I will design 4 layer medical wearable pcb, schematic and embedded firmware
pcb design and firmware development
Sobre este Serviço
Hello and Welcome!
Medical wearables demand more than a compact PCB they demand controlled signals, low power, reliable sensing, and hardware designed around the human body.
I design 4-layer medical wearable PCBs with optimized power distribution, sensitive analog routing, sensor integration, wireless connectivity, and embedded firmware. Whether you're developing a health monitor, biometric wearable, diagnostic prototype, or connected medical device, I can turn your requirements into a structured hardware and firmware solution.
What will Provide:
- 4-layer medical/wearable PCB design
- Complete schematic & component selection
- STM32, nRF52/nRF52840 & MCU integration
- BLE/Wi-Fi connectivity
- ECG, SpO2, temperature & motion sensors
- Low-power battery & charging design
- EMI/EMC-conscious PCB layout
Why Choose Me;
- Wearable-focused PCB design
- Low-power optimization
- Precision sensor routing
- RF-aware layout
- Embedded firmware expertise
- Manufacturing-ready deliverables
Have a wearable or medical-device concept ready? message now and let's get started!!!
Perguntas frequentes
Can you design a custom 4-layer medical wearable PCB?
Yes. I can design compact 4-layer PCBs for wearable and health-monitoring applications based on your electrical, mechanical, and power requirements.
What medical sensors can you integrate?
I can integrate sensors such as ECG, SpO2, heart-rate, temperature, accelerometer, gyroscope, pressure, and other biometric sensors.
Can you work with STM32 and nRF52840?
Yes. I can design around STM32, nRF52/nRF52840, and other suitable MCUs based on processing, connectivity, and power requirements.
Can you include BLE connectivity?
Yes. BLE hardware integration and embedded firmware can be included for communication with smartphones, gateways, or other devices.
Do you provide embedded firmware?
Yes. I can develop embedded C/C++ firmware, sensor drivers, peripheral interfaces, communication protocols, and hardware bring-up support.

