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    • 51. 发明授权
    • Line of sight wireless endoscopy
    • 视线无线内窥镜检查
    • US09326661B2
    • 2016-05-03
    • US14082265
    • 2013-11-18
    • GYRUS ACMI INC.
    • Shai FinkmanAdi Navve
    • A61B1/04A61B1/00A61B1/05H04B10/114H04B10/116A61B17/00
    • A61B1/00013A61B1/00045A61B1/05A61B50/28A61B90/30A61B90/35A61B2017/00221H04B10/114H04B10/1141H04B10/116
    • Endoscope imaging apparatus, including an endoscope, which is configured to be inserted into a body cavity of a patient and an image sensor configured by means of the endoscope to form an image of the body cavity, and to transmit image signals in response to the image formed. The apparatus further includes an optical transmitter, physically connected to the endoscope, and configured to receive the image signals, to encode the image signals, and to transmit optical radiation comprising the encoded image signals. An optical receiver with a mounting fixture is configured for connection to a light boom, and is also configured to receive the optical radiation, to decode the optical radiation to recover the image signals, and to transmit the recovered image signals. A camera control unit is configured to receive the recovered image signals and in response to display the image on a screen.
    • 内窥镜成像装置,包括构造成插入到患者的体腔内的内窥镜和通过内窥镜构成的图像传感器,以形成体腔的图像,并且响应于图像传送图像信号 形成。 该装置还包括物理地连接到内窥镜并且被配置为接收图像信号,对图像信号进行编码以及发送包括编码图像信号的光学辐射的光学发射器。 具有安装夹具的光学接收器被配置为连接到光臂,并且还被配置为接收光学辐射,以解码光学辐射以恢复图像信号,并且发送恢复的图像信号。 相机控制单元被配置为接收恢复的图像信号并且响应于在屏幕上显示图像。
    • 53. 发明授权
    • LTE/Wi-Fi coexistence
    • LTE / Wi-Fi共存
    • US09258833B2
    • 2016-02-09
    • US13995950
    • 2012-01-02
    • Yigal BitranAriel Yagil
    • Yigal BitranAriel Yagil
    • H04W84/10H04W76/02H04W16/14H04W36/28H04W88/06H04W72/12
    • H04W76/10H04W16/14H04W36/28H04W72/1215H04W76/15H04W88/06
    • A method for communication in a wireless device (24) includes establishing a first connection with a base station (BS-28) of a long-range wireless data network, and a second connection on a Wireless Local Area Network (WLAN). A time interval (96) is selected in the wireless device for communicating over the second connection. In preparation for the selected time interval, the BS is caused to refrain from scheduling data transmission from the wireless device to the BS over the first connection during the time interval, by reporting to the BS prior to the time interval that no data is pending for transmission from the wireless device. The wireless device communicates over the second connection on the WLAN during the time interval.
    • 无线设备(24)中的通信方法包括建立与远程无线数据网络的基站(BS-28)的第一连接以及无线局域网(WLAN)上的第二连接。 在无线设备中选择时间间隔(96)以通过第二连接进行通信。 为了准备所选择的时间间隔,通过在时间间隔之前通过在时间间隔之前向BS报告没有数据待处理的情况,使得BS避免在时间间隔期间通过第一连接调度从无线设备到BS的数据传输到BS 从无线设备传输。 无线设备在时间间隔期间通过WLAN上的第二连接进行通信。
    • 59. 发明授权
    • Pattern projector
    • 图案投影机
    • US09036158B2
    • 2015-05-19
    • US13204719
    • 2011-08-08
    • Benny Pesach
    • Benny Pesach
    • G01B11/24G01S17/74G01B11/25G02B5/18
    • G01B11/254G01S17/74G02B5/1842G02B6/34
    • A pattern projector, comprising a light source, configured to emit a beam of light. A transparent substrate, which has a pair of mutually-opposed planar surfaces is configured to receive and propagate the beam within the substrate by total internal reflection between the planar surfaces. The transparent substrate comprises a diffractive structure that is formed on one of the planar surfaces and is configured to direct at least a part of the beam to propagate out of the substrate in a direction that is angled away from the surface and to create a pattern comprising multiple interleaved light and dark areas.
    • 一种图案投影仪,包括被配置为发射光束的光源。 具有一对相互相对的平坦表面的透明衬底被配置为通过在平坦表面之间的全内反射来接收和传播衬底内的束。 所述透明基板包括衍射结构,所述衍射结构形成在所述平面之一上,并且被配置为引导所述光束的至少一部分沿远离所述表面成角度的方向传播出所述基板,并且形成包括 多个交错的光和暗区域。