LIQUID CRYSTAL PANEL AND FABRICATING METHOD THEREOF

    公开(公告)号:US20170322448A1

    公开(公告)日:2017-11-09

    申请号:US15216422

    申请日:2016-07-21

    Inventor: Yuejun TANG

    Abstract: The present disclosure provides a liquid crystal panel and a fabricating method thereof. The liquid crystal panel has an array substrate, a color film substrate and a liquid crystal layer mounted between the array substrate and the color film substrate. The color film substrate forms multiple color resists thereon to form multiple color filter units. The array substrate at least forms a first spacer and a second spacer thereon. A height of the first spacer is equal to a height of the second spacer. A thickness of the color resist corresponding to the first spacer is different from a thickness of the color resist corresponding to the second spacer. The present disclosure simplifies a fabricating art, saves cost and effectively maintains a thickness of the liquid crystal panel at the time to ensure that the liquid crystal panel can clearly display image.

    POLARIZER AND TRANSPARENT DISPLAY
    54.
    发明申请

    公开(公告)号:US20170131593A1

    公开(公告)日:2017-05-11

    申请号:US15011327

    申请日:2016-01-29

    Inventor: Yuejun TANG

    Abstract: The present invention discloses a polarizer, comprising a first protective layer, a polarization layer and a second protective layer, which are sequentially stacked up in a first direction, and the polarization layer comprises a plurality of polarization regions and a plurality of transmittance regions, and the plurality of polarization regions and the plurality of transmittance regions are alternately aligned on a plane perpendicular to the first direction, and the polarization regions are employed to transmit through linear polarization light in a polarization axis of the polarization regions, and the transmittance regions are employed to transmit through natural light. The polarizer of the present invention can selectively transmit the natural light to raise the transmittance of the display utilizing the polarizer. The present invention also discloses a transparent display with high transmittance.

    OLED TILED DISPLAY AND A RELATED TILING METHOD

    公开(公告)号:US20210083040A1

    公开(公告)日:2021-03-18

    申请号:US16068867

    申请日:2018-04-04

    Abstract: The OLED tiled display includes front and back lighting display units that emitting lights toward each other. The front lighting display unit includes a first substrate and a first organic light emitting device. The back lighting display unit includes a second substrate and a second organic light emitting device. The first and second light emitting devices neighbor laterally on each other, but are vertically aligned to a second extended section of the second substrate and a first extended section of the first substrate, respectively. The present invention achieves small gaps and resolves the problem of obvious gaps in an OLED tiled display by piecing together the front and back lighting display units, where the substrate of the front lighting display unit functions as encapsulation layer to the back lighting display unit, and the substrate of the back lighting display unit functions as encapsulation layer to the front lighting display unit.

    OLED DISPLAY MACHINE WITH ILLUMINATION FUNCTION

    公开(公告)号:US20200273398A1

    公开(公告)日:2020-08-27

    申请号:US16343783

    申请日:2018-12-27

    Abstract: An organic light emitting diode (OLED) display machine with an illumination function is provided. The OLED display machine includes a display region, at least one illumination region, and a drive circuit. An organic light-emitting display device is arranged in the display region. Each illumination region is located at one side edge adjacent to the display region. An organic light-emitting illumination device is disposed in the illumination region. The organic light-emitting illumination device includes a substrate, an insulating layer, a planarization layer, an anode electrode, a light-emitting material layer, and a cathode electrode. The drive circuit is electrically connected to the anode electrode and the cathode electrode of the organic light-emitting illumination device to control an ON or OFF state of the organic light-emitting illumination device. Accordingly, the present invention provides not only a display function, but also illumination, so facilitate wide application and development of the OLED display machine.

    EMBEDDED TOUCH DISPLAY PANEL AND DISPLAY DEVICE

    公开(公告)号:US20200264718A1

    公开(公告)日:2020-08-20

    申请号:US16349294

    申请日:2019-01-22

    Abstract: An embedded touch display panel and display device are provided including a substrate, a light shielding metal layer, and a light shielding metal layer disposed on the substrate. The light shielding metal layer includes a light shielding metal and touch wires. A multiplexing electrode layer is disposed on the light shielding metal layer, and the multiplexing electrode layer includes a plurality of multiplexing metal pieces. The multiplexing metal pieces are electrically connected to the touch wires.

    ANTI-REFLECTION BOTTOM-EMITTING TYPE OLED DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF

    公开(公告)号:US20200176718A1

    公开(公告)日:2020-06-04

    申请号:US16332361

    申请日:2019-02-15

    Abstract: An anti-reflection bottom-emitting type OLED display device and a manufacturing method are provided. The anti-reflection bottom-emitting type OLED display device includes a substrate, multiple drive transistors, and a light emitting layer. The substrate is provided with a plurality of black matrixes spaced apart from each other. The drive transistors are arranged in an array on the substrate and arranged corresponding to the black matrixes respectively. The light emitting layer is disposed on the drive transistors. An opening region is arranged between each two adjacent black matrixes. The light emitting layer includes multiple light-emitting material layers arranged in an array. Each light-emitting material layer defines a display region and a non-display region. Each opening region is arranged corresponding to each display region, and each non-display region is arranged corresponding to each black matrix. Each display region coincides with each opening region between the black matrixes on the substrate.

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