推进多触摸传感:整合FTIR和ToF技术,用于精确和大规模的触摸接口
Andrejs Ogurcovs1, Ilze Aulika1, Sergio Cartiel2
1Institute of Solid State Physics, University of Latvia, Kengaraga Street 8, LV-1063 Riga, Latvia.
Sensors (Basel, Switzerland)
|September 13, 2025
概括
本研究介绍了一种新型的多触摸传感器,该传感器集成了丧总内部反射 (FTIR) 与飞行时间 (ToF) 传感器. 创新的设计为大型表面提供精确,可扩展和具有成本效益的触觉传感,即使在明亮的条件下.
科学领域:
- 光电学是指光电子产品.
- 触觉感应技术的触觉感应技术
- 人与计算机的交互
背景情况:
- 像OptoSkin这样的现有触觉传感平台存在局限性.
- 不同传感技术的整合对于先进的接口至关重要.
研究的目的:
- 通过将丧总内部反射 (FTIR) 与飞行时间 (ToF) 传感器集成,开发一种增强的多触摸传感器.
- 为了展示一个精确的,可扩展的,和高性价比的触觉传感解决方案,用于大面积.
主要方法:
- 使用了一种2毫米厚的聚甲基酸 (PMMA) 光导 (200 × 300 mm2).
- 采用单个AMS TMF8828 ToF传感器作为照明源和接收器.
- 杆式FTIR原理,用于信号传播的PMMA折射率为1.49.
主要成果:
- 为ToF接收器实现了大约32度的光学视野 (FoV).
- 展示了一个单一的ToF传感器,覆盖195厘米2的活跃面积.
- 实现了~1厘米的线性分辨率和高达3.5度的角度分辨率.
- 在直接阳光条件下展示了强大的性能.
结论:
- 在没有外部摄像头或电极阵列的情况下,直接的FTIR-ToF集成是可行的.
- 拟议的系统能够在大面积上实现精确,可扩展和经济高效的多触摸传感.
- 在消费电子,工业控制和机器人皮肤应用中为先进的触摸界面设定了新的基准.
关键词:
美国的FTIR是FTIR.李达尔 (LiDAR) 是一个在线游戏.飞行时间-飞行时间.丧的总体内部反射.光探测和距离测量,以及远距离测量.导光灯是指导光的指导灯.有光学传感器的感应器.接近传感器近距离传感器机器人传感器皮肤触觉感应是一种触觉感应.触摸检测 触摸检测 触摸检测导波器是指导波的导波器.更多相关视频
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