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Fringing-Effect-Based Capacitive Proximity Sensors

delete2024-08-28
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PRE
AI
牛闳森 (Hongsen Niu)
李灏 (Hao Li)
N
Ning Li
H
Hongkai Niu
李扬 cover
李扬 (Yang Li) *
S
Song Gao *
沈国震 (Guozhen Shen) *
DOI:10.1002/adfm.202409820delete
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Abstract

Abstract

En 中文
Proximity sensing technology, which can obtain information without physical contact, has become an ideal choice in scenarios where physical contact is not feasible. Despite substantial advancements in tactile sensing, proximity sensing technology still holds great potential and has yet to be fully developed. Among numerous proximity sensing technologies, the fringing-effect-based capacitive proximity sensor (FE-CPS) has garnered considerable attention due to its low cost, low power consumption, wide sensing range, and flexible and versatile structural design. However, research on FE-CPS has not yet formed a complete system, and its development and intellectualization are still in their infancy, urgently requiring a systematic review to advance its development. This paper systematically summarizes the recent advances in FE-CPS, from basic theory to practical applications. The working principle and typical structure of FE-CPS are first introduced, followed by a discussion of methods for optimizing device performance. Furthermore, the application scenarios of FE-CPS in intelligent pre-alarm systems, intelligent control systems, and intelligent material perception systems are reviewed. Finally, the future development and challenges faced by FE-CPS are prospected. Summarizing the importance of fringing-effect-based capacitive proximity sensors (FE-CPS) for overcoming current development bottlenecks and achieving higher levels of intelligence is crucial. This review provides a comprehensive overview of the typical structures and optimization strategies for constructing FE-CPS, and reviews the latest research advance in advanced application scenarios. image
Keywords:
capacitive proximity sensor
coplanar electrode structure
fringing effect
intelligent system
parallel plate structure

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

U
University of Jinan
Scholars:
1.6W
Papers: 1.1W
Citations: 1.4W
B
beijing institute of technology
Scholars:
5.5W
Papers: 4.0W
Citations: 63
B
Binzhou Medical University
Scholars:
6.1K
Papers: 3.1K
Citations: 75
S
shandong university
Scholars:
9.4W
Papers: 6.4W
Citations: 94
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