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[2.0.x] Anycubic LinearPlus, Trigorilla 1.4 (#11730)

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Scott Lahteine 2018-09-10 21:25:40 -05:00 committed by GitHub
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# Readme
These configurations activate many of the new advanced features of the Marlin firmware:
* Auto Calibration
* Auto Bed Leveling
* Pause & Filament Change
**Important**: Before doing anything else after updating the firmware, go to `Configuration > Advanced Settings > Initialize EEPROM` to get rid of old configurations.
After that you should connect the Z-Probe and start `Configuration > Delta Calibration > Auto Calibration`. When it's done don't forget to also do `Configuration > Delta Calibration > Store Settings` to make it permanent.
You should also do a `Motion > Bed Leveling > Level bed` followed by `Store Settings` to ensure a perfect leveling.
Please do a manual paper test (moving the nozzle slowly down to Z0 and checking with a piece of paper). If it's not perfect, use `Configuration > Advanced Settings > Probe Z Offset` to correct the difference and execute the calibration again.
**Also Important**: if you value your Z-Probe do NOT execute `Configuration > Delta Configuration > Probe Z-offset` - This can destroy the Z-Probe, see issue [#11337](https://github.com/MarlinFirmware/Marlin/issues/11337).
# Select the Configuration
**Please select the correct values at the start of the Configuration.h file**
The Kossel comes in 3 versions:
* Pulley
* Linear
* Linear Plus
Pulley and Linear use the same configuration, the Linear Plus is bigger and uses slightly different configurations.
Typically the probes for the Anycubic Delta Kossel printers come in two different versions.
* Version 1: Z Probe Offset of -19.0mm
![Version 1 Probe](images/Version1Probe.jpg)
* Version 2: Z Probe Offset of -16.8mm
![Version 2 Probe](images/Version2Probe.jpg)
If you select the `ANYCUBIC_PROBE_VERSION 0`: It's very important to follow the correct procedure to set it up after flashing the firmware, otherwise you might damage the printer by ramming the nozzle into the buildplate:
* `Configuration > Advanced Settings > Initialize EEPROM`
* `Motion > Move Axis > Soft Endstops` : `Off`
* Auto Home and slowly move the nozzle down until it barely touches the bed. (Do a paper-test: A normal sheet of paper should just feel the drag of the nozzle) and note this number.
* Subtract this number from the value in `Configuration > Delta Calibration > Delta Settings > Height`. (If it's negative, add it).
* Save and try the paper test again to verify your height.
* `Configuration > Store Settings`
* Motion > Bed Leveling (using paper test)

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#define IS_RAMPS_EFB
#define FAN2_PIN 44
#define ORIG_E0_AUTO_FAN_PIN 44
// FAN0 / D9 - Typically used for the part fan on Anycubic Delta devices
#define FAN_PIN 9
// FAN1 / D7 - Typically unused, can be allocated as Case Fan
// FAN2 / D44 - Typical Extruder Fan on Anycubic Delta devices
#define FAN2_PIN 44
#define ORIG_E0_AUTO_FAN_PIN 44
#include "pins_RAMPS.h"
// TODO 1.4 boards do have an E1 stepper driver. However the pin definitions
// from pins_RAMPS.h are incorrect for this board. e.g., Pin 44 is the Extruder fan.
#undef E1_STEP_PIN
#undef E1_DIR_PIN
#undef E1_ENABLE_PIN
#undef E1_CS_PIN
//
// AnyCubic made the following changes to 1.1.0-RC8
// If these are appropriate for your LCD let us know.
//
#if 0 && ENABLED(ULTRA_LCD)
// LCD Display output pins
#if ENABLED(NEWPANEL) && ENABLED(PANEL_ONE)
#undef LCD_PINS_D6
#define LCD_PINS_D6 57
#endif
// LCD Display input pins
#if ENABLED(NEWPANEL)
#if ENABLED(VIKI2) || ENABLED(miniVIKI)
#undef DOGLCD_A0
#define DOGLCD_A0 23
#elif ENABLED(ELB_FULL_GRAPHIC_CONTROLLER)
#undef BEEPER_PIN
#define BEEPER_PIN 33
#undef LCD_BACKLIGHT_PIN
#define LCD_BACKLIGHT_PIN 67
#endif
#elif ENABLED(MINIPANEL)
#undef BEEPER_PIN
#define BEEPER_PIN 33
#undef DOGLCD_A0
#define DOGLCD_A0 42
#endif
#endif // ULTRA_LCD