Looks Like This Service Is On Hold
I will design custom iot wearable and smart device pcb esp32, stm32, rfid, bluetooth
United States
Embedded system, pcb design and firmware development
About this Gig
Hello and welcome!
I specialize in delivering full IoT and wearable device designs from concept to production. If you need a smart wearable, sensor-based tracker, ESP32/STM32 device, or an ultra-low-power IoT product, I provide a complete engineering solution tailored to your idea.
I design clean, professional schematics, fully optimized PCB layouts, and efficient power-management systems to ensure long battery life and stable performance. Your device can include WiFi/Bluetooth modules, RFID/NFC, IMU sensors, GPS, displays, chargers, or environmental sensors.
What you will get:
- Complete schematic diagram
- Optimized PCB layout (28 layers)
- Power management + battery charging design
- Sensor integration (IMU, RFID, BLE, etc.)
- BOM with accurate components
- Manufacturing-ready Gerber files
- 3D PCB view + project support
All designs follow proper component selection, EMI/EMC rules, grounding strategy, thermal considerations, and DFM guidelines to ensure smooth production. Lets build your next reliable and high-quality IoT or wearable device.
FAQ
What devices or MCUs do you support?
I work with ESP32, STM32, Arduino, Raspberry Pi, and other microcontrollers suitable for wearable and IoT applications.
Can you design multi-layer or compact wearable PCBs?
Yes! I specialize in multi-layer (2–8 layers) designs and compact form factors optimized for wearables.
Will I receive production-ready files?
Absolutely. You will get Gerber files, BOM, schematics, and 3D PCB views ready for manufacturing.
Can you integrate sensors and wireless modules?
Yes. I can integrate Bluetooth/WiFi, RFID/NFC, IMU sensors, GPS, environmental sensors, and more.
Do you provide support after delivery?
Yes. I offer full support to help you understand the design, make minor revisions, and assist with production queries.
How do you ensure power efficiency?
All designs include optimized power management, low-power modes, and battery-friendly circuits for extended wearable operation.

