I will design electric shaver trimmer pcb, waterproofing, motor overheating, prototype
About this Gig
YOUR SHAVER SHOULDN'T FAIL WHEN USERS NEED IT MOST.
Motor heat and water exposure can turn a simple trimmer into a difficult engineering problem. I engineer the electronics around those failure points not just the PCB for reliable real world use.
THE PROBLEMS I ENGINEER OUT:
- Electric Shaver PCB
- Trimmer PCB Engineering
- Motor Driver Circuits
- Battery Charging
- Overheat Protection
- Waterproof Integration
- Power Management
- Compact PCB Layout
- Housing Integration
- Prototype Engineering
WHY MY APPROACH STANDS APART:
- Thermal and current risks addressed
- Moisture exposure considered
- Motor load engineered properly
- PCB shaped around the housing
WHAT YOU RECEIVE:
- Schematics
- PCB Layout
- BOM
- Gerbers
- Source Files
- Prototype Documentation
Whether you have a concept, existing PCB or overheating prototype, I can turn weak points into a reliable, testable shaver/trimmer system.
MESSAGE ME BEFORE ORDERING with your motor, battery, dimensions and requirements.
FAQ
What if my motor keeps overheating after the PCB is built?
I don’t simply connect a motor and hope it works. I consider motor load, current demand, thermal monitoring, driver selection and protection strategy so overheating risks are addressed at the engineering stage.
Can you make the electronics work inside my very small shaver housing?
Yes. I can plan the PCB around your available enclosure space, battery, motor, charging port and controls, helping prevent the common problem of a PCB that works electrically but cannot physically fit.
How do I know I’m getting production ready engineering instead of just a pretty PCB?
My deliverables are structured around real world assembly and testing: schematic, PCB layout, BOM, Gerbers, source files and prototype documentation. I engineer for the product not just the screen.
Will the PCB actually survive moisture and shaving conditions?
I can engineer for the required moisture resistance strategy, including component placement, PCB protection, sealing considerations and enclosure integration. The final waterproof performance should be validated against the required IP rating.
What if I already have a prototype that fails?
That is exactly where engineering investigation matters. I can review your existing PCB, circuit, motor behavior, power path and prototype symptoms to identify likely failure points before recommending changes.

