Merge remote-tracking branch 'upstream/edge' into feature/5-axis
[clinton/Smoothieware.git] / ConfigSamples / AzteegX5Mini.delta / config
1 # Robot module configurations : general handling of movement G-codes and slicing into moves
2
3 arm_solution linear_delta # delta selection
4 arm_length 370.00 # this is the length of an arm from hinge to hinge
5 arm_radius 203.00 # this is the horiontal distance from hinge to hinge when the effector is centered
6
7 default_feed_rate 4000 # Default rate ( mm/minute ) for G1/G2/G3 moves
8 default_seek_rate 4000 # Default rate ( mm/minute ) for G0 moves
9 mm_per_arc_segment 0.0 # Fixed length for line segments that divide arcs 0 to disable
10 mm_max_arc_error 0.01 # The maximum error for line segments that divide arcs 0 to disable
11 # note it is invalid for both the above be 0
12 # if both are used, will use largest segment length based on radius
13 #mm_per_line_segment 5 # Lines can be cut into segments ( not usefull with cartesian coordinates robots ).
14 delta_segments_per_second 100 # segments per second used for deltas
15
16 # Arm solution configuration : Cartesian robot. Translates mm positions into stepper positions
17 alpha_steps_per_mm 100 # Steps per mm for alpha stepper
18 beta_steps_per_mm 100 # Steps per mm for beta stepper
19 gamma_steps_per_mm 100 # Steps per mm for gamma stepper
20
21 # Planner module configuration : Look-ahead and acceleration configuration
22 planner_queue_size 32 # DO NOT CHANGE THIS UNLESS YOU KNOW EXACTLY WHAT YOUR ARE DOING
23 acceleration 1000 # Acceleration in mm/second/second.
24 acceleration_ticks_per_second 1000 # Number of times per second the speed is updated
25 junction_deviation 0.05 # Similar to the old "max_jerk", in millimeters, see : https://github.com/grbl/grbl/blob/master/planner.c#L409
26 # and https://github.com/grbl/grbl/wiki/Configuring-Grbl-v0.8 . Lower values mean being more careful, higher values means being faster and have more jerk
27
28 # Stepper module configuration
29 microseconds_per_step_pulse 1 # Duration of step pulses to stepper drivers, in microseconds
30 base_stepping_frequency 100000 # Base frequency for stepping
31
32 # Stepper module pins ( ports, and pin numbers, appending "!" to the number will invert a pin )
33 alpha_step_pin 2.1 # Pin for alpha stepper step signal
34 alpha_dir_pin 0.11 # Pin for alpha stepper direction
35 alpha_en_pin 0.10 # Pin for alpha enable pin
36 alpha_current 1.0 # X stepper motor current
37 alpha_max_rate 30000.0 # mm/min actuator max speed
38 x_axis_max_speed 30000.0 # mm/min cartesian max speed
39
40 beta_step_pin 2.2 # Pin for beta stepper step signal
41 beta_dir_pin 0.20 # Pin for beta stepper direction
42 beta_en_pin 0.19 # Pin for beta enable
43 beta_current 1.0 # Y stepper motor current
44 beta_max_rate 30000.0 # mm/min
45 y_axis_max_speed 30000.0 # mm/min
46
47 gamma_step_pin 2.3 # Pin for gamma stepper step signal
48 gamma_dir_pin 0.22 # Pin for gamma stepper direction
49 gamma_en_pin 0.21 # Pin for gamma enable
50 gamma_current 1.0 # Z stepper motor current
51 gamma_max_rate 30000.0 # mm/min
52 z_axis_max_speed 30000.0 # mm/min
53
54 # Serial communications configuration ( baud rate default to 9600 if undefined )
55 uart0.baud_rate 115200 # Baud rate for the default hardware serial port
56 second_usb_serial_enable false # This enables a second usb serial port (to have both pronterface and a terminal connected)
57 #msd_disable false # disable the MSD (USB SDCARD) when set to true
58 #leds_disable true # disable using leds after config loaded
59 #dfu_enable false # for linux developers, set to true to enable DFU
60 #watchdog_timeout 10 # watchdog timeout in seconds, default is 10, set to 0 to disable the watchdog
61
62 ## Extruder module configuration
63 extruder.hotend.enable true # Whether to activate the extruder module at all. All configuration is ignored if false
64 extruder.hotend.steps_per_mm 140 # Steps per mm for extruder stepper
65 extruder.hotend.default_feed_rate 600 # Default rate ( mm/minute ) for moves where only the extruder moves
66 extruder.hotend.acceleration 500 # Acceleration for the stepper motor mm/sec²
67 extruder.hotend.max_speed 50 # mm/s
68
69 extruder.hotend.step_pin 2.0 # Pin for extruder step signal
70 extruder.hotend.dir_pin 0.5 # Pin for extruder dir signal
71 extruder.hotend.en_pin 0.4 # Pin for extruder enable signal
72
73 # extruder offset
74 #extruder.hotend.x_offset 0 # x offset from origin in mm
75 #extruder.hotend.y_offset 0 # y offset from origin in mm
76 #extruder.hotend.z_offset 0 # z offset from origin in mm
77
78 # firmware retract settings when using G10/G11, these are the defaults if not defined, must be defined for each extruder if not using the defaults
79 #extruder.hotend.retract_length 3 # retract length in mm
80 #extruder.hotend.retract_feedrate 45 # retract feedrate in mm/sec
81 #extruder.hotend.retract_recover_length 0 # additional length for recover
82 #extruder.hotend.retract_recover_feedrate 8 # recover feedrate in mm/sec (should be less than retract feedrate)
83 #extruder.hotend.retract_zlift_length 0 # zlift on retract in mm, 0 disables
84 #extruder.hotend.retract_zlift_feedrate 6000 # zlift feedrate in mm/min (Note mm/min NOT mm/sec)
85
86 delta_current 0.7 # Extruder stepper motor current
87
88 # Laser module configuration
89 laser_module_enable false # Whether to activate the laser module at all. All configuration is
90 # ignored if false.
91 #laser_module_pin 2.5 # this pin will be PWMed to control the laser. Only P2.0 - P2.5, P1.18, P1.20, P1.21, P1.23, P1.24, P1.26, P3.25, P3.26
92 # can be used since laser requires hardware PWM
93 #laser_module_maximum_power 1.0 # this is the maximum duty cycle that will be applied to the laser
94 #laser_module_minimum_power 0.0 # This is a value just below the minimum duty cycle that keeps the laser
95 # active without actually burning.
96 #laser_module_default_power 0.8 # This is the default laser power that will be used for cuts if a power has not been specified. The value is a scale between
97 # the maximum and minimum power levels specified above
98 #laser_module_pwm_period 20 # this sets the pwm frequency as the period in microseconds
99
100 # Hotend temperature control configuration
101 temperature_control.hotend.enable true # Whether to activate this ( "hotend" ) module at all. All configuration is ignored if false.
102 temperature_control.hotend.thermistor_pin 0.24 # Pin for the thermistor to read
103 temperature_control.hotend.heater_pin 2.5 # Pin that controls the heater
104 temperature_control.hotend.thermistor EPCOS100K # see http://smoothieware.org/temperaturecontrol#toc5
105 #temperature_control.hotend.beta 4066 # or set the beta value
106
107 temperature_control.hotend.set_m_code 104 #
108 temperature_control.hotend.set_and_wait_m_code 109 #
109 temperature_control.hotend.designator T #
110 #temperature_control.hotend.max_temp 300 # Set maximum temperature - Will prevent heating above 300 by default
111 #temperature_control.hotend.min_temp 0 # Set minimum temperature - Will prevent heating below 0 by default
112
113 #P39.98 I5.00 D79.91
114 # temperature_control.hotend.p_factor 39.98 #
115 # temperature_control.hotend.i_factor 5.00 #
116 # temperature_control.hotend.d_factor 79.91 #
117
118 # For bed
119 temperature_control.bed.enable false #
120 temperature_control.bed.thermistor_pin 0.23 #
121 temperature_control.bed.heater_pin 2.7 #
122 temperature_control.bed.thermistor EPCOS100K # http://smoothieware.org/temperaturecontrol#toc5
123 #temperature_control.bed.beta 4066 # or set the beta value
124
125 temperature_control.bed.set_m_code 140 #
126 temperature_control.bed.set_and_wait_m_code 190 #
127 temperature_control.bed.designator B #
128 # uncomment followng to use bang bang isntead of PID for the bed (best for relay conrolled hotbeds)
129 #temperature_control.bed.bang_bang true # set to true to use bang bang control rather than PID
130 #temperature_control.bed.hysteresis 2.0 # set to the temperature in degrees C to use as hysteresis when using bang bang
131
132 # Switch module for fan control
133 switch.fan.enable true #
134 switch.fan.input_on_command M106 #
135 switch.fan.input_off_command M107 #
136 switch.fan.output_pin 2.4 #
137
138 # automatically toggle a switch at a specified temperature. Different ones of these may be defined to monitor different temperatures and switch different swithxes
139 # useful to turn on a fan or water pump to cool the hotend
140 #temperatureswitch.hotend.enable true #
141 #temperatureswitch.hotend.designator T # first character of the temperature control designator to use as the temperature sensor to monitor
142 #temperatureswitch.hotend.switch misc # select which switch to use, matches the name of the defined switch
143 #temperatureswitch.hotend.threshold_temp 60.0 # temperature to turn on (if rising) or off the switch
144 #temperatureswitch.hotend.heatup_poll 15 # poll heatup at 15 sec intervals
145 #temperatureswitch.hotend.cooldown_poll 60 # poll cooldown at 60 sec intervals
146
147
148 # switch.psu.enable true # turn atx on/off
149 # switch.psu.input_on_command M80 #
150 # switch.psu.input_off_command M81 #
151 # switch.psu.output_pin 2.13o! # open drain, inverted
152
153 # Switch module for spindle control
154 #switch.spindle.enable false #
155
156 # Endstops
157 endstops_enable true # the endstop module is enabled by default and can be disabled here
158 delta_homing true # forces all three axis to home a the same time regardless of what is specified in G28
159 alpha_max_endstop 1.24^ #
160 alpha_homing_direction home_to_max # or set to home_to_max and set alpha_max
161 alpha_min 0 # this gets loaded after homing when home_to_min is set
162 alpha_max 0 # this gets loaded after homing when home_to_max is set
163 beta_max_endstop 1.26^ #
164 beta_homing_direction home_to_max #
165 beta_min 0 #
166 beta_max 0 #
167 gamma_max_endstop 1.28^ #
168 gamma_homing_direction home_to_max #
169 gamma_min 0 #
170 gamma_max 430 # change to suit your height
171
172 #probe endstop
173 #probe_pin 1.29 # optional pin for probe
174
175 alpha_fast_homing_rate_mm_s 200 # feedrates in mm/second
176 beta_fast_homing_rate_mm_s 200 # "
177 gamma_fast_homing_rate_mm_s 200 # "
178 alpha_slow_homing_rate_mm_s 20 # "
179 beta_slow_homing_rate_mm_s 20 # "
180 gamma_slow_homing_rate_mm_s 20 # "
181
182 alpha_homing_retract_mm 5 # distance in mm
183 beta_homing_retract_mm 5 # "
184 gamma_homing_retract_mm 5 # "
185
186 alpha_trim 0 # software trim for alpha stepper endstop (in mm) - moves down
187 beta_trim 0 # software trim for beta stepper endstop (in mm)
188 gamma_trim 0 # software trim for gamma stepper endstop (in mm)
189
190 # optional enable limit switches, actions will stop if any enabled limit switch is triggered
191 #alpha_limit_enable false # set to true to enable X min and max limit switches
192 #beta_limit_enable false # set to true to enable Y min and max limit switches
193 #gamma_limit_enable false # set to true to enable Z min and max limit switches
194
195 #move_to_origin_after_home true # move XY to 0,0 after homing
196
197 # optional Z probe http://smoothieware.org/zprobe
198 zprobe.enable false # set to true to enable a zprobe
199 zprobe.probe_pin 1.29!^ # pin probe is attached to if NC remove the !
200 zprobe.slow_feedrate 5 # mm/sec probe feed rate
201 #zprobe.debounce_count 100 # set if noisy
202 zprobe.fast_feedrate 100 # move feedrate
203 zprobe.probe_height 5 # how much above bed to start probe
204
205 # associated with zprobe the leveling strategy to use
206 #leveling-strategy.delta-calibration.enable true # basic delta calibration
207 #leveling-strategy.delta-calibration.radius 100 # the probe radius
208
209 # kill button (used to be called pause) maybe assigned to a different pin, set to the onboard pin by default
210 kill_button_enable true # set to true to enable a kill button
211 kill_button_pin 2.12 # kill button pin. default is same as pause button 2.12 (2.11 is another good choice)
212
213 # Panel See http://smoothieware.org/panel
214 panel.enable false # set to true to enable the panel code
215
216 # Example viki2 config for an azteeg miniV2 with IDC cable
217 panel.lcd viki2 # set type of panel
218 panel.spi_channel 0 # set spi channel to use P0_18,P0_15 MOSI,SCLK
219 panel.spi_cs_pin 0.16 # set spi chip select
220 panel.encoder_a_pin 3.25!^ # encoder pin
221 panel.encoder_b_pin 3.26!^ # encoder pin
222 panel.click_button_pin 2.11!^ # click button
223 panel.a0_pin 2.6 # st7565 needs an a0
224 #panel.contrast 8 # override contrast setting (default is 9)
225 #panel.encoder_resolution 4 # override number of clicks to move 1 item (default is 4)
226 #panel.button_pause_pin 1.22^ # kill/pause set one of these for the auxilliary button on viki2
227 #panel.back_button_pin 1.22!^ # back button recommended to use this on EXP1
228 panel.buzz_pin 0.25 # pin for buzzer on EXP2
229 panel.red_led_pin 2.8 # pin for red led on viki2 on EXP1
230 panel.blue_led_pin 4.29 # pin for blue led on viki2 on EXP1
231 panel.external_sd true # set to true if there is an extrernal sdcard on the panel
232 panel.external_sd.spi_channel 0 # set spi channel the sdcard is on
233 panel.external_sd.spi_cs_pin 1.23 # set spi chip select for the sdcard
234 panel.external_sd.sdcd_pin 1.31!^ # sd detect signal (set to nc if no sdcard detect)
235 panel.menu_offset 1 # some panels will need 1 here
236
237 # Example mini viki2 config
238 #panel.lcd mini_viki2 # set type of panel
239 #panel.spi_channel 0 # set spi channel to use P0_18,P0_15 MOSI,SCLK
240 #panel.spi_cs_pin 0.16 # set spi chip select
241 #panel.encoder_a_pin 3.25!^ # encoder pin
242 #panel.encoder_b_pin 3.26!^ # encoder pin
243 #panel.click_button_pin 2.11!^ # click button
244 #panel.a0_pin 2.6 # st7565 needs an a0
245 ##panel.contrast 18 # override contrast setting (default is 18)
246 ##panel.encoder_resolution 2 # override number of clicks to move 1 item (default is 2)
247 #panel.menu_offset 1 # here controls how sensitive the menu is. some panels will need 1
248
249 panel.alpha_jog_feedrate 6000 # x jogging feedrate in mm/min
250 panel.beta_jog_feedrate 6000 # y jogging feedrate in mm/min
251 panel.gamma_jog_feedrate 200 # z jogging feedrate in mm/min
252
253 panel.hotend_temperature 185 # temp to set hotend when preheat is selected
254 panel.bed_temperature 60 # temp to set bed when preheat is selected
255
256 # Azteeg specific settings do not change
257 currentcontrol_module_enable true #
258 digipot_max_current 2.4 # max current
259 digipot_factor 106.0 # factor for converting current to digipot value