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Experimental Evaluation on the Effect of Electrode Configuration in Electrostatic Actuators for Increasing Vibrotactile Feedback Intensity

机译:电极配置在静电致动器中效果的实验评价,增加振动反馈强度

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Vibrotactile feedback is a key feature of many modern touch displays, which greatly enhances user experiences when interacting with an onscreen interface. Despite its popularity in small touch screen devices, this haptic feature is absent in most large displays due to a lack of suitable actuators for such applications. Thus, a growing need exists for haptic actuators capable of producing sufficient vibrations in large touch displays. This study proposes and evaluates a novel electrostatic resonant actuator (ERA) with a moving mass and dual electrodes for increased vibration feedback intensity. The dual-electrode ERA was fabricated along with a comparable single-electrode ERA to investigate the effect of the electrode configuration on the maximum vibration intensity. When measured directly on the mass, the maximum vibration intensity of the dual-electrode actuator increased by 73% compared to the single-electrode actuator. When mounted and measured on a mock panel, the maximum vibration intensity of the dual-electrode actuator increased by nearly 65% compared to a similarly mounted single-electrode actuator. These results show that the dual-electrode configuration can significantly increase the vibration intensity when compared to the conventional ERA. This demonstrates a promising potential for the use of the proposed actuator for generating vibrotactile feedback in large touch displays.
机译:振动触觉反馈是许多现代触摸显示器的关键特征,这大大增强了与屏幕接口交互时的用户体验。尽管其在小型触摸屏设备中受欢迎,但由于这种应用缺乏合适的执行器,这种触觉功能在大多数大型显示器中缺席。因此,存在不断增长的需要,用于触觉致动器能够在大触摸显示器中产生足够的振动。该研究提出并评估了一种具有移动质量和双电极的新型静电谐振致动器(ERA),用于增加振动反馈强度。双电极ERA与类似单电极ERA制成,以研究电极配置对最大振动强度的影响。当直接测量质量时,与单电极致动器相比,双电极致动器的最大振动强度增加了73%。当在模拟面板上安装和测量时,与类似安装的单电极致动器相比,双电极致动器的最大振动强度增加了近65%。这些结果表明,与传统时代相比,双电极配置可以显着提高振动强度。这证明了用于使用所提出的执行器以在大触摸显示器中产生振动反馈的有希望的潜力。

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