My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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Configuration.h 62KB

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  1. /**
  2. * Marlin 3D Printer Firmware
  3. * Copyright (C) 2016 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. /**
  23. * Configuration.h
  24. *
  25. * Basic settings such as:
  26. *
  27. * - Type of electronics
  28. * - Type of temperature sensor
  29. * - Printer geometry
  30. * - Endstop configuration
  31. * - LCD controller
  32. * - Extra features
  33. *
  34. * Advanced settings can be found in Configuration_adv.h
  35. *
  36. */
  37. #ifndef CONFIGURATION_H
  38. #define CONFIGURATION_H
  39. /**
  40. *
  41. * ***********************************
  42. * ** ATTENTION TO ALL DEVELOPERS **
  43. * ***********************************
  44. *
  45. * You must increment this version number for every significant change such as,
  46. * but not limited to: ADD, DELETE RENAME OR REPURPOSE any directive/option.
  47. *
  48. * Note: Update also Version.h !
  49. */
  50. #define CONFIGURATION_H_VERSION 010100
  51. //===========================================================================
  52. //============================= Getting Started =============================
  53. //===========================================================================
  54. /**
  55. * Here are some standard links for getting your machine calibrated:
  56. *
  57. * http://reprap.org/wiki/Calibration
  58. * http://youtu.be/wAL9d7FgInk
  59. * http://calculator.josefprusa.cz
  60. * http://reprap.org/wiki/Triffid_Hunter%27s_Calibration_Guide
  61. * http://www.thingiverse.com/thing:5573
  62. * https://sites.google.com/site/repraplogphase/calibration-of-your-reprap
  63. * http://www.thingiverse.com/thing:298812
  64. */
  65. //===========================================================================
  66. //============================= DELTA Printer ===============================
  67. //===========================================================================
  68. // For a Delta printer replace the configuration files with the files in the
  69. // example_configurations/delta directory.
  70. //
  71. //===========================================================================
  72. //============================= SCARA Printer ===============================
  73. //===========================================================================
  74. // For a Scara printer replace the configuration files with the files in the
  75. // example_configurations/SCARA directory.
  76. //
  77. // @section info
  78. // User-specified version info of this build to display in [Pronterface, etc] terminal window during
  79. // startup. Implementation of an idea by Prof Braino to inform user that any changes made to this
  80. // build by the user have been successfully uploaded into firmware.
  81. #define STRING_CONFIG_H_AUTHOR "(oxivanisher)" // Who made the changes.
  82. #define SHOW_BOOTSCREEN
  83. #define STRING_SPLASH_LINE1 SHORT_BUILD_VERSION // will be shown during bootup in line 1
  84. #define STRING_SPLASH_LINE2 WEBSITE_URL // will be shown during bootup in line 2
  85. //
  86. // *** VENDORS PLEASE READ *****************************************************
  87. //
  88. // Marlin now allow you to have a vendor boot image to be displayed on machine
  89. // start. When SHOW_CUSTOM_BOOTSCREEN is defined Marlin will first show your
  90. // custom boot image and then the default Marlin boot image is shown.
  91. //
  92. // We suggest for you to take advantage of this new feature and keep the Marlin
  93. // boot image unmodified. For an example have a look at the bq Hephestos 2
  94. // example configuration folder.
  95. //
  96. //#define SHOW_CUSTOM_BOOTSCREEN
  97. // @section machine
  98. /**
  99. * Select which serial port on the board will be used for communication with the host.
  100. * This allows the connection of wireless adapters (for instance) to non-default port pins.
  101. * Serial port 0 is always used by the Arduino bootloader regardless of this setting.
  102. *
  103. * :[0, 1, 2, 3, 4, 5, 6, 7]
  104. */
  105. #define SERIAL_PORT 0
  106. /**
  107. * This setting determines the communication speed of the printer.
  108. *
  109. * 250000 works in most cases, but you might try a lower speed if
  110. * you commonly experience drop-outs during host printing.
  111. *
  112. * :[2400, 9600, 19200, 38400, 57600, 115200, 250000]
  113. */
  114. #define BAUDRATE 250000
  115. // Enable the Bluetooth serial interface on AT90USB devices
  116. //#define BLUETOOTH
  117. // The following define selects which electronics board you have.
  118. // Please choose the name from boards.h that matches your setup
  119. #ifndef MOTHERBOARD
  120. #define MOTHERBOARD BOARD_RAMPS_14_EFB
  121. #endif
  122. // Optional custom name for your RepStrap or other custom machine
  123. // Displayed in the LCD "Ready" message
  124. #define CUSTOM_MACHINE_NAME "Kossel k800XL"
  125. // Define this to set a unique identifier for this printer, (Used by some programs to differentiate between machines)
  126. // You can use an online service to generate a random UUID. (eg http://www.uuidgenerator.net/version4)
  127. //#define MACHINE_UUID "00000000-0000-0000-0000-000000000000"
  128. // This defines the number of extruders
  129. // :[1, 2, 3, 4]
  130. #define EXTRUDERS 1
  131. // Enable if your E steppers or extruder gear ratios are not identical
  132. //#define DISTINCT_E_FACTORS
  133. // For Cyclops or any "multi-extruder" that shares a single nozzle.
  134. //#define SINGLENOZZLE
  135. // A dual extruder that uses a single stepper motor
  136. // Don't forget to set SSDE_SERVO_ANGLES and HOTEND_OFFSET_X/Y/Z
  137. //#define SWITCHING_EXTRUDER
  138. #if ENABLED(SWITCHING_EXTRUDER)
  139. #define SWITCHING_EXTRUDER_SERVO_NR 0
  140. #define SWITCHING_EXTRUDER_SERVO_ANGLES { 0, 90 } // Angles for E0, E1
  141. //#define HOTEND_OFFSET_Z {0.0, 0.0}
  142. #endif
  143. /**
  144. * "Mixing Extruder"
  145. * - Adds a new code, M165, to set the current mix factors.
  146. * - Extends the stepping routines to move multiple steppers in proportion to the mix.
  147. * - Optional support for Repetier Host M163, M164, and virtual extruder.
  148. * - This implementation supports only a single extruder.
  149. * - Enable DIRECT_MIXING_IN_G1 for Pia Taubert's reference implementation
  150. */
  151. //#define MIXING_EXTRUDER
  152. #if ENABLED(MIXING_EXTRUDER)
  153. #define MIXING_STEPPERS 2 // Number of steppers in your mixing extruder
  154. #define MIXING_VIRTUAL_TOOLS 16 // Use the Virtual Tool method with M163 and M164
  155. //#define DIRECT_MIXING_IN_G1 // Allow ABCDHI mix factors in G1 movement commands
  156. #endif
  157. // Offset of the extruders (uncomment if using more than one and relying on firmware to position when changing).
  158. // The offset has to be X=0, Y=0 for the extruder 0 hotend (default extruder).
  159. // For the other hotends it is their distance from the extruder 0 hotend.
  160. //#define HOTEND_OFFSET_X {0.0, 20.00} // (in mm) for each extruder, offset of the hotend on the X axis
  161. //#define HOTEND_OFFSET_Y {0.0, 5.00} // (in mm) for each extruder, offset of the hotend on the Y axis
  162. /**
  163. * Select your power supply here. Use 0 if you haven't connected the PS_ON_PIN
  164. *
  165. * 0 = No Power Switch
  166. * 1 = ATX
  167. * 2 = X-Box 360 203Watts (the blue wire connected to PS_ON and the red wire to VCC)
  168. *
  169. * :{ 0:'No power switch', 1:'ATX', 2:'X-Box 360' }
  170. */
  171. #define POWER_SUPPLY 2
  172. #if POWER_SUPPLY > 0
  173. // Enable this option to leave the PSU off at startup.
  174. // Power to steppers and heaters will need to be turned on with M80.
  175. #define PS_DEFAULT_OFF
  176. #endif
  177. // @section temperature
  178. //===========================================================================
  179. //============================= Thermal Settings ============================
  180. //===========================================================================
  181. /**
  182. * --NORMAL IS 4.7kohm PULLUP!-- 1kohm pullup can be used on hotend sensor, using correct resistor and table
  183. *
  184. * Temperature sensors available:
  185. *
  186. * -3 : thermocouple with MAX31855 (only for sensor 0)
  187. * -2 : thermocouple with MAX6675 (only for sensor 0)
  188. * -1 : thermocouple with AD595
  189. * 0 : not used
  190. * 1 : 100k thermistor - best choice for EPCOS 100k (4.7k pullup)
  191. * 2 : 200k thermistor - ATC Semitec 204GT-2 (4.7k pullup)
  192. * 3 : Mendel-parts thermistor (4.7k pullup)
  193. * 4 : 10k thermistor !! do not use it for a hotend. It gives bad resolution at high temp. !!
  194. * 5 : 100K thermistor - ATC Semitec 104GT-2 (Used in ParCan & J-Head) (4.7k pullup)
  195. * 6 : 100k EPCOS - Not as accurate as table 1 (created using a fluke thermocouple) (4.7k pullup)
  196. * 7 : 100k Honeywell thermistor 135-104LAG-J01 (4.7k pullup)
  197. * 71 : 100k Honeywell thermistor 135-104LAF-J01 (4.7k pullup)
  198. * 8 : 100k 0603 SMD Vishay NTCS0603E3104FXT (4.7k pullup)
  199. * 9 : 100k GE Sensing AL03006-58.2K-97-G1 (4.7k pullup)
  200. * 10 : 100k RS thermistor 198-961 (4.7k pullup)
  201. * 11 : 100k beta 3950 1% thermistor (4.7k pullup)
  202. * 12 : 100k 0603 SMD Vishay NTCS0603E3104FXT (4.7k pullup) (calibrated for Makibox hot bed)
  203. * 13 : 100k Hisens 3950 1% up to 300°C for hotend "Simple ONE " & "Hotend "All In ONE"
  204. * 20 : the PT100 circuit found in the Ultimainboard V2.x
  205. * 60 : 100k Maker's Tool Works Kapton Bed Thermistor beta=3950
  206. * 66 : 4.7M High Temperature thermistor from Dyze Design
  207. * 70 : the 100K thermistor found in the bq Hephestos 2
  208. * 75 : 100k Generic Silicon Heat Pad with NTC 100K MGB18-104F39050L32 thermistor
  209. *
  210. * 1k ohm pullup tables - This is atypical, and requires changing out the 4.7k pullup for 1k.
  211. * (but gives greater accuracy and more stable PID)
  212. * 51 : 100k thermistor - EPCOS (1k pullup)
  213. * 52 : 200k thermistor - ATC Semitec 204GT-2 (1k pullup)
  214. * 55 : 100k thermistor - ATC Semitec 104GT-2 (Used in ParCan & J-Head) (1k pullup)
  215. *
  216. * 1047 : Pt1000 with 4k7 pullup
  217. * 1010 : Pt1000 with 1k pullup (non standard)
  218. * 147 : Pt100 with 4k7 pullup
  219. * 110 : Pt100 with 1k pullup (non standard)
  220. *
  221. * Use these for Testing or Development purposes. NEVER for production machine.
  222. * 998 : Dummy Table that ALWAYS reads 25°C or the temperature defined below.
  223. * 999 : Dummy Table that ALWAYS reads 100°C or the temperature defined below.
  224. *
  225. * :{ '0': "Not used", '1':"100k / 4.7k - EPCOS", '2':"200k / 4.7k - ATC Semitec 204GT-2", '3':"Mendel-parts / 4.7k", '4':"10k !! do not use for a hotend. Bad resolution at high temp. !!", '5':"100K / 4.7k - ATC Semitec 104GT-2 (Used in ParCan & J-Head)", '6':"100k / 4.7k EPCOS - Not as accurate as Table 1", '7':"100k / 4.7k Honeywell 135-104LAG-J01", '8':"100k / 4.7k 0603 SMD Vishay NTCS0603E3104FXT", '9':"100k / 4.7k GE Sensing AL03006-58.2K-97-G1", '10':"100k / 4.7k RS 198-961", '11':"100k / 4.7k beta 3950 1%", '12':"100k / 4.7k 0603 SMD Vishay NTCS0603E3104FXT (calibrated for Makibox hot bed)", '13':"100k Hisens 3950 1% up to 300°C for hotend 'Simple ONE ' & hotend 'All In ONE'", '20':"PT100 (Ultimainboard V2.x)", '51':"100k / 1k - EPCOS", '52':"200k / 1k - ATC Semitec 204GT-2", '55':"100k / 1k - ATC Semitec 104GT-2 (Used in ParCan & J-Head)", '60':"100k Maker's Tool Works Kapton Bed Thermistor beta=3950", '66':"Dyze Design 4.7M High Temperature thermistor", '70':"the 100K thermistor found in the bq Hephestos 2", '71':"100k / 4.7k Honeywell 135-104LAF-J01", '147':"Pt100 / 4.7k", '1047':"Pt1000 / 4.7k", '110':"Pt100 / 1k (non-standard)", '1010':"Pt1000 / 1k (non standard)", '-3':"Thermocouple + MAX31855 (only for sensor 0)", '-2':"Thermocouple + MAX6675 (only for sensor 0)", '-1':"Thermocouple + AD595",'998':"Dummy 1", '999':"Dummy 2" }
  226. */
  227. #define TEMP_SENSOR_0 5
  228. #define TEMP_SENSOR_1 0
  229. #define TEMP_SENSOR_2 0
  230. #define TEMP_SENSOR_3 0
  231. #define TEMP_SENSOR_BED 5
  232. // Dummy thermistor constant temperature readings, for use with 998 and 999
  233. #define DUMMY_THERMISTOR_998_VALUE 25
  234. #define DUMMY_THERMISTOR_999_VALUE 100
  235. // Use temp sensor 1 as a redundant sensor with sensor 0. If the readings
  236. // from the two sensors differ too much the print will be aborted.
  237. //#define TEMP_SENSOR_1_AS_REDUNDANT
  238. #define MAX_REDUNDANT_TEMP_SENSOR_DIFF 10
  239. // Extruder temperature must be close to target for this long before M109 returns success
  240. #define TEMP_RESIDENCY_TIME 10 // (seconds)
  241. #define TEMP_HYSTERESIS 3 // (degC) range of +/- temperatures considered "close" to the target one
  242. #define TEMP_WINDOW 1 // (degC) Window around target to start the residency timer x degC early.
  243. // Bed temperature must be close to target for this long before M190 returns success
  244. #define TEMP_BED_RESIDENCY_TIME 0 // (seconds)
  245. #define TEMP_BED_HYSTERESIS 3 // (degC) range of +/- temperatures considered "close" to the target one
  246. #define TEMP_BED_WINDOW 1 // (degC) Window around target to start the residency timer x degC early.
  247. // The minimal temperature defines the temperature below which the heater will not be enabled It is used
  248. // to check that the wiring to the thermistor is not broken.
  249. // Otherwise this would lead to the heater being powered on all the time.
  250. #define HEATER_0_MINTEMP 5
  251. #define HEATER_1_MINTEMP 5
  252. #define HEATER_2_MINTEMP 5
  253. #define HEATER_3_MINTEMP 5
  254. #define BED_MINTEMP 5
  255. // When temperature exceeds max temp, your heater will be switched off.
  256. // This feature exists to protect your hotend from overheating accidentally, but *NOT* from thermistor short/failure!
  257. // You should use MINTEMP for thermistor short/failure protection.
  258. #define HEATER_0_MAXTEMP 275
  259. #define HEATER_1_MAXTEMP 275
  260. #define HEATER_2_MAXTEMP 275
  261. #define HEATER_3_MAXTEMP 275
  262. #define BED_MAXTEMP 150
  263. //===========================================================================
  264. //============================= PID Settings ================================
  265. //===========================================================================
  266. // PID Tuning Guide here: http://reprap.org/wiki/PID_Tuning
  267. // Comment the following line to disable PID and enable bang-bang.
  268. #define PIDTEMP
  269. #define BANG_MAX 255 // limits current to nozzle while in bang-bang mode; 255=full current
  270. #define PID_MAX BANG_MAX // limits current to nozzle while PID is active (see PID_FUNCTIONAL_RANGE below); 255=full current
  271. #if ENABLED(PIDTEMP)
  272. //#define PID_AUTOTUNE_MENU // Add PID Autotune to the LCD "Temperature" menu to run M303 and apply the result.
  273. //#define PID_DEBUG // Sends debug data to the serial port.
  274. //#define PID_OPENLOOP 1 // Puts PID in open loop. M104/M140 sets the output power from 0 to PID_MAX
  275. //#define SLOW_PWM_HEATERS // PWM with very low frequency (roughly 0.125Hz=8s) and minimum state time of approximately 1s useful for heaters driven by a relay
  276. //#define PID_PARAMS_PER_HOTEND // Uses separate PID parameters for each extruder (useful for mismatched extruders)
  277. // Set/get with gcode: M301 E[extruder number, 0-2]
  278. #define PID_FUNCTIONAL_RANGE 10 // If the temperature difference between the target temperature and the actual temperature
  279. // is more than PID_FUNCTIONAL_RANGE then the PID will be shut off and the heater will be set to min/max.
  280. #define K1 0.95 //smoothing factor within the PID
  281. // If you are using a pre-configured hotend then you can use one of the value sets by uncommenting it
  282. // oXis Kossel k800 XL
  283. #define DEFAULT_Kp 22.04
  284. #define DEFAULT_Ki 1.65
  285. #define DEFAULT_Kd 73.67
  286. // Kossel k800 XL
  287. //#define DEFAULT_Kp 22.25
  288. //#define DEFAULT_Ki 1.45
  289. //#define DEFAULT_Kd 85.30
  290. // MakerGear
  291. //#define DEFAULT_Kp 7.0
  292. //#define DEFAULT_Ki 0.1
  293. //#define DEFAULT_Kd 12
  294. // Mendel Parts V9 on 12V
  295. //#define DEFAULT_Kp 63.0
  296. //#define DEFAULT_Ki 2.25
  297. //#define DEFAULT_Kd 440
  298. #endif // PIDTEMP
  299. //===========================================================================
  300. //============================= PID > Bed Temperature Control ===============
  301. //===========================================================================
  302. // Select PID or bang-bang with PIDTEMPBED. If bang-bang, BED_LIMIT_SWITCHING will enable hysteresis
  303. //
  304. // Uncomment this to enable PID on the bed. It uses the same frequency PWM as the extruder.
  305. // If your PID_dT is the default, and correct for your hardware/configuration, that means 7.689Hz,
  306. // which is fine for driving a square wave into a resistive load and does not significantly impact you FET heating.
  307. // This also works fine on a Fotek SSR-10DA Solid State Relay into a 250W heater.
  308. // If your configuration is significantly different than this and you don't understand the issues involved, you probably
  309. // shouldn't use bed PID until someone else verifies your hardware works.
  310. // If this is enabled, find your own PID constants below.
  311. //#define PIDTEMPBED
  312. //#define BED_LIMIT_SWITCHING
  313. // This sets the max power delivered to the bed, and replaces the HEATER_BED_DUTY_CYCLE_DIVIDER option.
  314. // all forms of bed control obey this (PID, bang-bang, bang-bang with hysteresis)
  315. // setting this to anything other than 255 enables a form of PWM to the bed just like HEATER_BED_DUTY_CYCLE_DIVIDER did,
  316. // so you shouldn't use it unless you are OK with PWM on your bed. (see the comment on enabling PIDTEMPBED)
  317. #define MAX_BED_POWER 255 // limits duty cycle to bed; 255=full current
  318. #if ENABLED(PIDTEMPBED)
  319. //#define PID_BED_DEBUG // Sends debug data to the serial port.
  320. //120V 250W silicone heater into 4mm borosilicate (MendelMax 1.5+)
  321. //from FOPDT model - kp=.39 Tp=405 Tdead=66, Tc set to 79.2, aggressive factor of .15 (vs .1, 1, 10)
  322. #define DEFAULT_bedKp 15.00
  323. #define DEFAULT_bedKi .04
  324. #define DEFAULT_bedKd 305.4
  325. //120V 250W silicone heater into 4mm borosilicate (MendelMax 1.5+)
  326. //from pidautotune
  327. //#define DEFAULT_bedKp 97.1
  328. //#define DEFAULT_bedKi 1.41
  329. //#define DEFAULT_bedKd 1675.16
  330. // FIND YOUR OWN: "M303 E-1 C8 S90" to run autotune on the bed at 90 degreesC for 8 cycles.
  331. #endif // PIDTEMPBED
  332. // @section extruder
  333. // This option prevents extrusion if the temperature is below EXTRUDE_MINTEMP.
  334. // It also enables the M302 command to set the minimum extrusion temperature
  335. // or to allow moving the extruder regardless of the hotend temperature.
  336. // *** IT IS HIGHLY RECOMMENDED TO LEAVE THIS OPTION ENABLED! ***
  337. #define PREVENT_COLD_EXTRUSION
  338. #define EXTRUDE_MINTEMP 170
  339. // This option prevents a single extrusion longer than EXTRUDE_MAXLENGTH.
  340. // Note that for Bowden Extruders a too-small value here may prevent loading.
  341. #define PREVENT_LENGTHY_EXTRUDE
  342. #define EXTRUDE_MAXLENGTH 200
  343. //===========================================================================
  344. //======================== Thermal Runaway Protection =======================
  345. //===========================================================================
  346. /**
  347. * Thermal Protection protects your printer from damage and fire if a
  348. * thermistor falls out or temperature sensors fail in any way.
  349. *
  350. * The issue: If a thermistor falls out or a temperature sensor fails,
  351. * Marlin can no longer sense the actual temperature. Since a disconnected
  352. * thermistor reads as a low temperature, the firmware will keep the heater on.
  353. *
  354. * If you get "Thermal Runaway" or "Heating failed" errors the
  355. * details can be tuned in Configuration_adv.h
  356. */
  357. #define THERMAL_PROTECTION_HOTENDS // Enable thermal protection for all extruders
  358. #define THERMAL_PROTECTION_BED // Enable thermal protection for the heated bed
  359. //===========================================================================
  360. //============================= Mechanical Settings =========================
  361. //===========================================================================
  362. // @section machine
  363. // Uncomment one of these options to enable CoreXY, CoreXZ, or CoreYZ kinematics
  364. // either in the usual order or reversed
  365. //#define COREXY
  366. //#define COREXZ
  367. //#define COREYZ
  368. //#define COREYX
  369. //#define COREZX
  370. //#define COREZY
  371. //===========================================================================
  372. //============================== Delta Settings =============================
  373. //===========================================================================
  374. // Enable DELTA kinematics and most of the default configuration for Deltas
  375. #define DELTA
  376. #if ENABLED(DELTA)
  377. // Make delta curves from many straight lines (linear interpolation).
  378. // This is a trade-off between visible corners (not enough segments)
  379. // and processor overload (too many expensive sqrt calls).
  380. #define DELTA_SEGMENTS_PER_SECOND 160
  381. // NOTE NB all values for DELTA_* values MUST be floating point, so always have a decimal point in them
  382. // Center-to-center distance of the holes in the diagonal push rods.
  383. #define DELTA_DIAGONAL_ROD 317.3 + 2.5 // mm
  384. // Horizontal offset from middle of printer to smooth rod center.
  385. #define DELTA_SMOOTH_ROD_OFFSET 220.1 // mm
  386. // Horizontal offset of the universal joints on the end effector.
  387. #define DELTA_EFFECTOR_OFFSET 24.0 // mm
  388. // Horizontal offset of the universal joints on the carriages.
  389. #define DELTA_CARRIAGE_OFFSET 22.0 // mm
  390. // Horizontal distance bridged by diagonal push rods when effector is centered.
  391. #define DELTA_RADIUS (DELTA_SMOOTH_ROD_OFFSET-(DELTA_EFFECTOR_OFFSET)-(DELTA_CARRIAGE_OFFSET) + 1)
  392. // Print surface diameter/2 minus unreachable space (avoid collisions with vertical towers).
  393. #define DELTA_PRINTABLE_RADIUS 140.0
  394. // Delta calibration menu
  395. // See http://minow.blogspot.com/index.html#4918805519571907051
  396. //#define DELTA_CALIBRATION_MENU
  397. // After homing move down to a height where XY movement is unconstrained
  398. #define DELTA_HOME_TO_SAFE_ZONE
  399. //#define DELTA_ENDSTOP_ADJ { 0, 0, 0 }
  400. #endif
  401. // Enable this option for Toshiba steppers
  402. //#define CONFIG_STEPPERS_TOSHIBA
  403. //===========================================================================
  404. //============================== Endstop Settings ===========================
  405. //===========================================================================
  406. // @section homing
  407. // Specify here all the endstop connectors that are connected to any endstop or probe.
  408. // Almost all printers will be using one per axis. Probes will use one or more of the
  409. // extra connectors. Leave undefined any used for non-endstop and non-probe purposes.
  410. //#define USE_XMIN_PLUG
  411. //#define USE_YMIN_PLUG
  412. #define USE_ZMIN_PLUG // a Z probe
  413. #define USE_XMAX_PLUG
  414. #define USE_YMAX_PLUG
  415. #define USE_ZMAX_PLUG
  416. // coarse Endstop Settings
  417. //#define ENDSTOPPULLUPS // Comment this out (using // at the start of the line) to disable the endstop pullup resistors
  418. #if DISABLED(ENDSTOPPULLUPS)
  419. // fine endstop settings: Individual pullups. will be ignored if ENDSTOPPULLUPS is defined
  420. #define ENDSTOPPULLUP_XMAX
  421. #define ENDSTOPPULLUP_YMAX
  422. #define ENDSTOPPULLUP_ZMAX
  423. //#define ENDSTOPPULLUP_XMIN
  424. //#define ENDSTOPPULLUP_YMIN
  425. #define ENDSTOPPULLUP_ZMIN
  426. //#define ENDSTOPPULLUP_ZMIN_PROBE
  427. #endif
  428. // Mechanical endstop with COM to ground and NC to Signal uses "false" here (most common setup).
  429. #define X_MIN_ENDSTOP_INVERTING false // set to true to invert the logic of the endstop.
  430. #define Y_MIN_ENDSTOP_INVERTING false // set to true to invert the logic of the endstop.
  431. #define Z_MIN_ENDSTOP_INVERTING false // set to true to invert the logic of the endstop.
  432. #define X_MAX_ENDSTOP_INVERTING false // set to true to invert the logic of the endstop.
  433. #define Y_MAX_ENDSTOP_INVERTING false // set to true to invert the logic of the endstop.
  434. #define Z_MAX_ENDSTOP_INVERTING false // set to true to invert the logic of the endstop.
  435. #define Z_MIN_PROBE_ENDSTOP_INVERTING false // set to true to invert the logic of the probe.
  436. // Enable this feature if all enabled endstop pins are interrupt-capable.
  437. // This will remove the need to poll the interrupt pins, saving many CPU cycles.
  438. //#define ENDSTOP_INTERRUPTS_FEATURE
  439. //=============================================================================
  440. //============================== Movement Settings ============================
  441. //=============================================================================
  442. // @section motion
  443. // variables to calculate steps
  444. #define XYZ_FULL_STEPS_PER_ROTATION 200
  445. #define XYZ_MICROSTEPS 16
  446. #define XYZ_BELT_PITCH 2
  447. #define XYZ_PULLEY_TEETH 16
  448. // delta speeds must be the same on xyz
  449. #define XYZ_STEPS (XYZ_FULL_STEPS_PER_ROTATION * XYZ_MICROSTEPS / double(XYZ_BELT_PITCH) / double(XYZ_PULLEY_TEETH))
  450. /**
  451. * Default Settings
  452. *
  453. * These settings can be reset by M502
  454. *
  455. * You can set distinct factors for each E stepper, if needed.
  456. * If fewer factors are given, the last will apply to the rest.
  457. *
  458. * Note that if EEPROM is enabled, saved values will override these.
  459. */
  460. /**
  461. * Default Axis Steps Per Unit (steps/mm)
  462. * Override with M92
  463. * X, Y, Z, E0 [, E1[, E2[, E3]]]
  464. */
  465. #define DEFAULT_AXIS_STEPS_PER_UNIT { XYZ_STEPS, XYZ_STEPS, XYZ_STEPS, 158 } // default steps per unit for PowerWasp
  466. /**
  467. * Default Max Feed Rate (mm/s)
  468. * Override with M203
  469. * X, Y, Z, E0 [, E1[, E2[, E3]]]
  470. */
  471. #define DEFAULT_MAX_FEEDRATE { 200, 200, 200, 25 }
  472. /**
  473. * Default Max Acceleration (change/s) change = mm/s
  474. * (Maximum start speed for accelerated moves)
  475. * Override with M201
  476. * X, Y, Z, E0 [, E1[, E2[, E3]]]
  477. */
  478. #define DEFAULT_MAX_ACCELERATION { 9000, 9000, 9000, 10000 }
  479. /**
  480. * Default Acceleration (change/s) change = mm/s
  481. * Override with M204
  482. *
  483. * M204 P Acceleration
  484. * M204 R Retract Acceleration
  485. * M204 T Travel Acceleration
  486. */
  487. #define DEFAULT_ACCELERATION 2000 // X, Y, Z and E acceleration for printing moves
  488. #define DEFAULT_RETRACT_ACCELERATION 3000 // E acceleration for retracts
  489. #define DEFAULT_TRAVEL_ACCELERATION 3000 // X, Y, Z acceleration for travel (non printing) moves
  490. /**
  491. * Default Jerk (mm/s)
  492. * Override with M205 X Y Z E
  493. *
  494. * "Jerk" specifies the minimum speed change that requires acceleration.
  495. * When changing speed and direction, if the difference is less than the
  496. * value set here, it may happen instantaneously.
  497. */
  498. #define DEFAULT_XJERK 20.0
  499. #define DEFAULT_YJERK 20.0
  500. #define DEFAULT_ZJERK 20.0
  501. #define DEFAULT_EJERK 20.0
  502. //===========================================================================
  503. //============================= Z Probe Options =============================
  504. //===========================================================================
  505. // @section probes
  506. //
  507. // Probe Type
  508. // Probes are sensors/switches that are activated / deactivated before/after use.
  509. //
  510. // Allen Key Probes, Servo Probes, Z-Sled Probes, FIX_MOUNTED_PROBE, etc.
  511. // You must activate one of these to use Auto Bed Leveling below.
  512. //
  513. // Use M851 to set the Z probe vertical offset from the nozzle. Store with M500.
  514. //
  515. // The "Manual Probe" provides a means to do "Auto" Bed Leveling without a probe.
  516. // Use G29 repeatedly, adjusting the Z height at each point with movement commands
  517. // or (with LCD_BED_LEVELING) the LCD controller.
  518. //#define PROBE_MANUALLY
  519. // A Fix-Mounted Probe either doesn't deploy or needs manual deployment.
  520. // For example an inductive probe, or a setup that uses the nozzle to probe.
  521. // An inductive probe must be deactivated to go below
  522. // its trigger-point if hardware endstops are active.
  523. #define FIX_MOUNTED_PROBE
  524. // The BLTouch probe emulates a servo probe.
  525. // The default connector is SERVO 0. Set Z_ENDSTOP_SERVO_NR below to override.
  526. //#define BLTOUCH
  527. //#define BLTOUCH_DELAY 375 // (ms) Enable and increase if needed
  528. // Z Servo Probe, such as an endstop switch on a rotating arm.
  529. //#define Z_ENDSTOP_SERVO_NR 0
  530. //#define Z_SERVO_ANGLES {70,0} // Z Servo Deploy and Stow angles
  531. // Enable if you have a Z probe mounted on a sled like those designed by Charles Bell.
  532. //#define Z_PROBE_SLED
  533. //#define SLED_DOCKING_OFFSET 5 // The extra distance the X axis must travel to pickup the sled. 0 should be fine but you can push it further if you'd like.
  534. //
  535. // Allen Key Probe is defined in the Delta example configurations.
  536. //
  537. // Z Probe to nozzle (X,Y) offset, relative to (0, 0).
  538. // X and Y offsets must be integers.
  539. //
  540. // In the following example the X and Y offsets are both positive:
  541. // #define X_PROBE_OFFSET_FROM_EXTRUDER 10
  542. // #define Y_PROBE_OFFSET_FROM_EXTRUDER 10
  543. //
  544. // +-- BACK ---+
  545. // | |
  546. // L | (+) P | R <-- probe (20,20)
  547. // E | | I
  548. // F | (-) N (+) | G <-- nozzle (10,10)
  549. // T | | H
  550. // | (-) | T
  551. // | |
  552. // O-- FRONT --+
  553. // (0,0)
  554. #define X_PROBE_OFFSET_FROM_EXTRUDER 0.0 // Z probe to nozzle X offset: -left +right
  555. #define Y_PROBE_OFFSET_FROM_EXTRUDER 0.0 // Z probe to nozzle Y offset: -front +behind
  556. #define Z_PROBE_OFFSET_FROM_EXTRUDER 0.3 // Z probe to nozzle Z offset: -below (always!)
  557. // X and Y axis travel speed (mm/m) between probes
  558. #define XY_PROBE_SPEED 8000
  559. // Speed for the first approach when double-probing (with PROBE_DOUBLE_TOUCH)
  560. #define Z_PROBE_SPEED_FAST HOMING_FEEDRATE_Z
  561. // Speed for the "accurate" probe of each point
  562. #define Z_PROBE_SPEED_SLOW (Z_PROBE_SPEED_FAST / 2)
  563. // Use double touch for probing
  564. //#define PROBE_DOUBLE_TOUCH
  565. // Allen key retractable z-probe as seen on many Kossel delta printers - http://reprap.org/wiki/Kossel#Automatic_bed_leveling_probe
  566. // Deploys by touching z-axis belt. Retracts by pushing the probe down. Uses Z_MIN_PIN.
  567. //#define Z_PROBE_ALLEN_KEY
  568. #if ENABLED(Z_PROBE_ALLEN_KEY)
  569. // 2 or 3 sets of coordinates for deploying and retracting the spring loaded touch probe on G29,
  570. // if servo actuated touch probe is not defined. Uncomment as appropriate for your printer/probe.
  571. //#define Z_PROBE_ALLEN_KEY_DEPLOY_1_X 30.0
  572. //#define Z_PROBE_ALLEN_KEY_DEPLOY_1_Y DELTA_PRINTABLE_RADIUS
  573. //#define Z_PROBE_ALLEN_KEY_DEPLOY_1_Z 100.0
  574. //#define Z_PROBE_ALLEN_KEY_DEPLOY_1_FEEDRATE XY_PROBE_SPEED
  575. //#define Z_PROBE_ALLEN_KEY_DEPLOY_2_X 0.0
  576. //#define Z_PROBE_ALLEN_KEY_DEPLOY_2_Y DELTA_PRINTABLE_RADIUS
  577. //#define Z_PROBE_ALLEN_KEY_DEPLOY_2_Z 100.0
  578. //#define Z_PROBE_ALLEN_KEY_DEPLOY_2_FEEDRATE (XY_PROBE_SPEED)/10
  579. //#define Z_PROBE_ALLEN_KEY_DEPLOY_3_X Z_PROBE_ALLEN_KEY_DEPLOY_2_X * 0.75
  580. //#define Z_PROBE_ALLEN_KEY_DEPLOY_3_Y Z_PROBE_ALLEN_KEY_DEPLOY_2_Y * 0.75
  581. //#define Z_PROBE_ALLEN_KEY_DEPLOY_3_Z Z_PROBE_ALLEN_KEY_DEPLOY_2_Z
  582. //#define Z_PROBE_ALLEN_KEY_DEPLOY_3_FEEDRATE XY_PROBE_SPEED
  583. //#define Z_PROBE_ALLEN_KEY_STOW_1_X -64.0 // Move the probe into position
  584. //#define Z_PROBE_ALLEN_KEY_STOW_1_Y 56.0
  585. //#define Z_PROBE_ALLEN_KEY_STOW_1_Z 23.0
  586. //#define Z_PROBE_ALLEN_KEY_STOW_1_FEEDRATE XY_PROBE_SPEED
  587. //#define Z_PROBE_ALLEN_KEY_STOW_2_X -64.0 // Push it down
  588. //#define Z_PROBE_ALLEN_KEY_STOW_2_Y 56.0
  589. //#define Z_PROBE_ALLEN_KEY_STOW_2_Z 3.0
  590. //#define Z_PROBE_ALLEN_KEY_STOW_2_FEEDRATE (XY_PROBE_SPEED)/10
  591. //#define Z_PROBE_ALLEN_KEY_STOW_3_X -64.0 // Move it up to clear
  592. //#define Z_PROBE_ALLEN_KEY_STOW_3_Y 56.0
  593. //#define Z_PROBE_ALLEN_KEY_STOW_3_Z 50.0
  594. //#define Z_PROBE_ALLEN_KEY_STOW_3_FEEDRATE XY_PROBE_SPEED
  595. //#define Z_PROBE_ALLEN_KEY_STOW_4_X 0.0
  596. //#define Z_PROBE_ALLEN_KEY_STOW_4_Y 0.0
  597. //#define Z_PROBE_ALLEN_KEY_STOW_4_Z Z_PROBE_ALLEN_KEY_STOW_3_Z
  598. //#define Z_PROBE_ALLEN_KEY_STOW_4_FEEDRATE XY_PROBE_SPEED
  599. #endif // Z_PROBE_ALLEN_KEY
  600. // *** PLEASE READ ALL INSTRUCTIONS BELOW FOR SAFETY! ***
  601. //
  602. // To continue using the Z-min-endstop for homing, be sure to disable Z_SAFE_HOMING.
  603. // Example: To park the head outside the bed area when homing with G28.
  604. //
  605. // To use a separate Z probe, your board must define a Z_MIN_PROBE_PIN.
  606. //
  607. // For a servo-based Z probe, just set Z_ENDSTOP_SERVO_NR and Z_SERVO_ANGLES above.
  608. //
  609. // - RAMPS 1.3/1.4 boards may be able to use the 5V, GND, and Aux4->D32 pin.
  610. // - Use 5V for powered (usu. inductive) sensors.
  611. // - Otherwise connect:
  612. // - normally-closed switches to GND and D32.
  613. // - normally-open switches to 5V and D32.
  614. //
  615. // Normally-closed switches are advised and are the default.
  616. //
  617. //
  618. // The Z_MIN_PROBE_PIN sets the Arduino pin to use. (See your board's pins file.)
  619. // Since the RAMPS Aux4->D32 pin maps directly to the Arduino D32 pin, D32 is the
  620. // default pin for all RAMPS-based boards. Most boards use the X_MAX_PIN by default.
  621. // To use a different pin you can override it here.
  622. //
  623. // WARNING:
  624. // Setting the wrong pin may have unexpected and potentially disastrous consequences.
  625. // Use with caution and do your homework.
  626. //
  627. //#define Z_MIN_PROBE_PIN X_MAX_PIN
  628. //
  629. // Enable Z_MIN_PROBE_ENDSTOP to use _both_ a Z Probe and a Z-min-endstop on the same machine.
  630. // With this option the Z_MIN_PROBE_PIN will only be used for probing, never for homing.
  631. //
  632. #define Z_MIN_PROBE_ENDSTOP
  633. // Enable Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN to use the Z_MIN_PIN for your Z_MIN_PROBE.
  634. // The Z_MIN_PIN will then be used for both Z-homing and probing.
  635. //#define Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN
  636. // To use a probe you must enable one of the two options above!
  637. // Enable Z Probe Repeatability test to see how accurate your probe is
  638. //#define Z_MIN_PROBE_REPEATABILITY_TEST
  639. /**
  640. * Z probes require clearance when deploying, stowing, and moving between
  641. * probe points to avoid hitting the bed and other hardware.
  642. * Servo-mounted probes require extra space for the arm to rotate.
  643. * Inductive probes need space to keep from triggering early.
  644. *
  645. * Use these settings to specify the distance (mm) to raise the probe (or
  646. * lower the bed). The values set here apply over and above any (negative)
  647. * probe Z Offset set with Z_PROBE_OFFSET_FROM_EXTRUDER, M851, or the LCD.
  648. * Only integer values >= 1 are valid here.
  649. *
  650. * Example: `M851 Z-5` with a CLEARANCE of 4 => 9mm from bed to nozzle.
  651. * But: `M851 Z+1` with a CLEARANCE of 2 => 2mm from bed to nozzle.
  652. */
  653. #define Z_CLEARANCE_DEPLOY_PROBE 20 // Z Clearance for Deploy/Stow
  654. #define Z_CLEARANCE_BETWEEN_PROBES 10 // Z Clearance between probe points
  655. //
  656. // For M851 give a range for adjusting the Z probe offset
  657. //
  658. #define Z_PROBE_OFFSET_RANGE_MIN -20
  659. #define Z_PROBE_OFFSET_RANGE_MAX 20
  660. // For Inverting Stepper Enable Pins (Active Low) use 0, Non Inverting (Active High) use 1
  661. // :{ 0:'Low', 1:'High' }
  662. #define X_ENABLE_ON 0
  663. #define Y_ENABLE_ON 0
  664. #define Z_ENABLE_ON 0
  665. #define E_ENABLE_ON 0 // For all extruders
  666. // Disables axis stepper immediately when it's not being used.
  667. // WARNING: When motors turn off there is a chance of losing position accuracy!
  668. #define DISABLE_X false
  669. #define DISABLE_Y false
  670. #define DISABLE_Z false
  671. // Warn on display about possibly reduced accuracy
  672. //#define DISABLE_REDUCED_ACCURACY_WARNING
  673. // @section extruder
  674. #define DISABLE_E false // For all extruders
  675. #define DISABLE_INACTIVE_EXTRUDER true //disable only inactive extruders and keep active extruder enabled
  676. // @section machine
  677. // Invert the stepper direction. Change (or reverse the motor connector) if an axis goes the wrong way.
  678. #define INVERT_X_DIR false // DELTA does not invert
  679. #define INVERT_Y_DIR false
  680. #define INVERT_Z_DIR false
  681. // @section extruder
  682. // For direct drive extruder v9 set to true, for geared extruder set to false.
  683. #define INVERT_E0_DIR true
  684. #define INVERT_E1_DIR false
  685. #define INVERT_E2_DIR false
  686. #define INVERT_E3_DIR false
  687. // @section homing
  688. //#define Z_HOMING_HEIGHT 4 // (in mm) Minimal z height before homing (G28) for Z clearance above the bed, clamps, ...
  689. // Be sure you have this distance over your Z_MAX_POS in case.
  690. // Direction of endstops when homing; 1=MAX, -1=MIN
  691. // :[-1,1]
  692. #define X_HOME_DIR 1 // deltas always home to max
  693. #define Y_HOME_DIR 1
  694. #define Z_HOME_DIR 1
  695. // @section machine
  696. // Travel limits after homing (units are in mm)
  697. #define X_MIN_POS -(DELTA_PRINTABLE_RADIUS)
  698. #define Y_MIN_POS -(DELTA_PRINTABLE_RADIUS)
  699. #define Z_MIN_POS 0
  700. #define X_MAX_POS DELTA_PRINTABLE_RADIUS
  701. #define Y_MAX_POS DELTA_PRINTABLE_RADIUS
  702. #define Z_MAX_POS MANUAL_Z_HOME_POS
  703. // If enabled, axes won't move below MIN_POS in response to movement commands.
  704. //#define MIN_SOFTWARE_ENDSTOPS
  705. // If enabled, axes won't move above MAX_POS in response to movement commands.
  706. #define MAX_SOFTWARE_ENDSTOPS
  707. /**
  708. * Filament Runout Sensor
  709. * A mechanical or opto endstop is used to check for the presence of filament.
  710. *
  711. * RAMPS-based boards use SERVO3_PIN.
  712. * For other boards you may need to define FIL_RUNOUT_PIN.
  713. * By default the firmware assumes HIGH = has filament, LOW = ran out
  714. */
  715. //#define FILAMENT_RUNOUT_SENSOR
  716. #if ENABLED(FILAMENT_RUNOUT_SENSOR)
  717. #define FIL_RUNOUT_INVERTING false // set to true to invert the logic of the sensor.
  718. #define ENDSTOPPULLUP_FIL_RUNOUT // Uncomment to use internal pullup for filament runout pins if the sensor is defined.
  719. #define FILAMENT_RUNOUT_SCRIPT "M600"
  720. #endif
  721. //===========================================================================
  722. //=============================== Bed Leveling ==============================
  723. //===========================================================================
  724. // @section bedlevel
  725. /**
  726. * Choose one of the options below to enable G29 Bed Leveling. The parameters
  727. * and behavior of G29 will change depending on your selection.
  728. *
  729. * If using a Probe for Z Homing, enable Z_SAFE_HOMING also!
  730. *
  731. * - AUTO_BED_LEVELING_3POINT
  732. * Probe 3 arbitrary points on the bed (that aren't collinear)
  733. * You specify the XY coordinates of all 3 points.
  734. * The result is a single tilted plane. Best for a flat bed.
  735. *
  736. * - AUTO_BED_LEVELING_LINEAR
  737. * Probe several points in a grid.
  738. * You specify the rectangle and the density of sample points.
  739. * The result is a single tilted plane. Best for a flat bed.
  740. *
  741. * - AUTO_BED_LEVELING_BILINEAR
  742. * Probe several points in a grid.
  743. * You specify the rectangle and the density of sample points.
  744. * The result is a mesh, best for large or uneven beds.
  745. *
  746. * - AUTO_BED_LEVELING_UBL (Unified Bed Leveling)
  747. * A comprehensive bed leveling system combining the features and benefits
  748. * of other systems. UBL also includes integrated Mesh Generation, Mesh
  749. * Validation and Mesh Editing systems. Currently, UBL is only checked out
  750. * for Cartesian Printers. That said, it was primarily designed to correct
  751. * poor quality Delta Printers. If you feel adventurous and have a Delta,
  752. * please post an issue if something doesn't work correctly. Initially,
  753. * you will need to set a reduced bed size so you have a rectangular area
  754. * to test on.
  755. *
  756. * - MESH_BED_LEVELING
  757. * Probe a grid manually
  758. * The result is a mesh, suitable for large or uneven beds. (See BILINEAR.)
  759. * For machines without a probe, Mesh Bed Leveling provides a method to perform
  760. * leveling in steps so you can manually adjust the Z height at each grid-point.
  761. * With an LCD controller the process is guided step-by-step.
  762. */
  763. //#define AUTO_BED_LEVELING_3POINT
  764. //#define AUTO_BED_LEVELING_LINEAR
  765. //#define AUTO_BED_LEVELING_BILINEAR
  766. //#define AUTO_BED_LEVELING_UBL
  767. //#define MESH_BED_LEVELING
  768. /**
  769. * Enable detailed logging of G28, G29, M48, etc.
  770. * Turn on with the command 'M111 S32'.
  771. * NOTE: Requires a lot of PROGMEM!
  772. */
  773. //#define DEBUG_LEVELING_FEATURE
  774. #if ENABLED(MESH_BED_LEVELING) || ENABLED(AUTO_BED_LEVELING_BILINEAR) || ENABLED(AUTO_BED_LEVELING_UBL)
  775. // Gradually reduce leveling correction until a set height is reached,
  776. // at which point movement will be level to the machine's XY plane.
  777. // The height can be set with M420 Z<height>
  778. //#define ENABLE_LEVELING_FADE_HEIGHT
  779. #endif
  780. #if ENABLED(AUTO_BED_LEVELING_LINEAR) || ENABLED(AUTO_BED_LEVELING_BILINEAR)
  781. // Set the number of grid points per dimension.
  782. // Works best with 5 or more points in each dimension.
  783. #define GRID_MAX_POINTS_X 5
  784. #define GRID_MAX_POINTS_Y GRID_MAX_POINTS_X
  785. // Set the boundaries for probing (where the probe can reach).
  786. #define DELTA_PROBEABLE_RADIUS (DELTA_PRINTABLE_RADIUS - 10)
  787. #define LEFT_PROBE_BED_POSITION -(DELTA_PROBEABLE_RADIUS)
  788. #define RIGHT_PROBE_BED_POSITION DELTA_PROBEABLE_RADIUS
  789. #define FRONT_PROBE_BED_POSITION - (DELTA_PROBEABLE_RADIUS - 20)
  790. #define BACK_PROBE_BED_POSITION DELTA_PROBEABLE_RADIUS - 40
  791. // The Z probe minimum outer margin (to validate G29 parameters).
  792. #define MIN_PROBE_EDGE 10
  793. // Probe along the Y axis, advancing X after each column
  794. //#define PROBE_Y_FIRST
  795. #if ENABLED(AUTO_BED_LEVELING_BILINEAR)
  796. //
  797. // Experimental Subdivision of the grid by Catmull-Rom method.
  798. // Synthesizes intermediate points to produce a more detailed mesh.
  799. //
  800. //#define ABL_BILINEAR_SUBDIVISION
  801. #if ENABLED(ABL_BILINEAR_SUBDIVISION)
  802. // Number of subdivisions between probe points
  803. #define BILINEAR_SUBDIVISIONS 3
  804. #endif
  805. #endif
  806. #elif ENABLED(AUTO_BED_LEVELING_3POINT)
  807. // 3 arbitrary points to probe.
  808. // A simple cross-product is used to estimate the plane of the bed.
  809. #define ABL_PROBE_PT_1_X 15
  810. #define ABL_PROBE_PT_1_Y 180
  811. #define ABL_PROBE_PT_2_X 15
  812. #define ABL_PROBE_PT_2_Y 20
  813. #define ABL_PROBE_PT_3_X 170
  814. #define ABL_PROBE_PT_3_Y 20
  815. #elif ENABLED(AUTO_BED_LEVELING_UBL)
  816. //===========================================================================
  817. //========================= Unified Bed Leveling ============================
  818. //===========================================================================
  819. #define UBL_MESH_INSET 1 // Mesh inset margin on print area
  820. #define GRID_MAX_POINTS_X 10 // Don't use more than 15 points per axis, implementation limited.
  821. #define GRID_MAX_POINTS_Y GRID_MAX_POINTS_X
  822. #define UBL_PROBE_PT_1_X 39 // These set the probe locations for when UBL does a 3-Point leveling
  823. #define UBL_PROBE_PT_1_Y 180 // of the mesh.
  824. #define UBL_PROBE_PT_2_X 39
  825. #define UBL_PROBE_PT_2_Y 20
  826. #define UBL_PROBE_PT_3_X 180
  827. #define UBL_PROBE_PT_3_Y 20
  828. //#define UBL_G26_MESH_EDITING // Enable G26 mesh editing
  829. #elif ENABLED(MESH_BED_LEVELING)
  830. //===========================================================================
  831. //=================================== Mesh ==================================
  832. //===========================================================================
  833. #define MESH_INSET 10 // Mesh inset margin on print area
  834. #define GRID_MAX_POINTS_X 3 // Don't use more than 7 points per axis, implementation limited.
  835. #define GRID_MAX_POINTS_Y GRID_MAX_POINTS_X
  836. //#define MESH_G28_REST_ORIGIN // After homing all axes ('G28' or 'G28 XYZ') rest Z at Z_MIN_POS
  837. #endif // BED_LEVELING
  838. /**
  839. * Use the LCD controller for bed leveling
  840. * Requires MESH_BED_LEVELING or PROBE_MANUALLY
  841. */
  842. //#define LCD_BED_LEVELING
  843. #if ENABLED(LCD_BED_LEVELING)
  844. #define MBL_Z_STEP 0.025 // Step size while manually probing Z axis.
  845. #define LCD_PROBE_Z_RANGE 4 // Z Range centered on Z_MIN_POS for LCD Z adjustment
  846. #endif
  847. /**
  848. * Commands to execute at the end of G29 probing.
  849. * Useful to retract or move the Z probe out of the way.
  850. */
  851. //#define Z_PROBE_END_SCRIPT "G1 Z10 F12000\nG1 X15 Y330\nG1 Z0.5\nG1 Z10"
  852. // @section homing
  853. // The center of the bed is at (X=0, Y=0)
  854. #define BED_CENTER_AT_0_0
  855. // Manually set the home position. Leave these undefined for automatic settings.
  856. // For DELTA this is the top-center of the Cartesian print volume.
  857. //#define MANUAL_X_HOME_POS 0
  858. //#define MANUAL_Y_HOME_POS 0
  859. #define MANUAL_Z_HOME_POS 381.4 // Distance between the nozzle to printbed after homing
  860. // Use "Z Safe Homing" to avoid homing with a Z probe outside the bed area.
  861. //
  862. // With this feature enabled:
  863. //
  864. // - Allow Z homing only after X and Y homing AND stepper drivers still enabled.
  865. // - If stepper drivers time out, it will need X and Y homing again before Z homing.
  866. // - Move the Z probe (or nozzle) to a defined XY point before Z Homing when homing all axes (G28).
  867. // - Prevent Z homing when the Z probe is outside bed area.
  868. //#define Z_SAFE_HOMING
  869. #if ENABLED(Z_SAFE_HOMING)
  870. #define Z_SAFE_HOMING_X_POINT ((X_MIN_POS + X_MAX_POS) / 2) // X point for Z homing when homing all axis (G28).
  871. #define Z_SAFE_HOMING_Y_POINT ((Y_MIN_POS + Y_MAX_POS) / 2) // Y point for Z homing when homing all axis (G28).
  872. #endif
  873. // Delta only homes to Z
  874. #define HOMING_FEEDRATE_Z (60*60)
  875. //=============================================================================
  876. //============================= Additional Features ===========================
  877. //=============================================================================
  878. // @section extras
  879. //
  880. // EEPROM
  881. //
  882. // The microcontroller can store settings in the EEPROM, e.g. max velocity...
  883. // M500 - stores parameters in EEPROM
  884. // M501 - reads parameters from EEPROM (if you need reset them after you changed them temporarily).
  885. // M502 - reverts to the default "factory settings". You still need to store them in EEPROM afterwards if you want to.
  886. //define this to enable EEPROM support
  887. #define EEPROM_SETTINGS
  888. #if ENABLED(EEPROM_SETTINGS)
  889. // To disable EEPROM Serial responses and decrease program space by ~1700 byte: comment this out:
  890. #define EEPROM_CHITCHAT // Please keep turned on if you can.
  891. #endif
  892. //
  893. // Host Keepalive
  894. //
  895. // When enabled Marlin will send a busy status message to the host
  896. // every couple of seconds when it can't accept commands.
  897. //
  898. #define HOST_KEEPALIVE_FEATURE // Disable this if your host doesn't like keepalive messages
  899. #define DEFAULT_KEEPALIVE_INTERVAL 2 // Number of seconds between "busy" messages. Set with M113.
  900. //
  901. // M100 Free Memory Watcher
  902. //
  903. //#define M100_FREE_MEMORY_WATCHER // uncomment to add the M100 Free Memory Watcher for debug purpose
  904. //
  905. // G20/G21 Inch mode support
  906. //
  907. //#define INCH_MODE_SUPPORT
  908. //
  909. // M149 Set temperature units support
  910. //
  911. //#define TEMPERATURE_UNITS_SUPPORT
  912. // @section temperature
  913. // Preheat Constants
  914. #define PREHEAT_1_TEMP_HOTEND 180
  915. #define PREHEAT_1_TEMP_BED 70
  916. #define PREHEAT_1_FAN_SPEED 255 // Value from 0 to 255
  917. #define PREHEAT_2_TEMP_HOTEND 240
  918. #define PREHEAT_2_TEMP_BED 100
  919. #define PREHEAT_2_FAN_SPEED 255 // Value from 0 to 255
  920. //
  921. // Nozzle Park -- EXPERIMENTAL
  922. //
  923. // When enabled allows the user to define a special XYZ position, inside the
  924. // machine's topology, to park the nozzle when idle or when receiving the G27
  925. // command.
  926. //
  927. // The "P" paramenter controls what is the action applied to the Z axis:
  928. // P0: (Default) If current Z-pos is lower than Z-park then the nozzle will
  929. // be raised to reach Z-park height.
  930. //
  931. // P1: No matter the current Z-pos, the nozzle will be raised/lowered to
  932. // reach Z-park height.
  933. //
  934. // P2: The nozzle height will be raised by Z-park amount but never going over
  935. // the machine's limit of Z_MAX_POS.
  936. //
  937. //#define NOZZLE_PARK_FEATURE
  938. #if ENABLED(NOZZLE_PARK_FEATURE)
  939. // Specify a park position as { X, Y, Z }
  940. #define NOZZLE_PARK_POINT { (X_MIN_POS + 10), (Y_MAX_POS - 10), 20 }
  941. #endif
  942. //
  943. // Clean Nozzle Feature -- EXPERIMENTAL
  944. //
  945. // When enabled allows the user to send G12 to start the nozzle cleaning
  946. // process, the G-Code accepts two parameters:
  947. // "P" for pattern selection
  948. // "S" for defining the number of strokes/repetitions
  949. //
  950. // Available list of patterns:
  951. // P0: This is the default pattern, this process requires a sponge type
  952. // material at a fixed bed location. S defines "strokes" i.e.
  953. // back-and-forth movements between the starting and end points.
  954. //
  955. // P1: This starts a zig-zag pattern between (X0, Y0) and (X1, Y1), "T"
  956. // defines the number of zig-zag triangles to be done. "S" defines the
  957. // number of strokes aka one back-and-forth movement. Zig-zags will
  958. // be performed in whichever dimension is smallest. As an example,
  959. // sending "G12 P1 S1 T3" will execute:
  960. //
  961. // --
  962. // | (X0, Y1) | /\ /\ /\ | (X1, Y1)
  963. // | | / \ / \ / \ |
  964. // A | | / \ / \ / \ |
  965. // | | / \ / \ / \ |
  966. // | (X0, Y0) | / \/ \/ \ | (X1, Y0)
  967. // -- +--------------------------------+
  968. // |________|_________|_________|
  969. // T1 T2 T3
  970. //
  971. // P2: This starts a circular pattern with circle with middle in
  972. // NOZZLE_CLEAN_CIRCLE_MIDDLE radius of R and stroke count of S.
  973. // Before starting the circle nozzle goes to NOZZLE_CLEAN_START_POINT.
  974. //
  975. // Caveats: End point Z should use the same value as Start point Z.
  976. //
  977. // Attention: This is an EXPERIMENTAL feature, in the future the G-code arguments
  978. // may change to add new functionality like different wipe patterns.
  979. //
  980. //#define NOZZLE_CLEAN_FEATURE
  981. #if ENABLED(NOZZLE_CLEAN_FEATURE)
  982. // Default number of pattern repetitions
  983. #define NOZZLE_CLEAN_STROKES 12
  984. // Default number of triangles
  985. #define NOZZLE_CLEAN_TRIANGLES 3
  986. // Specify positions as { X, Y, Z }
  987. #define NOZZLE_CLEAN_START_POINT { 30, 30, (Z_MIN_POS + 1)}
  988. #define NOZZLE_CLEAN_END_POINT {100, 60, (Z_MIN_POS + 1)}
  989. // Circular pattern radius
  990. #define NOZZLE_CLEAN_CIRCLE_RADIUS 6.5
  991. // Circular pattern circle fragments number
  992. #define NOZZLE_CLEAN_CIRCLE_FN 10
  993. // Middle point of circle
  994. #define NOZZLE_CLEAN_CIRCLE_MIDDLE NOZZLE_CLEAN_START_POINT
  995. // Moves the nozzle to the initial position
  996. #define NOZZLE_CLEAN_GOBACK
  997. #endif
  998. //
  999. // Print job timer
  1000. //
  1001. // Enable this option to automatically start and stop the
  1002. // print job timer when M104/M109/M190 commands are received.
  1003. // M104 (extruder without wait) - high temp = none, low temp = stop timer
  1004. // M109 (extruder with wait) - high temp = start timer, low temp = stop timer
  1005. // M190 (bed with wait) - high temp = start timer, low temp = none
  1006. //
  1007. // In all cases the timer can be started and stopped using
  1008. // the following commands:
  1009. //
  1010. // - M75 - Start the print job timer
  1011. // - M76 - Pause the print job timer
  1012. // - M77 - Stop the print job timer
  1013. #define PRINTJOB_TIMER_AUTOSTART
  1014. //
  1015. // Print Counter
  1016. //
  1017. // When enabled Marlin will keep track of some print statistical data such as:
  1018. // - Total print jobs
  1019. // - Total successful print jobs
  1020. // - Total failed print jobs
  1021. // - Total time printing
  1022. //
  1023. // This information can be viewed by the M78 command.
  1024. //#define PRINTCOUNTER
  1025. //=============================================================================
  1026. //============================= LCD and SD support ============================
  1027. //=============================================================================
  1028. // @section lcd
  1029. //
  1030. // LCD LANGUAGE
  1031. //
  1032. // Here you may choose the language used by Marlin on the LCD menus, the following
  1033. // list of languages are available:
  1034. // en, an, bg, ca, cn, cz, de, el, el-gr, es, eu, fi, fr, gl, hr, it,
  1035. // kana, kana_utf8, nl, pl, pt, pt_utf8, pt-br, pt-br_utf8, ru, tr, uk, test
  1036. //
  1037. // :{ 'en':'English', 'an':'Aragonese', 'bg':'Bulgarian', 'ca':'Catalan', 'cn':'Chinese', 'cz':'Czech', 'de':'German', 'el':'Greek', 'el-gr':'Greek (Greece)', 'es':'Spanish', 'eu':'Basque-Euskera', 'fi':'Finnish', 'fr':'French', 'gl':'Galician', 'hr':'Croatian', 'it':'Italian', 'kana':'Japanese', 'kana_utf8':'Japanese (UTF8)', 'nl':'Dutch', 'pl':'Polish', 'pt':'Portuguese', 'pt-br':'Portuguese (Brazilian)', 'pt-br_utf8':'Portuguese (Brazilian UTF8)', 'pt_utf8':'Portuguese (UTF8)', 'ru':'Russian', 'tr':'Turkish', 'uk':'Ukrainian', 'test':'TEST' }
  1038. //
  1039. #define LCD_LANGUAGE en
  1040. //
  1041. // LCD Character Set
  1042. //
  1043. // Note: This option is NOT applicable to Graphical Displays.
  1044. //
  1045. // All character-based LCD's provide ASCII plus one of these
  1046. // language extensions:
  1047. //
  1048. // - JAPANESE ... the most common
  1049. // - WESTERN ... with more accented characters
  1050. // - CYRILLIC ... for the Russian language
  1051. //
  1052. // To determine the language extension installed on your controller:
  1053. //
  1054. // - Compile and upload with LCD_LANGUAGE set to 'test'
  1055. // - Click the controller to view the LCD menu
  1056. // - The LCD will display Japanese, Western, or Cyrillic text
  1057. //
  1058. // See https://github.com/MarlinFirmware/Marlin/wiki/LCD-Language
  1059. //
  1060. // :['JAPANESE', 'WESTERN', 'CYRILLIC']
  1061. //
  1062. #define DISPLAY_CHARSET_HD44780 JAPANESE
  1063. //
  1064. // LCD TYPE
  1065. //
  1066. // You may choose ULTRA_LCD if you have character based LCD with 16x2, 16x4, 20x2,
  1067. // 20x4 char/lines or DOGLCD for the full graphics display with 128x64 pixels
  1068. // (ST7565R family). (This option will be set automatically for certain displays.)
  1069. //
  1070. // IMPORTANT NOTE: The U8glib library is required for Full Graphic Display!
  1071. // https://github.com/olikraus/U8glib_Arduino
  1072. //
  1073. //#define ULTRA_LCD // Character based
  1074. //#define DOGLCD // Full graphics display
  1075. //
  1076. // SD CARD
  1077. //
  1078. // SD Card support is disabled by default. If your controller has an SD slot,
  1079. // you must uncomment the following option or it won't work.
  1080. //
  1081. //#define SDSUPPORT
  1082. //
  1083. // SD CARD: SPI SPEED
  1084. //
  1085. // Uncomment ONE of the following items to use a slower SPI transfer
  1086. // speed. This is usually required if you're getting volume init errors.
  1087. //
  1088. //#define SPI_SPEED SPI_HALF_SPEED
  1089. //#define SPI_SPEED SPI_QUARTER_SPEED
  1090. //#define SPI_SPEED SPI_EIGHTH_SPEED
  1091. //
  1092. // SD CARD: ENABLE CRC
  1093. //
  1094. // Use CRC checks and retries on the SD communication.
  1095. //
  1096. //#define SD_CHECK_AND_RETRY
  1097. //
  1098. // ENCODER SETTINGS
  1099. //
  1100. // This option overrides the default number of encoder pulses needed to
  1101. // produce one step. Should be increased for high-resolution encoders.
  1102. //
  1103. //#define ENCODER_PULSES_PER_STEP 1
  1104. //
  1105. // Use this option to override the number of step signals required to
  1106. // move between next/prev menu items.
  1107. //
  1108. //#define ENCODER_STEPS_PER_MENU_ITEM 5
  1109. /**
  1110. * Encoder Direction Options
  1111. *
  1112. * Test your encoder's behavior first with both options disabled.
  1113. *
  1114. * Reversed Value Edit and Menu Nav? Enable REVERSE_ENCODER_DIRECTION.
  1115. * Reversed Menu Navigation only? Enable REVERSE_MENU_DIRECTION.
  1116. * Reversed Value Editing only? Enable BOTH options.
  1117. */
  1118. //
  1119. // This option reverses the encoder direction everywhere
  1120. //
  1121. // Set this option if CLOCKWISE causes values to DECREASE
  1122. //
  1123. //#define REVERSE_ENCODER_DIRECTION
  1124. //
  1125. // This option reverses the encoder direction for navigating LCD menus.
  1126. //
  1127. // If CLOCKWISE normally moves DOWN this makes it go UP.
  1128. // If CLOCKWISE normally moves UP this makes it go DOWN.
  1129. //
  1130. //#define REVERSE_MENU_DIRECTION
  1131. //
  1132. // Individual Axis Homing
  1133. //
  1134. // Add individual axis homing items (Home X, Home Y, and Home Z) to the LCD menu.
  1135. //
  1136. //#define INDIVIDUAL_AXIS_HOMING_MENU
  1137. //
  1138. // SPEAKER/BUZZER
  1139. //
  1140. // If you have a speaker that can produce tones, enable it here.
  1141. // By default Marlin assumes you have a buzzer with a fixed frequency.
  1142. //
  1143. //#define SPEAKER
  1144. //
  1145. // The duration and frequency for the UI feedback sound.
  1146. // Set these to 0 to disable audio feedback in the LCD menus.
  1147. //
  1148. // Note: Test audio output with the G-Code:
  1149. // M300 S<frequency Hz> P<duration ms>
  1150. //
  1151. //#define LCD_FEEDBACK_FREQUENCY_DURATION_MS 100
  1152. //#define LCD_FEEDBACK_FREQUENCY_HZ 1000
  1153. //
  1154. // CONTROLLER TYPE: Standard
  1155. //
  1156. // Marlin supports a wide variety of controllers.
  1157. // Enable one of the following options to specify your controller.
  1158. //
  1159. //
  1160. // ULTIMAKER Controller.
  1161. //
  1162. //#define ULTIMAKERCONTROLLER
  1163. //
  1164. // ULTIPANEL as seen on Thingiverse.
  1165. //
  1166. //#define ULTIPANEL
  1167. //
  1168. // Cartesio UI
  1169. // http://mauk.cc/webshop/cartesio-shop/electronics/user-interface
  1170. //
  1171. //#define CARTESIO_UI
  1172. //
  1173. // PanelOne from T3P3 (via RAMPS 1.4 AUX2/AUX3)
  1174. // http://reprap.org/wiki/PanelOne
  1175. //
  1176. //#define PANEL_ONE
  1177. //
  1178. // MaKr3d Makr-Panel with graphic controller and SD support.
  1179. // http://reprap.org/wiki/MaKr3d_MaKrPanel
  1180. //
  1181. //#define MAKRPANEL
  1182. //
  1183. // ReprapWorld Graphical LCD
  1184. // https://reprapworld.com/?products_details&products_id/1218
  1185. //
  1186. //#define REPRAPWORLD_GRAPHICAL_LCD
  1187. //
  1188. // Activate one of these if you have a Panucatt Devices
  1189. // Viki 2.0 or mini Viki with Graphic LCD
  1190. // http://panucatt.com
  1191. //
  1192. //#define VIKI2
  1193. //#define miniVIKI
  1194. //
  1195. // Adafruit ST7565 Full Graphic Controller.
  1196. // https://github.com/eboston/Adafruit-ST7565-Full-Graphic-Controller/
  1197. //
  1198. //#define ELB_FULL_GRAPHIC_CONTROLLER
  1199. //
  1200. // RepRapDiscount Smart Controller.
  1201. // http://reprap.org/wiki/RepRapDiscount_Smart_Controller
  1202. //
  1203. // Note: Usually sold with a white PCB.
  1204. //
  1205. #define REPRAP_DISCOUNT_SMART_CONTROLLER
  1206. //
  1207. // GADGETS3D G3D LCD/SD Controller
  1208. // http://reprap.org/wiki/RAMPS_1.3/1.4_GADGETS3D_Shield_with_Panel
  1209. //
  1210. // Note: Usually sold with a blue PCB.
  1211. //
  1212. //#define G3D_PANEL
  1213. //
  1214. // RepRapDiscount FULL GRAPHIC Smart Controller
  1215. // http://reprap.org/wiki/RepRapDiscount_Full_Graphic_Smart_Controller
  1216. //
  1217. //#define REPRAP_DISCOUNT_FULL_GRAPHIC_SMART_CONTROLLER
  1218. //
  1219. // MakerLab Mini Panel with graphic
  1220. // controller and SD support - http://reprap.org/wiki/Mini_panel
  1221. //
  1222. //#define MINIPANEL
  1223. //
  1224. // RepRapWorld REPRAPWORLD_KEYPAD v1.1
  1225. // http://reprapworld.com/?products_details&products_id=202&cPath=1591_1626
  1226. //
  1227. // REPRAPWORLD_KEYPAD_MOVE_STEP sets how much should the robot move when a key
  1228. // is pressed, a value of 10.0 means 10mm per click.
  1229. //
  1230. //#define REPRAPWORLD_KEYPAD
  1231. //#define REPRAPWORLD_KEYPAD_MOVE_STEP 1.0
  1232. //
  1233. // RigidBot Panel V1.0
  1234. // http://www.inventapart.com/
  1235. //
  1236. //#define RIGIDBOT_PANEL
  1237. //
  1238. // BQ LCD Smart Controller shipped by
  1239. // default with the BQ Hephestos 2 and Witbox 2.
  1240. //
  1241. //#define BQ_LCD_SMART_CONTROLLER
  1242. //
  1243. // CONTROLLER TYPE: I2C
  1244. //
  1245. // Note: These controllers require the installation of Arduino's LiquidCrystal_I2C
  1246. // library. For more info: https://github.com/kiyoshigawa/LiquidCrystal_I2C
  1247. //
  1248. //
  1249. // Elefu RA Board Control Panel
  1250. // http://www.elefu.com/index.php?route=product/product&product_id=53
  1251. //
  1252. //#define RA_CONTROL_PANEL
  1253. //
  1254. // Sainsmart YW Robot (LCM1602) LCD Display
  1255. //
  1256. //#define LCD_I2C_SAINSMART_YWROBOT
  1257. //
  1258. // Generic LCM1602 LCD adapter
  1259. //
  1260. //#define LCM1602
  1261. //
  1262. // PANELOLU2 LCD with status LEDs,
  1263. // separate encoder and click inputs.
  1264. //
  1265. // Note: This controller requires Arduino's LiquidTWI2 library v1.2.3 or later.
  1266. // For more info: https://github.com/lincomatic/LiquidTWI2
  1267. //
  1268. // Note: The PANELOLU2 encoder click input can either be directly connected to
  1269. // a pin (if BTN_ENC defined to != -1) or read through I2C (when BTN_ENC == -1).
  1270. //
  1271. //#define LCD_I2C_PANELOLU2
  1272. //
  1273. // Panucatt VIKI LCD with status LEDs,
  1274. // integrated click & L/R/U/D buttons, separate encoder inputs.
  1275. //
  1276. //#define LCD_I2C_VIKI
  1277. //
  1278. // SSD1306 OLED full graphics generic display
  1279. //
  1280. //#define U8GLIB_SSD1306
  1281. //
  1282. // SAV OLEd LCD module support using either SSD1306 or SH1106 based LCD modules
  1283. //
  1284. //#define SAV_3DGLCD
  1285. #if ENABLED(SAV_3DGLCD)
  1286. //#define U8GLIB_SSD1306
  1287. #define U8GLIB_SH1106
  1288. #endif
  1289. //
  1290. // CONTROLLER TYPE: Shift register panels
  1291. //
  1292. // 2 wire Non-latching LCD SR from https://goo.gl/aJJ4sH
  1293. // LCD configuration: http://reprap.org/wiki/SAV_3D_LCD
  1294. //
  1295. //#define SAV_3DLCD
  1296. //
  1297. // TinyBoy2 128x64 OLED / Encoder Panel
  1298. //
  1299. //#define OLED_PANEL_TINYBOY2
  1300. //=============================================================================
  1301. //=============================== Extra Features ==============================
  1302. //=============================================================================
  1303. // @section extras
  1304. // Increase the FAN PWM frequency. Removes the PWM noise but increases heating in the FET/Arduino
  1305. //#define FAST_PWM_FAN
  1306. // Use software PWM to drive the fan, as for the heaters. This uses a very low frequency
  1307. // which is not as annoying as with the hardware PWM. On the other hand, if this frequency
  1308. // is too low, you should also increment SOFT_PWM_SCALE.
  1309. //#define FAN_SOFT_PWM
  1310. // Incrementing this by 1 will double the software PWM frequency,
  1311. // affecting heaters, and the fan if FAN_SOFT_PWM is enabled.
  1312. // However, control resolution will be halved for each increment;
  1313. // at zero value, there are 128 effective control positions.
  1314. #define SOFT_PWM_SCALE 0
  1315. // If SOFT_PWM_SCALE is set to a value higher than 0, dithering can
  1316. // be used to mitigate the associated resolution loss. If enabled,
  1317. // some of the PWM cycles are stretched so on average the desired
  1318. // duty cycle is attained.
  1319. //#define SOFT_PWM_DITHER
  1320. // Temperature status LEDs that display the hotend and bed temperature.
  1321. // If all hotends, bed temperature, and target temperature are under 54C
  1322. // then the BLUE led is on. Otherwise the RED led is on. (1C hysteresis)
  1323. //#define TEMP_STAT_LEDS
  1324. // M240 Triggers a camera by emulating a Canon RC-1 Remote
  1325. // Data from: http://www.doc-diy.net/photo/rc-1_hacked/
  1326. //#define PHOTOGRAPH_PIN 23
  1327. // SkeinForge sends the wrong arc g-codes when using Arc Point as fillet procedure
  1328. //#define SF_ARC_FIX
  1329. // Support for the BariCUDA Paste Extruder.
  1330. //#define BARICUDA
  1331. //define BlinkM/CyzRgb Support
  1332. //#define BLINKM
  1333. // Support for an RGB LED using 3 separate pins with optional PWM
  1334. //#define RGB_LED
  1335. #if ENABLED(RGB_LED)
  1336. #define RGB_LED_R_PIN 34
  1337. #define RGB_LED_G_PIN 43
  1338. #define RGB_LED_B_PIN 35
  1339. #endif
  1340. /*********************************************************************\
  1341. * R/C SERVO support
  1342. * Sponsored by TrinityLabs, Reworked by codexmas
  1343. **********************************************************************/
  1344. // Number of servos
  1345. //
  1346. // If you select a configuration below, this will receive a default value and does not need to be set manually
  1347. // set it manually if you have more servos than extruders and wish to manually control some
  1348. // leaving it undefined or defining as 0 will disable the servo subsystem
  1349. // If unsure, leave commented / disabled
  1350. //
  1351. //#define NUM_SERVOS 3 // Servo index starts with 0 for M280 command
  1352. // Delay (in milliseconds) before the next move will start, to give the servo time to reach its target angle.
  1353. // 300ms is a good value but you can try less delay.
  1354. // If the servo can't reach the requested position, increase it.
  1355. #define SERVO_DELAY 300
  1356. // Servo deactivation
  1357. //
  1358. // With this option servos are powered only during movement, then turned off to prevent jitter.
  1359. //#define DEACTIVATE_SERVOS_AFTER_MOVE
  1360. /**********************************************************************\
  1361. * Support for a filament diameter sensor
  1362. * Also allows adjustment of diameter at print time (vs at slicing)
  1363. * Single extruder only at this point (extruder 0)
  1364. *
  1365. * Motherboards
  1366. * 34 - RAMPS1.4 - uses Analog input 5 on the AUX2 connector
  1367. * 81 - Printrboard - Uses Analog input 2 on the Exp1 connector (version B,C,D,E)
  1368. * 301 - Rambo - uses Analog input 3
  1369. * Note may require analog pins to be defined for different motherboards
  1370. **********************************************************************/
  1371. // Uncomment below to enable
  1372. //#define FILAMENT_WIDTH_SENSOR
  1373. #define DEFAULT_NOMINAL_FILAMENT_DIA 3.00 //Enter the diameter (in mm) of the filament generally used (3.0 mm or 1.75 mm) - this is then used in the slicer software. Used for sensor reading validation
  1374. #if ENABLED(FILAMENT_WIDTH_SENSOR)
  1375. #define FILAMENT_SENSOR_EXTRUDER_NUM 0 //The number of the extruder that has the filament sensor (0,1,2)
  1376. #define MEASUREMENT_DELAY_CM 14 //measurement delay in cm. This is the distance from filament sensor to middle of barrel
  1377. #define MEASURED_UPPER_LIMIT 3.30 //upper limit factor used for sensor reading validation in mm
  1378. #define MEASURED_LOWER_LIMIT 1.90 //lower limit factor for sensor reading validation in mm
  1379. #define MAX_MEASUREMENT_DELAY 20 //delay buffer size in bytes (1 byte = 1cm)- limits maximum measurement delay allowable (must be larger than MEASUREMENT_DELAY_CM and lower number saves RAM)
  1380. #define DEFAULT_MEASURED_FILAMENT_DIA DEFAULT_NOMINAL_FILAMENT_DIA //set measured to nominal initially
  1381. //When using an LCD, uncomment the line below to display the Filament sensor data on the last line instead of status. Status will appear for 5 sec.
  1382. //#define FILAMENT_LCD_DISPLAY
  1383. #endif
  1384. #endif // CONFIGURATION_H