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    • 5. 发明申请
    • IMPROVED TELEVISION WALL MOUNTS
    • 改进的电视墙壁安装
    • WO2017065817A1
    • 2017-04-20
    • PCT/US2016/012161
    • 2016-01-05
    • SUMAR INTERNATIONAL INC.CABRERA, Maria
    • CABRERA, Maria
    • F16M13/02F16M11/00A47B96/06
    • F16M13/02F16M11/10F16M11/16
    • A television mount system. Two removably attached wall mounts are mounted to wall studs. Two attachment brackets are removably attached to the wall mounts and may be slid along the wall mounts for precise horizontal positioning. The two brackets are each connected to the the television set. The wall mounts may be positioned as appropriate to properly connect to the wall studs and properly connect to the television set. In a preferred embodiment, the tilt angle of the television set may be adjusted as desired. In a preferred embodiment, the type of tilt may be adjusted as desired (fixed tilt, articulating tilt, full motion tilt).
    • 电视机安装系统。 两个可拆卸地连接的墙壁安装座被安装到墙螺栓。 两个连接支架可拆卸地连接到墙壁支架,并可以沿着墙壁支架滑动,以实现精确的水平定位。 两个支架分别连接到电视机。 墙壁支架可以适当地定位以适当地连接到墙壁螺栓并且适当地连接到电视机。 在优选实施例中,电视机的倾斜角度可以根据需要进行调整。 在优选实施例中,倾斜的类型可以根据需要进行调节(固定倾斜,铰接倾斜,全动作倾斜)。

    • 6. 发明申请
    • HIGH DATA RATE MILLIMETER WAVE RADIO
    • 高数据速率毫米波无线电
    • WO2012074551A1
    • 2012-06-07
    • PCT/US2011/001941
    • 2011-11-29
    • TREX ENTERPRISES CORPORATION
    • LOVBERG, John, A.CHEDESTER, Richard
    • H04B1/38
    • H04L27/2039H04L27/2332
    • A high data rate millimeter wave radio adapted to receive an binary input data at an input data rate in excess of 3.5 Gbps and to transmit at a transmit data rate in excess of 3.5 Gbps utilizing encoded three-bit data symbols on a millimeter carrier wave at a millimeter wave nominal carrier frequency, defining a carrier wavelength and period, in excess of 70 GHz with differential phase-shift keying utilizing eight separate phase shifts. Preferred embodiments of the invention can support many of the high data rate standards including the following group of protocols or standards: SONET OC-96 (4.976 Gbps); 4xGig-E (5.00 Gbps); 5xGig-E (6.25 Gbps); OBSAI RP3-01 (6.144 Gbps); 6xGig-E(7.50 Gbps); Fibre Channel 8GFC (8.5 Gbps); SONET OC-192 (9.952 Gbps); Fibre Channel lOGFC Serial (10.52 Gbps) and 10 GigaBit Ethernet.
    • 适用于以超过3.5Gbps的输入数据速率接收二进制输入数据的高数据速率毫米波无线电装置,并以毫米波载波上的编码三比特数据符号以超过3.5Gbps的发送数据速率进行发送 毫米波标称载波频率,定义载波波长和周期超过70 GHz,差分相移键控利用八个单独的相移。 本发明的优选实施例可以支持许多高数据速率标准,包括以下组协议或标准:SONET OC-96(4.976Gbps); 4xGig-E(5.00 Gbps); 5xGig-E(6.25 Gbps); OBSAI RP3-01(6.144 Gbps); 6xGig-E(7.50 Gbps); 光纤通道8GFC(8.5 Gbps); SONET OC-192(9.952 Gbps); 光纤通道LOGFC串行(10.52 Gbps)和10千兆位以太网。
    • 7. 发明申请
    • AUTOMATED WHEELCHAIR
    • 自动车轮
    • WO2008131012A1
    • 2008-10-30
    • PCT/US2008/060494
    • 2008-04-16
    • FRANKIE, Thomas, T.
    • FRANKIE, Thomas, T.
    • B62B5/02
    • A61G5/04A61G5/061A61G5/065A61G5/068A61G2203/14
    • An automated wheelchair for moving over a contact surface The automated wheelchair includes an operator chair for seating the wheelchair operator, a control computer, an operator input device for transmitting operator inputs to the control computer, and two wheelchair wheels for propelling the wheelchair Each wheelchair wheel includes extendable and retractable spokes The extension and retraction of each spoke is controlled by a motor At the ends of each spoke are contact sensor devices The control computer is programmed to receive inputs transmitted from the contact sensor devices to generate a terrain profile The control computer generates and sends control signals to each spoke motor in response to the operator inputs and in response to the terrain profile generated by the contact sensor devices In a preferred embodiment the contact sensor devices are pressure sensor devices
    • 一种用于在接触表面上移动的自动轮椅自动轮椅包括用于座椅轮椅操作员的操作椅,控制计算机,用于将操作者输入传送到控制计算机的操作者输入装置,以及用于推动轮椅的两个轮椅轮椅。每个轮椅轮 包括可伸缩辐条每个辐条的延伸和缩回由电机控制在每个辐条的末端是接触传感器设备控制计算机被编程为接收从接触传感器设备传输的输入以产生地形剖面控制计算机产生 并且响应于操作者输入并且响应于由接触传感器装置产生的地形轮廓而将控制信号发送到每个轮辐马达。在优选实施例中,接触传感器装置是压力传感器装置
    • 8. 发明申请
    • OPTICAL SWITCH MODULE
    • 光开关模块
    • WO2008118451A1
    • 2008-10-02
    • PCT/US2008/003932
    • 2008-03-25
    • TREX ENTERPRISES CORP.
    • KOREVAAR, EricTAKETOMI, YoshinoaBARRETT, ToddTIGLE, HusLAST, MatthewDIRUSCIO, LarryDAVIS, Edward
    • G02B6/26
    • G02B6/359G02B6/3512G02B6/3542G02B6/3556G02B6/356G02B6/357G02B6/3582G02B6/3584
    • The present invention provides an all optical cross connect switch utilizing two-axis MEMS mirrors for cross connecting optical fibers in a first set of optical fibers to optical fibers in a second set of optical fibers. The optical fibers in the first and second sets of optical fibers are precisely positioned in a first fiber-microlens positioning array to define a first set of parallel collimated cross-connect communication beam paths, with each collimated cross-connect communication beam path connecting an optical fiber in the first set of optical fibers with a MEMS mirror in a first MEMS mirror array. Alignment beams are added to and aligned co- axially with each of the first and second sets of parallel collimated cross-connect communication beams. Two beam direction sensor units are positioned to detect each alignment beam in the first and second sets of alignment beams transmitted through the dichroic mirror and a MEMS control system controls the positions of the MEMS mirrors to connect optical fibers in the first set of optical fibers to any of the optical fibers in the second set of optical fibers.
    • 本发明提供了一种全光交叉连接开关,其利用两轴MEMS镜将第一组光纤中的光纤与第二组光纤中的光纤交叉连接。 第一和第二组光纤中的光纤被精确地定位在第一光纤微透镜定位阵列中,以限定第一组平行准直交叉连接通信光束路径,每个准直交叉连接通信光束路径连接光学 第一组光纤中的光纤具有在第一MEMS反射镜阵列中的MEMS反射镜。 对准梁被添加到并联对准的第一和第二组平行准直交叉连接通信波束中的每一个。 定位两个光束方向传感器单元以检测透过分色镜的第一组和第二组对准光束中的每个对准光束,并且MEMS控制系统控制MEMS反射镜的位置,以将第一组光纤中的光纤连接到 第二组光纤中的任何光纤。