A Novel Fingerprint Sensing Technology Based on Electrostatic Imaging

In this paper, we propose a new fingerprint sensing technology based on electrostatic imaging, which can greatly improve fingerprint sensing distance. This can solve the problem of the existing capacitive fingerprint identification device being easy to damage due to limited detection distance and a...

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Main Authors: Kai Tang, Aijia Liu, Wei Wang, Pengfei Li, Xi Chen
Format: Article
Language:English
Published: MDPI AG 2018-09-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/18/9/3050
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spelling doaj-f59b9c2269ce44a087038d144f954f522020-11-24T21:21:10ZengMDPI AGSensors1424-82202018-09-01189305010.3390/s18093050s18093050A Novel Fingerprint Sensing Technology Based on Electrostatic ImagingKai Tang0Aijia Liu1Wei Wang2Pengfei Li3Xi Chen4State Key Laboratory of Mechatronics Engineering and Control, Beijing Institute of Technology, Beijing 100081, ChinaState Key Laboratory of Mechatronics Engineering and Control, Beijing Institute of Technology, Beijing 100081, ChinaState Key Laboratory of Mechatronics Engineering and Control, Beijing Institute of Technology, Beijing 100081, ChinaState Key Laboratory of Mechatronics Engineering and Control, Beijing Institute of Technology, Beijing 100081, ChinaState Key Laboratory of Mechatronics Engineering and Control, Beijing Institute of Technology, Beijing 100081, ChinaIn this paper, we propose a new fingerprint sensing technology based on electrostatic imaging, which can greatly improve fingerprint sensing distance. This can solve the problem of the existing capacitive fingerprint identification device being easy to damage due to limited detection distance and a protective coating that is too thin. The fingerprint recognition sensor can also be placed under a glass screen to meet the needs of the full screen design of the mobile phone. In this paper, the electric field distribution around the fingerprint is analyzed. The electrostatic imaging sensor design is carried out based on the electrostatic detection principle and MEMS (micro-electro-mechanical system) technology. The MEMS electrostatic imaging array, analog, and digital signal processing circuit structure are designed. Simulation and testing are carried out as well. According to the simulation and prototype test device test results, it is confirmed that our proposed electrostatic imaging-based fingerprint sensing technology can increase fingerprint recognition distance by 46% compared to the existing capacitive fingerprint sensing technology. A distance of more than 439 μm is reached.http://www.mdpi.com/1424-8220/18/9/3050electrostatic imagingfingerprint sensingMEMSelectrostatics field
collection DOAJ
language English
format Article
sources DOAJ
author Kai Tang
Aijia Liu
Wei Wang
Pengfei Li
Xi Chen
spellingShingle Kai Tang
Aijia Liu
Wei Wang
Pengfei Li
Xi Chen
A Novel Fingerprint Sensing Technology Based on Electrostatic Imaging
Sensors
electrostatic imaging
fingerprint sensing
MEMS
electrostatics field
author_facet Kai Tang
Aijia Liu
Wei Wang
Pengfei Li
Xi Chen
author_sort Kai Tang
title A Novel Fingerprint Sensing Technology Based on Electrostatic Imaging
title_short A Novel Fingerprint Sensing Technology Based on Electrostatic Imaging
title_full A Novel Fingerprint Sensing Technology Based on Electrostatic Imaging
title_fullStr A Novel Fingerprint Sensing Technology Based on Electrostatic Imaging
title_full_unstemmed A Novel Fingerprint Sensing Technology Based on Electrostatic Imaging
title_sort novel fingerprint sensing technology based on electrostatic imaging
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2018-09-01
description In this paper, we propose a new fingerprint sensing technology based on electrostatic imaging, which can greatly improve fingerprint sensing distance. This can solve the problem of the existing capacitive fingerprint identification device being easy to damage due to limited detection distance and a protective coating that is too thin. The fingerprint recognition sensor can also be placed under a glass screen to meet the needs of the full screen design of the mobile phone. In this paper, the electric field distribution around the fingerprint is analyzed. The electrostatic imaging sensor design is carried out based on the electrostatic detection principle and MEMS (micro-electro-mechanical system) technology. The MEMS electrostatic imaging array, analog, and digital signal processing circuit structure are designed. Simulation and testing are carried out as well. According to the simulation and prototype test device test results, it is confirmed that our proposed electrostatic imaging-based fingerprint sensing technology can increase fingerprint recognition distance by 46% compared to the existing capacitive fingerprint sensing technology. A distance of more than 439 μm is reached.
topic electrostatic imaging
fingerprint sensing
MEMS
electrostatics field
url http://www.mdpi.com/1424-8220/18/9/3050
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