
Orbiter V2.0 Turbiter BTT EBB36/FLY SHT36 CANBUS toolhead board side mount
prusaprinters
GENERAL INFORMATIONTHIS CONTAINS REMIXED FILES FROM THE ORBITER TURBITER PROJECT:https://www.orbiterprojects.com/turbiter/PLEASE NOTE THAT THE MOUNT MIGHT NOT BE COMPATIBLE WITH THE SHT36 BOARD AS THE CANBUS WIRE FLANGE WAS NOT DESIGNED TO ACCOMMODATE THE WIDER CANBUS WIRE PLUG. MOTIVATIONS:I designed this part for my Ender 3 pro which I modified heavily to print at higher speeds and more advanced materials. This is part of a tool head modification I made around the Klemco V6 (Fystec V6 on Amazon) mount. You can find the other parts on my page on Thingiverse or printables. Feel free to use them as the official Klemco parts are incomplete for the orbiter mount.The available orientations for mounting the EBB36 were not compatible with the geometric restrictions posed by my mounting situation and printer design (bedslinger). The rear motor mount options would cause a collision with the side towers or the top tower, the front-facing motor mount causes too much torsion on the tool head resulting in unwanted resonance so the only real option is to mount it on the linear rail carriage or the side of the orbiter. The linear rail mount does not allow enough clearance for the wiring so the only option left is the side mount.The secondary breakout board mount allows for the addition of a plug conversion board that allows for a 2-pin XH connector or 4-pin xh connector to be connected as the temperature sensor to the MAX temperature amplifier. This is the common connector format for temperature connectors. The splitter board also allows for the single output of the CANBUS board hotend and cooling fans to two XH connectors in parallel for each of the outside. I currently run the system using two 5015 cooling fans for the cooling fan output. For the hotend cooling output, I use a 4010 axial cooling fan for the hot-end cooling and a 3010 centrifugal fan inside the turbiter to cool the extruder motor.REMIXING AND MODIFICATIONS:I have included all Solidworks files and they are fully dimensionally parametric so feel free to pop into the equations page and modify some values. I have also included parts used to derive base geometry.(The geometry isn't fully parametrically constrained for some aspects. You may need to modify additional values as it isn't designed to scale using inputs automatically.)(If you do not have Solidworks I highly recommend Onshape, it is a great alternative with a more modern GitHub-like version control system.)PRINT SETTINGS:ABS40% Infill (Gyroid or 3d Hexagon, any isotropic pattern is fine)4 wallsPOST-PRINT:Mounting for the CANBUS toolhead board requires two M3x6mm brass inserts to be inserted into the mount holes on the board mount raised pegs.You will need 4mm zipties to secure the canbus wire to the mount.
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