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Accurate 4-channel analog data capture for EMG and bio-signal monitoring
Optimized for extended battery life in compact wearable form design well with efficiency focus
Stable real-time wireless data transmission for continuous monitoring on
Developing a wearable EMG device requires addressing challenges across signal accuracy, power efficiency, hardware miniaturization, and system reliability. Ensuring medical-grade performance in a compact, battery-operated design introduced significant complexity in both analog and digital domains.
Capturing precise EMG signals while minimizing noise and interference.
Maintaining stable data across ADC, SPI communication, and processing pipeline.
Ensuring long-duration operation within strict power and thermal constraints.
Designing a small form-factor PCB without compromising performance.
Achieving reliable, low-power wireless data transmission in real time.
Silicon Signals developed a low-noise, power-optimized wearable EMG system, combining robust analog design, efficient power management, and reliable BLE connectivity to deliver a production-ready solution.
Optimized ADS1294-based design for accurate, low-noise signal acquisition.
Careful routing, filtering, and shielding to minimize noise and interference.
Efficient battery charging and regulation for stable, long-duration operation.
Reliable, low-power wireless communication for real-time data transmission.
4-layer PCB with isolated analog/digital sections for improved performance.
Prototype testing and validation for accuracy, stability, and reliability.
Build high-precision wearable medical devices with confidence.
Build your next wearable medical device with confidence.
From prototype to validated, production-ready hardware
TI ADS1294 ADC, Nordic nRF52840 MCU, compact 4-layer PCB
Low-noise front-end with optimized power management
Bluetooth Low Energy (BLE) for real-time data transmission
Oscilloscope, multimeter, spectrum analyzer, signal testing
Delivered a high-precision, low-power wearable EMG device, ensuring reliable signal acquisition, stable performance, and production readiness.
Noise reduced from ~100 µV to <10 µV for accuracy high
Achieved <10 mV ripple for consistent ADC performance.
Enabled 48-hour continuous operation for wearable use.
Ensured stable, real-time wireless data transmission.
Eliminated SPI errors and ensured reliable data capture
Validated design with successful pilot manufacturing.
If you're developing a wearable EMG or bio signal monitoring device, we help you deliver low-noise, power-efficient, and production-ready solutions.
+91 94087 30545
sales@siliconsignals.io
A-802/803, Empire Business Hub, Science City Rd, Ahmedabad - 380060, Gujarat, India
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