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Dynamic Zero Current Method to Reduce Measurement Error in Low Value Resistive Sensor Array for Wearable Electronics

delete2023-01-26
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OA
AI
H
Huanqian Zhang
J
Jee Chin Teoh
J
Jianfeng Wu *
L
Longteng Yu
C
Chwee Teck Lim *
DOI:10.3390/s23031406delete
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Abstract

Abstract

En 中文
One advantage of a resistive sensor array (RSA) with shared rows (M) and shared columns (N) is the reduced number of wires from M x N + 1 to M + N which can greatly lessen the complexity and burden on wearable electronic systems. However, the drawback is the crosstalk current effect between adjacent elements, which will lead to high measurement error. Although several solutions have been reported, they mainly focus on RSAs with high resistance (>= 100 ohm). There is a lack of research that addresses RSAs with resistor values below 100 ohm. Here, we introduce a new circuit design named the dynamic zero current method (DZCM) to further decrease the measurement error. From the low value RSA test with ideal resistors, the DZCM exhibits lower error than the zero potential method (ZPM). In the case of the error variation ratio of amplifier offset voltage, the DZCM has a 4%/mV (row) to 7%/mV (column) ratio, while the ZPM has an almost 25%/mV (row) to 45%/mV (column) ratio and it increases with array size.
Keywords:
dynamical zero current
input offset voltage
low value resistive sensor array
measurement error
parasitic resistance
zero potential method
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Journal

Sensors cover
Sensors
IF:
3.5
Papers:
7.1W
Citations:
20.9W

Organization

S
southeast university - china
Scholars:
5.3W
Papers: 4.9W
Citations: 57
N
National University of Singapore
Scholars:
7.5W
Papers: 6.5W
Citations: 11.4W