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    • 51. 发明授权
    • Volumetric data exploration using multi-point input controls
    • 使用多点输入控制的体积数据探索
    • US08451269B2
    • 2013-05-28
    • US13428099
    • 2012-03-23
    • Philip L. Davidson
    • Philip L. Davidson
    • G06T15/00G06T15/10G06T15/20G06F3/048
    • G06F3/04845G06F3/04815G06F3/04883G06F2203/04808G06T19/20G06T2210/41G06T2219/008G06T2219/028G06T2219/2016
    • A three-dimensional data set is accessed. A two-dimensional plane is defined that intersects a space defined by the three-dimensional data set. The two-dimensional plane defines a two-dimensional data set within the three-dimensional data set and divides the three-dimensional data set into first and second subsets. A three-dimensional view based on the three-dimensional data set is rendered on such that at least a portion of the first subset of the three-dimensional data set is removed and at least a portion of the two-dimensional data set is displayed. A two-dimensional view of a first subset of the two-dimensional data set also is rendered. Controls are provided that enable visual navigation through the three-dimensional data set by engaging points on the multi-touch display device that correspond to either the three-dimensional view based on the three-dimensional data set and/or the two-dimensional view of the first subset of the two-dimensional data set.
    • 访问三维数据集。 定义了与由三维数据集定义的空间相交的二维平面。 二维平面定义三维数据集内的二维数据集,并将三维数据集划分为第一和第二子集。 基于三维数据集的三维视图被渲染为使得三维数据集的第一子集的至少一部分被去除并且二维数据集的至少一部分被显示。 还呈现二维数据集的第一子集的二维视图。 提供了一种控制装置,其能够通过使多点触摸显示装置上的点对应于三维数据集的三维视图和/或三维数据集的二维视图 二维数据集的第一个子集。
    • 54. 发明授权
    • Multi-touch sensing display through frustrated total internal reflection
    • 多点触摸感应显示通过沮丧的全内反射
    • US08441467B2
    • 2013-05-14
    • US11833908
    • 2007-08-03
    • Jefferson Y. Han
    • Jefferson Y. Han
    • G06F3/042
    • G06F3/04883G06F3/0425G06F2203/04109G06F2203/04808
    • High-resolution, scalable multi-touch sensing display systems and processes based on frustrated total internal reflection employ an optical waveguide that receives light, such as infrared light, that undergoes total internal reflection and an imaging sensor that detects light that escapes the optical waveguide caused by frustration of the total internal reflection due to contact by a user. The optical waveguide may be fitted with a compliant surface overlay to greatly improve sensing performance, minimize the affect of contaminants on and damage to the contact surface, to generally extend system life and to provide other benefits. The systems and processes provide true multi-touch (multi-input) and high-spatial and temporal resolution capability due to the continuous imaging of the frustrated total internal reflection that escapes the entire optical waveguide. Among other features and benefits, the systems and processes are scalable to large installations and are well suited for use with rear-projection and other display devices.
    • 基于沮丧的全内反射的高分辨率,可扩展的多触摸感测显示系统和处理使用接收经受全内反射的诸如红外光的光的光波导和检测光引出的光的成像传感器 由于用户接触造成的全部内部反射的挫败。 光波导可以装配有柔性表面覆层以大大提高感测性能,最小化污染物对接触表面的影响和损坏接触表面,从而大体上延长系统寿命并提供其它益处。 由于对整个光波导逸出的全部内反射的持续成像,这些系统和工艺提供真正的多点触摸(多输入)和高空间和时间分辨能力。 除了其他功能和优点之外,系统和过程可扩展到大型安装,并且非常适合用于后投影和其他显示设备。
    • 57. 发明申请
    • Reduction of Noise in Touch Sensors
    • 降低触摸传感器的噪音
    • US20120223911A1
    • 2012-09-06
    • US13298622
    • 2011-11-17
    • Jonathan WESTHUES
    • Jonathan WESTHUES
    • G06F3/044
    • G06F3/044G06F3/0412G06F3/0418
    • Techniques are described for providing a cleaned signal in a capacitive touch sensor. A phase of periodic noise on an input of the capacitive touch sensor is determined, and a periodic excitation signal having a phase that is locked to the determined phase of the periodic noise is generated. The periodic excitation signal is applied to an excited conductor in a first array of the touch sensor. While the excitation signal is applied, a response signal on a responding conductor in a second array of the touch sensor is detected, and, based on the detected response signal, a value indicative of a measured capacitance between the excited conductor and the responding conductor is generated. A threshold value is accessed, and a determination is made whether the response signal corresponds to a touch based on a difference between the value and the threshold value.
    • 描述了用于在电容式触摸传感器中提供清洁的信号的技术。 确定在电容式触摸传感器的输入端上的周期性噪声的相位,并且产生具有锁定到所确定的周期性噪声相位的相位的周期性激励信号。 周期性激励信号被施加到触摸传感器的第一阵列中的激励导体。 当施加激励信号时,检测在触摸传感器的第二阵列中的响应导体上的响应信号,并且基于检测到的响应信号,指示被激励导体和响应导体之间的测量电容的值是 生成。 访问阈值,并且基于该值和阈值之间的差异来确定响应信号是否对应于触摸。
    • 60. 发明申请
    • Touch Sensing
    • 触摸感应
    • US20100302196A1
    • 2010-12-02
    • US12791663
    • 2010-06-01
    • Jefferson Y. HanJoel S. Kollin
    • Jefferson Y. HanJoel S. Kollin
    • G06F3/041
    • G06F3/0425G02B6/0016G02B6/34G02B6/4204G06F2203/04109
    • A touch-screen device includes an imaging waveguide, in which the imaging waveguide has a radiation receiving surface and an imaging surface different than the radiation receiving surface. The imaging waveguide is configured to receive, at the radiation receiving surface, radiation emitted by a contact receiving structure, and transmit the received radiation from a position on the radiation receiving surface to a position and/or angle of incidence on the imaging surface as a function of the position on the radiation receiving surface at which the transmitted radiation was received. An imaging sensor coupled to the imaging surface of the imaging optical waveguide is configured to detect radiation incident upon the imaging surface of the imaging optical waveguide. A processing device coupled to the imaging sensor is configured to determine contact points on the exposed contact surface of a contact receiving structure based on radiation detected by the imaging sensor.
    • 触摸屏设备包括成像波导,其中成像波导具有辐射接收表面和与辐射接收表面不同的成像表面。 成像波导被配置为在辐射接收表面处接收由接触接收结构发射的辐射,并且将接收到的辐射从辐射接收表面上的位置发射到成像表面上的位置和/或入射角,作为 在接收透射辐射的辐射接收表面上的位置的功能。 耦合到成像光波导的成像表面的成像传感器被配置为检测入射到成像光波导的成像表面上的辐射。 耦合到成像传感器的处理设备被配置为基于由成像传感器检测到的辐射来确定接触接收结构的暴露的接触表面上的接触点。