My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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Configuration_adv.h 28KB

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  1. // Example configuration file for OpenBeam Kossel Pro
  2. // tested on 2015-05-19 by @Wackerbarth
  3. // using Arduino 1.6.5 (Mac)
  4. #ifndef CONFIGURATION_ADV_H
  5. #define CONFIGURATION_ADV_H
  6. #include "Conditionals.h"
  7. // @section temperature
  8. //===========================================================================
  9. //=============================Thermal Settings ============================
  10. //===========================================================================
  11. #if ENABLED(BED_LIMIT_SWITCHING)
  12. #define BED_HYSTERESIS 2 //only disable heating if T>target+BED_HYSTERESIS and enable heating if T>target-BED_HYSTERESIS
  13. #endif
  14. #define BED_CHECK_INTERVAL 5000 //ms between checks in bang-bang control
  15. /**
  16. * Thermal Protection parameters
  17. */
  18. #if ENABLED(THERMAL_PROTECTION_HOTENDS)
  19. #define THERMAL_PROTECTION_PERIOD 40 // Seconds
  20. #define THERMAL_PROTECTION_HYSTERESIS 4 // Degrees Celsius
  21. /**
  22. * Whenever an M104 or M109 increases the target temperature the firmware will wait for the
  23. * WATCH_TEMP_PERIOD to expire, and if the temperature hasn't increased by WATCH_TEMP_INCREASE
  24. * degrees, the machine is halted, requiring a hard reset. This test restarts with any M104/M109,
  25. * but only if the current temperature is far enough below the target for a reliable test.
  26. */
  27. #define WATCH_TEMP_PERIOD 16 // Seconds
  28. #define WATCH_TEMP_INCREASE 4 // Degrees Celsius
  29. #endif
  30. #if ENABLED(THERMAL_PROTECTION_BED)
  31. #define THERMAL_PROTECTION_BED_PERIOD 20 // Seconds
  32. #define THERMAL_PROTECTION_BED_HYSTERESIS 2 // Degrees Celsius
  33. #endif
  34. /**
  35. * Automatic Temperature:
  36. * The hotend target temperature is calculated by all the buffered lines of gcode.
  37. * The maximum buffered steps/sec of the extruder motor is called "se".
  38. * Start autotemp mode with M109 S<mintemp> B<maxtemp> F<factor>
  39. * The target temperature is set to mintemp+factor*se[steps/sec] and is limited by
  40. * mintemp and maxtemp. Turn this off by excuting M109 without F*
  41. * Also, if the temperature is set to a value below mintemp, it will not be changed by autotemp.
  42. * On an Ultimaker, some initial testing worked with M109 S215 B260 F1 in the start.gcode
  43. */
  44. #if ENABLED(PIDTEMP)
  45. // this adds an experimental additional term to the heating power, proportional to the extrusion speed.
  46. // if Kc is chosen well, the additional required power due to increased melting should be compensated.
  47. #define PID_ADD_EXTRUSION_RATE
  48. #if ENABLED(PID_ADD_EXTRUSION_RATE)
  49. #define DEFAULT_Kc (100) //heating power=Kc*(e_speed)
  50. #define LPQ_MAX_LEN 50
  51. #endif
  52. #endif
  53. //automatic temperature: The hot end target temperature is calculated by all the buffered lines of gcode.
  54. //The maximum buffered steps/sec of the extruder motor are called "se".
  55. //You enter the autotemp mode by a M109 S<mintemp> B<maxtemp> F<factor>
  56. // the target temperature is set to mintemp+factor*se[steps/sec] and limited by mintemp and maxtemp
  57. // you exit the value by any M109 without F*
  58. // Also, if the temperature is set to a value <mintemp, it is not changed by autotemp.
  59. // on an Ultimaker, some initial testing worked with M109 S215 B260 F1 in the start.gcode
  60. #define AUTOTEMP
  61. #if ENABLED(AUTOTEMP)
  62. #define AUTOTEMP_OLDWEIGHT 0.98
  63. #endif
  64. //Show Temperature ADC value
  65. //The M105 command return, besides traditional information, the ADC value read from temperature sensors.
  66. //#define SHOW_TEMP_ADC_VALUES
  67. // @section extruder
  68. // extruder run-out prevention.
  69. //if the machine is idle, and the temperature over MINTEMP, every couple of SECONDS some filament is extruded
  70. //#define EXTRUDER_RUNOUT_PREVENT
  71. #define EXTRUDER_RUNOUT_MINTEMP 190
  72. #define EXTRUDER_RUNOUT_SECONDS 30.
  73. #define EXTRUDER_RUNOUT_ESTEPS 14. //mm filament
  74. #define EXTRUDER_RUNOUT_SPEED 1500. //extrusion speed
  75. #define EXTRUDER_RUNOUT_EXTRUDE 100
  76. // @section temperature
  77. //These defines help to calibrate the AD595 sensor in case you get wrong temperature measurements.
  78. //The measured temperature is defined as "actualTemp = (measuredTemp * TEMP_SENSOR_AD595_GAIN) + TEMP_SENSOR_AD595_OFFSET"
  79. #define TEMP_SENSOR_AD595_OFFSET 0.0
  80. #define TEMP_SENSOR_AD595_GAIN 1.0
  81. //This is for controlling a fan to cool down the stepper drivers
  82. //it will turn on when any driver is enabled
  83. //and turn off after the set amount of seconds from last driver being disabled again
  84. #define CONTROLLERFAN_PIN -1 //Pin used for the fan to cool controller (-1 to disable)
  85. #define CONTROLLERFAN_SECS 60 //How many seconds, after all motors were disabled, the fan should run
  86. #define CONTROLLERFAN_SPEED 255 // == full speed
  87. // When first starting the main fan, run it at full speed for the
  88. // given number of milliseconds. This gets the fan spinning reliably
  89. // before setting a PWM value. (Does not work with software PWM for fan on Sanguinololu)
  90. //#define FAN_KICKSTART_TIME 100
  91. // This defines the minimal speed for the main fan, run in PWM mode
  92. // to enable uncomment and set minimal PWM speed for reliable running (1-255)
  93. // if fan speed is [1 - (FAN_MIN_PWM-1)] it is set to FAN_MIN_PWM
  94. //#define FAN_MIN_PWM 50
  95. // @section extruder
  96. // Extruder cooling fans
  97. // Configure fan pin outputs to automatically turn on/off when the associated
  98. // extruder temperature is above/below EXTRUDER_AUTO_FAN_TEMPERATURE.
  99. // Multiple extruders can be assigned to the same pin in which case
  100. // the fan will turn on when any selected extruder is above the threshold.
  101. #define EXTRUDER_0_AUTO_FAN_PIN -1
  102. #define EXTRUDER_1_AUTO_FAN_PIN -1
  103. #define EXTRUDER_2_AUTO_FAN_PIN -1
  104. #define EXTRUDER_3_AUTO_FAN_PIN -1
  105. #define EXTRUDER_AUTO_FAN_TEMPERATURE 50
  106. #define EXTRUDER_AUTO_FAN_SPEED 255 // == full speed
  107. //===========================================================================
  108. //=============================Mechanical Settings===========================
  109. //===========================================================================
  110. // @section homing
  111. #define ENDSTOPS_ONLY_FOR_HOMING // If defined the endstops will only be used for homing
  112. // @section extras
  113. //#define Z_LATE_ENABLE // Enable Z the last moment. Needed if your Z driver overheats.
  114. // A single Z stepper driver is usually used to drive 2 stepper motors.
  115. // Uncomment this define to utilize a separate stepper driver for each Z axis motor.
  116. // Only a few motherboards support this, like RAMPS, which have dual extruder support (the 2nd, often unused, extruder driver is used
  117. // to control the 2nd Z axis stepper motor). The pins are currently only defined for a RAMPS motherboards.
  118. // On a RAMPS (or other 5 driver) motherboard, using this feature will limit you to using 1 extruder.
  119. //#define Z_DUAL_STEPPER_DRIVERS
  120. #if ENABLED(Z_DUAL_STEPPER_DRIVERS)
  121. // Z_DUAL_ENDSTOPS is a feature to enable the use of 2 endstops for both Z steppers - Let's call them Z stepper and Z2 stepper.
  122. // That way the machine is capable to align the bed during home, since both Z steppers are homed.
  123. // There is also an implementation of M666 (software endstops adjustment) to this feature.
  124. // After Z homing, this adjustment is applied to just one of the steppers in order to align the bed.
  125. // One just need to home the Z axis and measure the distance difference between both Z axis and apply the math: Z adjust = Z - Z2.
  126. // If the Z stepper axis is closer to the bed, the measure Z > Z2 (yes, it is.. think about it) and the Z adjust would be positive.
  127. // Play a little bit with small adjustments (0.5mm) and check the behaviour.
  128. // The M119 (endstops report) will start reporting the Z2 Endstop as well.
  129. //#define Z_DUAL_ENDSTOPS
  130. #if ENABLED(Z_DUAL_ENDSTOPS)
  131. #define Z2_MAX_PIN 36 //Endstop used for Z2 axis. In this case I'm using XMAX in a Rumba Board (pin 36)
  132. const bool Z2_MAX_ENDSTOP_INVERTING = false;
  133. #define DISABLE_XMAX_ENDSTOP //Better to disable the XMAX to avoid conflict. Just rename "XMAX_ENDSTOP" by the endstop you are using for Z2 axis.
  134. #endif
  135. #endif // Z_DUAL_STEPPER_DRIVERS
  136. // Same again but for Y Axis.
  137. //#define Y_DUAL_STEPPER_DRIVERS
  138. #if ENABLED(Y_DUAL_STEPPER_DRIVERS)
  139. // Define if the two Y drives need to rotate in opposite directions
  140. #define INVERT_Y2_VS_Y_DIR true
  141. #endif
  142. // Enable this for dual x-carriage printers.
  143. // A dual x-carriage design has the advantage that the inactive extruder can be parked which
  144. // prevents hot-end ooze contaminating the print. It also reduces the weight of each x-carriage
  145. // allowing faster printing speeds.
  146. //#define DUAL_X_CARRIAGE
  147. #if ENABLED(DUAL_X_CARRIAGE)
  148. // Configuration for second X-carriage
  149. // Note: the first x-carriage is defined as the x-carriage which homes to the minimum endstop;
  150. // the second x-carriage always homes to the maximum endstop.
  151. #define X2_MIN_POS 80 // set minimum to ensure second x-carriage doesn't hit the parked first X-carriage
  152. #define X2_MAX_POS 353 // set maximum to the distance between toolheads when both heads are homed
  153. #define X2_HOME_DIR 1 // the second X-carriage always homes to the maximum endstop position
  154. #define X2_HOME_POS X2_MAX_POS // default home position is the maximum carriage position
  155. // However: In this mode the EXTRUDER_OFFSET_X value for the second extruder provides a software
  156. // override for X2_HOME_POS. This also allow recalibration of the distance between the two endstops
  157. // without modifying the firmware (through the "M218 T1 X???" command).
  158. // Remember: you should set the second extruder x-offset to 0 in your slicer.
  159. // Pins for second x-carriage stepper driver (defined here to avoid further complicating pins.h)
  160. #define X2_ENABLE_PIN 29
  161. #define X2_STEP_PIN 25
  162. #define X2_DIR_PIN 23
  163. // There are a few selectable movement modes for dual x-carriages using M605 S<mode>
  164. // Mode 0: Full control. The slicer has full control over both x-carriages and can achieve optimal travel results
  165. // as long as it supports dual x-carriages. (M605 S0)
  166. // Mode 1: Auto-park mode. The firmware will automatically park and unpark the x-carriages on tool changes so
  167. // that additional slicer support is not required. (M605 S1)
  168. // Mode 2: Duplication mode. The firmware will transparently make the second x-carriage and extruder copy all
  169. // actions of the first x-carriage. This allows the printer to print 2 arbitrary items at
  170. // once. (2nd extruder x offset and temp offset are set using: M605 S2 [Xnnn] [Rmmm])
  171. // This is the default power-up mode which can be later using M605.
  172. #define DEFAULT_DUAL_X_CARRIAGE_MODE 0
  173. // Default settings in "Auto-park Mode"
  174. #define TOOLCHANGE_PARK_ZLIFT 0.2 // the distance to raise Z axis when parking an extruder
  175. #define TOOLCHANGE_UNPARK_ZLIFT 1 // the distance to raise Z axis when unparking an extruder
  176. // Default x offset in duplication mode (typically set to half print bed width)
  177. #define DEFAULT_DUPLICATION_X_OFFSET 100
  178. #endif //DUAL_X_CARRIAGE
  179. // @section homing
  180. //homing hits the endstop, then retracts by this distance, before it tries to slowly bump again:
  181. #define X_HOME_BUMP_MM 5
  182. #define Y_HOME_BUMP_MM 5
  183. #define Z_HOME_BUMP_MM 5 // deltas need the same for all three axis
  184. #define HOMING_BUMP_DIVISOR {10, 10, 10} // Re-Bump Speed Divisor (Divides the Homing Feedrate)
  185. //#define QUICK_HOME //if this is defined, if both x and y are to be homed, a diagonal move will be performed initially.
  186. // When G28 is called, this option will make Y home before X
  187. //#define HOME_Y_BEFORE_X
  188. // @section machine
  189. #define AXIS_RELATIVE_MODES {false, false, false, false}
  190. // @section machine
  191. //By default pololu step drivers require an active high signal. However, some high power drivers require an active low signal as step.
  192. #define INVERT_X_STEP_PIN false
  193. #define INVERT_Y_STEP_PIN false
  194. #define INVERT_Z_STEP_PIN false
  195. #define INVERT_E_STEP_PIN false
  196. // Default stepper release if idle. Set to 0 to deactivate.
  197. #define DEFAULT_STEPPER_DEACTIVE_TIME 60
  198. #define DEFAULT_MINIMUMFEEDRATE 0.0 // minimum feedrate
  199. #define DEFAULT_MINTRAVELFEEDRATE 0.0
  200. // @section lcd
  201. #if ENABLED(ULTIPANEL)
  202. #define MANUAL_FEEDRATE_XYZ 50*60
  203. #define MANUAL_FEEDRATE { MANUAL_FEEDRATE_XYZ, MANUAL_FEEDRATE_XYZ, MANUAL_FEEDRATE_XYZ, 60 } // Feedrates for manual moves along X, Y, Z, E from panel
  204. #define ULTIPANEL_FEEDMULTIPLY // Comment to disable setting feedrate multiplier via encoder
  205. #endif
  206. // @section extras
  207. // minimum time in microseconds that a movement needs to take if the buffer is emptied.
  208. #define DEFAULT_MINSEGMENTTIME 20000
  209. // If defined the movements slow down when the look ahead buffer is only half full
  210. //#define SLOWDOWN
  211. // Frequency limit
  212. // See nophead's blog for more info
  213. // Not working O
  214. //#define XY_FREQUENCY_LIMIT 15
  215. // Minimum planner junction speed. Sets the default minimum speed the planner plans for at the end
  216. // of the buffer and all stops. This should not be much greater than zero and should only be changed
  217. // if unwanted behavior is observed on a user's machine when running at very slow speeds.
  218. #define MINIMUM_PLANNER_SPEED 0.05// (mm/sec)
  219. // Microstep setting (Only functional when stepper driver microstep pins are connected to MCU.
  220. #define MICROSTEP_MODES {16,16,16,16,16} // [1,2,4,8,16]
  221. // Motor Current setting (Only functional when motor driver current ref pins are connected to a digital trimpot on supported boards)
  222. #define DIGIPOT_MOTOR_CURRENT {135,135,135,135,135} // Values 0-255 (RAMBO 135 = ~0.75A, 185 = ~1A)
  223. // uncomment to enable an I2C based DIGIPOT like on the Azteeg X3 Pro
  224. //#define DIGIPOT_I2C
  225. // Number of channels available for I2C digipot, For Azteeg X3 Pro we have 8
  226. #define DIGIPOT_I2C_NUM_CHANNELS 8
  227. // actual motor currents in Amps, need as many here as DIGIPOT_I2C_NUM_CHANNELS
  228. #define DIGIPOT_I2C_MOTOR_CURRENTS {1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0}
  229. //===========================================================================
  230. //=============================Additional Features===========================
  231. //===========================================================================
  232. #define ENCODER_RATE_MULTIPLIER // If defined, certain menu edit operations automatically multiply the steps when the encoder is moved quickly
  233. #define ENCODER_10X_STEPS_PER_SEC 75 // If the encoder steps per sec exceeds this value, multiply steps moved x10 to quickly advance the value
  234. #define ENCODER_100X_STEPS_PER_SEC 160 // If the encoder steps per sec exceeds this value, multiply steps moved x100 to really quickly advance the value
  235. //#define CHDK 4 //Pin for triggering CHDK to take a picture see how to use it here http://captain-slow.dk/2014/03/09/3d-printing-timelapses/
  236. #define CHDK_DELAY 50 //How long in ms the pin should stay HIGH before going LOW again
  237. // @section lcd
  238. #if ENABLED(SDSUPPORT)
  239. // Some RAMPS and other boards don't detect when an SD card is inserted. You can work
  240. // around this by connecting a push button or single throw switch to the pin defined
  241. // as SD_DETECT_PIN in your board's pins definitions.
  242. // This setting should be disabled unless you are using a push button, pulling the pin to ground.
  243. // Note: This is always disabled for ULTIPANEL (except ELB_FULL_GRAPHIC_CONTROLLER).
  244. #define SD_DETECT_INVERTED
  245. #define SD_FINISHED_STEPPERRELEASE true //if sd support and the file is finished: disable steppers?
  246. #define SD_FINISHED_RELEASECOMMAND "M84 X Y Z E" // You might want to keep the z enabled so your bed stays in place.
  247. #define SDCARD_RATHERRECENTFIRST //reverse file order of sd card menu display. Its sorted practically after the file system block order.
  248. // if a file is deleted, it frees a block. hence, the order is not purely chronological. To still have auto0.g accessible, there is again the option to do that.
  249. // using:
  250. //#define MENU_ADDAUTOSTART
  251. // Show a progress bar on HD44780 LCDs for SD printing
  252. //#define LCD_PROGRESS_BAR
  253. #if ENABLED(LCD_PROGRESS_BAR)
  254. // Amount of time (ms) to show the bar
  255. #define PROGRESS_BAR_BAR_TIME 2000
  256. // Amount of time (ms) to show the status message
  257. #define PROGRESS_BAR_MSG_TIME 3000
  258. // Amount of time (ms) to retain the status message (0=forever)
  259. #define PROGRESS_MSG_EXPIRE 0
  260. // Enable this to show messages for MSG_TIME then hide them
  261. //#define PROGRESS_MSG_ONCE
  262. #endif
  263. // This allows hosts to request long names for files and folders with M33
  264. //#define LONG_FILENAME_HOST_SUPPORT
  265. // This option allows you to abort SD printing when any endstop is triggered.
  266. // This feature must be enabled with "M540 S1" or from the LCD menu.
  267. // To have any effect, endstops must be enabled during SD printing.
  268. // With ENDSTOPS_ONLY_FOR_HOMING you must send "M120" to enable endstops.
  269. //#define ABORT_ON_ENDSTOP_HIT_FEATURE_ENABLED
  270. #endif // SDSUPPORT
  271. // for dogm lcd displays you can choose some additional fonts:
  272. #if ENABLED(DOGLCD)
  273. // save 3120 bytes of PROGMEM by commenting out #define USE_BIG_EDIT_FONT
  274. // we don't have a big font for Cyrillic, Kana
  275. //#define USE_BIG_EDIT_FONT
  276. // If you have spare 2300Byte of progmem and want to use a
  277. // smaller font on the Info-screen uncomment the next line.
  278. //#define USE_SMALL_INFOFONT
  279. #endif // DOGLCD
  280. // @section more
  281. // The hardware watchdog should reset the microcontroller disabling all outputs, in case the firmware gets stuck and doesn't do temperature regulation.
  282. //#define USE_WATCHDOG
  283. #if ENABLED(USE_WATCHDOG)
  284. // If you have a watchdog reboot in an ArduinoMega2560 then the device will hang forever, as a watchdog reset will leave the watchdog on.
  285. // The "WATCHDOG_RESET_MANUAL" goes around this by not using the hardware reset.
  286. // However, THIS FEATURE IS UNSAFE!, as it will only work if interrupts are disabled. And the code could hang in an interrupt routine with interrupts disabled.
  287. //#define WATCHDOG_RESET_MANUAL
  288. #endif
  289. // @section lcd
  290. // Babystepping enables the user to control the axis in tiny amounts, independently from the normal printing process
  291. // it can e.g. be used to change z-positions in the print startup phase in real-time
  292. // does not respect endstops!
  293. //#define BABYSTEPPING
  294. #if ENABLED(BABYSTEPPING)
  295. #define BABYSTEP_XY //not only z, but also XY in the menu. more clutter, more functions
  296. #define BABYSTEP_INVERT_Z false //true for inverse movements in Z
  297. #define BABYSTEP_Z_MULTIPLICATOR 2 //faster z movements
  298. #endif
  299. // @section extruder
  300. // extruder advance constant (s2/mm3)
  301. //
  302. // advance (steps) = STEPS_PER_CUBIC_MM_E * EXTRUDER_ADVANCE_K * cubic mm per second ^ 2
  303. //
  304. // Hooke's law says: force = k * distance
  305. // Bernoulli's principle says: v ^ 2 / 2 + g . h + pressure / density = constant
  306. // so: v ^ 2 is proportional to number of steps we advance the extruder
  307. //#define ADVANCE
  308. #if ENABLED(ADVANCE)
  309. #define EXTRUDER_ADVANCE_K .0
  310. #define D_FILAMENT 2.85
  311. #define STEPS_MM_E 836
  312. #endif
  313. // @section extras
  314. // Arc interpretation settings:
  315. #define MM_PER_ARC_SEGMENT 1
  316. #define N_ARC_CORRECTION 25
  317. const unsigned int dropsegments=5; //everything with less than this number of steps will be ignored as move and joined with the next movement
  318. // @section temperature
  319. // Control heater 0 and heater 1 in parallel.
  320. //#define HEATERS_PARALLEL
  321. //===========================================================================
  322. //================================= Buffers =================================
  323. //===========================================================================
  324. // @section hidden
  325. // The number of linear motions that can be in the plan at any give time.
  326. // THE BLOCK_BUFFER_SIZE NEEDS TO BE A POWER OF 2, i.g. 8,16,32 because shifts and ors are used to do the ring-buffering.
  327. #if ENABLED(SDSUPPORT)
  328. #define BLOCK_BUFFER_SIZE 16 // SD,LCD,Buttons take more memory, block buffer needs to be smaller
  329. #else
  330. #define BLOCK_BUFFER_SIZE 16 // maximize block buffer
  331. #endif
  332. // @section more
  333. //The ASCII buffer for receiving from the serial:
  334. #define MAX_CMD_SIZE 96
  335. #define BUFSIZE 4
  336. // Bad Serial-connections can miss a received command by sending an 'ok'
  337. // Therefore some clients abort after 30 seconds in a timeout.
  338. // Some other clients start sending commands while receiving a 'wait'.
  339. // This "wait" is only sent when the buffer is empty. 1 second is a good value here.
  340. //#define NO_TIMEOUTS 1000 // Milliseconds
  341. // Some clients will have this feature soon. This could make the NO_TIMEOUTS unnecessary.
  342. //#define ADVANCED_OK
  343. // @section fwretract
  344. // Firmware based and LCD controlled retract
  345. // M207 and M208 can be used to define parameters for the retraction.
  346. // The retraction can be called by the slicer using G10 and G11
  347. // until then, intended retractions can be detected by moves that only extrude and the direction.
  348. // the moves are than replaced by the firmware controlled ones.
  349. //#define FWRETRACT //ONLY PARTIALLY TESTED
  350. #if ENABLED(FWRETRACT)
  351. #define MIN_RETRACT 0.1 //minimum extruded mm to accept a automatic gcode retraction attempt
  352. #define RETRACT_LENGTH 3 //default retract length (positive mm)
  353. #define RETRACT_LENGTH_SWAP 13 //default swap retract length (positive mm), for extruder change
  354. #define RETRACT_FEEDRATE 45 //default feedrate for retracting (mm/s)
  355. #define RETRACT_ZLIFT 0 //default retract Z-lift
  356. #define RETRACT_RECOVER_LENGTH 0 //default additional recover length (mm, added to retract length when recovering)
  357. #define RETRACT_RECOVER_LENGTH_SWAP 0 //default additional swap recover length (mm, added to retract length when recovering from extruder change)
  358. #define RETRACT_RECOVER_FEEDRATE 8 //default feedrate for recovering from retraction (mm/s)
  359. #endif
  360. // Add support for experimental filament exchange support M600; requires display
  361. #if ENABLED(ULTIPANEL)
  362. //#define FILAMENTCHANGEENABLE
  363. #if ENABLED(FILAMENTCHANGEENABLE)
  364. #define FILAMENTCHANGE_XPOS 3
  365. #define FILAMENTCHANGE_YPOS 3
  366. #define FILAMENTCHANGE_ZADD 10
  367. #define FILAMENTCHANGE_FIRSTRETRACT -2
  368. #define FILAMENTCHANGE_FINALRETRACT -100
  369. #endif
  370. #endif
  371. /******************************************************************************\
  372. * enable this section if you have TMC26X motor drivers.
  373. * you need to import the TMC26XStepper library into the arduino IDE for this
  374. ******************************************************************************/
  375. // @section tmc
  376. //#define HAVE_TMCDRIVER
  377. #if ENABLED(HAVE_TMCDRIVER)
  378. //#define X_IS_TMC
  379. #define X_MAX_CURRENT 1000 //in mA
  380. #define X_SENSE_RESISTOR 91 //in mOhms
  381. #define X_MICROSTEPS 16 //number of microsteps
  382. //#define X2_IS_TMC
  383. #define X2_MAX_CURRENT 1000 //in mA
  384. #define X2_SENSE_RESISTOR 91 //in mOhms
  385. #define X2_MICROSTEPS 16 //number of microsteps
  386. //#define Y_IS_TMC
  387. #define Y_MAX_CURRENT 1000 //in mA
  388. #define Y_SENSE_RESISTOR 91 //in mOhms
  389. #define Y_MICROSTEPS 16 //number of microsteps
  390. //#define Y2_IS_TMC
  391. #define Y2_MAX_CURRENT 1000 //in mA
  392. #define Y2_SENSE_RESISTOR 91 //in mOhms
  393. #define Y2_MICROSTEPS 16 //number of microsteps
  394. //#define Z_IS_TMC
  395. #define Z_MAX_CURRENT 1000 //in mA
  396. #define Z_SENSE_RESISTOR 91 //in mOhms
  397. #define Z_MICROSTEPS 16 //number of microsteps
  398. //#define Z2_IS_TMC
  399. #define Z2_MAX_CURRENT 1000 //in mA
  400. #define Z2_SENSE_RESISTOR 91 //in mOhms
  401. #define Z2_MICROSTEPS 16 //number of microsteps
  402. //#define E0_IS_TMC
  403. #define E0_MAX_CURRENT 1000 //in mA
  404. #define E0_SENSE_RESISTOR 91 //in mOhms
  405. #define E0_MICROSTEPS 16 //number of microsteps
  406. //#define E1_IS_TMC
  407. #define E1_MAX_CURRENT 1000 //in mA
  408. #define E1_SENSE_RESISTOR 91 //in mOhms
  409. #define E1_MICROSTEPS 16 //number of microsteps
  410. //#define E2_IS_TMC
  411. #define E2_MAX_CURRENT 1000 //in mA
  412. #define E2_SENSE_RESISTOR 91 //in mOhms
  413. #define E2_MICROSTEPS 16 //number of microsteps
  414. //#define E3_IS_TMC
  415. #define E3_MAX_CURRENT 1000 //in mA
  416. #define E3_SENSE_RESISTOR 91 //in mOhms
  417. #define E3_MICROSTEPS 16 //number of microsteps
  418. #endif
  419. /******************************************************************************\
  420. * enable this section if you have L6470 motor drivers.
  421. * you need to import the L6470 library into the arduino IDE for this
  422. ******************************************************************************/
  423. // @section l6470
  424. //#define HAVE_L6470DRIVER
  425. #if ENABLED(HAVE_L6470DRIVER)
  426. //#define X_IS_L6470
  427. #define X_MICROSTEPS 16 //number of microsteps
  428. #define X_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  429. #define X_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  430. #define X_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  431. //#define X2_IS_L6470
  432. #define X2_MICROSTEPS 16 //number of microsteps
  433. #define X2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  434. #define X2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  435. #define X2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  436. //#define Y_IS_L6470
  437. #define Y_MICROSTEPS 16 //number of microsteps
  438. #define Y_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  439. #define Y_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  440. #define Y_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  441. //#define Y2_IS_L6470
  442. #define Y2_MICROSTEPS 16 //number of microsteps
  443. #define Y2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  444. #define Y2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  445. #define Y2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  446. //#define Z_IS_L6470
  447. #define Z_MICROSTEPS 16 //number of microsteps
  448. #define Z_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  449. #define Z_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  450. #define Z_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  451. //#define Z2_IS_L6470
  452. #define Z2_MICROSTEPS 16 //number of microsteps
  453. #define Z2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  454. #define Z2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  455. #define Z2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  456. //#define E0_IS_L6470
  457. #define E0_MICROSTEPS 16 //number of microsteps
  458. #define E0_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  459. #define E0_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  460. #define E0_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  461. //#define E1_IS_L6470
  462. #define E1_MICROSTEPS 16 //number of microsteps
  463. #define E1_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  464. #define E1_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  465. #define E1_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  466. //#define E2_IS_L6470
  467. #define E2_MICROSTEPS 16 //number of microsteps
  468. #define E2_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  469. #define E2_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  470. #define E2_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  471. //#define E3_IS_L6470
  472. #define E3_MICROSTEPS 16 //number of microsteps
  473. #define E3_K_VAL 50 // 0 - 255, Higher values, are higher power. Be carefull not to go too high
  474. #define E3_OVERCURRENT 2000 //maxc current in mA. If the current goes over this value, the driver will switch off
  475. #define E3_STALLCURRENT 1500 //current in mA where the driver will detect a stall
  476. #endif
  477. #include "Conditionals.h"
  478. #include "SanityCheck.h"
  479. #endif //CONFIGURATION_ADV_H