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    • 1. 发明申请
    • PORTABLE METROLOGY DEVICE
    • 便携式仪器设备
    • WO2009058452A1
    • 2009-05-07
    • PCT/US2008/072194
    • 2008-08-05
    • IMMERSION CORPORATIONGOMEZ, Daniel, H.STEGER, Ryan
    • GOMEZ, Daniel, H.STEGER, Ryan
    • G01B5/004G01B5/14G01B21/04
    • G01B5/004G01B5/14
    • Methods and systems for a portable metrology device are described. One embodiment of the present invention is an apparatus including a first link, a first probe coupled with the first link by a first coupling operable to move in a first degree of freedom, a second probe coupled with the first link by a second coupling operable to move in a second degree of freedom, a first sensor operable to output a first sensor signal associated with a motion of the first coupling, and a second sensor operable to output a second sensor signal associated with a motion of the second coupling. The embodiment also includes a processor in communication with the first and second sensors and operable to: receive the first sensor signal and the second sensor signal, and determine a distance between the first probe and the second probe based at least in part on the first sensor signal and the second sensor signal.
    • 描述便携式计量装置的方法和系统。 本发明的一个实施例是一种装置,其包括第一连杆,通过可操作以第一自由度移动的第一联接器与第一连杆相耦合的第一探头,通过第二联接器与第一连杆相耦合的第二探头, 以第二自由度移动,第一传感器可操作以输出与第一耦合的运动相关联的第一传感器信号,以及可操作以输出与第二耦合的运动相关联的第二传感器信号的第二传感器。 该实施例还包括与第一和第二传感器通信的处理器,其可操作以:接收第一传感器信号和第二传感器信号,并且至少部分地基于第一传感器确定第一探针和第二探针之间的距离 信号和第二传感器信号。
    • 7. 发明授权
    • FORCE-FEEDBACK INTERFACE DEVICE FOR THE HAND
    • 用于手的强制反馈接口装置
    • EP0981423B1
    • 2008-11-26
    • EP98922224.5
    • 1998-05-12
    • Immersion Corporation
    • KRAMER, James, F.YIM, Mark, H.TREMBLAY, Marc, R.GOMEZ, Daniel, H.
    • G06F3/00B25J13/02B25J9/00A61F5/01
    • G06F3/014A61B34/70A61B34/71A61B34/74A61B34/76A61B2034/741A61B2090/064B25J9/104B25J13/025
    • A man-machine interface is disclosed which provides force information to sensing body parts. The interface is comprised of a force-generating device (106) that produces a force which is transmitted to a force-applying device (102) via force-transmitting means (104). The force-applying device applies the generated force to a sensing body part. A force sensor associated with the force-applying device and located in the force applicator (126) measures the actual force applied to the sensing body part, while angle sensors (136) measure the angles of relevant joint body parts. A force-control unit (108) uses the joint body part position information to determine a desired force value to be applied to the sensing body part. The force-control unit combines the joint body part position information with the force sensor information to calculate the force command which is sent to the force-generating device.
    • 公开了一种人机界面,其向感测身体部位提供力信息。 界面由产生力的力产生装置(106)组成,该力通过力传递装置(104)传递到力施加装置(102)。 施力装置将产生的力施加到感测体部分。 与施力装置相关联且位于力施加器(126)中的力传感器测量施加至感测主体部分的实际力,而角度传感器(136)测量相关关节主体部分的角度。 力控制单元(108)使用关节主体部分位置信息来确定要施加到感测主体部分的期望力值。 力控制单元将关节主体部分位置信息与力传感器信息组合以计算发送至力生成设备的力命令。
    • 9. 发明公开
    • METHOD AND APPARATUS FOR MULTI-TOUCH TACTILE TOUCH PANEL ACTUATOR MECHANISMS
    • 用于多触摸触摸屏面板致动器机构的方法和设备
    • EP2176734A1
    • 2010-04-21
    • EP08747177.7
    • 2008-04-30
    • Immersion Corporation
    • ULLRICH, Christopher, J.RYAN, StegerGOMEZ, Daniel, H.
    • G06F3/041
    • G06F3/016G06F3/0414G06F2203/04104G09B21/004
    • A method and apparatus of actuator mechanisms for a multi-touch tactile touch panel are disclosed. The tactile touch panel includes an electrical insulated layer and a tactile layer. The top surface of the electrical insulated layer is capable of receiving an input from a user. The tactile layer includes a grid or an array of haptic cells. The top surface of the haptic layer is situated adjacent to the bottom surface of the electrical insulated layer, while the bottom surface of the haptic layer is situated adjacent to a display. Each haptic cell further includes at least one piezoelectric material, Micro-Electro-Mechanical Systems ("MEMS") element, thermal fluid pocket, MEMS pump, resonant device, variable porosity membrane, laminar flow modulation, or the like. Each haptic cell is configured to provide a haptic effect independent of other haptic cells in the tactile layer.
    • 公开了一种用于多点触觉触摸面板的致动器机构的方法和设备。 触觉触摸面板包括电绝缘层和触觉层。 电绝缘层的顶面能够接收来自用户的输入。 触觉层包括网格或触觉单元阵列。 触觉层的顶部表面位于电绝缘层的底部表面附近,而触觉层的底部表面位于显示器附近。 每个触觉单元还包括至少一个压电材料,微机电系统('MEMS')元件,热流体袋,MEMS泵,谐振装置,可变孔隙率膜,层流调制等。 每个触觉细胞被配置为独立于触觉层中的其他触觉细胞提供触觉效果。