DISPLAY DEVICE AND ELECTRONIC DEVICE
    11.
    发明申请

    公开(公告)号:US20190339743A1

    公开(公告)日:2019-11-07

    申请号:US16516730

    申请日:2019-07-19

    Abstract: To provide a display device that is suitable for increasing in size, a display device in which display unevenness is suppressed, or a display device that can display an image along a curved surface. The display device includes a first display panel and a second display panel each including a pair of substrates. The first display panel and the second display panel each include a first region which can transmit visible light, a second region which can block visible light, and a third region which can perform display. The third region of the first display panel and the first region of the second display panel overlap each other. The third region of the first display panel and the second region of the second display panel do not overlap each other.

    DISPLAY DEVICE AND ELECTRONIC DEVICE
    13.
    发明申请

    公开(公告)号:US20190008014A1

    公开(公告)日:2019-01-03

    申请号:US16121702

    申请日:2018-09-05

    Abstract: A display device that can display an image along a curved surface is provided. In the display device, a first display panel and a second display panel overlap each other with a light-transmitting layer provided therebetween. The light-transmitting layer is positioned on a display surface side of the first display panel, and on a side opposite to the display surface of the second display panel. The light-transmitting layer has an average transmittance of 80% or more with respect to light in the wavelength range of 450 nm to 700 nm and a refractive index higher than that of air. A display region of the first display panel overlaps a region transmitting visible light of the second display panel with the light-transmitting layer provided therebetween. It is preferred that the display region of the first display panel not overlap with a region blocking visible light of the second display panel.

    DISPLAY DEVICE AND DISPLAY DEVICE FRAME
    16.
    发明申请
    DISPLAY DEVICE AND DISPLAY DEVICE FRAME 有权
    显示设备和显示设备框架

    公开(公告)号:US20150146352A1

    公开(公告)日:2015-05-28

    申请号:US14546434

    申请日:2014-11-18

    Abstract: To provide a display device that gives a viewer a strong stereoscopic effect or sense of depth in a two-dimensional image and a display device that gives a viewer a natural stereoscopic effect or sense of depth in a two-dimensional image, a display device including a frame portion and a display portion which has a display surface on a frame portion side and is located so as to be apart from the frame portion with a distance therebetween, in which the display portion overlaps with an opening of the frame portion, and an end portion of the display portion overlaps with the frame portion, is provided. In addition, a structure in which a corner of an inner frame of the frame portion has curvature or a structure in which the size of the inner frame of the frame portion is variable is added to the display device.

    Abstract translation: 为了提供一种在二维图像和显示装置中向观看者提供强烈的立体效果或深度感的显示装置,其给予观看者二维图像中的自然立体效果或深度感,显示装置包括: 框架部分和显示部分,其在框架部分侧具有显示表面,并且位于与框架部分隔开距离的位置,其中显示部分与框架部分的开口重叠,并且 提供显示部分的端部与框架部分重叠。 此外,框架部分的内框的角部具有曲率的结构或框架部分的内框的尺寸可变的结构被添加到显示装置。

    DISPLAY DEVICE AND FABRICATION METHOD THEREOF

    公开(公告)号:US20250151512A1

    公开(公告)日:2025-05-08

    申请号:US19014440

    申请日:2025-01-09

    Abstract: A high-resolution display device is provided. The display device includes a plurality of light-emitting units emitting light of different colors. The light-emitting unit has a microcavity structure and intensifies light with a specific wavelength. In the light-emitting units emitting light of different colors, reflective layers with different thicknesses are formed, an insulating layer is formed to cover the reflective layers, and then a top surface of the insulating layer is subjected to planarization treatment, whereby an insulating layer with different thicknesses is formed. After that, light-emitting elements emitting white light are formed over the planarized top surface of the insulating layer to overlap with the respective reflective layers, whereby the light-emitting units that intensify different colors due to different optical path lengths are separately formed.

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