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2020 | OriginalPaper | Chapter

Paper Counting Device Based on FDC2214

Author : Jian Huang

Published in: Innovative Computing

Publisher: Springer Singapore

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Abstract

Design and make a paper counting display device. Two parallel plates (plate A and plate B) are connected to the measurement and display circuit through wire A and wire B, respectively. The device can measure and display the number of papers placed between plate A and plate B. Based on the principle of capacitance sensing, when the medium changes, it will cause the change of capacitance capacity, which will be converted into 28-bit digital output for the convenience of microprocessor acquisition and processing.

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Literature
1.
go back to reference Tao, Jin, Liu Jinglin, Yang Wei, Le Yanfen, and Hou Wenmei. 2018. High precision heterodyne interferometer for linearity of linear displacement table. Optical Precision Engineering 26 (7): 1570–1577.CrossRef Tao, Jin, Liu Jinglin, Yang Wei, Le Yanfen, and Hou Wenmei. 2018. High precision heterodyne interferometer for linearity of linear displacement table. Optical Precision Engineering 26 (7): 1570–1577.CrossRef
2.
go back to reference Xihou, Chen, Cao Huan, Wu Liang, and Zhu Hai. 2017. Linear time grating displacement sensor based on magnetic conductivity modulation. Journal of Sensing Technology 30 (1): 26–30. Xihou, Chen, Cao Huan, Wu Liang, and Zhu Hai. 2017. Linear time grating displacement sensor based on magnetic conductivity modulation. Journal of Sensing Technology 30 (1): 26–30.
3.
go back to reference Liang, Wu, Peng Donglin, Lu Jin, Tang Qifu, and Chen Xihou. 2017. Linear time grating displacement sensor based on plane coil linear array. Journal of Instrumentation 38 (1): 83–90. Liang, Wu, Peng Donglin, Lu Jin, Tang Qifu, and Chen Xihou. 2017. Linear time grating displacement sensor based on plane coil linear array. Journal of Instrumentation 38 (1): 83–90.
4.
go back to reference Natural, Chen, Liu Xiaokang, Jisen Yang, and Gang Li. 2017. Research on incremental linear time grating sensor based on measurement reference transformation. Journal of Instrumentation 38 (1): 91–96. Natural, Chen, Liu Xiaokang, Jisen Yang, and Gang Li. 2017. Research on incremental linear time grating sensor based on measurement reference transformation. Journal of Instrumentation 38 (1): 91–96.
5.
go back to reference Missoffe, Alexia, Chassagne Luc, and S. Topçu. 2012. New simple optical sensor: From nanometer resolution to centimeter displacement range. Sensors and Actuators, A: Physical 176 (4): 46–52.CrossRef Missoffe, Alexia, Chassagne Luc, and S. Topçu. 2012. New simple optical sensor: From nanometer resolution to centimeter displacement range. Sensors and Actuators, A: Physical 176 (4): 46–52.CrossRef
6.
go back to reference Fleming, A.J. 2013. A review of nanometer resolution position sensors: Operation and performance. Sensors and Actuators, A: Physical 190 (1): 106–126.CrossRef Fleming, A.J. 2013. A review of nanometer resolution position sensors: Operation and performance. Sensors and Actuators, A: Physical 190 (1): 106–126.CrossRef
7.
go back to reference Binghao, Bao, Jiang Feng, Zhao Zhan, and Xuefeng Song. 2006. A new weak magnetic field sensor based on the giant magneto impedance effect of amorphous belt. Journal of Sensing Technology 19 (6): 2380–2383. Binghao, Bao, Jiang Feng, Zhao Zhan, and Xuefeng Song. 2006. A new weak magnetic field sensor based on the giant magneto impedance effect of amorphous belt. Journal of Sensing Technology 19 (6): 2380–2383.
8.
go back to reference Jieyuan, Qian Junyue. 2006. Research on magnetic field sensor based on amorphous alloy. Electrical Measurement and Instrument 43(2): 59–61. Jieyuan, Qian Junyue. 2006. Research on magnetic field sensor based on amorphous alloy. Electrical Measurement and Instrument 43(2): 59–61.
9.
go back to reference Dongming, Fang, Zhao Xiaolin, Wang Xining, and Zhou Yong. 2006. Design and Simulation of micro inductors in RF solenoids. Journal of Sensing Technology 19 (5): 1878–1880. Dongming, Fang, Zhao Xiaolin, Wang Xining, and Zhou Yong. 2006. Design and Simulation of micro inductors in RF solenoids. Journal of Sensing Technology 19 (5): 1878–1880.
10.
go back to reference Peng, Wang, Daoyu Qin, Tianhuai Ding, and Zhibin Fu. 2007. Research on signal detection technology of micro inductance plane coil. Journal of Sensing Technology 20 (10): 2333–2336. Peng, Wang, Daoyu Qin, Tianhuai Ding, and Zhibin Fu. 2007. Research on signal detection technology of micro inductance plane coil. Journal of Sensing Technology 20 (10): 2333–2336.
11.
go back to reference Weida, Xie, Xu Jing, and Shao Derong. 2004. Research on non-contact speed measurement and positioning method based on inductive sensor. Computer Measurement and Control 12 (1): 38–41. Weida, Xie, Xu Jing, and Shao Derong. 2004. Research on non-contact speed measurement and positioning method based on inductive sensor. Computer Measurement and Control 12 (1): 38–41.
Metadata
Title
Paper Counting Device Based on FDC2214
Author
Jian Huang
Copyright Year
2020
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-5959-4_217

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