TOUCH SENSOR WITH MULTIFUNCTIONAL LAYERS, ELECTRONIC SKIN AND INTELLIGENT ROBOT

    公开(公告)号:US20210055175A1

    公开(公告)日:2021-02-25

    申请号:US16966487

    申请日:2018-05-23

    Abstract: The present application relates to a touch sensor with multifunctional layers and an intelligent robot. The touch sensor comprises a plurality of sensor units. Each of the sensor units comprises regions contained in four multifunctional layers. The first multifunctional layer and the third multifunctional layer are higher than the second multifunctional layer and the fourth multifunctional later, and the distance from the center of the first multifunctional layer to the center of the third multifunctional layer is greater than the distance from the center of the second multifunctional layer to the center of the fourth multifunctional layer. The first multifunctional layer and the third multifunctional layer form a capacitor C1, and the second multifunctional layer and the fourth multifunctional layer form a capacitor C2.

    Touch sensor with multifunctional layers, electronic skin and intelligent robot

    公开(公告)号:US11226248B2

    公开(公告)日:2022-01-18

    申请号:US16966487

    申请日:2018-05-23

    Abstract: The present application relates to a touch sensor with multifunctional layers and an intelligent robot. The touch sensor comprises a plurality of sensor units. Each of the sensor units comprises regions contained in four multifunctional layers. The first multifunctional layer and the third multifunctional layer are higher than the second multifunctional layer and the fourth multifunctional later, and the distance from the center of the first multifunctional layer to the center of the third multifunctional layer is greater than the distance from the center of the second multifunctional layer to the center of the fourth multifunctional layer. The first multifunctional layer and the third multifunctional layer form a capacitor C1, and the second multifunctional layer and the fourth multifunctional layer form a capacitor C2.

    Hail Detection Sensor
    4.
    发明公开

    公开(公告)号:US20240068845A1

    公开(公告)日:2024-02-29

    申请号:US18453485

    申请日:2023-08-22

    CPC classification number: G01D5/241

    Abstract: The utility model designs a hail detection sensor, which includes an electrically conductive base and a plurality of detection components; the detection component is provided with a support, a displacement detection device, an elastic body and a force-bearing part, and the surface of the force-bearing part has a Zone 1 for the impact of the measured hail, which is a conductor, the force-bearing part is fixed on the support through an elastic body, and the displacement detection device is used to obtain the first signal reflecting the mechanical vibration generated by the impact of the force-bearing part. There is a gap between each Zone 1. The area of each Zone 1 is smaller than the standard hail density measurement area, and the sum of the areas of each Zone 1 is larger than the standard hail density measurement area; at least one of the support members is fixed to the base, and each force-bearing component is electrically connected to the base and passed through the base electrically connected to earth. The utility model is based on the premise of using the tactile system to detect the hail impulse, reduces the probability of continuous hail impact in a short time, improves the detection accuracy of the hail using the tactile system, and realizes grounding cost control.

    A hover button sensor unit and method for providing hover button triggering

    公开(公告)号:US20230198523A1

    公开(公告)日:2023-06-22

    申请号:US17996020

    申请日:2020-05-08

    Abstract: A hover button sensor unit, comprising: a power supply circuit (5-1), a capacitive sensor, a capacitance-to-digital conversion circuit (3), a control module, an acousto-optic feedback control circuit (5-3), and a communication circuit (5-2); The capacitive sensor is a convex structural arrangement of a central electrode (1-1) and a peripheral electrode (1-2). The capacitance-to-digital conversion circuit (3) measures self-capacitance and mutual capacitance of the central electrode (1-1) and the peripheral electrode (1-2) after human finger approaching, to calculate and determine whether a finger enters the area range and its dwell time, so that the control module outputs a control logic signal of the button; detecting the proximity of the human finger to the effective hover trigger area range above a certain central electrode (1-1) by means of the button formed by the sensor unit, providing three-state response to the human finger entering the effective hover trigger area range above a certain central electrode (1-1) by the acousto-optic feedback control circuit (5-3); The above mentioned technical scheme is reasonable in structural design, which can effectively resist various interference, fully utilize a low-cost of capacitance detection and mature CDC chip technology and provide a commercialized technical solution which can be popularized for hygienic sensitivity.

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