DocumentCode :
640422
Title :
A safe circuit for the measurement of stimuli pulse amplitude in biomedical devices
Author :
Costa, David ; Miguez, M. ; Arnaud, A.
Author_Institution :
Dept. de Ing. Electr., Univ. Catolica del Uruguay, Uruguay
fYear :
2013
fDate :
15-16 Aug. 2013
Firstpage :
102
Lastpage :
107
Abstract :
In this paper an integrating amplifier aimed at estimating pulse amplitude in implantable stimuli delivery devices is presented. The proposed circuit can integrate during each stimulus the effective voltage being applied to tissue, to later use this measure in a self-calibration procedure or in a closed loop stimulator scheme. The circuit was designed and simulated using a 0.6 μm HV CMOS technology, it consumes only 8 μA current from the battery when it is turned on, and shows an error below 3% for pulses ranging from 100 μs to 5 ms, and from 350 mV to 15 V if the time-voltage product does not saturate the integrating capacitor. The circuit is safe in the sense it is not harmful for the patient in the case of a single (independent) circuit failure. The focus of this work is in a pacemaker application, but the developed circuit block can be incorporated in a wide set of biomedical devices.
Keywords :
CMOS integrated circuits; bioelectric potentials; biomedical electronics; biomedical equipment; low-power electronics; pacemakers; prosthetic power supplies; safety; 0.6 μm HV CMOS technology; battery; biological tissue; biomedical device; circuit block; circuit design; circuit simulation; closed loop stimulator scheme; current 8 muA; current consumption; effective voltage application; implantable stimuli delivery device; integrating amplifier; integrating capacitor; pacemaker application; pulses range; safe circuit; self-calibration procedure; single independent circuit failure; size 0.6 mum; stimuli pulse amplitude measurement; time 100 mus to 5 ms; time-voltage product; voltage 350 mV to 15 V; Arrays; Capacitors; Electrodes; Pacemakers; Pulse measurements; Resistors; Transistors; Biomedical circuits; amplifier; analog design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro-Nanoelectronics, Technology and Applications (EAMTA), 2013 7th Argentine School of
Conference_Location :
Buenos Aires
Type :
conf
Filename :
6621086
Link To Document :
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