DETECTION SUBSTRATE AND DETECTION CIRCUIT
    12.
    发明公开

    公开(公告)号:US20240128283A1

    公开(公告)日:2024-04-18

    申请号:US18090202

    申请日:2022-12-28

    CPC classification number: H01L27/14603 G01N21/645 G01N21/6428

    Abstract: A detection substrate including a substrate and a plurality of detection units disposed on a side of the substrate, each detection unit including at least an inorganic transistor, an organic transistor, and a photoelectric sensor element, the organic transistor including an organic semiconductor part, in a direction perpendicular to a plane of the substrate, a film layer where the organic semiconductor part is located being located on the side of the film layer where the inorganic transistor is located away from the substrate, the film layer where the organic semiconductor part is located being located on the side of a film layer where the photoelectric sensor element is located away from the substrate, the organic transistor of the detection unit being connected to a sensing electrode, the sensing electrode being located on the side of the film layer where the inorganic transistor is located away from the substrate.

    SENSING CIRCUIT AND SENSING METHOD THEREOF, SENSOR CHIP, AND DISPLAY PANEL

    公开(公告)号:US20230361769A1

    公开(公告)日:2023-11-09

    申请号:US18351282

    申请日:2023-07-12

    CPC classification number: H03K17/56 G01D11/00

    Abstract: Provided are a sensing circuit and a sensing method thereof, a sensor chip, and a display panel. The sensing circuit includes a first transistor including a first gate and a second gate, a first capacitor, a read circuit, and a bias compensation circuit. The first gate receives a sensing signal outputted by a sensor. The first capacitor is connected between the second gate and a first fixed potential signal terminal. The read circuit is connected between the first transistor and an output terminal of the sensing circuit. The bias compensation circuit is electrically connected to the first transistor and configured to input a bias voltage into the second gate of the first transistor. The bias voltage received by the second gate reduce the threshold voltage drift of the first transistor.

    ANTENNA
    14.
    发明申请
    ANTENNA 有权

    公开(公告)号:US20220102871A1

    公开(公告)日:2022-03-31

    申请号:US17547647

    申请日:2021-12-10

    Abstract: Provided is an antenna. The antenna includes a first metal electrode, a second metal electrode, and a dielectric functional layer. The first metal electrode and the second metal electrode are located on two opposite sides of the dielectric functional layer, respectively; and the first metal electrode includes a plurality of transmission electrodes. The antenna further includes a flexible coplanar waveguide and a feed network. The flexible coplanar waveguide is electrically connected to the feed network and configured to feed an electrical signal to the feed network.

    TRANSFLECTIVE AND NON-RECTANGULAR DISPLAY PANEL AND DISPLAY DEVICE

    公开(公告)号:US20190064403A1

    公开(公告)日:2019-02-28

    申请号:US16174312

    申请日:2018-10-30

    Abstract: A transflective and non-rectangular display panel and a display device are provided. The non-rectangular display panel includes a display region, a non-display region surrounding the display region, multiple pixels including multiple sub pixels, and a light shielding layer. There is a first boundary between the display region and the non-display region, and a region surrounded by the first boundary and the display region is non-rectangular. Each of the multiple pixels includes at least three of the multiple sub pixels. An open region of each of the multiple sub pixels has a transmissive region and a reflective region. The multiple pixels include normal pixels in the display region and abnormal pixels passed through by the first boundary. In each of the abnormal pixels, each of the transmissive region and the reflective region is partially blocked by the light shielding layer and partially emits light therefrom.

    MICRO-FLUIDIC DETECTION DEVICE
    16.
    发明申请

    公开(公告)号:US20250085253A1

    公开(公告)日:2025-03-13

    申请号:US18613167

    申请日:2024-03-22

    Abstract: A micro-fluidic detection device includes a first base plate, a second base plate opposite to the first base plate, and a droplet travel layer located between the first and second base plates. The first base plate includes a first substrate, a drive array layer, a first electrode layer, and a first hydrophobic layer. The second base plate includes a second substrate, a second electrode layer, and a second hydrophobic layer. Drive electrodes of the first electrode layer are at first units. The first unit includes a micro-fluidic unit circuit. A second unit includes a detection unit circuit. The detection unit circuit includes inorganic transistors and organic transistors. A sensitive electrode is at the second unit. The sensitive electrode is on a side of a layer where the inorganic transistor is located away from the first substrate. A first hollow hole of the first base plate exposes the sensitive electrode.

    ANTENNA AND ITS FABRICATION METHOD, AND DISPLAY DEVICE

    公开(公告)号:US20240213687A1

    公开(公告)日:2024-06-27

    申请号:US18122455

    申请日:2023-03-16

    CPC classification number: H01Q21/0087 H01Q1/38

    Abstract: An antenna and its fabrication method, and a display device are provided. The antenna includes a substrate, a radiation electrode, a first dummy electrode, and a feed line. The radiation electrode, the first dummy electrode, and the feed line are disposed on the substrate. The feed line is coupled and connected to the radiation electrode. The first dummy electrode and the radiation electrode are adjacent but not connected to each other. Along a first direction, an orthographic projection of the radiation electrode to a plane where the substrate is located is a first projection, and an orthographic projection of the first dummy electrode to the plane where the substrate is located is a second projection. There is a first interval between the first projection and the second projection; and the first direction is perpendicular to the plane where the substrate is located.

    MICROFLUIDIC CHIP
    18.
    发明公开
    MICROFLUIDIC CHIP 审中-公开

    公开(公告)号:US20240165616A1

    公开(公告)日:2024-05-23

    申请号:US17758359

    申请日:2021-06-30

    Abstract: Provided is a microfluidic chip. The microfluidic chip includes a first substrate and a second substrate disposed opposite to each other and drive electrodes, first sensing electrodes and second sensing electrodes disposed on a side of the first substrate. A microfluidic channel is formed between the first substrate and the second substrate and configured to accommodate at least one droplet. Different drive voltage signals are applied to adjacent drive electrodes, so as to drive the at least one droplet to move. Detection signals are applied to the first sensing electrodes and the second sensing electrodes, and a position of the at least one droplet is determined according to a change in capacitance between one first sensing electrode and an electrode corresponding thereto and a change in capacitance between one second sensing electrode and an electrode corresponding thereto when the at least one droplet flows by.

    MICROFLUIDIC CHIP
    19.
    发明公开
    MICROFLUIDIC CHIP 审中-公开

    公开(公告)号:US20240165610A1

    公开(公告)日:2024-05-23

    申请号:US17758357

    申请日:2021-07-19

    CPC classification number: B01L3/502715 B01L2300/0645 B01L2400/0427

    Abstract: Provided is a microfluidic chip. The microfluidic chip includes a first substrate and a second substrate disposed opposite to each other, a microfluidic channel formed between the first substrate and the second substrate and configured to accommodate at least one droplet, drive electrodes arranged in an array and sensing electrodes disposed on a side of the first substrate. Each sensing electrode includes at least one first branch electrode and at least one second branch electrode. The first branch electrode extends along a first direction, and the second branch electrode extends along a second direction. Different drive voltage signals are applied to adjacent drive electrodes to drive the droplet to move. Detection signals are applied to the sensing electrodes, and a position of the droplet is determined according to a change in capacitance between one sensing electrode and an electrode corresponding thereto when the droplet flows by.

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