I will design wearable multisensor hardware prototype with clean biosignals and ble syc
Engineering Intelligent Hardware Systems from Circuit to Firmware
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Are your biosignals too noisy? BLE packets dropping? Sensors drifting out of sync?
Many wearable projects fail because of poor analog front-end design, improper PCB layout, timing issues between sensors, or unstable BLE communication.
These problems often appear late in development, causing costly redesigns and unreliable prototype performance.
I help startups, researchers, and product developers build wearable multisensor hardware that delivers clean biosignal acquisition, accurate timing synchronization, and reliable wireless data streaming.
Expertise:
- ECG, EMG, PPG, EDA, IMU, Temperature & Motion Sensors
- Low-Noise Analog Front-End (AFE) Design
- BLE SoC Integration nRF52, ESP32, STM32
- Time-Synchronized Multisensor Acquisition
- Low-Power Battery-Powered Systems
- Wearable PCB Design & Signal Integrity Optimization
Deliverables:
- System Architecture & Hardware Design
- Schematic & PCB Layout
- Component Selection & BOM
- Gerber & Manufacturing Files
- BLE Communication Architecture
- Prototype-Ready Design Package
Whether you're developing a medical research device, fitness wearable, health monitor, or custom biosensing platform,
Especialización:
Diseño de circuitos
•
Esquemas
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Disposición
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Huella
Formato de archivo:
Gerber
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STEP
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SCH
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Interfaz:
HDMI
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MIPI DSI/CSI
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I2S
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TDM
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UART
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USB
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SPI
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I2C
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SDIO
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PCIe
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Wi-Fi

