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    • 4. 发明申请
    • USER TRACKING FEEDBACK
    • 用户跟踪反馈
    • US20100277411A1
    • 2010-11-04
    • US12820954
    • 2010-06-22
    • Dawson YeeKathryn Stone Perez
    • Dawson YeeKathryn Stone Perez
    • G09G5/00G06K9/00
    • G06K9/32G06F3/017G06F3/0304G06K9/00912
    • Technology is presented for providing feedback to a user on an ability of an executing application to track user action for control of the executing application on a computer system. A capture system detects a user in a capture area. Factors in the capture area and the user's actions can adversely affect the ability of the application to determine if a user movement is a gesture which is a control or instruction to the application. One example of such factors is a user being out of the field of view of the capture system. Some other factor examples include lighting conditions and obstructions in the capture area. Responsive to a user tracking criteria not being satisfied, feedback is output to the user. In some embodiments, the feedback is provided within the context of an executing application.
    • 提供技术用于向用户提供关于执行应用程序跟踪用户对计算机系统上的执行应用程序的控制的动作的能力的反馈。 捕获系统检测捕获区域中的用户。 捕获区域和用户操作的因素可能会不利地影响应用程序确定用户移动是否是对应用程序的控制或指令的手势的能力。 这种因素的一个例子是用户不在捕获系统的视野之内。 一些其他因素示例包括照明条件和捕获区域中的障碍物。 响应于用户跟踪标准不满足,反馈被输出给用户。 在一些实施例中,在执行应用程序的上下文中提供反馈。
    • 5. 发明授权
    • Thermal management system
    • 热管理系统
    • US08503494B2
    • 2013-08-06
    • US13080549
    • 2011-04-05
    • Dawson Yee
    • Dawson Yee
    • H01S3/04
    • G05D23/192
    • Various embodiments are disclosed for a thermal management system and related method for selectively thermally isolating and thermally connecting a target component. One embodiment of a system includes a first component having a first surface proximate to a target component, and an electromagnet between the first surface and the target component. A second component is spaced apart from the first component to form a gap that serves as a thermal boundary between the first component and the second component. A carrier fluid disposed within the gap includes multiple thermally conductive, ferrous particles. The carrier fluid is configured to align at least a portion of the thermally conductive, ferrous particles when the electromagnet generates a magnetic field that attracts the particles, and to displace at least a portion of the particles when the electromagnet generates a magnetic field that repels the particles.
    • 公开了用于热管理系统和相关方法的各种实施例,用于选择性地热隔离和热连接目标部件。 系统的一个实施例包括具有靠近目标部件的第一表面的第一部件和在第一表面和目标部件之间的电磁体。 第二部件与第一部件间隔开以形成用作第一部件和第二部件之间的热边界的间隙。 设置在间隙内的载体流体包括多个导热的亚铁颗粒。 载体流体被构造成当电磁体产生吸引颗粒的磁场时,使至少一部分导热的亚铁颗粒对准,并且当电磁体产生排斥该颗粒的磁场时,使至少一部分颗粒移位 粒子。
    • 6. 发明申请
    • RASTER SCANNING FOR DEPTH DETECTION
    • RASTER扫描深度检测
    • US20120257020A1
    • 2012-10-11
    • US13527203
    • 2012-06-19
    • Dawson YeeJohn Lutian
    • Dawson YeeJohn Lutian
    • H04N13/02
    • G06T7/0057G01C3/08G01S7/4817G01S17/10G01S17/36G01S17/42G01S17/48G01S17/66G01S17/88G01S17/89G06T7/521G06T2207/30196
    • Techniques are provided for determining distance to an object in a depth camera's field of view. The techniques may include raster scanning light over the object and detecting reflected light from the object. One or more distances to the object may be determined based on the reflected image. A 3D mapping of the object may be generated. The distance(s) to the object may be determined based on times-of-flight between transmitting the light from a light source in the camera to receiving the reflected image from the object. Raster scanning the light may include raster scanning a pattern into the field of view. Determining the distance(s) to the object may include determining spatial differences between a reflected image of the pattern that is received at the camera and a reference pattern.
    • 提供了用于在深度相机的视野中确定到物体的距离的技术。 这些技术可以包括在物体上的光栅扫描光并检测来自物体的反射光。 可以基于反射图像来确定到物体的一个或多个距离。 可以生成对象的3D映射。 可以基于在从相机中的光源传输光以从对象接收反射图像之间的飞行时间来确定与物体的距离。 光栅扫描光可能包括将图案光栅扫描到视场。 确定与物体的距离可以包括确定在相机处接收的图案的反射图像与参考图案之间的空间差异。
    • 7. 发明申请
    • INPUT METHOD FOR SURFACE OF INTERACTIVE DISPLAY
    • 交互显示表面的输入法
    • US20110181551A1
    • 2011-07-28
    • US13032877
    • 2011-02-23
    • Dawson Yee
    • Dawson Yee
    • G06F3/042
    • G06F3/0416G06F3/0425G06F2203/04108
    • An interactive display system configured for detecting an object or user input provided with an object. The system includes a display surface on which graphic images are displayed, one or more scanning light sources configured for scanning the interactive display surface, and a light detector configured for detecting light reflected from an object that is adjacent to or in contact with the interactive display surface. A computing system storing machine instructions is in communication with the scanning light source and the light detector. When executed, the machine instructions cause the computing system to illuminate the interactive display surface with the scanning light source, to detect light with the light detector that is reflected from an object after illumination with the light source, and to generate an output signal based on the detected light that has been reflected from an object on or adjacent to the interactive display surface.
    • 一种交互式显示系统,被配置为检测提供有对象的对象或用户输入。 该系统包括其上显示图形图像的显示表面,被配置用于扫描交互式显示表面的一个或多个扫描光源,以及被配置为检测与交互式显示器相邻或接触的物体反射的光的光检测器 表面。 存储机器指令的计算系统与扫描光源和光检测器通信。 当执行时,机器指令使得计算系统利用扫描光源照亮交互式显示表面,以便在用光源照射之后用与物体反射的光检测器检测光,并且基于 已经从交互式显示表面上或附近的对象反射的检测到的光。
    • 8. 发明申请
    • ALIGNMENT OF LENS AND IMAGE SENSOR
    • 镜头和图像传感器的对准
    • US20110069221A1
    • 2011-03-24
    • US12563342
    • 2009-09-21
    • Dawson Yee
    • Dawson Yee
    • H04N5/225G01B11/00
    • H04N5/2254G01B11/27H04N5/2253
    • Embodiments related to the alignment of a lens with an image sensor in an optical device are disclosed. For example, one disclosed embodiment comprises an optical device including a printed circuit board, and an image sensor package mounted on the printed circuit board, wherein the image sensor package includes an image sensor. The optical system further comprises a lens holder including a lens, and one or more alignment features arranged on the lens holder. The one or more alignment features are configured to contact the image sensor package to mechanically align the lens holder with the image sensor package.
    • 公开了与光学装置中的透镜与图像传感器的对准有关的实施例。 例如,一个公开的实施例包括包括印刷电路板的光学装置和安装在印刷电路板上的图像传感器封装,其中图像传感器封装包括图像传感器。 光学系统还包括透镜架,其包括透镜,以及布置在透镜架上的一个或多个对准特征。 一个或多个对准特征被配置为接触图像传感器封装,以将透镜架与图像传感器封装机械对准。
    • 9. 发明授权
    • Input method for surface of interactive display
    • 交互式显示表面的输入法
    • US07911444B2
    • 2011-03-22
    • US11218171
    • 2005-08-31
    • Dawson Yee
    • Dawson Yee
    • G09G5/00
    • G06F3/0416G06F3/0425G06F2203/04108
    • An interactive display system configured for detecting an object or user input provided with an object. The system includes a display surface on which graphic images are displayed, one or more scanning light sources configured for scanning the interactive display surface, and a light detector configured for detecting light reflected from an object that is adjacent to or in contact with the interactive display surface. A computing system storing machine instructions is in communication with the scanning light source and the light detector. When executed, the machine instructions cause the computing system to illuminate the interactive display surface with the scanning light source, to detect light with the light detector that is reflected from an object after illumination with the light source, and to generate an output signal based on the detected light that has been reflected from an object on or adjacent to the interactive display surface.
    • 一种交互式显示系统,被配置为检测提供有对象的对象或用户输入。 该系统包括其上显示图形图像的显示表面,被配置用于扫描交互式显示表面的一个或多个扫描光源,以及被配置为检测与交互式显示器相邻或接触的物体反射的光的光检测器 表面。 存储机器指令的计算系统与扫描光源和光检测器通信。 当执行时,机器指令使得计算系统利用扫描光源照亮交互式显示表面,以便在用光源照射之后用与物体反射的光检测器检测光,并且基于 已经从交互式显示表面上或附近的对象反射的检测到的光。
    • 10. 发明申请
    • SEPARATION OF ELECTRICAL AND OPTICAL COMPONENTS
    • 电气和光学部件的分离
    • US20110064402A1
    • 2011-03-17
    • US12559170
    • 2009-09-14
    • Dawson Yee
    • Dawson Yee
    • G03B17/02H05K13/00
    • G06F3/011Y10T29/49002
    • Embodiments related to establishing and maintaining precision alignment in an optical system are disclosed. For example, one disclosed embodiment provides an optical device comprising an outer casing and a rigid optical support disposed within an interior of the outer casing and to which a plurality of optical components are mounted. The embodiment further comprises a printed circuit board spatially separated from the optical support and the plurality of optical components, wherein one or more electrical components are mounted to the printed circuit board. The embodiment also comprises one or more electrical conductors electrically connecting the one or more electrical components to the one or more optical components.
    • 公开了关于在光学系统中建立和维持精确对准的实施例。 例如,一个公开的实施例提供了一种光学装置,其包括外壳和设置在外壳内部的刚性光学支架,多个光学元件安装在该光学装置上。 该实施例还包括与光学支架和多个光学部件空间分离的印刷电路板,其中一个或多个电气部件安装到印刷电路板。 该实施例还包括将一个或多个电气部件电连接到一个或多个光学部件的一个或多个电导体。