I will design wearable ble electrochemical biosensor pcb with firmware
pcb design and firmware development
Over deze dienst
Hello and Welcome!
Are you developing a wearable electrochemical sensing device and need a reliable, low-noise, production-ready PCB with BLE connectivity?
I specialize in designing wearable BLE electrochemical biosensor systems, including precision potentiostat circuits, analog front-end design, and embedded firmware development. Whether you're building a medical prototype, research device, or IoT health monitor, I deliver optimized hardware designed for accuracy, low power, and stability.
What I Offer:
- Precision potentiostat circuit design
- Low-noise analog front-end (AFE) design
- BLE-enabled microcontroller integration
- Multi-layer wearable PCB layout (26 layers)
- Signal integrity & EMI-conscious routing
- Low power optimization for wearable use
- Embedded firmware (BLE communication, data logging)
- Schematic, PCB, Gerbers, BOM, Pick & Place
Why Choose Me?
- Strong background in PCB design and power electronics
- Experience with wearable and embedded systems
- Focus on low-noise signal accuracy
- Clean, manufacturable layouts
- Professional documentation
Message me before placing an order so we can review your sensing range, power requirements, and performance targets!!!
Andere Elektrotechniek diensten die ik aanbied
Veelgestelde vragen
What type of electrochemical sensing do you support?
I design potentiostat circuits for amperometric, voltammetric, and chronoamperometric measurements.
Do you design low-noise analog front ends (AFE)?
Yes. I focus on low-noise signal conditioning, precision current measurement, and stable reference control.
Can you integrate BLE communication?
Yes. I integrate BLE-enabled microcontrollers for wireless data transmission to mobile or desktop apps.
Do you develop the firmware as well?
Yes. I provide embedded firmware for BLE communication, sensor control, data acquisition, and logging.
Can this be designed as a wearable device?
Yes. I optimize PCB size, power consumption, and layout for compact wearable applications.

