Literature DB >> 26390500

Normally Off ECG SoC With Non-Volatile MCU and Noise Tolerant Heartbeat Detector.

Shintaro Izumi, Ken Yamashita, Masanao Nakano, Shusuke Yoshimoto, Tomoki Nakagawa, Yozaburo Nakai, Hiroshi Kawaguchi, Hiromitsu Kimura, Kyoji Marumoto, Takaaki Fuchikami, Yoshikazu Fujimori, Hiroshi Nakajima, Toshikazu Shiga, Masahiko Yoshimoto.   

Abstract

This paper describes an electrocardiograph (ECG) monitoring SoC using a non-volatile MCU (NVMCU) and a noise-tolerant instantaneous heartbeat detector. The novelty of this work is the combination of the non-volatile MCU for normally off computing and a noise-tolerant-QRS (heartbeat) detector to achieve both low-power and noise tolerance. To minimize the stand-by current of MCU, a non-volatile flip-flop and a 6T-4C NVRAM are used. Proposed plate-line charge-share and bit-line non-precharge techniques also contribute to mitigate the active power overhead of 6T-4C NVRAM. The proposed accurate heartbeat detector uses coarse-fine autocorrelation and a template matching technique. Accurate heartbeat detection also contributes system-level power reduction because the active ratio of ADC and digital block can be reduced using heartbeat prediction. Measurement results show that the fully integrated ECG-SoC consumes 6.14 μ A including 1.28- μA non-volatile MCU and 0.7- μA heartbeat detector.

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Year:  2015        PMID: 26390500     DOI: 10.1109/TBCAS.2015.2452906

Source DB:  PubMed          Journal:  IEEE Trans Biomed Circuits Syst        ISSN: 1932-4545            Impact factor:   3.833


  1 in total

1.  Estimating metabolic equivalents for activities in daily life using acceleration and heart rate in wearable devices.

Authors:  Motofumi Nakanishi; Shintaro Izumi; Sho Nagayoshi; Hiroshi Kawaguchi; Masahiko Yoshimoto; Toshikazu Shiga; Takafumi Ando; Satoshi Nakae; Chiyoko Usui; Tomoko Aoyama; Shigeho Tanaka
Journal:  Biomed Eng Online       Date:  2018-07-28       Impact factor: 2.819

  1 in total

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