
  3125. //#define PINS_DEBUGGING
  3126.  
  3127. // Enable Marlin dev mode which adds some special commands
  3128. //#define MARLIN_DEV_MODE
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