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Erschienen in: Microsystem Technologies 12/2010

01.12.2010 | Technical Paper

Design and fabrication of a flexible three-axial tactile sensor array based on polyimide micromachining

verfasst von: Hyun-Jun Kwon, Woo-Chang Choi

Erschienen in: Microsystem Technologies | Ausgabe 12/2010

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Abstract

This paper describes the design and fabrication of a flexible three-axial tactile sensor array using advanced polyimide micromachining technologies. The tactile sensor array is comprised of sixteen micro force sensors and it measures 13 mm × 18 mm. Each micro force sensor has a square membrane and four strain gauges, and its force capacity is 0.6 N in the three-axial directions. The optimal positions of the strain gauges are determined by the strain distribution obtained form finite element analysis (FEA). The normal and shear forces are detected by combining responses from four thin-film metal strain gauges embedded in a polyimide membrane. In order to acquire force signals from individual micro force sensors, we fabricated a PCB based on a multiplexer, operational amplifier and microprocessor with CAN network function. The sensor array is tested from the evaluation system with a three-component load cell. The developed sensor array can be applied in robots’ fingertips, as well as to other electronic applications with three-axial force measurement and flexibility keyword requirements.

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Literatur
Zurück zum Zitat Duchaine V, Lauzier N, Baril M, Lacasse MC, Gosselin C (2009) A flexible robot skin for safe physical human robot interaction. In: International Conference on Robotics and Automation IEEE:3676–3681. doi: 10.1109/ROBOT.2009.5152595 Duchaine V, Lauzier N, Baril M, Lacasse MC, Gosselin C (2009) A flexible robot skin for safe physical human robot interaction. In: International Conference on Robotics and Automation IEEE:3676–3681. doi: 10.​1109/​ROBOT.​2009.​5152595
Zurück zum Zitat Kim JH, Choi WC, Kwon HJ, Kang DI (2005) State of the art tactile sensor and its application. In: Proceedings of the international sensors conference Korea Sensors Society, pp 37–39 Kim JH, Choi WC, Kwon HJ, Kang DI (2005) State of the art tactile sensor and its application. In: Proceedings of the international sensors conference Korea Sensors Society, pp 37–39
Zurück zum Zitat Kim JH, Choi WC, Kwon HJ, Kang DI (2006) Development of tactile sensor with function of contact force and thermal sensing for attachment to intelligent robot finger tip. In: 5th Conference on Sensors IEEE:1468–1472. doi: 10.1109/ICSEN.2007.355911 Kim JH, Choi WC, Kwon HJ, Kang DI (2006) Development of tactile sensor with function of contact force and thermal sensing for attachment to intelligent robot finger tip. In: 5th Conference on Sensors IEEE:1468–1472. doi: 10.​1109/​ICSEN.​2007.​355911
Zurück zum Zitat Kim JH, Kang DI, Choi JH, Kim MS, Choi WC, Lee JI, Park YG (2007) Fabrication method of flexible tactile sensor using polymer film. Korea Patent 735295 Kim JH, Kang DI, Choi JH, Kim MS, Choi WC, Lee JI, Park YG (2007) Fabrication method of flexible tactile sensor using polymer film. Korea Patent 735295
Zurück zum Zitat Kim K, Lee KR, Kim WH, Park KB, Kim TH, Kim JS, Park JJ (2009) Polymer-based flexible tactile sensor up to 32 × 32 arrays integrated with interconnection terminals. Sens Actuators A Phys 156:284–291. doi:10.1016/j.sna.2009.08.015 CrossRef Kim K, Lee KR, Kim WH, Park KB, Kim TH, Kim JS, Park JJ (2009) Polymer-based flexible tactile sensor up to 32 × 32 arrays integrated with interconnection terminals. Sens Actuators A Phys 156:284–291. doi:10.​1016/​j.​sna.​2009.​08.​015 CrossRef
Metadaten
Titel
Design and fabrication of a flexible three-axial tactile sensor array based on polyimide micromachining
verfasst von
Hyun-Jun Kwon
Woo-Chang Choi
Publikationsdatum
01.12.2010
Verlag
Springer-Verlag
Erschienen in
Microsystem Technologies / Ausgabe 12/2010
Print ISSN: 0946-7076
Elektronische ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-010-1125-6

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