Effect of Structure on Driving Characteristics of the Tactile Pin Actuator for Reaction Force Variable Tactile Displays
Author:
Affiliation:
1. Nagoya University
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Subject
Electrical and Electronic Engineering,Mechanical Engineering
Link
https://www.jstage.jst.go.jp/article/ieejsmas/143/8/143_236/_pdf
Reference14 articles.
1. (1) T. Matsunaga, K. Totsu, M. Esashi, and Y. Haga : “Tactile display using shape memory alloy micro-coil actuator and magnetic latch mechanism”, Displays, Vol. 34, No. 2, pp. 89-94 (2013)
2. (2) 遠山 蒼・高原光將・神田健介・藤田孝之・前中一介:「PZT/PI積層構造を用いた圧電MEMS触覚デバイス」, 第35回センサ・マイクロマシンと応用システムシンポジウム講演論文, 30am3-PS-25 (2018)
3. (3) J. J. Zarate and H. Shea : “Using Pot-Magnets to Enable Stable and Scalable Electromagnetic Tactile Displays”, IEEE Transactions on Haptics, Vol. 10, pp. 106-112 (2016)
4. (4) H. H. Ly, Y. Tanaka, and M. Fujiwara : “SuP-ring: A pneumatic tactile display with substitutional representation of contact force components using normal indentation”, Int. J. Med. Robot. Comput. Assist. Surg., Vol. 17, No. 6 (2021)
5. (5) H. Tomita, S. Saga, H. Kajimoto, S. Vasilache, and S. Takahashi : “A study of tactile sensation and magnitude on electrostatic tactile display”, 2018 IEEE Haptics Symposium (HAPTICS), pp. 158-162 (2018)
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