I will design rigid flex and flexible pcb for wearable and iot devices
pcb design, embedded system, firmware development
About this Gig
Hello there!
Are you developing a wearable device, compact IoT product, or space-constrained embedded system? I will design a professional Rigid-Flex or Flexible PCB engineered for durability, performance, and production readiness. Flexible PCBs require careful bend radius planning, stack-up control, impedance management, and component placement strategy. I design reliable flex circuits optimized for mechanical movement, tight enclosures, and long-term performance.
What I Offer:
- Flexible PCB (FPC) schematic and layout
- Rigid-Flex PCB design
- Bend radius and stack-up planning
- Controlled impedance routing (if required)
- Compact multilayer layout
- SMT component placement optimization
- Power and signal integrity design
Why Choose Me:
- Experience in compact and wearable electronics
- Clean, production-ready layout practices
- Mechanical-aware PCB design approach
- Reliable communication and technical clarity
- Scalable design for prototyping or mass production
If you need a durable, compact, and production-ready flexible PCB, send your project details today and lets bring your wearable or IoT device to life!!!
Other Electronics Engineering Services I Offer
FAQ
What is the difference between flexible PCB and rigid-flex PCB?
Flexible PCBs are fully bendable circuits, while rigid-flex combines rigid boards with flexible sections for compact and durable designs.
Can you design flexible PCBs for wearable devices?
Yes. I design compact, low-profile flexible PCBs optimized for wearable electronics and tight enclosures.
Do you consider bend radius and mechanical stress?
Yes. I plan proper bend radius, layer stack-up, and trace placement to prevent cracking and long-term failure.
Can you design controlled impedance on flex PCB?
Yes. I can implement impedance-controlled routing when required for high-speed or RF applications.
Do you support multilayer rigid-flex designs?
Yes. I design multilayer rigid-flex boards with proper stack-up planning and manufacturing considerations.

