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    • 2. 发明专利
    • BRPI0512483A2
    • 2009-03-10
    • BRPI0512483
    • 2005-06-22
    • VUBIQ INCPETTUS MICHAEL GREGORY
    • PETTUS MICHAEL GREGORY
    • G06K19/067H01Q1/22H01Q1/38H01Q15/00
    • A system and method for encoding and decoding information by use of radio frequency antennas. The system includes one or more interrogator devices and RFID data tags. The RFID data tags include a plurality of antenna elements which are formed on a substrate or directly on an object. The antenna elements are oriented and have dimensions to provide polarization and phase information, whereby this information represents the encoded information on the RFID tag. The interrogator device scans an area and uses radar imaging technology to create an image of a scanned area. The device receives re-radiated RF signals from the antenna elements on the data tags, whereby the data tags are preferably represented on the image. The re-radiated RF signals preferably include polarization and phase information of each antenna element, whereby the information is utilized using radar signal imaging algorithms to decode the information on the RF data tag.
    • 6. 发明申请
    • SYSTEM AND METHOD FOR WIRELESS COMMUNICATION IN A BACKPLANE FABRIC ARCHITECTURE
    • 背板织物无线通信系统与方法
    • WO2013019736A1
    • 2013-02-07
    • PCT/US2012/048864
    • 2012-07-30
    • VUBIQ INCORPORATEDPETTUS, Michael, GregoryBARDEEN, James, Robert Amos
    • PETTUS, Michael, GregoryBARDEEN, James, Robert Amos
    • H04Q1/02H01Q1/12
    • H04L49/351H01Q13/06H01Q21/20H01Q21/205H04B5/0031H04Q1/15
    • A system and method of wirelessly communicating in a backplane mesh network is disclosed. A data message received from a first network device is handled at a first antenna system located in a first network device cabinet via a first network interface. The data message is wirelessly transmitted from a first millimeter wave antenna coupled to the first antenna system over a high speed backplane network to a second network device in a second device cabinet using emitted millimeter wave electromagnetic radiation. The data message is wirelessly received at a second millimeter wave antenna over the high speed backplane network using emitted millimeter wave electromagnetic radiation, wherein the received data message is handled by a second antenna system coupled to the second millimeter wave antenna. The received data message is sent, via a second network interface, from the second antenna system to the second network device.
    • 公开了一种在背板网状网络中进行无线通信的系统和方法。 从第一网络设备接收的数据消息经由第一网络接口在位于第一网络设备机柜中的第一天线系统处理。 数据消息通过高速背板网络从耦合到第一天线系统的第一毫米波天线以无线方式传输到使用发射的毫米波电磁辐射的第二设备机柜中的第二网络设备。 在第二毫米波天线上通过使用发射的毫米波电磁辐射在高速背板网络上无线地接收数据消息,其中所接收的数据消息由耦合到第二毫米波天线的第二天线系统处理。 所接收的数据消息经由第二网络接口从第二天线系统发送到第二网络设备。
    • 7. 发明申请
    • PRECISION WAVEGUIDE INTERFACE
    • 精密波导界面
    • WO2011022556A3
    • 2011-06-09
    • PCT/US2010046028
    • 2010-08-19
    • VUBIQ INCPETTUS MICHAEL GREGORYBARDEEN JAMES ROBERT AMOS
    • PETTUS MICHAEL GREGORYBARDEEN JAMES ROBERT AMOS
    • H01P5/08H01P1/161
    • H01P1/042H01L2224/49175H01P5/107H01Q1/38H01Q9/28Y10T29/49018
    • A waveguide interface and method of manufacturing. The interface includes a support block that has a printed circuit board. A communication device is coupled to the circuit board. A launch transducer is positioned adjacent to and coupled to the communication device. The launch transducer includes one or more transmission lines in a first portion and at least one antenna element in a second portion. The antenna element radiates millimeter wave frequency signals. An interface plate coupled to the support block has a rectangular slot having predetermined dimensions. A waveguide component is coupled to the interface plate and has a waveguide opening. The first portion of the launch transducer is positioned within the slot such that the slot prevents energy from the transmission line from emitting toward the circuit board or the waveguide opening but allows energy to pass from the antenna element into the waveguide opening.
    • 波导界面及制造方法。 该接口包括具有印刷电路板的支撑块。 通信设备耦合到电路板。 发射换能器定位成与通信装置相邻并耦合到通信装置。 发射换能器包括第一部分中的一个或多个传输线和第二部分中的至少一个天线元件。 天线元件辐射毫米波频率信号。 联接到支撑块的界面板具有具有预定尺寸的矩形槽。 波导部件耦合到界面板并具有波导开口。 发射换能器的第一部分位于槽内,使得狭槽防止传输线的能量朝向电路板或波导开口发射,但允许能量从天线元件通过波导开口。