![]() If you have multiple extruders, you must call them all out at once separated by colons like this:Įach Extruder axis needs a motor assigned to it. The first number is the Canbus board that the motor lives on. M584 E1.0 Orbiter 0 on 3HC Board 1 Port 0 Extruder axes are numbered starting from 0. The Duet ecosystem assumes that tools are connected to single extruder axis. Warning: like before, if you have multiple extruders with different settings, you need to call them out individually with values separated by colons. Set the Tool's max speed, accel, and jerk (instantaneous change in velocity) with: If your extruder steps/mm are all the same, you can just use one value, and it will apply it to all extruders. In the above example, Extruder 0 has 681 steps/mm while Extruder 1 has 830 steps/mm. Warning: if you have multiple extruders, you need to define them all at once like this: Set the Extruder steps/mm ("Esteps") with: (Remove the signs too!)ĭefine Extruder Steps/mm and Accel/Velocity Characteristics Note that the items shown in signs are placeholders and should be replaced with the values you actually have. Example: you cannot refer to sensors or heaters in later lines of the config if they have not been created in previous lines of the config. Note that the order of many of these commands in the config matters. -1.23 nominal Z offset from carriageĬreating a tool is a matter of defining a motor drive, two fans, a heater, a temperature sensor and assigning them to the tool.Here are the general operating conditions adapted from the Orbiter Thingiverse page: ![]() No wire stripping required! Just insert the wires and compress the housing with a wrench. You will need to attach a 37104-A165-00E MB connector ( Farnell) to the motor wires on the orbiter motor.Threaded-Heatsink Style Tool Assembly Instructions.Groovemount Style Tool Assembly Instructions.Print with support material from the build plate only.įor properly aligning parking post pins during assembly Orbiter 2.0 + Groovemount Heatsink (V6 / Dragonfly)Īll parts below are common to all tool variations:įor V6 Hotend Heights. Orbiter 1.5 + Groovemount Heatsink (V6 / Dragonfly) They must stick to the bed such that they remain flat. Note that parts that peel off the bed with a small curl cannot be used. Please check the table below for print setting exceptions. uncheck "Detect Thin Walls" if your Slicer has this settings or small gaps will not be filled.6 perimeter layers ← this is esp important for parts with heat-set inserts.Print parts specific to your setup with the following print settings: This one will work for M3 and M4 inserts. Recommended: Heat-Set Insert Installation Tip.Budget Soldering Iron for installing heat-set inserts.1x 3D-Printable M12 Threaded Heatsink Wrench (only if you are building a threaded heatsink style tool).1x Small Crescent Wrench or E3D Gripper Wrench for hot-tightening the nozzle.1x E3D Nozzle Spanner Wrench for hot-tightening the nozzle.replace the 4x M3, 20mm screws with 4x M3, 25mm screws.The spreadsheet above is for a groovemount style threaded heatsink. Note that the quantity is for two extruders.Īlso note that there are two heatsink types supported, but they have slightly different hardware: Other versions of this tool exist in the wild too.Īll parts to buy for a groovemount-style hotend are called out in this spreadsheet tab. (Coming Soon!) Baby Bullet + Orbiter 2.0 + Phaetus Rapido.(Coming Soon!) Baby Bullet + Orbiter 1.5 + Phaetus Rapido.Baby Bullet + Orbiter 2.0 + Phaetus Dragonfly.Baby Bullet + Orbiter 1.5 + Phaetus Dragonfly.Baby Bullet + Orbiter 2.0 + E3D Revo6 (Threaded Heatsink).Baby Bullet + Orbiter 1.5 + E3D V6 (Threaded Heatsink).Baby Bullet + Orbiter 2.0 + E3D Revo Micro.Baby Bullet + Orbiter 1.5 + E3D Revo Micro.Here is a breakdown of some of the valid combinations (weight depends on configuration with Revo Micro + Orbiter 2.0 being the lightest).E3D Groovemount or Threaded Heatsink compatible.Modular construction enables many common extrusion options, including:.
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