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    • 2. 发明授权
    • Object-drag continuity between discontinuous touch screens of a single virtual desktop
    • 单个虚拟桌面的不连续触摸屏之间的对象拖动连续性
    • US06331840B1
    • 2001-12-18
    • US09277204
    • 1999-03-26
    • Kevin W. NielsonHusam Kinawi
    • Kevin W. NielsonHusam Kinawi
    • G09G302
    • G06F3/1438G06F3/0488
    • Apparatus and process are provided wherein an object can be manipulated between multiple discontinuous screens which form a single continuous virtual display. Each screen is touch or input sensitive to a pointing implement or device, and a physical discontinuity separates each of the screens from the others, this continuity being non-touch sensitive. First, a pointing implement contacts the source touch-screen to select the object, storing parameters in the computers buffer. The pointing implement is moved to the target touch-screen where the pointing implement contacts where the first object is to be dragged to; then the object is released from the buffer so that the first object is pasted to the target touch-screen. Preferably, when the object is touched at the source screen, a timer starts, and if the target screen is touched before timeout, the object appears at the target. Optionally, displayed second and third objects a context menu, or buttons on a wireless stylus can be invoked to specify cut, copy and paste functions.
    • 提供了装置和过程,其中可以在形成单个连续虚拟显示器的多个不连续屏幕之间操纵对象。 每个屏幕是触摸或对指向工具或设备敏感的输入,并且物理不连续性将每个屏幕与其他屏幕分开,这种连续性是非触摸敏感的。 首先,指点实现接触源触摸屏来选择对象,将参数存储在计算机缓冲区中。 指示工具被移动到目标触摸屏,其中指示工具接触第一对象被拖动到的目标触摸屏; 然后从缓冲器释放对象,使第一个对象粘贴到目标触摸屏上。 优选地,当在源屏幕上触摸对象时,定时器开始,并且如果在超时之前触摸了目标屏幕,则该对象出现在目标处。 可选地,显示的第二和第三对象可以调用上下文菜单或无线触控笔上的按钮来指定剪切,复制和粘贴功能。
    • 7. 发明授权
    • Position detector
    • 位置检测器
    • US06469696B1
    • 2002-10-22
    • US09415212
    • 1999-10-12
    • Yoshifumi IshimuraHirotsugu Tomizawa
    • Yoshifumi IshimuraHirotsugu Tomizawa
    • G09G302
    • G06F3/046G06F3/03545
    • There is provided a position detector including a member having a surface and a plurality of vertically and horizontally arranged antennas; a controller for sequentially driving the vertically arranged antennas in vertical positive and vertical negative directions, and for sequentially driving the horizontally arranged antennas in horizontal positive and horizontal negative directions so that the antennas sequentially radiate radio waves; a receiver for receiving the sequentially radiated radio waves on the surface of the member; and a detector for detecting the position of the receiver on the surface of the member based on the levels of the received radio waves. The detector detects the position of the receiver as an average position for a first position detected based on the levels of the radio waves which are sequentially radiated in the vertical positive and horizontal positive directions, and a second position detected based on the levels of the radio waves which are sequentially radiated in the vertical negative and horizontal negative directions. Therefore, since the receiver position detected by the detector does not vary, no delay time adjustment circuit is required, and the position of the receiver can be accurately detected.
    • 提供了一种位置检测器,其包括具有表面和多个垂直和水平布置的天线的构件; 用于在垂直正和负向负方向依次驱动垂直排列的天线,并且在水平正和负方向依次驱动水平排列的天线,使得天线顺序地辐射无线电波; 接收器,用于在所述构件的表面上接收顺序辐射的无线电波; 以及检测器,用于基于所接收的无线电波的电平来检测接收器在构件的表面上的位置。 检测器基于在垂直正向和横向正方向依次辐射的无线电波的电平检测接收机的位置作为检测到的第一位置的平均位置,并且基于无线电的电平检测到的第二位置 在垂直负方向和水平负方向依次辐射的波。 因此,由于由检测器检测到的接收器位置不变化,因此不需要延迟时间调节电路,并且可以准确地检测接收器的位置。
    • 8. 发明授权
    • Virtual retinal display and method for tracking eye position
    • 虚拟视网膜显示和跟踪眼睛位置的方法
    • US06317103B1
    • 2001-11-13
    • US09312932
    • 1999-05-17
    • Thomas Adrian Furness, IIIJoel S. Kollin
    • Thomas Adrian Furness, IIIJoel S. Kollin
    • G09G302
    • H04N9/3129G02B27/017G02B27/0172G02B2027/0116G02B2027/0118G02B2027/0132G02B2027/0138G02B2027/0187G02B2027/0198G09G3/003G09G3/02G09G3/025
    • A virtual retinal display utilizes photon generation and manipulation to create a panoramic, high resolution, color virtual image that is projected directly onto the retina of the eye without creating a real or an aerial image that is viewed via a mirror or optics. The virtual retinal display includes a source of photons, the photons being modulated with video information and scanned in a raster type of pattern directly onto the retina of the user's eye. The photon generator may utilize coherent or non-coherent light. Further, the photon generator may utilize color light generators so as to scan a colored virtual image directly onto the retina of the user's eye. The virtual retinal display may also include a depth accommodation cue to vary the focus of scanned photons rapidly so as to control the depth perceived by a user for each individual picture element of the virtual image. Further, an eye tracking system may be utilized to sense the position of an entrance pupil of the user's eye, the detected pupil position being utilized to move the scanned photons so as to be approximately coincident with the entrance pupil of the eye. The detected pupil position may also be used to change the video image scanned onto the retina so that as the user's eye moves, the view perceived by the user changes.
    • 虚拟视网膜显示器利用光子产生和操纵来创建一个全景的,高分辨率的彩色虚拟图像,其直接投射到眼睛的视网膜上,而不产生通过镜子或光学元件观察的真实或空中图像。 虚拟视网膜显示器包括光子源,光子被视频信息调制并以光栅类型的图案直接扫描到用户的眼睛的视网膜上。 光子发生器可以利用相干或非相干光。 此外,光子发生器可以利用彩色光发生器,以将彩色虚像直接扫描到用户的眼睛的视网膜上。 虚拟视网膜显示器还可以包括深度调节提示,以快速改变扫描光子的焦点,以便控制用户对虚拟图像的每个单独图像元素感觉到的深度。 此外,可以使用眼睛跟踪系统来感测用户眼睛的入射光瞳的位置,所检测的瞳孔位置被用于移动被扫描的光子,以便与眼睛的入射光瞳近似重合。 检测到的瞳孔位置也可以用于改变扫描到视网膜上的视频图像,以便当用户的眼睛移动时,用户感觉到的视图改变。
    • 9. 发明授权
    • Operating element
    • 操作元件
    • US06742410B1
    • 2004-06-01
    • US10009864
    • 2002-04-12
    • Johannes EschlerJuergen Schirmer
    • Johannes EschlerJuergen Schirmer
    • G09G302
    • G06F3/0362B61L3/18H01H2003/008Y10T74/20201
    • An operating element having a first control element that is rotatable about a first axis, and having at least one second control element that is rotatable about a second axis and that does not coincide with the first axis. The operating element may include apparatuses, arrangements or structures to influence the torque required to rotate at least one of the control elements. An operating device having an operating element has a controller to influence the torque required to rotate at least one of the control elements as a function of the context. The operating element and the operating device permit a good haptic feedback and/or user guidance in adjusting a parameter or in scrolling through a menu, so that visual contact with the operating element or a pointer moved with the operating element in a menu is not necessary.
    • 操作元件具有第一控制元件,该第一控制元件可围绕第一轴线旋转,并且具有可绕第二轴线旋转并且与第一轴线不重合的至少一个第二控制元件。 操作元件可以包括影响旋转至少一个控制元件所需的扭矩的装置,布置或结构。 具有操作元件的操作装置具有控制器,以根据上下文影响旋转至少一个控制元件所需的扭矩。 操作元件和操作装置在调整参数或滚动菜单时允许良好的触觉反馈和/或用户指导,使得与菜单中的操作元件移动的操作元件或指针的视觉接触不是必需的 。
    • 10. 发明授权
    • Pointing device
    • 指点装置
    • US06528740B2
    • 2003-03-04
    • US09799813
    • 2001-03-07
    • Toshiharu Miyoshi
    • Toshiharu Miyoshi
    • G09G302
    • G06F3/03548
    • The present invention avoids increase in a thickness of a pointing device for inputting a signal in X-Y directions by sliding operation, improves functions of the device, and reduces the number of parts. The present invention includes a case housing a set of moving bodies for moving linearly in X-Y directions as an operating body is slid. Below the moving bodies, a built-in substrate is housed. The moving bodies are respectively formed of plate-shaped metal portions and resin portions mounted to opposite sides of the moving bodies. The case is formed of an upper case made of resin and a lower case formed of a metal plate. Contacts for coming into sliding contact with the built-in substrate are mounted to the resin portions to form a volume. Springs for origin returning are housed in the resin portions. The operating body operates a press-down switch on the built-in substrate.
    • 本发明避免了通过滑动操作在X-Y方向输入信号的指示装置的厚度增加,改善了装置的功能,并且减少了零件数量。 本发明包括壳体,当操作体滑动时,容纳一组用于在X-Y方向上线性移动的移动体。 在移动体的下方,容纳有内置的基板。 移动体分别由安装在移动体的相对侧的板状金属部分和树脂部分形成。 壳体由树脂制成的上壳体和由金属板形成的下壳体形成。 用于与内置基板滑动接触的触点安装到树脂部分以形成体积。 用于原点返回的弹簧容纳在树脂部分中。 操作体操作内置基板上的按下开关。