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A 700-mu W Single-Chip IC for Wireless Continuous-Time Health Monitoring in 0.18-mu m CMOS
Conference proceeding

A 700-mu W Single-Chip IC for Wireless Continuous-Time Health Monitoring in 0.18-mu m CMOS

T. Hui Teo, P. K. Gopalakrishnan, Y. S. Hwan, X. B. Qian, K. Haridas, C. Y. Pang, M. Je and IEEE
2009 IEEE ASIAN SOLID-STATE CIRCUITS CONFERENCE (A-SSCC), pp.361-364
IEEE Asian Solid-State Circuits Conference Proceedings of Technical Papers
01/01/2009

Abstract

Engineering Engineering, Electrical & Electronic Science & Technology Technology
A sensor node was designed and implemented in 0.18 mu m CMOS process. The sensor node consists of a sensor interface circuit, an analog-to-digital converter (ADC), a digital signal processor (DSP) unit and a radio-frequency (RF) transmitter unit. The sensor node was designed for use in a wireless health monitoring system. Minimal off-chip components are allowed in this implementation for improved user experience, which are antenna, crystal resonator and supply decoupling capacitors. Low-power low-voltage design techniques such as sub-threshold design were employed intensively to minimize the power consumption of the sensor node IC and maximize the battery life. The sensor consumes only about 700 mu W at 0.7 V supply and it enables continuous-and real-time electrocardiogram (ECG) monitoring for more than 200 hours without changing the battery when a typical button-cell battery is used.

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