Logo image
A 457-nW Cognitive Multi-Functional ECG Processor
Conference proceeding

A 457-nW Cognitive Multi-Functional ECG Processor

Xin Liu, Jun Zhou, Yongkui Yang, Bo Wang, Jingjing Lan, Chao Wang, Jianwen Luo, Wang Ling Goh, Tony Tae-Hyoung Kim, Minkyu Je, …
2013 IEEE Asian Solid-State Circuits Conference (A-SSCC 2013) : Singapore, 11-13 November 2013, pp.141-144
IEEE Asian Solid-State Circuits Conference Proceedings of Technical Papers
01/01/2013

Abstract

Engineering Engineering, Electrical & Electronic Science & Technology Technology
In this paper, a multi-functional ECG signal processor for wearable and implantable real-time monitoring is presented. To enable extremely long-term ambulatory monitoring, several power saving techniques are proposed, including global cognitive clocking, pseudo-downsampling wavelet transform, adaptive storing, and denoising-based run-length compression. An on-chip low-complexity cardiac signal analysis module is proposed to realize comprehensive analysis functions. Near-threshold circuit technique is applied to the overall system. Implemented in 0.18 mu m CMOS, the proposed cognitive ECG processor consumes only 457 nW at 0.5 V supply for real-time ambulatory monitoring. Compared with existing designs, the presented ECG processor achieves the lowest power consumption.

Metrics

1 Record Views

Details

Logo image