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    ov_darkness

    @ov_darkness

    Additive manufacturing professional, but also hobbyist.
    Distributor/reseller for DWS Systems, Sitnerit, Omni3D, Flashforge, Zortrax, Prodways, Sondasys, Sisma, Artec and many more.
    Contact me if you need help choosing right AM technology for your company, need high-end AM services, or 3D scanning. especially if noone was abe to help you :)

    Privately I like cats, bikes, technology (especially CNC, and 3D printers). Almost 20 years experience in IT, more than 10 in sales.
    If you want to hire me, I'm open to offers.

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    Website mttpolska.pl Location Warsaw, Poland

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    Best posts made by ov_darkness

    • RE: Heater fault when trying to enable tool

      @phaedrux I've made PID tuning and now everything is perfect. At least in static tests.
      When I get the rest of the parts, I'll test it in print, but looks like for now all of my issues have been resolved. Thanks! 🙂

      BTW a lot has changed since I last configured the Duet machine (about 2-3 years ago).
      The configuration has gotten much more complicated, but also very very powerful.
      I love it!

      posted in Tuning and tweaking
      ov_darknessundefined
      ov_darkness
    • RE: Heater fault when trying to enable tool

      @Phaedrux I've resettled my TC and heater and it looks like one of the heat block screws was the culprit. I'm reluctant to run the printer without it though - the heater and/or TC might come off the block during print.
      I'm now running M303 and it looks okay.
      I only have an issue now with the print bed - it faults because of expected temperature rise is too low, but I'm assuming it can be modified in config.

      posted in Tuning and tweaking
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      ov_darkness

    Latest posts made by ov_darkness

    • Emergency relays and e-stop stop switch

      Hi,
      I've started to build my new machine.
      It will be powered from e phase circuit.
      L1 - bed heater (2.4kW-3kW) via SSR
      L2 - chamber heater (2kW-2.5kW) via SSR
      L3 - electronics and mechanics.

      What I want to do:

      1. Have a mechanical disconnect (e-stop switch) that will allow me to stop the print in case of emergency (my burns from my accident with Zortrax M300 Plus are still healing).
      2. I want my Duet to NOT be powered off by e-stop, but I want it to cut the power to motors and heaters.
      3. I want my printer to enter pause (configurable) when door is opened
      4. I want my printer not to start the job unless all doors are closed and locked.

      How to configure this?
      I understand that I need safety relay, e-stop switch and some macro on duet?

      Can I do this on Duet 2 or should I go for Duet 3?

      posted in Duet Hardware and wiring
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      ov_darkness
    • RE: Connecting 24VDC controlled SSR to Duet 3 6HC with 48VDCin

      @dc42
      Thank you, that's actually a lot of options!
      The power on threshold is 4V for this SSR.
      Maximum power draw is 0.6W

      As I'll need 3HC board nevertheless, is it possible to run X and Y motors from 48V powered 3HC and use 6HC with 24V for the rest?
      I'd not have the issue then, and also powering 12/24VDC outputs as fans and LED's would be a lot easier.

      posted in Duet Hardware and wiring
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      ov_darkness
    • RE: Connecting 24VDC controlled SSR to Duet 3 6HC with 48VDCin

      @jay_s_uk
      As overcomplicated as my idea might seem, I'd love to keep it as simple as possible 😉

      posted in Duet Hardware and wiring
      ov_darknessundefined
      ov_darkness
    • RE: Connecting 24VDC controlled SSR to Duet 3 6HC with 48VDCin

      @jay_s_uk It's a solution, but there are only six fan outputs available.
      If I take two for SSR's, and I have some fans and WC pump and CPAP blower to control, I'll run out of outputs very quickly.

      Alternative solution: I can buy 3HC board and power it with 48VDC (I need 48VDC only for X and Y motors), and power 6HC with 24VDC. This will be complicated and expensive, but probably doable (if you can run CoreXY with the accessory board without a problem and you can connect 24V and 48V powered boards without problems).

      posted in Duet Hardware and wiring
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      ov_darkness
    • Connecting 24VDC controlled SSR to Duet 3 6HC with 48VDCin

      Hi,

      I'm looking for a solution to a problem:
      I'm building a powerful machine. Bed heaters will be 2.4kW, so I had no choice but to use an SSR.
      A second similarly powered heater will be used to heat up the chamber, so 2nd SSR will be needed.
      They will be powered from separate 230V AC phases.
      All of the electronics will be powered from the 3rd phase.
      Most SSR's are controlled by either 24VDC or 4-32VDC, but I plan to power Duet 3 with 48VDC.

      Can this be done, or should I buy (much more expensive) SSR's that can accept 48VDC?
      Or maybe should I use other outputs for that?
      Which ones?

      posted in Duet Hardware and wiring
      ov_darknessundefined
      ov_darkness
    • RE: "Mainboard 6HC" with 48V and "Expansion 3HC" with 24V?

      @jay_s_uk
      Wait... You can power 6HC with 48V?!

      posted in Duet Hardware and wiring
      ov_darknessundefined
      ov_darkness
    • RE: Heater fault when trying to enable tool

      @phaedrux I've made PID tuning and now everything is perfect. At least in static tests.
      When I get the rest of the parts, I'll test it in print, but looks like for now all of my issues have been resolved. Thanks! 🙂

      BTW a lot has changed since I last configured the Duet machine (about 2-3 years ago).
      The configuration has gotten much more complicated, but also very very powerful.
      I love it!

      posted in Tuning and tweaking
      ov_darknessundefined
      ov_darkness
    • RE: Heater fault when trying to enable tool

      @Phaedrux I've resettled my TC and heater and it looks like one of the heat block screws was the culprit. I'm reluctant to run the printer without it though - the heater and/or TC might come off the block during print.
      I'm now running M303 and it looks okay.
      I only have an issue now with the print bed - it faults because of expected temperature rise is too low, but I'm assuming it can be modified in config.

      posted in Tuning and tweaking
      ov_darknessundefined
      ov_darkness
    • RE: Heater fault when trying to enable tool

      @phaedrux said in Heater fault when trying to enable tool:

      @ov_darkness said in Heater fault when trying to enable tool:

      When I connect the heater, there's an error message about a possible short.

      Check your wiring. There is possibly a short.

      I've triple checked (with a hi-quality multimeter). There's no short. I've found some info that it can be a grounding issue.

      @ov_darkness said in Heater fault when trying to enable tool:

      When trying to heat either bed or head, it gives me fault.

      What is the fault message? Have you PID tuned the heaters and saved the results?

      My fault message with TC is

      Heater 1 fault: failed to read sensor: sensor short to other wiring
      

      I haven't PID tune sensors, since I can't heat my tool.
      I can try this with PT100, but customer prefers TC for some wicked reason.

      https://docs.duet3d.com/en/User_manual/Connecting_hardware/Heaters_tuning

      Are you using thermocouples, or PT100, or thermistors?

      I need to use TC for this project but I also have PT100's.
      TC is Slice engineering one, PT100's are E3D.

      If thermocouple or PT100 do you also have the corresponding Duet daughterboard?

      I have two original Duet3D TC boards (1.1) and one original Duet3D PT100 board.

      posted in Tuning and tweaking
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      ov_darkness
    • Heater fault when trying to enable tool

      I'm building "Turbo Ender 3" with Duet 2 Wifi, LGX and Mosquito hotend.
      This is my first time with RRF3.4.1
      My issue is that I probably misconfigured heaters and have no idea where to go from here.
      When trying to heat either bed or head, it gives me fault.
      I've tested PT100 (as you can see by two M308 values) and it works ok.
      I've also tested another thermocouple amplifier.
      I don't have a second TC though.

      I've also encountered an issue when connecting the Slice heater to Duet.
      When the heater is disconnected, thermocouple readings are sane.
      When I connect the heater, there's an error message about a possible short.

      This is how my config.g looks like:

      ; General preferences
      M575 P1 S1 B57600                              ; enable support for PanelDue
      G90                                            ; send absolute coordinates...
      M83                                            ; ...but relative extruder moves
      M550 P"Ender 3"                                ; set printer name
      M918 P1 E4 F2000000                            ; configure direct-connect display
      
      ; Network
      M552 S1                                        ; enable network
      M586 P0 S1                                     ; enable HTTP
      M586 P1 S0                                     ; disable FTP
      M586 P2 S0                                     ; disable Telnet
      
      ; Drives
      M569 P0 S1                                     ; physical drive 0 goes forwards
      M569 P1 S0                                     ; physical drive 1 goes backwards
      M569 P2 S1                                     ; physical drive 2 goes forwards
      M569 P3 S0                                     ; physical drive 3 goes backwards
      M584 X0 Y1 Z2 E3                               ; set drive mapping
      M350 X16 Y16 Z16 E16 I1                        ; configure microstepping with interpolation
      M92 X80.00 Y80.00 Z400.00 E121.00              ; set steps per mm
      M566 X1200.00 Y1200.00 Z24.00 E300.00          ; set maximum instantaneous speed changes (mm/min)
      M203 X9000.00 Y9000.00 Z180.00 E6000.00        ; set maximum speeds (mm/min)
      M201 X1000.00 Y1000.00 Z100.00 E5000.00        ; set accelerations (mm/s^2)
      M906 X800 Y800 Z800 E1000 I50                  ; set motor currents (mA) and motor idle factor in per cent
      M84 S30                                        ; Set idle timeout
      
      ; Axis Limits
      M208 X0 Y0 Z0 S1                               ; set axis minima
      M208 X235 Y235 Z260 S0                         ; set axis maxima
      
      ; Endstops
      M574 X1 S1 P"^xstop"                           ; configure sensorless endstop for low end on X
      M574 Y1 S1 P"^ystop"                           ; configure sensorless endstop for low end on Y
      M574 Z1 S1 P"^zstop"                           ; configure switch-type (e.g. microswitch) endstop for low end on Z via pin ^zstop
      
      ; Z-Probe
      M558 P0 H5 F120 T6000                          ; disable Z probe but set dive height, probe speed and travel speed
      M557 X15:215 Y15:195 S20                       ; define mesh grid
      
      ; Heaters
      M308 S0 P"bedtemp" Y"thermistor" T100000 B4092 ; 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 B0 S1.00                               ; disable bang-bang mode for the bed heater and set PWM limit
      M140 H0                                        ; map heated bed to heater 0
      M143 H0 S110                                   ; set temperature limit for heater 0 to 110C
      ;M308 S1 P"spi.cs1" Y"thermocouple-max31856"   ; create sensor number 1 as a thermocouple, defaulting to type K in the first position on the Duet 2 daughter board connector
      M308 S1 P"spi.cs1" Y"rtd-max31865"			   ; create sensor number 1 as a PT100 sensor in the first position on the Duet 2 daughterboard connector
      M950 H1 C"e0heat" T1						   ; create nozzle heater output on e0heat and map it to sensor 1
      M307 H1 B0 S1.00                               ; disable bang-bang mode for heater  and set PWM limit
      M143 H1 S300                                   ; set temperature limit for heater 1 to 300C
      
      ; Fans
      M950 F0 C"fan0" Q500                           ; create fan 0 on pin fan0 and set its frequency
      M106 P0 S0 H T45                               ; set fan 0 value. Thermostatic control is turned on
      M950 F1 C"fan1" Q500                           ; create fan 1 on pin fan1 and set its frequency
      M106 P1 S1 H-1                                 ; set fan 1 value. Thermostatic control is turned off
      M950 F2 C"fan2" Q500                           ; create fan 2 on pin fan2 and set its frequency
      M106 P2 S1 H-1                                 ; set fan 2 value. Thermostatic control is turned off
      
      ; Tools
      M563 P0 D0 H1 F0:1                             ; define tool 0
      G10 P0 X0 Y0 Z0                                ; set tool 0 axis offsets
      G10 P0 R0 S0                                   ; set initial tool 0 active and standby temperatures to 0C
      
      ; Custom settings are not defined
      
      ; Miscellaneous
      M501                                           ; load saved parameters from non-volatile memory
      T0                                             ; select first tool
      
      posted in Tuning and tweaking
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      ov_darkness