用于触觉应用的4英寸透明板的薄膜AlN驱动器的设计

F. Casset, J. Danel, C. Chappaz, F. Bernard, S. Basrour, B. Desloges, S. Fanget
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引用次数: 2

摘要

如今,许多应用都需要触觉界面。特别是,许多客户的应用,如智能手机,平板电脑或触摸板,可以关注高性能,低电压的触觉接口,允许用户通过触觉与环境进行交互。这项技术已经被使用,但存在诸如高功耗和有限的反馈效果(简单的振动)等局限性。我们选择了挤压膜效果。它包括改变手指和平板谐振器之间的摩擦。它提供了高粒度的触觉感觉。为了提高4英寸板(板的对角线)的挤压膜效果,本文研究了高性能执行机构的设计。利用预测模型,我们选择了最好的设计,能够产生最大的衬底位移振幅。我们使用基于薄膜AlN致动器的通用技术构建了演示器。在不久的将来,在触觉演示器中集成薄膜致动器板之前,机电特性正在进行中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of thin-film AlN actuators for 4-inch transparent plates for haptic applications
Numerous applications require tactile interfaces today. In particular, many customers' applications such as Smartphone, tablet PC or touch pad can be concerned by high performances, low voltage haptic interfaces which allow the user to interact with its environment by the sense of touch. This technology is already used but with limitations such as high power consumption and limited feedback effect (simple vibration). We chose to work on the squeeze-film effect. It consists in changing the friction between the finger and a plate resonator. It provides high granularity level of haptic sensation. This paper deals with the design of high performances actuators in order to promote the squeeze-film effect on a 4-inch plate (diagonal of the plate). Using predictive models, we select the best design, able to generate the highest substrate displacement amplitude as possible. We built demonstrators using a generic technology based on thin-film AlN actuators. Electromechanical characterization is ongoing before the integration of the thin-film actuator plate in a haptic demonstrator in a close future.
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