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    • 1. 发明申请
    • Virtual joystick system for controlling the operation of security cameras and controlling method thereof
    • 用于控制安全摄像机的操作的虚拟操纵杆系统及其控制方法
    • US20040263476A1
    • 2004-12-30
    • US10874583
    • 2004-06-24
    • In-Keon LimYeon-Jung LeeDae-Joong Kim
    • G09G005/08
    • G08B13/19689G08B13/19682H04N5/23203H04N7/183
    • The present invention discloses a control technology for remote control of security cameras, and more particularly, to a method of providing virtual Joystick environment as if Joystick was used on a computer, and system thereof. A selected region is set on a computer monitor. According to the direction that a cursor is clicked on and dragged within the region, a rotary movement command to pan or tilt a camera at a remote place is generated. If a mouse wheel is rotatably pushed or pulled or the mouse is moved to an additional control region within the selected region, additional functions such as zoom-in/out and focus-in/out are performed. Therefore, the present invention has an effect that a user can feel as if a virtual Joystick was manipulated by controlling movement of cameras in real time as a mouse is moved, while monitoring an image of a subject on a computer monitor.
    • 本发明公开了一种用于远程控制安全摄像机的控制技术,更具体地说,涉及一种提供虚拟操纵杆环境的方法,如同在操作台上使用操纵杆一样,以及其系统。 所选区域设置在计算机显示器上。 根据光标在该区域内被点击并拖动的方向,产生用于在远程位置平移或倾斜照相机的旋转移动命令。 如果鼠标滚轮被可旋转地推动或拉动或者鼠标移动到所选择的区域内的附加控制区域,则执行诸如放大/缩小和聚焦/输出的附加功能。 因此,本发明具有如下效果:用户可以感觉到仿佛通过在鼠标移动时实时控制摄像机的移动,同时在计算机监视器上监视被摄体的图像来操纵虚拟操纵杆。
    • 2. 发明申请
    • Optical mouse with uniform light projection
    • 具有均匀光投影的光电鼠标
    • US20040246233A1
    • 2004-12-09
    • US10455379
    • 2003-06-06
    • Unity Opto Technology Co., Ltd.
    • Wei ChangHsien-Yeh Hung
    • G09G005/08
    • G06F3/03543G06F3/0317
    • An optical mouse includes a bottom casing, a top cover mounted to the bottom casing to define an interior space therebetween, a circuit board and a lens set arranged in the interior space. The bottom casing defines an opening. A detecting device is mounted to the circuit board. A receiving portion and a light emitting diode (LED) are mounted to a bottom side of the detecting device in alignment with a slot defined in the circuit board. A solder pad to which an electrical conductor is connected forms a central bore and is positioned on a circumferential margin of a light projection surface of the LED to allow light projected from the light projection surface to transmit through the central bore. The lens set is arranged between the circuit board and the bottom casing, comprising a reflection member located below the LED for redirecting the light from the LED to the fixture surface and a lends, which is located below the receiving portion of the detecting device and in alignment with the opening of the bottom casing, converging the reflected light toward the receiving portion of the detecting device. Since the light from the LED is allowed to pass through the central bore of the solder pad and is not substantially blocked by the solder pad, a uniform projection of light can be accomplished. The assembly of the optical mouse is simplified and an excellent transmission of light can be realized.
    • 光学鼠标包括底壳,顶盖安装到底壳以限定它们之间的内部空间,电路板和布置在内部空间中的透镜组。 底部壳体限定开口。 检测装置安装在电路板上。 接收部分和发光二极管(LED)安装到检测装置的底侧,与电路板中限定的狭缝对齐。 连接电导体的焊盘形成中心孔并位于LED的光投射表面的圆周边缘上,以允许从光投射表面投射的光透过中心孔。 透镜组布置在电路板和底壳之间,包括位于LED下方的反射构件,用于将来自LED的光重定向到固定表面,以及位于检测装置的接收部分下方的借杆 与底壳的开口对准,将反射光朝向检测装置的接收部分会聚。 由于允许来自LED的光通过焊盘的中心孔并且基本上不被焊盘阻挡,所以可以实现均匀的光投影。 光学鼠标的组装简化,可以实现良好的光传输。
    • 3. 发明申请
    • Data communications device, image transmission method and image transmission program
    • 数据通信设备,图像传输方式和图像传输程序
    • US20040239686A1
    • 2004-12-02
    • US10851544
    • 2004-05-21
    • Casio Computer Co., Ltd.
    • Hirohisa KoyamaYoshihiro Goto
    • G09G005/08
    • H04N1/3875G06Q10/107H04M1/72555H04N1/00281H04N1/00307H04N5/232H04N5/23216H04N5/23293H04N5/2628H04N2201/0084
    • When the E-mail key is pressed, and the E-mail attaching of picked-up image is then indicated, after pick-up, the size of image to be attached is selected. At this time, the clipping screen that the clipping frame 200 overlaid with the preview screen, corresponding to the selected size is displayed. At this time, it is also possible to zoom the image in, or to zoom the image out, or to change the shape of clipping frame. In the clipping screen, an clipping zoom icon which indicates that the mode is a clipping zoom processing mode, a zoom out icon (to carry out the zooming-out display processing of playback zooming of the picked-up image step by step, whenever detect the operation of the E-mail key), a SET icon (to carry out the zoom fixation in correspondence with the operation detection of the determination key), and a zoom-in icon (to carry out the zooming in display processing of the playback zooming of the picked-up image step by step, whenever detect the operation of the function key) are displayed.
    • 当按下电子邮件键,然后指示拍摄图像的电子邮件附加时,拾取后,选择要附加的图像的大小。 此时,显示与所选择的尺寸相对应的与预览画面重叠的剪辑框200的裁剪画面。 此时,也可以缩放图像,或者缩小图像,或者改变裁剪框的形状。 在裁剪画面中,指示该模式为裁剪变焦处理模式的裁剪变焦图标,缩小图标(进行逐步拍摄的拍摄图像的再现缩放的缩小显示处理,每当检测到 电子邮件键的操作),SET图标(用于执行与确定键的操作检测相对应的变焦固定)和放大图标(以进行放大的显示处理的缩放 显示拾取的图像逐步缩放,每当检测到功能键的操作时)。
    • 4. 发明申请
    • Feedback to users of optical navigation devices on non-navigable surfaces
    • 对非导航表面光学导航设备的用户的反馈
    • US20040239630A1
    • 2004-12-02
    • US10449783
    • 2003-05-30
    • Ramakrishna KakaralaRoopinder Singh GrewalVincent C. Moyer
    • G09G005/08
    • G06F3/0317
    • Feedback is provided when an optical navigation device acquires an image that is not suitable for navigation purposes. An image sensor embedded within the optical navigation device acquires an image of a surface. An image monitor determines the navigability of the captured image and generates a signal indicative of the image's navigability. A comparator compares the signal to a threshold navigability level. When the image navigability is determined to be below the threshold and thus non-navigable, the comparator asserts a feedback signal. The feedback signal may trigger a variety of feedback mechanisms to alert the user that the surface is non-navigable. Possible feedback mechanisms include a warning message on a display screen, an illuminated light on the optical navigation device, or an audible sound.
    • 当光学导航装置获取不适于导航目的的图像时,提供反馈。 嵌入在光学导航装置内的图像传感器获取表面的图像。 图像监视器确定所捕获图像的导航性并产生指示图像的导航性的信号。 比较器将信号与阈值导航水平进行比较。 当图像导航性被确定为低于阈值并且因此不可导航时,比较器产生反馈信号。 反馈信号可以触发各种反馈机制来提醒用户表面是不可导航的。 可能的反馈机制包括在显示屏幕上的警告消息,光学导航设备上的照明灯或可听见的声音。
    • 6. 发明申请
    • Tilt-based pointing for hand-held devices
    • 手持设备的倾斜指向
    • US20040239626A1
    • 2004-12-02
    • US10887613
    • 2004-07-08
    • Gritsko Perez Noguera
    • G09G005/08
    • G06F1/1684G06F1/1626G06F2200/1637
    • Systems and methods of pointing in hand-held devices are described. In accordance with this scheme, a user may control the position where a pointer is displayed on a display screen simply by changing the orientation of the hand-held device relative to a currently preferred device orientation, which is tracked automatically. In addition, unintentional device orientation changes, such as periodic device orientation changes that might be caused by carrying the hand-held device while walking or driving, are filtered out dynamically. In this way, the pointer may be positioned accurately and reliably at any one of a plurality of pointer screen locations based upon changes in device orientation under a wide variety of different usage conditions.
    • 描述指向手持装置的系统和方法。 根据该方案,用户可以简单地通过相对于自动跟踪的当前优选的设备方向改变手持设备的方向来控制指示器在显示屏幕上的显示位置。 另外,无意中的设备方向改变,例如在行走或驾驶时携带手持设备可能导致的周期性设备方向改变被动态地过滤掉。 以这种方式,可以基于在各种各样的不同使用条件下的设备取向的变化,指针可以准确可靠地定位在多个指针屏幕位置中的任一个处。
    • 8. 发明申请
    • Directrometer
    • 测微仪
    • US20040217943A1
    • 2004-11-04
    • US10838670
    • 2004-05-03
    • Davis Lew Kim
    • G09G005/00G09G005/08
    • G05G9/04737Y10T74/20159Y10T74/20201
    • The purpose of this invention is to provide the complete set of spatial (translational) and axial (rotational) movement for a joystick due to the increasing demand of three-dimensional applications. Three degrees of freedom are provided for spatial movement which includes forward, backward, left, right, upward, and downward, plus an additional three degrees of freedom for axial movement which includes clockwise yaw, counterclockwise yaw, clockwise pitch, counterclockwise pitch, clockwise roll, and counterclockwise roll, for a total of six (6) degrees of freedom. The structure of the joystick that is required in order to demonstrate all six degrees of freedom is explained in the writing and sketches contained herein and is a testament to the novelty and unobviousness of this invention.
    • 本发明的目的是为了提供用于操纵杆的完整的空间(平移)和轴向(旋转)运动,这是由于三维应用的需求的增加。 为空间运动提供三个自由度,包括向前,向后,向左,向右,向上和向下,以及另外三个轴向运动的自由度,包括顺时针偏转,逆时针偏航,顺时针螺旋,逆时针俯仰,顺时针滚动 ,逆时针旋转,共六(6)度。 为了展示所有六个自由度所需要的操纵杆的结构在本文包含的书写和草图中被解释,并且证明了本发明的新颖性和非显而易见性。
    • 9. 发明申请
    • Operating device for a computer
    • 电脑操作装置
    • US20040212591A1
    • 2004-10-28
    • US10706079
    • 2003-11-13
    • TENSOR B.V.
    • Christiaan Johannes Snijders
    • G09G005/08
    • G06F3/03543
    • Operating device such as a mouse for operating a computer or the like. This device consists of a flat bearing surface on which a bulbous part has been arranged. This bulbous part consists of three (curved) surfaces, a surface for the palm of the hand for supporting the metacarpus/carpus, a central surface for supporting the proximal phalanges of the fingers and a distal surface for supporting the medial and distal phalanges. According to the present invention, the distal surface is made at an angle of approximately 75null with respect to the bearing surface. As a result of this angle there is optimum support for the fingers over the entire contour and it is possible to prevent RSI-like phenomena by preventing lifting movements of the fingers, which in the long term give rise to RSI-like phenomena.
    • 诸如用于操作计算机的鼠标等操作装置。 该装置由平坦的支承表面组成,其上布置有球状部分。 这种球形部分由三个(弯曲)表面组成,用于支撑掌骨/腕骨的手掌的表面,用于支撑手指的近端指骨的中心表面和用于支撑内侧和远端指骨的远端表面。 根据本发明,远端表面相对于支承表面形成大约75°的角度。 作为该角度的结果,手指在整个轮廓上具有最佳支撑,并且可以通过防止长期引起RSI样现象的手指的提升运动来防止RSI样现象。
    • 10. 发明申请
    • Rechargeable cordless input and pointing device
    • 充电式无绳输入和定位装置
    • US20040196262A1
    • 2004-10-07
    • US10407402
    • 2003-04-04
    • Alexander I. Poltorak
    • G09G005/08
    • G06F3/0395G06F3/033G06F3/03543
    • A wireless pointing device, such as a computer mouse, employs self-generated electric energy to power itself and to recharge its internal energy cell. The self-generated power may come from a flywheel coupled to a generator, from a photovoltaic cell, from a secondary coil inductively coupled to an alternating current-powered primary coil in a mouse pad, or from another source. The mouse can also include a movement detector for indicating when the mouse is in use. When the mouse is not in use for a predefined time period, the mouse turns itself off, or enters a low power consumption state, to conserve the energy stored in its internal energy cell.
    • 诸如计算机鼠标的无线指示设备使用自发电能为自身供电并为其内部能量单元充电。 自发电源可以来自耦合到发电机的飞轮,来自光伏电池,从感应耦合到鼠标垫中的交流电源初级线圈的次级线圈或来自另一个源的飞轮。 鼠标还可以包括用于指示鼠标何时使用的运动检测器。 当鼠标在预定义的时间段内不使用时,鼠标自身关闭或进入低功耗状态,以节省存储在其内部能量单元中的能量。