SENSOR ARRAY, MANUFACTURING METHOD THEREOF, AND SENSING METHOD

    公开(公告)号:US20180106774A1

    公开(公告)日:2018-04-19

    申请号:US15585170

    申请日:2017-05-03

    CPC classification number: G01N33/0031 G01N27/12

    Abstract: A sensor array includes a circuit board, a plurality of first sensing units, and at least one second sensing unit. The circuit board has an upper surface and a lower surface that are opposite to each other. The first sensing units are located on the upper surface of the circuit board. The first sensing units include a plurality of first electrodes and a plurality of sensing material layers. The sensing material layers are respectively located on surfaces of the first electrodes, and the sensing material layers are manufactured through applying a non-contact printing method. The second sensing unit is located on the upper surface of the circuit board. The second sensing unit includes a second electrode separated from the first electrodes. The sensing material layers respectively cover the surfaces of the first electrodes, and the second electrode is exposed to an atmospheric environment.

    Metal bronze compound, manufacturing method thereof, and ink

    公开(公告)号:US11008222B2

    公开(公告)日:2021-05-18

    申请号:US15800082

    申请日:2017-11-01

    Abstract: A metal bronze compound is provided. The metal bronze compound is a compound represented by formula (1) below. In formula (1), “A” represents at least one type of cation. “M” represents at least two types of ions selected from a transition metal and a metalloid. “x” represents the sum of the number of the at least one type of cation used as “A”. “y” represents the sum of the number of the at least two types of ions selected from the transition metal and the metalloid used as “M”. “z” represents the number of oxygen ion. The values of “x”, “y” and “z” balance the charge number of formula (1). AxMyOz  (1)

    Strain sensing device and manufacturing method thereof

    公开(公告)号:US10697753B2

    公开(公告)日:2020-06-30

    申请号:US15867745

    申请日:2018-01-11

    Abstract: A strain sensing device and a manufacturing method thereof are provided in the invention. The strain sensing device includes a substrate and at least one sensing electrode. The substrate has a plurality of pores. A material of the substrate includes nanocellulose, and the substrates is strained in response to changes in external conditions. The at least one sensing electrode is disposed on the substrate, wherein the sensing electrode contacting the substrate extends into the pores of the substrate. The at least one sensing electrode has a major axis parallel to a surface of the substrate. A resistance value of the at least one sensing electrode changes in response to a strain of the substrate.

    Perovskite composite structure
    18.
    发明授权

    公开(公告)号:US10453620B2

    公开(公告)日:2019-10-22

    申请号:US15808823

    申请日:2017-11-09

    Abstract: A perovskite composite structure is provided. The perovskite composite structure includes a light absorption layer and a sterically-hindered layer disposed in the periphery of the light absorption layer. The light absorption layer includes a perovskite material. The sterically-hindered layer includes a two-dimensional material.

    BONE CONDUCTION HEARING AID DEVICE AND BONE CONDUCTION SPEAKER

    公开(公告)号:US20180234779A1

    公开(公告)日:2018-08-16

    申请号:US15821857

    申请日:2017-11-24

    Abstract: A bone-conduction hearing aid device is provided. The bone-conduction hearing aid device is suitable for being attached to a body surface and includes a substrate, an input transducer, an amplifier, and a bone-conduction speaker. The substrate is composed of a plurality of stacking layers stacked on top of one another. A material of the substrate includes cellulose nanofiber. The substrate is formed by 3D printing technique so that a contact surface of the substrate is tightly attached with the body surface. The input transducer is disposed on the substrate and configured to receive a sound signal and convert the sound signal into an electric signal. The amplifier is disposed on the substrate and coupled to the input transducer to amplify the electric signal into an amplified electric signal. The bone-conduction speaker is disposed on the substrate and coupled to the amplifier to convert the amplified electric signal into a vibration signal.

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