USER INTERFACE AND METHOD FOR DIRECTLY SETTING DISPLAY WHITE POINT
    1.
    发明申请
    USER INTERFACE AND METHOD FOR DIRECTLY SETTING DISPLAY WHITE POINT 审中-公开
    用户界面和方法直接设置显示白点

    公开(公告)号:WO2015183853A1

    公开(公告)日:2015-12-03

    申请号:PCT/US2015/032515

    申请日:2015-05-27

    Applicant: APPLE INC.

    Abstract: A method and user interface for direct setting of black and white points. Black point is set using a slider (210) and matching of gray shades. White point setting is performed by having a setting object (224) move within a defined region (206), such as a square or circle, with the area (222) where the setting object moves being adjusted dynamically based on the location of the setting object (224) with respect to the defined region (206). When the area (222) is the desired white, the setting is complete. Preferably the defined region has a varying color border (220) to allow a reference for the user in moving the setting object. A more detailed setting of gray levels can be accomplished by providing a gray scale (600) with reference points (602, 608). Each reference point has an associated white point setting area (604, 610), so that settings are developed for each reference point. Settings at other locations are determined by interpolation or extrapolation.

    Abstract translation: 用于直接设置黑白点的方法和用户界面。 使用滑块(210)设置黑点并配置灰色阴影。 白点设定是通过使设定对象(224)在规定区域(206)内移动的规定区域(206)中进行的,所述区域(例如平方或圆)与设定对象移动的区域(222)基于设定的位置动态调整 物体(224)相对于所限定的区域(206)。 当区域(222)是所需的白色时,设置完成。 优选地,限定区域具有变化的颜色边界(220),以允许使用者在移动设定对象时的参考。 可以通过提供具有参考点(602,608)的灰度级(600)来实现灰度级的更详细的设置。 每个参考点具有相关联的白点设置区域(604,610),使得针对每个参考点开发设置。 其他位置的设置通过插值或外推来确定。

    HIGH ACCURACY IMAGING COLORIMETER BY SPECIAL DESIGNED PATTERN CLOSED-LOOP CALIBRATION ASSISTED BY SPECTROGRAPH
    2.
    发明申请
    HIGH ACCURACY IMAGING COLORIMETER BY SPECIAL DESIGNED PATTERN CLOSED-LOOP CALIBRATION ASSISTED BY SPECTROGRAPH 审中-公开
    通过特殊设计图案的高精度成像色彩分析仪通过光谱学辅助的闭环校正

    公开(公告)号:WO2014066178A1

    公开(公告)日:2014-05-01

    申请号:PCT/US2013/065713

    申请日:2013-10-18

    Applicant: APPLE INC.

    Abstract: This specification describes various embodiments that relate to methods for providing a wideband colorimeter that can include more accurate outputs. In one embodiment, a narrowband instrument, such as a spectrometer or spectrograph, can be used for calibration of a wideband colorimeter, so that more accurate outputs can be provided. In one embodiment, an optical test equipment, which consists of both a wideband colorimeter and a narrowband spectrograph, can be used for providing a more accurately calibrated wideband colorimeter. As an example, a spectra-camera, which is a hybrid system consisting of both a wideband colorimeter and a narrowband spectrograph, can be used for simultaneous testing by both the wideband colorimeter and the narrowband spectrograph. By doing simultaneous testing, accurate calibration of the wideband colorimeter can be achieved. This specification further describes a mathematical model to characterize a wideband three channel colorimeter with a narrowband multiple channel spectrometer.

    Abstract translation: 本说明书描述了涉及用于提供宽带色度计的方法的各种实施例,其可以包括更精确的输出。 在一个实施例中,诸如光谱仪或光谱仪的窄带仪器可以用于宽带色度计的校准,从而可以提供更精确的输出。 在一个实施例中,由宽带色度计和窄带光谱仪组成的光学测试设备可用于提供更准确校准的宽带色度计。 作为示例,作为由宽带色度计和窄带光谱仪组成的混合系统的光谱相机可以用于宽带色度计和窄带光谱仪的同时测试。 通过同时测试,可以实现宽带色度计的精确校准。 该说明书进一步描述了用窄带多通道光谱仪来表征宽带三通道色度计的数学模型。

    DEVICES AND METHODS OF IMAGE-SPLITTING FOR DUAL-LAYER HIGH DYNAMIC RANGE DISPLAYS
    3.
    发明申请
    DEVICES AND METHODS OF IMAGE-SPLITTING FOR DUAL-LAYER HIGH DYNAMIC RANGE DISPLAYS 审中-公开
    用于双层高动态范围显示的图像分割的设备和方法

    公开(公告)号:WO2016093980A1

    公开(公告)日:2016-06-16

    申请号:PCT/US2015/058805

    申请日:2015-11-03

    Applicant: APPLE INC.

    Abstract: Systems and methods for reducing or eliminating image artifacts on a dual-layer liquid crystal display (LCD) 18. By way of example, a system 10 includes a first display panel 46 and a second display panel 48. The system 10 includes a processor 12 coupled to the first display panel 46 and the second display panel 48, and configured to generate a first image, and to generate a second image to be displayed on the first display panel 46 based on the first image. The processor 12 is configured to interpolate the second image. Interpolating the second image includes adjusting the second image according to a generated objective function bounded by a first constraint. The processor 12 is configured to filter the second image, and to generate a third image to be displayed on the second display panel 48 based on the first image and the second image. The third image is generated to prevent image artifacts on the second display panel 48.

    Abstract translation: 用于减少或消除双层液晶显示器(LCD)18上的图像伪像的系统和方法。作为示例,系统10包括第一显示面板46和第二显示面板48.系统10包括处理器12 耦合到第一显示面板46和第二显示面板48,并且被配置为生成第一图像,并且基于第一图像生成要在第一显示面板46上显示的第二图像。 处理器12被配置为内插第二图像。 插值第二图像包括根据由第一约束界定的生成的目标函数来调整第二图像。 处理器12被配置为基于第一图像和第二图像来过滤第二图像,并且生成要显示在第二显示面板48上的第三图像。 生成第三图像以防止第二显示面板48上的图像伪像。

    HIGH DYNAMIC RANGE LIQUID CRYSTAL DISPLAY
    4.
    发明申请
    HIGH DYNAMIC RANGE LIQUID CRYSTAL DISPLAY 审中-公开
    高动态范围液晶显示

    公开(公告)号:WO2015105733A1

    公开(公告)日:2015-07-16

    申请号:PCT/US2015/010063

    申请日:2015-01-02

    Applicant: APPLE INC.

    Abstract: A display may have a first stage such as a color liquid crystal display stage and a second stage such as a monochromatic liquid crystal display stage that are coupled in tandem so that light from a backlight passes through both stages. The dynamic range of the display may be enhanced by using the second stage to perform local dimming operations. The pixel pitch of the second stage may be greater than the pixel pitch of the first stage to ease alignment tolerances and reduce image processing complexity. The color stage and monochromatic stages may share a polarizer. A color filter in the color stage may have an array of red, green, and blue elements or an array of white, red, green, and blue elements. The color stage may be a fringe field display and the monochrome stage may be an in-plane switching display or a twisted nematic stage.

    Abstract translation: 显示器可以具有第一级,例如彩色液晶显示级和第二级,例如单色液晶显示级,其串联耦合,使得来自背光的光通过两级。 可以通过使用第二级来执行局部调光操作来增强显示器的动态范围。 第二级的像素间距可以大于第一级的像素间距,以减轻对准公差并降低图像处理的复杂性。 彩色舞台和单色舞台可以共享偏振器。 彩色舞台中的彩色滤光片可以具有红色,绿色和蓝色元素的阵列或白色,红色,绿色和蓝色元素的阵列。 彩色舞台可以是边缘场显示,并且单色舞台可以是平面内切换显示或扭曲向列舞台。

    DISPLAY AND METHOD OF CORRECTION OF DISPLAY DATA
    5.
    发明申请
    DISPLAY AND METHOD OF CORRECTION OF DISPLAY DATA 审中-公开
    显示和校正显示数据的方法

    公开(公告)号:WO2014025470A1

    公开(公告)日:2014-02-13

    申请号:PCT/US2013/047861

    申请日:2013-06-26

    Applicant: APPLE INC.

    Abstract: An electronic device may include a display and display control circuitry. The display may be calibrated to reduce color non-uniformity in the display. Display calibration information may be obtained during manufacturing and may be stored in the electronic device. The display calibration information may include color-specific, intensity-specific, location-specific correction factors. During operation of the display, display control circuitry may receive pixel data to be displayed by each pixel in the display. The pixel data may include color information and intensity information for each pixel. Based on the color information for each pixel, the intensity information for each pixel, and the location of each pixel in the display, the display control circuitry may determine a color-specific, intensity-specific, location-specific correction factor to apply to the pixel data for each pixel. Adapted pixel data may be supplied to each pixel in the display.

    Abstract translation: 电子设备可以包括显示和显示控制电路。 可以校准显示器以减少显示器中的颜色不均匀性。 在制造过程中可以获得显示校准信息,并且可以将其存储在电子设备中。 显示校准信息可以包括颜色特定的,强度特定的,位置特定的校正因子。 在显示器的操作期间,显示控制电路可以接收由显示器中的每个像素显示的像素数据。 像素数据可以包括每个像素的颜色信息和强度信息。 基于每个像素的颜色信息,每个像素的强度信息以及显示器中每个像素的位置,显示控制电路可以确定特定于颜色的强度特定的位置特定校正因子以应用于 每个像素的像素数据。 可以将适应的像素数据提供给显示器中的每个像素。

    AMBIENT LIGHT ADAPTIVE DISPLAYS
    6.
    发明公开

    公开(公告)号:EP3486895A1

    公开(公告)日:2019-05-22

    申请号:EP18199465.8

    申请日:2015-05-05

    Applicant: Apple Inc.

    Abstract: An electronic device may include a display having an array of display pixels and having display control circuitry that controls the operation of the display. The display control circuitry may adaptively adjust the display output based on ambient lighting conditions. For example, in cooler ambient lighting conditions such as those dominated by daylight, the display may display neutral colors using a relatively cool white. When the display is operated in warmer ambient lighting conditions such as those dominated by indoor light sources, the display may display neutral colors using a relatively warm white. Adapting to the ambient lighting conditions may ensure that the user does not perceive color shifts on the display as the user's vision chromatically adapts to different ambient lighting conditions. Adaptively adjusting images in this way can also have beneficial effects on the human circadian rhythm by displaying warmer colors in the evening.

    HIGH ACCURACY IMAGING COLORIMETER BY SPECIAL DESIGNED PATTERN CLOSED-LOOP CALIBRATION ASSISTED BY SPECTROGRAPH
    7.
    发明公开
    HIGH ACCURACY IMAGING COLORIMETER BY SPECIAL DESIGNED PATTERN CLOSED-LOOP CALIBRATION ASSISTED BY SPECTROGRAPH 审中-公开
    色度计的高精度照片由从支持的光谱仪校准在一个封闭的电路特殊花纹

    公开(公告)号:EP2912421A1

    公开(公告)日:2015-09-02

    申请号:EP13849523.9

    申请日:2013-10-18

    Applicant: Apple Inc.

    Abstract: This specification describes various embodiments that relate to methods for providing a wideband colorimeter that can include more accurate outputs. In one embodiment, a narrowband instrument, such as a spectrometer or spectrograph, can be used for calibration of a wideband colorimeter, so that more accurate outputs can be provided. In one embodiment, an optical test equipment, which consists of both a wideband colorimeter and a narrowband spectrograph, can be used for providing a more accurately calibrated wideband colorimeter. As an example, a spectra-camera, which is a hybrid system consisting of both a wideband colorimeter and a narrowband spectrograph, can be used for simultaneous testing by both the wideband colorimeter and the narrowband spectrograph. By doing simultaneous testing, accurate calibration of the wideband colorimeter can be achieved. This specification further describes a mathematical model to characterize a wideband three channel colorimeter with a narrowband multiple channel spectrometer.

Patent Agency Ranking