I will design advanced pulse oximeter pcb and wearable prototype
Pcb design, embedded system and firmware development
About this Gig
HELLO AND WELCOME!
Developing an accurate pulse oximeter requires far more than integrating an optical sensor. It demands expertise in analog front-end design, photoplethysmography (PPG) signal acquisition, low-noise PCB layout, LED drive optimization, ambient light rejection, ultra-low-power architecture, and embedded system integration to achieve stable and reliable SpO and pulse rate measurements.
I specialize in designing advanced wearable pulse oximeter hardware for medical research, healthcare devices, IoT wearables, and commercial product development.
What I Will Provide;
- Custom electronic schematic design
- Advanced pulse oximeter PCB layout
- PPG sensor integration (MAX30102, MAX86141, MAX86176, etc.)
- Low-noise analog front-end optimization
- STM32, ESP32, nRF52 MCU integration
- BLE/Wi-Fi connectivity
Why Choose Me?
- Specialized in wearable medical electronics
- Strong expertise in biomedical PCB design
- Optimized low-noise signal routing
- Compact wearable hardware layouts
- Production-ready manufacturing files
- Fast communication and timely delivery
Let's turn your pulse oximeter idea into a production-ready wearable. Message me today for a custom solution and free consultation!!!!
Specialization:
Circuit design
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Schematics
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Layout
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Gerber
File format:
Gerber
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BRD
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SCH
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Software:
Allegro
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Altium Designer
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KiCad
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AutoCAD
Interface:
HDMI
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I2S
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I2C
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Wi-Fi
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BLE
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BT
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LTE
FAQ
Can you design both the PCB and wearable prototype?
Yes. I can design the complete schematic, PCB layout, wearable hardware, and provide manufacturing-ready files. Prototype support is also available.
Which pulse oximeter sensors do you support?
I work with MAX30102, MAX86141, MAX86176, MAX86178, AFE44xx series, and other optical biosensors based on your project requirements.
Can you develop embedded firmware as well?
Yes. I offer embedded firmware development for STM32, ESP32, nRF52, and other microcontrollers, including BLE and sensor integration.
Will the PCB be ready for manufacturing?
Absolutely. You'll receive Gerber files, BOM, Pick & Place files, assembly drawings, and other production-ready documentation.
Can you optimize the design for low power?
Yes. I design wearable electronics with ultra-low-power architecture to maximize battery life and improve device efficiency.

