DocumentCode :
2997091
Title :
Ultralow-power analog front-end circuits and system design for an implantable cardioverter defibrillator (ICD)
Author :
Hu, Weibo ; Nguyen, Tam ; Liu, Yen-Ting ; Lie, Donald Y C
Author_Institution :
Electr. & Comput. Eng. Dept., Texas Tech Univ. (TTU), Lubbock, TX, USA
fYear :
2011
fDate :
7-8 April 2011
Firstpage :
34
Lastpage :
37
Abstract :
This paper proposes some novel ultralow-power system and circuit designs and trade-offs on the analog front-end integrated circuit (IC) for an implantable cardioverter defibrillators (ICD). The major front-end analog IC components include low-power pre-amplifier, filters, a variable-gain-amplifier (VGA) and an Analog-to-Digital Converter (ADC). We avoided the use of clock signals in the analog IC design (except in the ADC) to reduce the common-mode and switching noise as much as possible. Therefore, the pre-amplifier is designed with low-noise bipolar transistors, rather than using chopper or auto-zero techniques; the filters are designed with the gm-C topology. The VGA includes a high-pass filter (HPF) and a DC shifter designed with a differential difference amplifier (DDA). An ultralow-power successive-approximation-register (SAR) ADC with a novel DAC design is used to digitize signals and to reduce SAR ADC´s input capacitance by half. SPICE simulation results of each circuit block and of the entire front-end IC demonstrate that the ultralow-power analog front-end circuitry can effectively filter out the undesired T-wave in patients´ electrogram (EGM) to enable proper heartbeat detection in the ICD.
Keywords :
SPICE; analogue-digital conversion; biomedical equipment; capacitance; defibrillators; differential amplifiers; electrocardiography; filtering theory; high-pass filters; integrated circuit design; low-power electronics; medical signal processing; network topology; phase shifters; preamplifiers; prosthetic power supplies; signal conditioning circuits; signal processing equipment; DC shifter; EGM; SPICE simulation; Simulation Program with Integrated Circuit Emphasis; T-wave filtering; analog IC components; analog-to-digital converter; capacitance reduction; differential difference amplifier; electrogram; gm-C topology; heartbeat detection; high-pass filter; implantable cardioverter defibrillator; low-noise bipolar transistors; low-power preamplifier; signal digitization; switching noise; system design; ultralow-power analog front-end integrated circuits; ultralow-power successive-approximation-register; variable-gain-amplifier; Band pass filters; Clocks; Gain; Integrated circuits; Noise; Power demand; SPICE; ICD; SAR ADC; VGA; analog front-end IC; gm-C filter; pre-amplifier; ultra-lowpower;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Life Science Systems and Applications Workshop (LiSSA), 2011 IEEE/NIH
Conference_Location :
Bethesda, MD
Print_ISBN :
978-1-4577-0421-5
Type :
conf
DOI :
10.1109/LISSA.2011.5754148
Filename :
5754148
Link To Document :
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