IN-DISPLAY SENSORS AND VIEWING ANGLE ADJUSTMENT MICROASSEMBLIES

    公开(公告)号:US20220059625A1

    公开(公告)日:2022-02-24

    申请号:US17520562

    申请日:2021-11-05

    Abstract: Cameras are located within the display area of a display. In-display cameras allow for thinner display bezels. In-display cameras allow for the creation of ultra-high resolution images. The ability to capture an object from multiple perspectives allows for holographic image recording and playback. Multiple views of an image can be captured with varying depths of focus, allowing an image's depth of field to be adjusted during post processing. In-display cameras can also be used for user authentication, touch detection and three-dimensional gesture recognition. Thermal sensors located within the display area allow for control of the display temperature, improved control over system performance, and compensation for micro-LED degradation that can occur due to aging or increased temperature. Microlens assemblies located above pixels can adjust the viewing cone angle of the display or a portion of the display and microassemblies located under individual pixels or pixel arrays can adjust a viewing angle.

    In-display sensors and viewing angle adjustment microassemblies

    公开(公告)号:US11211433B2

    公开(公告)日:2021-12-28

    申请号:US16866515

    申请日:2020-05-04

    Abstract: Cameras are located within the display area of a display. In-display cameras allow for thinner display bezels. In-display cameras allow for the creation of ultra-high resolution images. The ability to capture an object from multiple perspectives allows for holographic image recording and playback. Multiple views of an image can be captured with varying depths of focus, allowing an image's depth of field to be adjusted during post processing. In-display cameras can also be used for user authentication, touch detection and three-dimensional gesture recognition. Thermal sensors located within the display area allow for control of the display temperature, improved control over system performance, and compensation for micro-LED degradation that can occur due to aging or increased temperature. Microlens assemblies located above pixels can adjust the viewing cone angle of the display or a portion of the display and microassemblies located under individual pixels or pixel arrays can adjust a viewing angle.

    In-display sensors and viewing angle adjustment microassemblies

    公开(公告)号:US11917888B2

    公开(公告)日:2024-02-27

    申请号:US17520562

    申请日:2021-11-05

    CPC classification number: H10K59/65 G06F3/01 G06F3/011 H04N5/89

    Abstract: Cameras are located within the display area of a display. In-display cameras allow for thinner display bezels. In-display cameras allow for the creation of ultra-high resolution images. The ability to capture an object from multiple perspectives allows for holographic image recording and playback. Multiple views of an image can be captured with varying depths of focus, allowing an image's depth of field to be adjusted during post processing. In-display cameras can also be used for user authentication, touch detection and three-dimensional gesture recognition. Thermal sensors located within the display area allow for control of the display temperature, improved control over system performance, and compensation for micro-LED degradation that can occur due to aging or increased temperature. Microlens assemblies located above pixels can adjust the viewing cone angle of the display or a portion of the display and microassemblies located under individual pixels or pixel arrays can adjust a viewing angle.

    IN-DISPLAY SENSORS AND VIEWING ANGLE ADJUSTMENT MICROASSEMBLIES

    公开(公告)号:US20200266252A1

    公开(公告)日:2020-08-20

    申请号:US16866515

    申请日:2020-05-04

    Abstract: Cameras are located within the display area of a display. In-display cameras allow for thinner display bezels. In-display cameras allow for the creation of ultra-high resolution images. The ability to capture an object from multiple perspectives allows for holographic image recording and playback. Multiple views of an image can be captured with varying depths of focus, allowing an image's depth of field to be adjusted during post processing. In-display cameras can also be used for user authentication, touch detection and three-dimensional gesture recognition. Thermal sensors located within the display area allow for control of the display temperature, improved control over system performance, and compensation for micro-LED degradation that can occur due to aging or increased temperature. Microlens assemblies located above pixels can adjust the viewing cone angle of the display or a portion of the display and microassemblies located under individual pixels or pixel arrays can adjust a viewing angle.

    Apparatus, method, and system for predicitve power delivery noise reduction
    9.
    发明授权
    Apparatus, method, and system for predicitve power delivery noise reduction 有权
    用于预测功率输送噪声降低的装置,方法和系统

    公开(公告)号:US09329656B2

    公开(公告)日:2016-05-03

    申请号:US14223941

    申请日:2014-03-24

    CPC classification number: G06F1/28 G06F1/305 G11C5/14

    Abstract: An apparatus and method is described herein for reducing noise in a power distribution network for an interface. The power distribution network is characterized. And based on that characterization, worst case patterns for the interface are predicted and avoided. As one example, characterization includes providing a stimulus, such as a step function stimulus, and determining a mathematical function response, such as a step function response. Then, based on the step function response, a resonant frequency for the power distribution network is determined; from which patterns that cause the resonant frequency are identified/predicted. And when identified patterns are detected, they are scrambled or manipulated to avoid causing a worst-case noise scenario in an interface's power distribution network.

    Abstract translation: 本文描述了一种用于降低用于接口的配电网络中的噪声的装置和方法。 配电网络的特点。 并且基于该表征,预测并避免了界面的最坏情况模式。 作为一个示例,表征包括提供诸如步骤功能刺激的刺激,以及确定诸如阶梯函数响应的数学函数响应。 然后,基于阶梯函数响应,确定配电网络的谐振频率; 从中识别/预测引起共振频率的图案。 并且当检测到识别的模式时,它们被加扰或操纵以避免在接口的配电网络中造成最坏情况的噪声情况。

    Micro display ambient computing
    10.
    发明授权

    公开(公告)号:US11114022B2

    公开(公告)日:2021-09-07

    申请号:US16729225

    申请日:2019-12-27

    Abstract: A display device includes a backplane, where a portion of the backplane is associated with a particular pixel of a display, and the display includes an array of pixels. The display further includes at least a particular light emitting diode (LED) on the portion of the backplane to implement the particular pixel and local memory located with the particular LED on the portion of the backplane, where the local memory is to store data to be used to control the particular LED and presentation at the particular pixel.

Patent Agency Ranking