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High-Accuracy, Compact Scanning Method and Circuit for Resistive Sensor Arrays
- Kim, Jong Seok;
- Kwon, Dae-Yong;
- Choi, Byong-Deok
WEB OF SCIENCE
52SCOPUS
58초록
The zero-potential scanning circuit is widely used as read-out circuit for resistive sensor arrays because it removes a well known problem: crosstalk current. The zero-potential scanning circuit can be divided into two groups based on type of row drivers. One type is a row driver using digital buffers. It can be easily implemented because of its simple structure, but we found that it can cause a large read-out error which originates from on-resistance of the digital buffers used in the row driver. The other type is a row driver composed of operational amplifiers. It, very accurately, reads the sensor resistance, but it uses a large number of operational amplifiers to drive rows of the sensor array; therefore, it severely increases the power consumption, cost, and system complexity. To resolve the inaccuracy or high complexity problems founded in those previous circuits, we propose a new row driver which uses only one operational amplifier to drive all rows of a sensor array with high accuracy. The measurement results with the proposed circuit to drive a 4 x 4 resistor array show that the maximum error is only 0.1% which is remarkably reduced from 30.7% of the previous counterpart.
키워드
- 제목
- High-Accuracy, Compact Scanning Method and Circuit for Resistive Sensor Arrays
- 저자
- Kim, Jong Seok; Kwon, Dae-Yong; Choi, Byong-Deok
- 발행일
- 2016-02
- 유형
- Article
- 저널명
- Sensors
- 권
- 16
- 호
- 2
- 페이지
- 1 ~ 16