I will design smart glasses pcb, embedded firmware and iot wearables
PCB Design, embedded system, firmware developmet
About this Gig
HELLO GREAT BUYER,
Designing smart glasses PCBs, embedded firmware, and IoT wearable devices for healthcare, fitness, industrial monitoring, consumer electronics, and innovative smart products. I develop compact, low power, and manufacturing ready hardware with reliable embedded firmware to bring your wearable concept to life.
What I Offer
- Smart glasses PCB design
- Embedded firmware development (ESP32, STM32, nRF52, Arduino)
- BLE, Wi-Fi, GPS, NFC, GSM, and sensor integration
- Camera, IMU, microphone, display, and biometric sensor interfaces
- Power management and battery optimization
- Custom schematic capture and multilayer PCB layout
- Gerber, BOM, Pick & Place, and manufacturing ready files.
Why Choose Me
- Professional wearable electronics expertise
- Compact and low power PCB designs
- Production ready hardware and firmware
- Fast communication and on time delivery.
Whether you're building AI smart glasses, a BLE wearable, a health-monitoring device, or another IoT wearable, I will deliver a reliable embedded hardware solution ready for prototyping and manufacturing.
Please contact me before placing your order to discuss your project requirements.
Other Electronics Engineering Services I Offer
FAQ
Can you design PCBs specifically for smart glasses?
Yes. I design compact PCBs for smart glasses, including support for displays, cameras, sensors, microphones, and wireless communication.
Which embedded platforms do you support?
I work with ESP32, STM32, nRF52, Arduino, and other microcontrollers based on your project requirements.
Can you develop embedded firmware?
Yes. I develop firmware for sensor control, wireless communication, power management, and device functionality.
Can you optimize the design for low power?
Absolutely. I design wearable electronics with a strong focus on battery efficiency and low-power operation.
Do you provide prototype support?
Yes. I can assist with prototype testing, design reviews, debugging, and hardware optimization before production.

