arXiv:2603.16750cs.HCcs.ET2026-03

用低压电脉冲实现快速局部触觉反馈的微型气动像素

Thermopneumatic Pixels: Fast, Localized, Robust, Low-Voltage Touch Feedback

  • 通过电脉冲加热密闭腔体产生瞬时气压,驱动像素局部凸起
  • 响应时间毫秒级,单像素位移达1毫米,力超过1牛,厚度小于3毫米
  • 适合可穿戴设备、触摸屏等场景,支持高频振动与阵列化集成

我们提出热气动像素(TPPs)——一种薄型、快速、可重构且能局部输出瞬态位移的触觉反馈单元。该器件采用无内部运动部件的层状结构,可在低于10伏电压下工作,便于广泛集成于各类人机界面。每个像素通过短时电脉冲将能量转化为腔内瞬时气压升高,产生面外方向的力与位移。实验展示其可实现1毫米位移、超过1牛的力输出,响应时间在毫秒级,整体厚度不足3毫米。位移与力随像素表面积增大而提升,具备可调性;还能在300赫兹范围内生成振荡反馈。我们设计了间距4毫米的紧凑像素阵列,使用微控制器驱动的小型晶体管实现简单脉冲驱动。对TPPs的机械、动态和热响应进行了表征,并验证其在数万次循环中具有高鲁棒性与一致性。感知实验进一步分析了空间定位与强度随驱动功率的变化。这些结果确立了热气动像素作为一种高性能且实用的触觉技术。

原文摘要 · Abstract (English)

We present thermopneumatic pixels (TPPs) -- low-profile pixels and arrays that generate dynamic tactile feedback. These devices are thin, fast, reconfigurable, and output localized transient displacements at each pixel. Their parsimonious design -- a layered architecture without internal moving parts -- and low-voltage ($\lesssim$10 V) operation may facilitate practical integration in a wide variety of interfaces. Each TPP converts brief electrical pulses into transient air pressure increases in an internal cavity, yielding out-of-plane forces and displacements for tactile feedback. We demonstrate TPPs that output displacements of 1 mm and forces exceeding 1 N, with millisecond response times, in packages that are less than 3 mm thick. Force and displacement increase with pixel surface area, facilitating tailorability. The pixels can also generate oscillating feedback at pulse rates up to 300 Hz range. We report designs for compact arrays of pixels at 4 mm spacing, and simple pulse driving architectures using miniature transistors driven by microcontrollers. We characterize the mechanical, dynamic, and thermal response of TPPs, and their robustness and consistency over tens of thousands of cycles. We report perceptual experiments on spatial localization and intensity as a function of driving power. Together, these results establish thermopneumatic pixels as a compact, adaptable tactile technology that blends performance and practicality.

触觉反馈微型执行器人机交互

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