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Microelectrical Mechanical Systems Actuator Array for Tactile Communication

机译:微电子机械系统执行器阵列,用于触觉通信

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Tactile perception of alpha-numerics is possible using a tactile illusion (TI). The illusory sensation of motion is produced by mechanical actuators applying points of pressure on the skin. Vibrating points induce a nonveridical perception of motion from point to point. Intact lemniscal and parietal cortex are necessary for perception of the TI and can be used as a neurophysiological testing tool and an additional human-machine communication channel. We describe a 4 * 5 actuator array of individual vibrating pixels for fingertip tactile communication. The array utilizes novel micro-clutch MEMS technology. Individual pixels are turned ON and OFF by pairs of microscopic thermal actuators, while the main vibration is generated by a vibrating piezo-electric plate. Physiological parameters required for inducing TI and the fabrication sequence for the thermal micro-actuators along with actuation results are presented. Fingertip perception of micro-actuators could be built into a variety of data acquisition interfaces for handicapped persons.
机译:使用触觉幻觉(TI)可以实现对α-数字的触觉感知。通过机械致动器在皮肤上施加压力点来产生运动的虚幻感。振动点从点对点引起非凡的运动感知。完整的Lemniscal和Paretal Cortex是对Ti的感知所必需的,并且可以用作神经生理测试工具和额外的人机通信通道。我们描述了一个4 * 5致动器阵列的各个振动像素,用于指尖触觉通信。该阵列采用新型微离合器MEMS技术。通过对微观热致动器对打开和关闭各个像素,而主振动由振动压电板产生。介绍了诱导Ti和热微致动器的制造序列所需的生理参数以及致动结果。 Fingertip对微致动器的感知可以内置于残疾人的各种数据采集界面中。

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