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    • 61. 发明授权
    • Optimization of a multi-view display
    • 优化多视图显示
    • US09225975B2
    • 2015-12-29
    • US12819239
    • 2010-06-21
    • Steven BathicheJaron Zepel Lanier
    • Steven BathicheJaron Zepel Lanier
    • H04N13/04H04N9/47H04N5/225G02B13/16G02F1/1335G02F1/1337
    • H04N13/398H04N13/305H04N13/32H04N13/349H04N13/356H04N13/366H04N13/368H04N13/376
    • Described herein is a multi-view display (based on spatial and/or temporal multiplexing) having an optimization mechanism that dynamically adjust views based upon detected state changes with respect to one or more views. The optimization mechanism determines viewing parameters (e.g., brightness and/or colors) for a view based upon a current position of the view, and/or on the multi-view display's capabilities. The state change may correspond to the view (a viewer's eye) moving towards another viewing zone, in which event new viewing parameters are determined, which may be in anticipation of entering the zone. Another state change corresponds to more views being needed than the display is capable of outputting, whereby one or more existing views are degraded, e.g., from 3D to 2D and/or from a personal video to a non-personal view. Conversely, a state change corresponding to excess capacity becoming available can result in enhancing a view to 3D and/or personal.
    • 这里描述了具有优化机制的多视图显示(基于空间和/或时间多路复用),该优化机制基于相对于一个或多个视图的检测到的状态变化来动态地调整视图。 优化机构基于视图的当前位置和/或多视图显示器的能力来确定视图的观看参数(例如,亮度和/或颜色)。 状态改变可以对应于朝向另一个观看区移动的视图(观看者的眼睛),在这种情况下,确定新的观看参数,这可以预期进入该区域。 另一状态改变对应于显示器能够输出所需的更多视图,由此一个或多个现有视图例如从3D到2D和/或从个人视频降级到非个人视图。 相反,对应于过剩容量变得可用的状态改变可导致增强对3D和/或个人的观看。
    • 62. 发明授权
    • Illuminator for touch- and object-sensitive display
    • 用于触摸和对象敏感显示的照明器
    • US08730212B2
    • 2014-05-20
    • US12621785
    • 2009-11-19
    • Karlton PowellPrafulla MasalkarTimothy LargeSteven Bathiche
    • Karlton PowellPrafulla MasalkarTimothy LargeSteven Bathiche
    • G06F3/042
    • G06F3/0421G06F3/0425G06F2203/04109
    • An integrated vision and display system comprises a display-image forming layer configured to transmit a display image for viewing through a display surface; an imaging detector configured to image infrared light of a narrow range of angles relative to the display surface normal and including a reflection from one or more objects on or near the display surface; a vision-system emitter configured to emit the infrared light for illuminating the objects; a visible- and infrared-transmissive light guide having opposing upper and/or lower face, configured to receive the infrared light from the vision-system emitter, to conduct the infrared light via TIR from the upper and lower faces, and to project the infrared light onto the objects outside of the narrow range of angles relative to the display surface normal.
    • 集成视觉和显示系统包括:显示图像形成层,被配置为通过显示表面传送用于观看的显示图像; 成像检测器,被配置为对相对于显示表面法线的窄范围的角度的红外光进行成像,并且包括来自显示表面上或附近的一个或多个物体的反射; 视觉系统发射器,被配置为发射用于照射物体的红外光; 具有相对的上和/或下表面的可见和红外透射光导,被配置为接收来自视觉系统发射器的红外光,以经由来自上表面和下表面的TIR传导红外光,并且将红外线 将光照射到相对于显示面正常的窄范围角度之外的物体上。
    • 67. 发明授权
    • User notification system with an illuminated computer input device
    • 带有照明电脑输入设备的用户通知系统
    • US08279177B2
    • 2012-10-02
    • US13207471
    • 2011-08-11
    • Timothy A. McDonoughCarl J. LedbetterRobert Scott PlankSteven W. FisherSteven T. KanekoSteven Bathiche
    • Timothy A. McDonoughCarl J. LedbetterRobert Scott PlankSteven W. FisherSteven T. KanekoSteven Bathiche
    • G09G5/00
    • G06F3/03543G06F2203/0337
    • A user notification system and a computer input device, such as a mouse. The computer input device includes an illumination member that enables a user to quickly and accurately position the input device during poor lighting conditions and determine whether the computer is ON. The input device includes a housing and an illumination device that is supported by the housing. Illumination from the illumination device is visible when the input device is placed on a support surface. The illumination member is also used to notify the user if one or more of various events have occurred in a computer application being run on the computer. The notification information is presented to the user by changing the state of the illumination member. An example of event for notification includes the receipt of a message in a communications program such as an e-mail message. The notification can make the illumination member blink as a function of the number of messages received. This enables information to be conveyed to the user without the need for text or audio, and without the need to view the computer monitor.
    • 用户通知系统和计算机输入设备,例如鼠标。 计算机输入装置包括照明构件,其使用户能够在差的照明条件期间快速且精确地定位输入装置,并且确定计算机是否是开启的。 输入装置包括壳体和由壳体支撑的照明装置。 当输入装置放置在支撑表面上时,来自照明装置的照明是可见的。 照明构件还用于通知用户在计算机上运行的计算机应用程序中是否发生了各种事件中的一个或多个。 通过改变照明构件的状态向用户呈现通知信息。 用于通知的事件的示例包括在诸如电子邮件消息的通信程序中接收到消息。 该通知可以使照明成员作为接收到的消息的数量而闪烁。 这使得能够将信息传达给用户而不需要文本或音频,并且不需要查看计算机监视器。
    • 69. 发明申请
    • Optimization of a Multi-View Display
    • 多视图显示的优化
    • US20110310233A1
    • 2011-12-22
    • US12819239
    • 2010-06-21
    • Steven BathicheJaron Zepel Lanier
    • Steven BathicheJaron Zepel Lanier
    • H04N13/04G06K9/00
    • H04N13/398H04N13/305H04N13/32H04N13/349H04N13/356H04N13/366H04N13/368H04N13/376
    • Described herein is a multi-view display (based on spatial and/or temporal multiplexing) having an optimization mechanism that dynamically adjust views based upon detected state changes with respect to one or more views. The optimization mechanism determines viewing parameters (e.g., brightness and/or colors) for a view based upon a current position of the view, and/or on the multi-view display's capabilities. The state change may correspond to the view (a viewer's eye) moving towards another viewing zone, in which event new viewing parameters are determined, which may be in anticipation of entering the zone. Another state change corresponds to more views being needed than the display is capable of outputting, whereby one or more existing views are degraded, e.g., from 3D to 2D and/or from a personal video to a non-personal view. Conversely, a state change corresponding to excess capacity becoming available can result in enhancing a view to 3D and/or personal.
    • 这里描述了具有优化机制的多视图显示(基于空间和/或时间多路复用),该优化机制基于相对于一个或多个视图的检测到的状态变化来动态地调整视图。 优化机构基于视图的当前位置和/或多视图显示器的能力来确定视图的观看参数(例如,亮度和/或颜色)。 状态改变可以对应于朝向另一个观看区移动的视图(观看者的眼睛),在这种情况下,确定新的观看参数,这可以预期进入该区域。 另一状态改变对应于显示器能够输出所需的更多视图,由此一个或多个现有视图例如从3D到2D和/或从个人视频降级到非个人视图。 相反,对应于过剩容量变得可用的状态改变可导致增强对3D和/或个人的观看。