Uploaded July 2026 | Updated September 2026, 58 minutes ago
In 2020, I built a router table with a manual handle for adjusting the bit height.
It worked, but having to fine-tune the height while watching the scale every time became a hassle, so this time I built an electronically controlled motorized router lift.
The main body is made with 3D-printed parts, and I used linear bearings and a trapezoidal lead screw to achieve smooth vertical movement and high rigidity.
For the control system, I used an ESP32, and the height is adjusted with a stepper motor.
Main features:
・Height adjustment using a stepper motor
・Movement in 1 mm / 0.1 mm / 0.01 mm increments
・LCD display showing the current position and target position
・Homing with a HOME switch
・Zero-point calibration using a brass plate
・Lock function to prevent accidental operation
・Expansion mode for using it as a handheld router
I also performed an actual 5 mm cutting test, and after applying correction, I was able to cut almost exactly to the intended depth.
The design files, 3D printer data, and microcontroller program used in this video are available for purchase here:
jsk-koubou.stores.jp
I hope this video is helpful for anyone interested in DIY, woodworking, 3D printing, and electronics projects.
#DIY
#Woodworking
#3DPrinting
#RouterTable
#RouterLift
#ESP32
#Electronics
#HomemadeTools
In 2020, I built a router table with a manual handle for adjusting the bit height.
It worked, but having to fine-tune the height while watching the scale every time became a hassle, so this time I built an electronically controlled motorized router lift.
The main body is made with 3D-printed parts, and I used linear bearings and a trapezoidal lead screw to achieve smooth vertical movement and high rigidity.
For the control system, I used an ESP32, and the height is adjusted with a stepper motor.
Main features:
・Height adjustment using a stepper motor
・Movement in 1 mm / 0.1 mm / 0.01 mm increments
・LCD display showing the current position and target position
・Homing with a HOME switch
・Zero-point calibration using a brass plate
・Lock function to prevent accidental operation
・Expansion mode for using it as a handheld router
I also performed an actual 5 mm cutting test, and after applying correction, I was able to cut almost exactly to the intended depth.
The design files, 3D printer data, and microcontroller program used in this video are available for purchase here:
jsk-koubou.stores.jp
I hope this video is helpful for anyone interested in DIY, woodworking, 3D printing, and electronics projects.
#DIY
#Woodworking
#3DPrinting
#RouterTable
#RouterLift
#ESP32
#Electronics
#HomemadeTools



![こんな木工はどうでしょう?丸棒治具8選 Tips and tricks for woodworking and how to make jigs
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