3D DISPLAY GLASSES
    31.
    发明申请
    3D DISPLAY GLASSES 审中-公开
    3D显示玻璃

    公开(公告)号:US20160357024A1

    公开(公告)日:2016-12-08

    申请号:US15022726

    申请日:2015-07-23

    Abstract: The present application discloses 3D display glasses include an eyeglass frame; a first image projection unit and a second image projection unit respectively fixed on the eyeglass frame, for projecting a first beam carrying a first image and a second beam carrying a second image, respectively; and a first lens and a second lens which maintain fixed onto the eyeglass frame, for receiving the first beam and the second beam, respectively, wherein the first lens and the second lens are configured to collimate respective one of the first beam and the second beam into a beam of parallel light which in turn travels into respective one of the left and the right eyes of the wearer of the 3D display glasses. The 3D display glasses may display images independent of any display screen such that excellent portability and superior 3D-display visual effect may be obtained.

    Abstract translation: 本申请公开了一种3D显示眼镜,包括眼镜架; 分别固定在所述眼镜框上的第一图像投影单元和第二图像投影单元,用于投影分别承载第一图像的第一光束和承载第二图像的第二光束; 以及第一透镜和第二透镜,其保持固定在所述眼镜框上,用于分别接收所述第一光束和所述第二光束,其中所述第一透镜和所述第二透镜被配置为准直所述第一光束和所述第二光束中的相应一个 并入一束平行的光,该光束又进入3D显示眼镜佩戴者的左眼和右眼中的相应一个。 3D显示眼镜可以显示独立于任何显示屏幕的图像,从而可以获得优异的便携性和优异的3D显示视觉效果。

    Aging test method and aging test system for light emitting device

    公开(公告)号:US10914781B2

    公开(公告)日:2021-02-09

    申请号:US16329393

    申请日:2018-05-03

    Abstract: An aging test method for a light emitting device is provided. The aging test method includes: collecting, in an aging process applied to the light emitting device, an initial value of a first characteristic parameter of the light emitting device and an initial test time point; collecting a current value of the first characteristic parameter and a current test time point (step S1); generating a feature line according to the initial value, the current value, the initial test time point, and the current test time point, and calculating a slope of the feature line; determining whether the slope of the feature line is greater than or equal to a predetermined threshold and less than 0, and returning to the step S1 if a result of the determination is NO; and terminating the aging process applied to the light emitting device if the result of the determination is YES.

    Touch display panel, driving method thereof and display device

    公开(公告)号:US10466828B2

    公开(公告)日:2019-11-05

    申请号:US15509346

    申请日:2016-11-08

    Abstract: A touch display panel, a driving method thereof and a display device. The touch display panel includes a plurality of driving electrodes and a plurality of sensing electrodes, a scanning signal transmitting unit, a first touch detection unit and a second touch detection unit; the scanning signal transmitting unit is configured to send scanning signals to the driving electrodes during the touch stage; the first touch detection unit is configured to collect signals through the sensing electrodes and determine an X coordinate and a Y coordinate of the touch position during a first preset period of time; the second touch detection unit is configured to collect signals through the driving electrodes and determine a Z coordinate of the touch position during a second preset period of time; and the first preset period of time and the second preset period of time are periods of time of the touch stage.

    Optical imaging structure and virtual reality spectacles

    公开(公告)号:US10191286B2

    公开(公告)日:2019-01-29

    申请号:US15704132

    申请日:2017-09-14

    Abstract: The present disclosure provides an optical imaging structure and virtual reality spectacles. In one embodiment, an optical imaging structure includes: an eyeglass component; and at least one light guide wall distributed along an edge of the eyeglass component, wherein, two opposite end faces of the at least one light guide wall are respectively a light incoming face and a light outgoing face; wherein, an inner rim of the light outgoing face joins the edge of the eyeglass component and extends in an optical axis direction of the eyeglass component, and, the light outgoing face is gradually distanced from the eyeglass component from the inner rim to an outer rim of the light outgoing face; and wherein, the at least one light guide wall includes a first light guide wall and a second light guide wall respectively disposed at left and right sides of the eyeglass component.

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