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    • 5. 发明申请
    • COMPACT RADIO FREQUENCY LENSES
    • 紧凑无线电频率镜头
    • US20150263433A1
    • 2015-09-17
    • US14659445
    • 2015-03-16
    • John R. SANFORD
    • John R. SANFORD
    • H01Q15/08H01Q3/46
    • H01Q3/24H01Q1/12H01Q1/1228H01Q3/36H01Q3/46H01Q15/08H01Q21/0031H01Q25/008H04B7/0617H04B7/0639H04B7/0695H04W16/28H04W84/12H04W88/08
    • Compact lacunated lenses having a lens body with a plurality of input ports, (which may correspond to a predetermined steering angle), a plurality of output ports, and a plurality of holes/openings in the lens body, wherein the openings are arranged through the lens body so that an electromagnetic signal entering the lens body from any one of the input ports will exit from each of the output ports at a time delay corresponding to the predetermined steering angle of the input port from which the electromagnetic signal entered the lens body. The lenses may be used for RF signals between 2 GHz and 30 GHz for beamforming, and may have a diameter of less than 10 cm. The lenses may also be used for amplification. Methods of using these lenses and phase array antennas including these lenses are also described.
    • 具有多个输入端口(其可以对应于预定转向角)的透镜主体,多个输出端口和透镜体中的多个孔/开口的紧凑型清晰透镜,其中,开口布置成穿过 使得从任何一个输入端口进入透镜体的电磁信号将以对应于电磁信号进入透镜体的输入端口的预定转向角的时间延迟从每个输出端口退出。 透镜可用于2 GHz至30 GHz之间的射频信号用于波束成形,并且可能具有小于10厘米的直径。 透镜也可用于放大。 还描述了使用这些透镜的方法和包括这些透镜的相位阵列天线。
    • 6. 发明授权
    • Antenna system and method
    • 天线系统及方法
    • US08902120B2
    • 2014-12-02
    • US13791163
    • 2013-03-08
    • John R. Sanford
    • John R. Sanford
    • H01Q1/42H01Q13/02H01Q9/04H01Q19/00H01Q21/06H01Q19/10
    • H01Q1/246H01Q1/2291H01Q1/36H01Q1/42H01Q1/421H01Q1/48H01Q9/0407H01Q13/02H01Q19/00H01Q19/10H01Q19/106H01Q21/06Y10T29/49016
    • A radiator coupled to an antenna patch disposed along a first end of the radiator, said patch disposed on an insulator. A ground plane is connected to the insulator and a radome is disposed opposite a second end of the radiator. The radome may have a region presenting a convex surface towards the radiator, and the radome has a second region presenting a concave surface towards the radiator. The first end of the conical radiator is the apex of the cone. A ground plane is included and a portion of the ground plane is a planar surface and another portion extends away from the planar portion towards the radome. Also disclosed is a method for forming a radiation pattern by shaping the radome to effectuate a predetermined radiation pattern using localized convex and concave surfaces positioned on the radome at different points in relation to the conical radiator.
    • 耦合到沿着散热器的第一端布置的天线贴片的散热器,所述贴片设置在绝缘体上。 接地平面连接到绝缘体,天线罩与散热器的第二端相对设置。 雷达罩可以具有朝向散热器的凸形表面的区域,并且天线罩具有朝着散热器呈现凹面的第二区域。 锥形散热器的第一端是锥体的顶点。 包括接地平面,并且接地平面的一部分是平面表面,另一部分从平面部分向天线罩延伸。 还公开了一种通过使天线罩成形来形成辐射图案的方法,以使用位于雷达罩上的相对于锥形散热器的不同点处的局部凸和凹表面来实现预定的辐射图。
    • 8. 发明申请
    • MICROWAVE SYSTEM
    • 微波系统
    • US20130208772A1
    • 2013-08-15
    • US13783272
    • 2013-03-02
    • Robert J. PeraJohn R. Sanford
    • Robert J. PeraJohn R. Sanford
    • H02J1/06H01Q15/16H04B1/38H01Q9/04
    • H02J1/06H01Q9/0485H01Q15/16H01Q19/19H04B1/18H04B1/38
    • A microwave system comprising a center fed parabolic reflector; a radio transceiver, said transceiver disposed on a circuit board and coupled to a radiator, said radiator disposed on the circuit board and extending orthogonally from a surface of the circuit board. Embodiments also include directors on the circuit board and a sub-reflector comprising a thin plate disposed on a weather proof cover and said sub-reflector having a substantially concave surface with a focus directed towards the radiator. The circuit board is physically integrated within the feed mechanism of the center fed parabolic reflector and the radio transceiver is configured to provide OSI layer support.
    • 一种微波系统,包括中心馈送的抛物面反射器; 无线电收发器,所述收发器设置在电路板上并且耦合到散热器,所述散热器设置在电路板上并且从电路板的表面正交地延伸。 实施例还包括电路板上的引导器和包括设置在防风雨盖上的薄板的子反射器,并且所述子反射器具有基本上凹入的表面,焦点指向散热器。 电路板物理地集成在中心馈送抛物面反射器的馈送机构内,无线电收发器被配置为提供OSI层支持。
    • 9. 发明申请
    • ANTENNA FEED SYSTEM
    • 天线进料系统
    • US20130199033A1
    • 2013-08-08
    • US13783274
    • 2013-03-02
    • Robert J. PeraJohn R. Sanford
    • Robert J. PeraJohn R. Sanford
    • H05K13/00
    • H01Q19/193H01Q1/2291H01Q9/16H01Q19/191H01Q19/28H04B1/38Y10T29/4913
    • A microwave system comprises an antenna, antenna feed, a radio transceiver, and appropriate cabling among the aforementioned. Cost, performance and reliability improvements are achieved with further integration of these elements and with design improvements in the antenna feed. One improvement is the integration of the radio transceiver with the antenna feed. This improvement has many benefits including the to elimination of RF cables and connectors. Another improvement, is the incorporation of parasitic radiators and sub-reflectors as part to of the antenna feed. The entire antenna, including the feed design is optimized with 3D finite element method (FEM) software and numerical optimization software. Another improvement is the utilization of the digital cable to power the integrated radio transceiver and a center fed parabolic reflector
    • 微波系统包括天线,天线馈电,无线电收发器以及上述之间的适当布线。 通过进一步整合这些元件和天线馈线中的设计改进,可以实现成本,性能和可靠性的提高。 一个改进是无线电收发器与天线馈电的集成。 这种改进具有许多好处,包括消除RF电缆和连接器。 另一个改进是将寄生散热器和副反射器作为天线馈电的一部分。 整个天线,包括馈电设计,采用有限元软件和数值优化软件进行优化。 另一个改进是使用数字电缆为集成的无线电收发器和中心馈送的抛物面反射器供电
    • 10. 发明授权
    • Microwave system
    • 微波系统
    • US08466847B2
    • 2013-06-18
    • US12477998
    • 2009-06-04
    • Robert J. PeraJohn R. Sanford
    • Robert J. PeraJohn R. Sanford
    • H01Q19/12H01Q19/10H04B1/38
    • H02J1/06H01Q9/0485H01Q15/16H01Q19/19H04B1/18H04B1/38
    • A microwave system comprises an antenna, antenna feed, a radio transceiver, and appropriate cabling among the aforementioned. Cost, performance and reliability improvements are achieved with further integration of these elements and with design improvements in the antenna feed. One improvement is the integration of the radio transceiver with the antenna feed. This improvement has many benefits including the elimination of RF cables and connectors. Another improvement is the utilization of the digital cable to power the integrated radio transceiver and a center fed parabolic reflector. One embodiment is disclosed for a radio gateway supporting OSI layers 1-7 supported by an Ethernet cable. Another embodiment is a radio with a client controller suitable for supporting OSI layers 1-3, and supported by a USB cable.
    • 微波系统包括天线,天线馈电,无线电收发器以及上述之间的适当布线。 通过进一步整合这些元件和天线馈线中的设计改进,可以实现成本,性能和可靠性的提高。 一个改进是无线电收发器与天线馈电的集成。 这种改进具有许多优点,包括消除RF电缆和连接器。 另一个改进是使用数字电缆为集成的无线电收发器和中心馈送的抛物面反射器供电。 公开了支持由以太网电缆支持的OSI层1-7的无线电网关的一个实施例。 另一个实施例是具有适于支持OSI层1-3并且由USB电缆支持的客户端控制器的无线电设备。