会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Electromechanical polarization switch
    • 机电极化开关
    • US08981886B2
    • 2015-03-17
    • US13232280
    • 2011-09-14
    • Josh TorKenneth V. BuerDavid Laidig
    • Josh TorKenneth V. BuerDavid Laidig
    • H01Q19/00H01P1/12H01Q1/24H01P1/161
    • H01P1/122H01P1/161H01Q1/247
    • A solenoid switching method includes energizing a first coil winding to cause a plunger to move in a first direction, and energizing a second coil winding to cause the plunger to move in the opposite direction. Furthermore, the plunger has a first standoff connected to a first end, and a second standoff connected to a second end. The first standoff extends through the first coil winding and the second standoff extends through the second coil winding. The bi-directional solenoid device is configured to physically move a slidable switch between a first position and a second position. Additionally, the plunger stays in position without either of the first coil winding or the second coil winding being energized if the plunger is latched.
    • 螺线管切换方法包括给第一线圈绕组通电以使柱塞在第一方向上移动,并激励第二线圈绕组以使柱塞沿相反方向移动。 此外,柱塞具有连接到第一端的第一支架和连接到第二端的第二支架。 第一间隔延伸穿过第一线圈绕组,第二间隔延伸穿过第二线圈绕组。 双向电磁阀装置构造成在第一位置和第二位置之间物理地移动可滑动的开关。 此外,如果柱塞被闩锁,则柱塞保持就位而没有任何一个第一线圈绕组或第二线圈绕组通电。
    • 2. 发明授权
    • Electromechanical polarization switch
    • 机电极化开关
    • US08599085B2
    • 2013-12-03
    • US12758942
    • 2010-04-13
    • Kenneth V. BuerJosh TorDavid Laidig
    • Kenneth V. BuerJosh TorDavid Laidig
    • H01Q19/00
    • H01Q1/247H01P1/122H01P1/161H01Q25/00
    • In accordance with various aspects of the present invention, a method and system for electro-mechanical polarization switching in an antenna system is presented. The antenna system may comprise an integrated waveguide in a transceiver housing, where the waveguide has at least four channels. In an exemplary embodiment, a sliding switch is incorporated into the waveguide. The sliding switch is configured to switch the polarization of the antenna system by physically realigning the waveguide channels. The sliding switch may be electro-magnetically controlled. Furthermore, the polarization switching may be performed to assist in load balancing for a particular frequency and/or polarization combination.
    • 根据本发明的各个方面,提出了天线系统中机电极化切换的方法和系统。 天线系统可以包括收发器壳体中的集成波导,其中波导具有至少四个通道。 在示例性实施例中,滑动开关并入到波导中。 滑动开关被配置为通过物理地重新对准波导通道来切换天线系统的极化。 滑动开关可以是电磁控制的。 此外,可以执行偏振切换以帮助用于特定频率和/或偏振组合的负载平衡。
    • 3. 发明申请
    • ELECTROMECHANICAL POLARIZATION SWITCH
    • 电动极化开关
    • US20120013425A1
    • 2012-01-19
    • US13232280
    • 2011-09-14
    • Josh TorKenneth V. BuerDavid Laidig
    • Josh TorKenneth V. BuerDavid Laidig
    • H01F7/08
    • H01P1/122H01P1/161H01Q1/247
    • A solenoid switching method includes energizing a first coil winding to cause a plunger to move in a first direction, and energizing a second coil winding to cause the plunger to move in the opposite direction. Furthermore, the plunger has a first standoff connected to a first end, and a second standoff connected to a second end. The first standoff extends through the first coil winding and the second standoff extends through the second coil winding. The bi-directional solenoid device is configured to physically move a slidable switch between a first position and a second position. Additionally, the plunger stays in position without either of the first coil winding or the second coil winding being energized if the plunger is latched.
    • 螺线管切换方法包括给第一线圈绕组通电以使柱塞在第一方向上移动,并激励第二线圈绕组以使柱塞沿相反方向移动。 此外,柱塞具有连接到第一端的第一支架和连接到第二端的第二支架。 第一间隔延伸穿过第一线圈绕组,第二间隔延伸穿过第二线圈绕组。 双向电磁阀装置构造成在第一位置和第二位置之间物理地移动可滑动的开关。 此外,如果柱塞被闩锁,则柱塞保持就位而没有任何一个第一线圈绕组或第二线圈绕组通电。
    • 4. 发明申请
    • ELECTROMECHANICAL POLARIZATION SWITCH
    • 电动极化开关
    • US20110109520A1
    • 2011-05-12
    • US12758942
    • 2010-04-13
    • Kenneth V. BuerJosh TorDavid Laidig
    • Kenneth V. BuerJosh TorDavid Laidig
    • H01Q19/00
    • H01Q1/247H01P1/122H01P1/161H01Q25/00
    • In accordance with various aspects of the present invention, a method and system for electro-mechanical polarization switching in an antenna system is presented. The antenna system may comprise an integrated waveguide in a transceiver housing, where the waveguide has at least four channels. In an exemplary embodiment, a sliding switch is incorporated into the waveguide. The sliding switch is configured to switch the polarization of the antenna system by physically realigning the waveguide channels. The sliding switch may be electro-magnetically controlled. Furthermore, the polarization switching may be performed to assist in load balancing for a particular frequency and/or polarization combination.
    • 根据本发明的各个方面,提出了天线系统中机电极化切换的方法和系统。 天线系统可以包括收发器壳体中的集成波导,其中波导具有至少四个通道。 在示例性实施例中,滑动开关并入到波导中。 滑动开关被配置为通过物理地重新对准波导通道来切换天线系统的极化。 滑动开关可以是电磁控制的。 此外,可以执行偏振切换以帮助用于特定频率和/或偏振组合的负载平衡。
    • 5. 发明授权
    • System and method for thermal management of a transceiver
    • 收发器的热管理系统和方法
    • US08396496B2
    • 2013-03-12
    • US12781611
    • 2010-05-17
    • Kenneth V. BuerJosh TorMichael Noji
    • Kenneth V. BuerJosh TorMichael Noji
    • H04B15/00H04B7/00
    • H04B1/036
    • In accordance with an exemplary embodiment, a system comprising a transceiver, a sensor and a controller is provided. The sensor is coupled to an electrical component in the transceiver and is configured to measure a thermal load on the electrical component. The controller is configured with a predetermined threshold, and is configured to reduce the voltage and current bias point, in the power amplifier, in response to the thermal load measurement being greater than the predetermined threshold. The system provides an inexpensive solution to the problem of shedding thermal load in transceiver systems and can be incorporated into new systems or adapted to legacy systems.
    • 根据示例性实施例,提供了包括收发器,传感器和控制器的系统。 传感器耦合到收发器中的电气部件,并且被配置成测量电气部件上的热负荷。 控制器配置有预定阈值,并且被配置为响应于热负载测量大于预定阈值而减小功率放大器中的电压和电流偏置点。 该系统为收发器系统中散热负荷的问题提供了一种便宜的解决方案,可以并入新系统或适应传统系统。
    • 6. 发明授权
    • System and method for thermal management of a transceiver
    • 收发器的热管理系统和方法
    • US08396428B2
    • 2013-03-12
    • US13109838
    • 2011-05-17
    • Kenneth V. BuerJosh TorMichael Noji
    • Kenneth V. BuerJosh TorMichael Noji
    • H04B17/00H04B7/00
    • H04B1/036H04B1/0466H04B2001/0416
    • In accordance with an exemplary embodiment, a system comprising a transceiver, a sensor and a controller is provided. The sensor is coupled to an electrical component in the transceiver and is configured to measure a thermal load on the electrical component. The controller is configured with a predetermined threshold(s), and is configured to reduce the voltage and/or current bias point, in the power amplifier, in response to the thermal load measurement being greater than the predetermined hot threshold or less than a predetermined cold threshold. The system provides an inexpensive transceiver system solution to the problems of shedding thermal load under high temperatures and undesirable gain increases, loss of stability and power consumption increases at low temperatures, and can be incorporated into new systems or adapted to legacy systems.
    • 根据示例性实施例,提供了包括收发器,传感器和控制器的系统。 传感器耦合到收发器中的电气部件,并且被配置成测量电气部件上的热负荷。 控制器配置有预定阈值,并且被配置为响应于热负载测量大于预定热阈值或小于预定阈值而降低功率放大器中的电压和/或电流偏置点 冷门槛。 该系统为在高温下脱落热负荷的问题提供了便宜的收发器系统解决方案,并且不期望的增益增加,在低温下稳定性和功耗的损失增加,并且可以并入到新系统中或适用于传统系统。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR THERMAL MANAGEMENT OF A TRANSCEIVER
    • 收发器的热管理系统和方法
    • US20110280289A1
    • 2011-11-17
    • US13109838
    • 2011-05-17
    • Kenneth V. BuerJosh TorMichael Noji
    • Kenneth V. BuerJosh TorMichael Noji
    • H04B1/38
    • H04B1/036H04B1/0466H04B2001/0416
    • In accordance with an exemplary embodiment, a system comprising a transceiver, a sensor and a controller is provided. The sensor is coupled to an electrical component in the transceiver and is configured to measure a thermal load on the electrical component. The controller is configured with a predetermined threshold(s), and is configured to reduce the voltage and/or current bias point, in the power amplifier, in response to the thermal load measurement being greater than the predetermined hot threshold or less than a predetermined cold threshold. The system provides an inexpensive transceiver system solution to the problems of shedding thermal load under high temperatures and undesirable gain increases, loss of stability and power consumption increases at low temperatures, and can be incorporated into new systems or adapted to legacy systems.
    • 根据示例性实施例,提供了包括收发器,传感器和控制器的系统。 传感器耦合到收发器中的电气部件,并且被配置成测量电气部件上的热负荷。 控制器配置有预定阈值,并且被配置为响应于热负载测量大于预定热阈值或小于预定阈值而降低功率放大器中的电压和/或电流偏置点 冷门槛。 该系统为在高温下脱落热负荷的问题提供了便宜的收发器系统解决方案,并且不期望的增益增加,在低温下稳定性和功耗的损失增加,并且可以并入到新系统中或适用于传统系统。
    • 8. 发明申请
    • SYSTEM AND METHOD FOR THERMAL MANAGEMENT OF A TRANSCEIVER
    • 收发器的热管理系统和方法
    • US20110280288A1
    • 2011-11-17
    • US12781611
    • 2010-05-17
    • Kenneth V. BuerJosh TorMichael Noji
    • Kenneth V. BuerJosh TorMichael Noji
    • H04B1/38
    • H04B1/036
    • In accordance with an exemplary embodiment, a system comprising a transceiver, a sensor and a controller is provided. The sensor is coupled to an electrical component in the transceiver and is configured to measure a thermal load on the electrical component. The controller is configured with a predetermined threshold, and is configured to reduce the voltage and current bias point, in the power amplifier, in response to the thermal load measurement being greater than the predetermined threshold. The system provides an inexpensive solution to the problem of shedding thermal load in transceiver systems and can be incorporated into new systems or adapted to legacy systems.
    • 根据示例性实施例,提供了包括收发器,传感器和控制器的系统。 传感器耦合到收发器中的电气部件,并且被配置成测量电气部件上的热负荷。 控制器配置有预定阈值,并且被配置为响应于热负载测量大于预定阈值而减小功率放大器中的电压和电流偏置点。 该系统为收发器系统中散热负荷的问题提供了一种便宜的解决方案,可以并入新系统或适应传统系统。
    • 9. 发明授权
    • Integrated waveguide transceiver
    • 集成波导收发器
    • US08433257B2
    • 2013-04-30
    • US13539721
    • 2012-07-02
    • David LaidigKenneth V. BuerFriedhelm Wachter
    • David LaidigKenneth V. BuerFriedhelm Wachter
    • H04B1/38
    • H04B1/18H01P1/161H01Q1/247H01Q13/02H01Q23/00H04B1/40Y10T29/49016
    • A method and system for an integrated transceiver is presented. The integrated transceiver includes a transceiver housing, where a waveguide is formed inside the transceiver housing using a transceiver housing and a sub-floor component. Neither transceiver housing nor the sub-floor component alone is configured to operate as a waveguide. The integrated transceiver can include a transceiver housing that forms a portion of an integrated waveguide assembly, where the transceiver housing alone does not form the waveguide, and another portion of the integrated waveguide assembly couples with the transceiver housing to form the waveguide of the integrated waveguide assembly. Further, the integrated waveguide portion of the sub-floor component can be a flat surface, where the integrated waveguide portion of the transceiver housing comprises substantially all the features of said integrated waveguide.
    • 提出了一种集成收发器的方法和系统。 集成收发器包括收发机壳体,其中使用收发器壳体和副底板部件在收发器壳体内部形成波导。 收发器外壳和副底板组件都不被配置为作为波导进行操作。 集成收发器可以包括形成集成波导组件的一部分的收发机壳体,其中收发器壳体单独不形成波导,并且集成波导组件的另一部分与收发器壳体耦合以形成集成波导的波导 部件。 此外,副底板部件的集成波导部分可以是平坦表面,其中收发机壳体的集成波导部分包括所述集成波导的基本上所有特征。
    • 10. 发明申请
    • Integrated Waveguide Transceiver
    • 集成波导收发器
    • US20120268329A1
    • 2012-10-25
    • US13539721
    • 2012-07-02
    • David LaidigKenneth V. BuerFriedhelm Wachter
    • David LaidigKenneth V. BuerFriedhelm Wachter
    • H01Q15/24H01Q1/24H01P11/00H01P3/12
    • H04B1/18H01P1/161H01Q1/247H01Q13/02H01Q23/00H04B1/40Y10T29/49016
    • A method and system for an integrated transceiver is presented. The integrated transceiver includes a transceiver housing, where a waveguide is formed inside the transceiver housing using a transceiver housing and a sub-floor component. Neither transceiver housing nor the sub-floor component alone is configured to operate as a waveguide. The integrated transceiver can include a transceiver housing that forms a portion of an integrated waveguide assembly, where the transceiver housing alone does not form the waveguide, and another portion of the integrated waveguide assembly couples with the transceiver housing to form the waveguide of the integrated waveguide assembly. Further, the integrated waveguide portion of the sub-floor component can be a flat surface, where the integrated waveguide portion of the transceiver housing comprises substantially all the features of said integrated waveguide.
    • 提出了一种集成收发器的方法和系统。 集成收发器包括收发机壳体,其中使用收发器壳体和副底板部件在收发器壳体内部形成波导。 收发器外壳和副底板组件都不被配置为作为波导进行操作。 集成收发器可以包括形成集成波导组件的一部分的收发机壳体,其中收发器壳体单独不形成波导,并且集成波导组件的另一部分与收发器壳体耦合以形成集成波导的波导 部件。 此外,副底板部件的集成波导部分可以是平坦表面,其中收发机壳体的集成波导部分包括所述集成波导的基本上所有特征。