Duet3D Logo Duet3D
    • Tags
    • Documentation
    • Order
    • Register
    • Login

    reference the X-axis on both rails

    Scheduled Pinned Locked Moved
    Using Duet Controllers
    4
    59
    2.5k
    Loading More Posts
    • Oldest to Newest
    • Newest to Oldest
    • Most Votes
    Reply
    • Reply as topic
    Log in to reply
    This topic has been deleted. Only users with topic management privileges can see it.
    • axiomundefined
      axiom @fcwilt
      last edited by

      @fcwilt I test the endstop with the homing function

      1 Reply Last reply Reply Quote 0
      • axiomundefined
        axiom @fcwilt
        last edited by

        @fcwilt I tried the endstop before on the y-axis and it worked there...so the wiring/plugs and the function of the endstop are no longer necessary

        1 Reply Last reply Reply Quote 0
        • axiomundefined
          axiom @fcwilt
          last edited by

          @fcwilt Ok...with G1 H1 Z0 it works...homing is probably reserved for the probe

          fcwiltundefined 1 Reply Last reply Reply Quote 0
          • fcwiltundefined
            fcwilt @axiom
            last edited by

            @axiom said in reference the X-axis on both rails:

            with G1 H1 Z0 it works...homing is probably reserved for the probe

            When testing it is usually best to use the smallest bit of code that will do the job, thus the question about G1 H1.

            Please post your homing files.

            Frederick

            Printers: a small Utilmaker style, a small CoreXY and a E3D MS/TC setup. Various hotends. Using Duet 3 hardware running 3.4.6

            axiomundefined 1 Reply Last reply Reply Quote 0
            • axiomundefined
              axiom @fcwilt
              last edited by

              @fcwilt Ok here they are:
              ; homeall.g
              ; called to home all axes
              ;
              ; generated by RepRapFirmware Configuration Tool v3.3.16 on Sun May 28 2023 15:23:44 GMT+0200 (Mitteleuropäische Sommerzeit)
              G91 ; relative positioning
              G1 H2 Z5 F6000 ; lift Z relative to current position
              G1 H1 X-755 Y-643 F1500 ; move quickly to X and Y axis endstops and stop there (first pass)
              G1 H2 X5 Y5 F6000 ; go back a few mm
              G1 H1 X-755 Y-643 F360 ; move slowly to X and Y axis endstops once more (second pass)
              G90 ; absolute positioning
              G1 X10 Y10 F6000 ; go to first bed probe point and home Z
              G30 ; home Z by probing the bed

              ; Uncomment the following lines to lift Z after probing
              ;G91 ; relative positioning
              ;G1 Z5 F100 ; lift Z relative to current position
              ;G90 ; absolute positioning

              ; homex.g
              ; called to home the X axis
              ;
              ; generated by RepRapFirmware Configuration Tool v3.3.16 on Sun May 28 2023 15:23:44 GMT+0200 (Mitteleuropäische Sommerzeit)
              G91 ; relative positioning
              G1 H2 Z5 F6000 ; lift Z relative to current position
              G1 H1 X-755 F1500 ; move quickly to X axis endstop and stop there (first pass)
              G1 H2 X5 F6000 ; go back a few mm
              G1 H1 X-755 F360 ; move slowly to X axis endstop once more (second pass)
              G1 H2 Z-5 F6000 ; lower Z again
              G90 ; absolute positioning

              ; homey.g
              ; called to home the Y axis
              ;
              ; generated by RepRapFirmware Configuration Tool v3.3.16 on Sun May 28 2023 15:23:44 GMT+0200 (Mitteleuropäische Sommerzeit)
              G91 ; relative positioning
              G1 H2 Z5 F6000 ; lift Z relative to current position
              G1 H1 Y-643 F1500 ; move quickly to Y axis endstop and stop there (first pass)
              G1 H2 Y5 F6000 ; go back a few mm
              G1 H1 Y-643 F360 ; move slowly to Y axis endstop once more (second pass)
              G1 H2 Z-5 F6000 ; lower Z again
              G90 ; absolute positioning

              ; homez.g
              ; called to home the Z axis
              ;
              ; generated by RepRapFirmware Configuration Tool v3.3.16 on Sun May 28 2023 15:23:44 GMT+0200 (Mitteleuropäische Sommerzeit)
              G91 ; relative positioning
              G1 H2 Z5 F6000 ; lift Z relative to current position
              G90 ; absolute positioning
              G1 X1 Y61 F6000 ; go to first probe point
              G30 ; home Z by probing the bed

              ; Uncomment the following lines to lift Z after probing
              ;G91 ; relative positioning
              ;G1 Z5 F100 ; lift Z relative to current position
              ;G90 ; absolute positioning

              fcwiltundefined 1 Reply Last reply Reply Quote 0
              • fcwiltundefined
                fcwilt @axiom
                last edited by

                @axiom

                Thanks.

                As I expected homing of Z is being done with the probe.

                Once you have the Z endstop sensor (or multiple sensors) in place you can use them instead of the Z probe to home the Z axis.

                It will make the homing a bit simpler.

                Just FYI.

                I don't like having actual homing code in homeall.g.

                I simply have this:

                M98 P"homeZ.g"
                M98 P"homeX.g"
                M98 P"homeY.g"
                

                Remember that I always install Z endstop sensors on my printers so I can home Z first. Also I don't use the Z probe during homing at all, it is not necessary.

                Yes, by putting actual homing code in homeall.g you can optimize things slightly but I don't consider it worth it for the added complexity of having essentially duplicate code in two places.

                Frederick

                Printers: a small Utilmaker style, a small CoreXY and a E3D MS/TC setup. Various hotends. Using Duet 3 hardware running 3.4.6

                axiomundefined 2 Replies Last reply Reply Quote 0
                • axiomundefined
                  axiom @fcwilt
                  last edited by

                  @fcwilt What do I have to write into the Homing.g files instead of the G30 command?

                  fcwiltundefined 1 Reply Last reply Reply Quote 0
                  • axiomundefined
                    axiom @fcwilt
                    last edited by

                    @fcwilt or to put it another way...if I delete homeall.g, how do I correct homez.g?

                    1 Reply Last reply Reply Quote 0
                    • fcwiltundefined
                      fcwilt @axiom
                      last edited by fcwilt

                      @axiom

                      Do you have the Z endstop sensor installed and ready to use? Good job.

                      OK as to the code...

                      Basically you use the same sort of G1 H1 commands that you do with X and Y axes.

                      The three files homeX.g, homeY.g and homeZ.g could end up looking pretty much the same.

                      To provide example code let's assume that all three axes home to the axis minimum. Let's also assume that the range of motion on each axis is a total of 300mm. The essential code would look something like this:

                      In homeX.g:

                      G91               ; relative moves
                      G1 H1 X-310 F6000 ; fast move to min endstop
                      G1 X20            ; back off a bit
                      G1 H1 X-25 F600   ; slow move to min endstop
                      G92 X###          ; where ### is the actual axis position when the motion stopped - usually determined by testing
                      

                      In homeY.g:

                      G91               ; relative moves
                      G1 H1 Y-310 F6000 ; fast move to min endstop
                      G1 Y20            ; back off a bit
                      G1 H1 Y-25 F600   ; slow move to min endstop
                      G92 Y###          ; where ### is the actual axis position when the motion stopped - usually determined by testing
                      

                      In home Z.g:

                      G91               ; relative moves
                      G1 H1 Z-310 F1200 ; fast move to min endstop
                      G1 Z20            ; back off a bit
                      G1 H1 Z-25 F300   ; slow move to min endstop
                      G92 Z###          ; where ### is the actual axis position when the motion stopped - usually determined by testing
                      

                      Regards the G92 commands:

                      Remember that the G1 H1 moves stop when the endstop is triggered and the logical axis position is set to the min/max value from the M208 for that axis, depending on the configured location of the endstop.

                      But if your endstops don't actually trigger at exactly the min/max position (mine never do) then you can use G92 so the logical position of the axis (which G92 sets) is in sync with the physical position.

                      Hope that helps rather than confuses.

                      Frederick

                      Printers: a small Utilmaker style, a small CoreXY and a E3D MS/TC setup. Various hotends. Using Duet 3 hardware running 3.4.6

                      axiomundefined 2 Replies Last reply Reply Quote 0
                      • axiomundefined
                        axiom @fcwilt
                        last edited by

                        @fcwilt Thank you very much first of all... now I have to wait until the expansion board arrives (hopefully this week)... only then can I try it out and then report back... have a nice Sunday!
                        Cheers,
                        Don

                        fcwiltundefined 1 Reply Last reply Reply Quote 0
                        • fcwiltundefined
                          fcwilt @axiom
                          last edited by fcwilt

                          @axiom

                          If I cannot help I am always happy to confused.

                          I just noticed a mistake in my example code the F letter was missing from the slow moves speed setting. I just corrected them.

                          Frederick

                          Printers: a small Utilmaker style, a small CoreXY and a E3D MS/TC setup. Various hotends. Using Duet 3 hardware running 3.4.6

                          axiomundefined 1 Reply Last reply Reply Quote 0
                          • axiomundefined
                            axiom @fcwilt
                            last edited by

                            @fcwilt ; General preferences
                            I have now installed the expansion board and wired everything up. All axes work and endstops also react. but with the m119 command the message Z comes: no endstop, what could be the problem...here is my current code

                            M575 P1 S1 B57600 ; enable support for PanelDue
                            G90 ; send absolute coordinates...
                            M83 ; ...but relative extruder moves
                            M550 P"DUKA1300" ; set printer name

                            ; Network
                            M552 S1 ; enable network
                            M586 P0 S1 ; enable HTTP
                            M586 P1 S1 ; enable FTP
                            M586 P2 S1 ; enable Telnet

                            ; Drives
                            ;M569 P4 R-1 ; Treiber 4 deaktivieren
                            ;M569 P3 R-1 ; Treiber 4 deaktivieren
                            M569 P0 S1 ; physical drive 0 goes forwards
                            M569 P1 S1 ; physical drive 1 goes forwards
                            M569 P2 S1 ; physical drive 2 goes forwards
                            M569 P3 S1 ; physical drive 3 goes forwards
                            M569 P4 S0 ; physical drive 3 goes forwards
                            M569 P5 S1 ; physical drive 3 goes forwards Expansionboard
                            M569 P6 S1 ; physical drive 3 goes forwards Expansionboard
                            M569 P7 S1 ; physical drive 3 goes forwards Expansionboard
                            M569 P8 S1 ; physical drive 3 goes forwards Expansionboard
                            ;M584 X0 Z2 E1 ; set drive mapping
                            ;M584 X0 Z2 E1 ; set drive mapping
                            ;M584 X0:4 Y1 Z2 E3 ; set drive mapping
                            M584 X0:4 Y1 Z5:6:7:8 E3 ; set drive mapping
                            M350 X16 Y16 Z16 E16 I1 ; configure microstepping with interpolation
                            M92 X80.00 Y80.00 Z640 E322.58 ; set steps per mm
                            M566 X900.00 Y900.00 Z100.00 E120.00 ; set maximum instantaneous speed changes (mm/min)
                            M203 X6000.00 Y6000.00 Z300.00 E1200.00 ; set maximum speeds (mm/min)
                            ;M201 X500.00 Y500.00 Z20.00 E250.00 ; set accelerations (mm/s^2)
                            M201 X500.00 Y500.00 Z40.00 E250.00 ; set accelerations (mm/s^2)
                            M906 X1800 Y1800 Z1700 E1600 I30 ; set motor currents (mA) and motor idle factor in per cent
                            M84 S30 ; Set idle timeout

                            ; Axis Limits
                            M208 X100 Y0 Z0 S1 ; set axis minima
                            M208 X750 Y640 Z1220 S0 ; set axis maxima

                            ; Endstops
                            M574 X1 S1 P"xstop + e0stop" ; configure switch-type (e.g. microswitch) endstop for low end on X via pin xstop
                            M574 Y1 S1 P"ystop" ; configure switch-type (e.g. microswitch) endstop for low end on Y via pin ystop
                            M574 Z1 S1 P"e2stop + e3stop + e4stop + e5stop" ; configure switch-type (e.g. microswitch) endstop for low end on Y via pin ystop

                            ; Z-Probe
                            ;M558 K0 P1 C"e1stop" ;H5 F120 T6000
                            M558 K0 P5 C"!zprobe.in" H5 F120 T6000 ; set Z probe type to unmodulated and the dive height + speeds (Kapazitiver Sensor)
                            ;M557 X0:735 Y-27:573 S35 ; define mesh grid

                            ; Z-Probe two of them
                            ;M558 K0 P1 C"!zprobe.in" H5 F120 T6000 ; set Z probe type to unmodulated and the dive height + speeds (Kapazitiver Sensor)
                            ;M558 K1 P8 A2 S0.2 C"!zstop" H5 F80 T3000
                            ;G31 P1000 K0 X-1 Y-61 Z0.484 ; set Z probe trigger value, offset and trigger height (Kapazitiver Sensor)
                            ;G31 P1000 K1 X0 Y0 Z12.664 ; Second Z-offset
                            ;M557 X0:735 Y-27:573 S35 ; define mesh grid

                            ; Heaters

                            ; Bed
                            M308 S0 P"bedtemp" Y"thermistor" T100000 B4138 ; configure sensor 0 as thermistor on pin bedtemp
                            M950 H0 C"bedheat" T0 ; create bed heater output on bedheat and map it to sensor 0
                            ;M307 H0 B1 S1.00 ; enable bang-bang mode for the bed heater and set PWM limit
                            ;M307 H2 R0.283 K0.463:0.000 D7.17 E1.35 S1.00 B0 ; enable bang-bang mode for the bed heater and set PWM limit
                            M307 H0 R0.283 K0.463:0.000 D7.17 E1.35 S1.00 B0 ; enable bang-bang mode for the bed heater and set PWM limit
                            M140 H0 ; map heated bed to heater 0
                            M143 H0 S280 ; set temperature limit for heater 0 to 120C

                            ;Hotend
                            M308 S1 P"e0temp" Y"thermistor" T100000 B4138 ; configure sensor 1 as thermistor on pin e0temp
                            M950 H1 C"e0heat" T1 ; create nozzle heater output on e0heat and map it to sensor 1
                            M307 H1 R1.797 K0.742:0.000 D7.57 E1.35 S1.00 B0 V23.8 ; disable bang-bang mode for heater and set PWM limit
                            M143 H1 S400 ; set temperature limit for heater 1 to 400C

                            ; Fans
                            M950 F0 C"fan0" Q500 ; create fan 0 on pin fan0 and set its frequency
                            M106 P0 S0 H-1 ; set fan 0 value. Thermostatic control is turned off
                            M950 F2 C"fan2" Q350 ; create fan 2 on pin fan2 and set its frequency
                            M106 P2 S1 H1 T60 ; set fan 2 value. Thermostatic control is turned on

                            ; Tools
                            M563 P0 D0 H1 F0 ; define tool 1
                            G10 P0 X0 Y0 Z0 ; set tool 1 axis offsets
                            G10 P0 R0 S0 ; set initial tool 1 active and standby temperatures to 0C

                            ; Filamentsensor
                            ;M591 D0 P1 C"zstop" S1 ;R40:120 E3.0 S1 Filament Sensor

                            ;Auto Z-Offset
                            ; Custom settings are not defined
                            M501

                            droftartsundefined fcwiltundefined Phaedruxundefined 3 Replies Last reply Reply Quote 0
                            • droftartsundefined
                              droftarts administrators @axiom
                              last edited by

                              @axiom for displaying code in posts, please use the code tags. It’s the </> icon on the toolbar above where you type in your post. It should put 3 tick marks at the beginning and end of your code. It makes it much more readable for people trying to help you. Single tick marks either side of text make that text inline code, like this.

                              Ian

                              Bed-slinger - Mini5+ WiFi/1LC | RRP Fisher v1 - D2 WiFi | Polargraph - D2 WiFi | TronXY X5S - 6HC/Roto | CNC router - 6HC | Tractus3D T1250 - D2 Eth

                              1 Reply Last reply Reply Quote 0
                              • fcwiltundefined
                                fcwilt @axiom
                                last edited by

                                @axiom

                                What expansion board are you using?

                                On my 3 Z stepper printer I am using Duet 2 boards: Duet WiFi and a Duex5.

                                My M574 for the Z endstops looks like this:

                                M574 Z1 S1 P"!duex.e2stop + !duex.e3stop + !duex.e4stop" ; configure active-high endstop for low  end on Z
                                

                                The Z endstop sensors are connected to the Duex5 and I included the duex. prefix. I recall that it was necessary.

                                Frederick

                                Printers: a small Utilmaker style, a small CoreXY and a E3D MS/TC setup. Various hotends. Using Duet 3 hardware running 3.4.6

                                droftartsundefined 1 Reply Last reply Reply Quote 1
                                • Phaedruxundefined
                                  Phaedrux Moderator @axiom
                                  last edited by

                                  @axiom said in reference the X-axis on both rails:

                                  M574 Z1 S1 P"e2stop + e3stop + e4stop + e5stop"

                                  If you send M98 P"config.g" you'll probably get an error saying invalid pin or something like that for that line.

                                  Z-Bot CoreXY Build | Thingiverse Profile

                                  1 Reply Last reply Reply Quote 0
                                  • droftartsundefined
                                    droftarts administrators @fcwilt
                                    last edited by

                                    @fcwilt as @Phaedrux says, the pin names are wrong. See https://docs.duet3d.com/Duet3D_hardware/Duet_2_family/DueX2_and_DueX5#pin-names

                                    Should be duex.e2stop etc.

                                    Ian

                                    Bed-slinger - Mini5+ WiFi/1LC | RRP Fisher v1 - D2 WiFi | Polargraph - D2 WiFi | TronXY X5S - 6HC/Roto | CNC router - 6HC | Tractus3D T1250 - D2 Eth

                                    axiomundefined 1 Reply Last reply Reply Quote 0
                                    • axiomundefined
                                      axiom @droftarts
                                      last edited by

                                      @droftarts
                                      I have now adjusted the names, but the endstops are still not accepted. Here is the message from the m119 command and the M98 P"config.g" command. And below again my adapted code

                                      M98 P"config.g"

                                      HTTP is enabled on port 80
                                      FTP is enabled on port 21
                                      TELNET is enabled on port 23
                                      Error: in file macro line 50 column 65: M574: string too long
                                      Warning: Macro file config-override.g not found
                                      16.11.2023, 15:50:48

                                      m119
                                      Endstops - X: at min stop, Y: not stopped, Z: no endstop, Z probe: not stopped

                                      All control LEDs respond...The 4 motors on the expansion board react and can be controlled

                                      I think it's not a hardware error it is a DueX5 xspansionboard

                                      again my adapted code:
                                      ; Configuration file for Duet WiFi (firmware version 3.3)
                                      ; executed by the firmware on start-up
                                      ;
                                      ; generated by RepRapFirmware Configuration Tool v3.3.16 on Sun May 28 2023 15:23:44 GMT+0200 (Mitteleuropäische Sommerzeit)

                                      ; General preferences
                                      M575 P1 S1 B57600 ; enable support for PanelDue
                                      G90 ; send absolute coordinates...
                                      M83 ; ...but relative extruder moves
                                      M550 P"DUKA1300" ; set printer name

                                      ; Network
                                      M552 S1 ; enable network
                                      M586 P0 S1 ; enable HTTP
                                      M586 P1 S1 ; enable FTP
                                      M586 P2 S1 ; enable Telnet

                                      ; Drives
                                      ;M569 P4 R-1 ; Treiber 4 deaktivieren
                                      ;M569 P3 R-1 ; Treiber 4 deaktivieren
                                      M569 P0 S1 ; physical drive 0 goes forwards
                                      M569 P1 S1 ; physical drive 1 goes forwards
                                      M569 P2 S1 ; physical drive 2 goes forwards
                                      M569 P3 S1 ; physical drive 3 goes forwards
                                      M569 P4 S0 ; physical drive 3 goes forwards
                                      M569 P5 S1 ; physical drive 3 goes forwards Expansionboard
                                      M569 P6 S1 ; physical drive 3 goes forwards Expansionboard
                                      M569 P7 S1 ; physical drive 3 goes forwards Expansionboard
                                      M569 P8 S1 ; physical drive 3 goes forwards Expansionboard
                                      ;M584 X0 Z2 E1 ; set drive mapping
                                      ;M584 X0 Z2 E1 ; set drive mapping
                                      ;M584 X0:4 Y1 Z2 E3 ; set drive mapping
                                      M584 X0:4 Y1 Z5:6:7:8 E3 ; set drive mapping
                                      M350 X16 Y16 Z16 E16 I1 ; configure microstepping with interpolation
                                      M92 X80.00 Y80.00 Z640 E322.58 ; set steps per mm
                                      M566 X900.00 Y900.00 Z100.00 E120.00 ; set maximum instantaneous speed changes (mm/min)
                                      M203 X6000.00 Y6000.00 Z300.00 E1200.00 ; set maximum speeds (mm/min)
                                      ;M201 X500.00 Y500.00 Z20.00 E250.00 ; set accelerations (mm/s^2)
                                      M201 X500.00 Y500.00 Z40.00 E250.00 ; set accelerations (mm/s^2)
                                      M906 X1800 Y1800 Z1700 E1600 I30 ; set motor currents (mA) and motor idle factor in per cent
                                      M84 S30 ; Set idle timeout

                                      ; Axis Limits
                                      M208 X100 Y0 Z0 S1 ; set axis minima
                                      M208 X750 Y640 Z1220 S0 ; set axis maxima

                                      ; Endstops
                                      M574 X1 S1 P"xstop + e0stop" ; configure switch-type (e.g. microswitch) endstop for low end on X via pin xstop
                                      M574 Y1 S1 P"ystop" ; configure switch-type (e.g. microswitch) endstop for low end on Y via pin ystop
                                      M574 Z1 S1 P"duex.e2stop + duex.e3stop + duex.e4stop + duex.e5stop" ; configure switch-type (e.g. microswitch) endstop for low end on Y via pin ystop

                                      ; Z-Probe
                                      ;M558 K0 P1 C"e1stop" ;H5 F120 T6000
                                      M558 K0 P5 C"!zprobe.in" H5 F120 T6000 ; set Z probe type to unmodulated and the dive height + speeds (Kapazitiver Sensor)
                                      ;M557 X0:735 Y-27:573 S35 ; define mesh grid

                                      ; Z-Probe two of them
                                      ;M558 K0 P1 C"!zprobe.in" H5 F120 T6000 ; set Z probe type to unmodulated and the dive height + speeds (Kapazitiver Sensor)
                                      ;M558 K1 P8 A2 S0.2 C"!zstop" H5 F80 T3000
                                      ;G31 P1000 K0 X-1 Y-61 Z0.484 ; set Z probe trigger value, offset and trigger height (Kapazitiver Sensor)
                                      ;G31 P1000 K1 X0 Y0 Z12.664 ; Second Z-offset
                                      ;M557 X0:735 Y-27:573 S35 ; define mesh grid

                                      ; Heaters

                                      ; Bed
                                      M308 S0 P"bedtemp" Y"thermistor" T100000 B4138 ; configure sensor 0 as thermistor on pin bedtemp
                                      M950 H0 C"bedheat" T0 ; create bed heater output on bedheat and map it to sensor 0
                                      ;M307 H0 B1 S1.00 ; enable bang-bang mode for the bed heater and set PWM limit
                                      ;M307 H2 R0.283 K0.463:0.000 D7.17 E1.35 S1.00 B0 ; enable bang-bang mode for the bed heater and set PWM limit
                                      M307 H0 R0.283 K0.463:0.000 D7.17 E1.35 S1.00 B0 ; enable bang-bang mode for the bed heater and set PWM limit
                                      M140 H0 ; map heated bed to heater 0
                                      M143 H0 S280 ; set temperature limit for heater 0 to 120C

                                      ;Hotend
                                      M308 S1 P"e0temp" Y"thermistor" T100000 B4138 ; configure sensor 1 as thermistor on pin e0temp
                                      M950 H1 C"e0heat" T1 ; create nozzle heater output on e0heat and map it to sensor 1
                                      M307 H1 R1.797 K0.742:0.000 D7.57 E1.35 S1.00 B0 V23.8 ; disable bang-bang mode for heater and set PWM limit
                                      M143 H1 S400 ; set temperature limit for heater 1 to 400C

                                      ; Fans
                                      M950 F0 C"fan0" Q500 ; create fan 0 on pin fan0 and set its frequency
                                      M106 P0 S0 H-1 ; set fan 0 value. Thermostatic control is turned off
                                      M950 F2 C"fan2" Q350 ; create fan 2 on pin fan2 and set its frequency
                                      M106 P2 S1 H1 T60 ; set fan 2 value. Thermostatic control is turned on

                                      ; Tools
                                      M563 P0 D0 H1 F0 ; define tool 1
                                      G10 P0 X0 Y0 Z0 ; set tool 1 axis offsets
                                      G10 P0 R0 S0 ; set initial tool 1 active and standby temperatures to 0C

                                      ; Filamentsensor
                                      ;M591 D0 P1 C"zstop" S1 ;R40:120 E3.0 S1 Filament Sensor

                                      ;Auto Z-Offset
                                      ; Custom settings are not defined
                                      M501

                                      fcwiltundefined droftartsundefined 2 Replies Last reply Reply Quote 0
                                      • fcwiltundefined
                                        fcwilt @axiom
                                        last edited by

                                        @axiom

                                        Did you try shortening the line? I believe the comment is included when it comes to being too long.

                                        And you can remove the M501 at the end if you wish to silence the error about config-override.g being missing.

                                        Frederick

                                        Printers: a small Utilmaker style, a small CoreXY and a E3D MS/TC setup. Various hotends. Using Duet 3 hardware running 3.4.6

                                        1 Reply Last reply Reply Quote 0
                                        • droftartsundefined
                                          droftarts administrators @axiom
                                          last edited by

                                          @axiom What firmware version are you on? This has come up before, and it's because the string for the endstops is too long. See https://forum.duet3d.com/topic/32954/duet-2-wifi-voron-2-4-multiple-z-endstops-query
                                          This was fixed in RRF 3.4.6, with an increase from 50 to 61.

                                          However, I think you just need to take out the spaces in yours to get under the 50 character limit, ie

                                          M574 Z1 S1 P"duex.e2stop+duex.e3stop+duex.e4stop+duex.e5stop" ; configure switch-type (e.g. microswitch) endstop for low end on Y via pin ystop
                                          

                                          That's 47 characters.

                                          Ian

                                          Bed-slinger - Mini5+ WiFi/1LC | RRP Fisher v1 - D2 WiFi | Polargraph - D2 WiFi | TronXY X5S - 6HC/Roto | CNC router - 6HC | Tractus3D T1250 - D2 Eth

                                          axiomundefined 1 Reply Last reply Reply Quote 1
                                          • axiomundefined
                                            axiom @droftarts
                                            last edited by

                                            @droftarts Deleting the spaces was the solution...it no longer gives an error
                                            dfe0d5e9-eef0-4361-947d-47d8479584c3-grafik.png message and the g1 h1 z0 command works and the bed stops at the endstops...now I can continue researching! Thank you so much!!!!

                                            droftartsundefined 1 Reply Last reply Reply Quote 0
                                            • First post
                                              Last post
                                            Unless otherwise noted, all forum content is licensed under CC-BY-SA