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Analysis and Design of a Capacitive Sensor for Measuring Thickness

Parallel plate capacitance sensors have the advantage of low cost, fast dynamic response, and high resolution. However, edge effect severely limits their sensing accuracy. This paper designs a kind of parallel plate capacitance cylinder sensor with a metal protective ring which can significantly eli... Full description

Journal Title: Applied Mechanics and Materials 2014-07-18, Vol.596 (Mechatronics and Industrial Informatics II), p.540-543
Main Author: Lei, Jian Hua
Format: Electronic Article Electronic Article
Language: English
Subjects:
Publisher: Zurich: Trans Tech Publications Ltd
ID: ISSN: 1660-9336
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recordid: cdi_crossref_primary_10_4028_www_scientific_net_AMM_596_540
title: Analysis and Design of a Capacitive Sensor for Measuring Thickness
format: Article
creator:
  • Lei, Jian Hua
subjects:
  • Capacitance
  • Computer programs
  • Cylinders
  • Design engineering
  • Electric fields
  • Parallel plates
  • Protective
  • Sensors
ispartof: Applied Mechanics and Materials, 2014-07-18, Vol.596 (Mechatronics and Industrial Informatics II), p.540-543
description: Parallel plate capacitance sensors have the advantage of low cost, fast dynamic response, and high resolution. However, edge effect severely limits their sensing accuracy. This paper designs a kind of parallel plate capacitance cylinder sensor with a metal protective ring which can significantly eliminate edge effect. Besides, simulation is shown using Ansys, a finite element software. The results indicate that, the curved field has turned into a vertical electric field because of the existence of the protective ring, and the edge effect has been eliminated.
language: eng
source:
identifier: ISSN: 1660-9336
fulltext: no_fulltext
issn:
  • 1660-9336
  • 1662-7482
  • 1662-7482
url: Link


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descriptionParallel plate capacitance sensors have the advantage of low cost, fast dynamic response, and high resolution. However, edge effect severely limits their sensing accuracy. This paper designs a kind of parallel plate capacitance cylinder sensor with a metal protective ring which can significantly eliminate edge effect. Besides, simulation is shown using Ansys, a finite element software. The results indicate that, the curved field has turned into a vertical electric field because of the existence of the protective ring, and the edge effect has been eliminated.
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subjectCapacitance ; Computer programs ; Cylinders ; Design engineering ; Electric fields ; Parallel plates ; Protective ; Sensors
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descriptionParallel plate capacitance sensors have the advantage of low cost, fast dynamic response, and high resolution. However, edge effect severely limits their sensing accuracy. This paper designs a kind of parallel plate capacitance cylinder sensor with a metal protective ring which can significantly eliminate edge effect. Besides, simulation is shown using Ansys, a finite element software. The results indicate that, the curved field has turned into a vertical electric field because of the existence of the protective ring, and the edge effect has been eliminated.
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notesSelected, peer reviewed papers from the 2014 2nd International Conference on Mechatronics and Industrial Informatics (ICMII 2014), May 30-31, 2014, Guangzhou, China
abstractParallel plate capacitance sensors have the advantage of low cost, fast dynamic response, and high resolution. However, edge effect severely limits their sensing accuracy. This paper designs a kind of parallel plate capacitance cylinder sensor with a metal protective ring which can significantly eliminate edge effect. Besides, simulation is shown using Ansys, a finite element software. The results indicate that, the curved field has turned into a vertical electric field because of the existence of the protective ring, and the edge effect has been eliminated.
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