Waveguide Display with Staircase Grating Input Coupler

    公开(公告)号:US20240310566A1

    公开(公告)日:2024-09-19

    申请号:US18597862

    申请日:2024-03-06

    Applicant: Apple Inc.

    CPC classification number: G02B6/0016 G02B6/0018 G02B6/0036 G02B27/0172

    Abstract: An electronic device may have a waveguide, an input coupler that couples light into the waveguide, and an optical coupler that couples the light out of the waveguide. A medium may be layered onto the waveguide. The input coupler may include a first surface relief grating (SRG) and the optical coupler may include a second SRG in the medium. The first SRG may be a non-binary staircase SRG having ridges with multiple steps. The second SRG may be a binary SRG having troughs that extend to the height of the lowest steps of the first SRG. A reflective layer may fill the first SRG. Forming the input coupler using a staircase SRG may serve to maximize the in-coupling efficiency of the input coupler, thereby maximizing the efficiency with which the light is provided to an eye box.

    Black masking layer in displays having transparent openings

    公开(公告)号:US11864452B1

    公开(公告)日:2024-01-02

    申请号:US17844543

    申请日:2022-06-20

    Applicant: Apple Inc.

    CPC classification number: H10K59/65 G02B5/22

    Abstract: An electronic device may include a display and an optical sensor formed underneath the display. The display may have both a full pixel density region and a pixel removal region with a plurality of high-transmittance areas that overlap the optical sensor. The display may include a black masking layer with a plurality of horizontal portions and a plurality of vertical portions that form a grid that defines a plurality of apertures. The black masking layer may additionally include patches in the apertures. The patches may be optimally positioned to mitigate diffraction artifacts in the sensor that operates through the pixel removal region. The patches may have unique sizes and shapes. The display may include first and second pixel removal regions with different black masking layer layouts. The layouts may cause complementary diffraction artifacts such that a single artifact-free image may be constructed using the first and second optical sensors.

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