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    • 1. 发明申请
    • DUAL MODE TRANSCEIVER
    • 双模收发器
    • US20120171968A1
    • 2012-07-05
    • US13342898
    • 2012-01-03
    • Darcy PoulinPeter Gammel
    • Darcy PoulinPeter Gammel
    • H04B1/44
    • H04B1/44H04B1/006H04L5/143H04L5/1469H04L27/0002H04L27/0008
    • A circuit is disclosed with an external coupling port for coupling to an external antenna, for example. The circuit has an FDD receive path including a narrowband passband filter. The circuit has a TDD receive path bypassing the narrowband passband filter but relying on a same amplifier. The circuit also has an FDD transmit path including a narrowband passband filter. The circuit has a TDD transmit path bypassing the narrowband passband filter of the FDD transmit path but relying on a same transmit amplifier. A switching configuration allows the circuit to operate in TDD mode, alternating between the TDD receive path and the TDD transmit path and in the FDD mode wherein the FDD transmit and receive paths are simultaneously coupled to the external coupling port.
    • 公开了一种用于耦合到外部天线的外部耦合端口的电路。 电路具有包括窄带通带滤波器的FDD接收路径。 电路具有绕过窄带通带滤波器但依赖于相同放大器的TDD接收路径。 电路还具有包括窄带通带滤波器的FDD发送路径。 该电路具有绕过FDD发射路径的窄带通带滤波器但依赖于相同发射放大器的TDD发射路径。 切换配置允许电路在TDD模式下操作,在TDD接收路径和TDD发送路径之间交替,并且在FDD模式中,其中FDD发送和接收路径同时耦合到外部耦合端口。
    • 2. 发明授权
    • Dual mode transceiver
    • 双模收发器
    • US08406159B2
    • 2013-03-26
    • US13342898
    • 2012-01-03
    • Darcy PoulinPeter Gammel
    • Darcy PoulinPeter Gammel
    • H04J3/00
    • H04B1/44H04B1/006H04L5/143H04L5/1469H04L27/0002H04L27/0008
    • A circuit is disclosed with an external coupling port for coupling to an external antenna, for example. The circuit has an FDD receive path including a narrowband passband filter. The circuit has a TDD receive path bypassing the narrowband passband filter but relying on a same amplifier. The circuit also has an FDD transmit path including a narrowband passband filter. The circuit has a TDD transmit path bypassing the narrowband passband filter of the FDD transmit path but relying on a same transmit amplifier. A switching configuration allows the circuit to operate in TDD mode, alternating between the TDD receive path and the TDD transmit path and in the FDD mode wherein the FDD transmit and receive paths are simultaneously coupled to the external coupling port.
    • 公开了一种用于耦合到外部天线的外部耦合端口的电路。 电路具有包括窄带通带滤波器的FDD接收路径。 电路具有绕过窄带通带滤波器但依赖于相同放大器的TDD接收路径。 电路还具有包括窄带通带滤波器的FDD发送路径。 该电路具有绕过FDD发射路径的窄带通带滤波器但依赖于相同发射放大器的TDD发射路径。 切换配置允许电路在TDD模式下操作,在TDD接收路径和TDD发送路径之间交替,并且在FDD模式中,其中FDD发送和接收路径同时耦合到外部耦合端口。
    • 3. 发明授权
    • Dual mode transceiver
    • 双模收发器
    • US08089906B2
    • 2012-01-03
    • US12367073
    • 2009-02-06
    • Darcy PoulinPeter Gammel
    • Darcy PoulinPeter Gammel
    • H04J3/00
    • H04B1/44H04B1/006H04L5/143H04L5/1469H04L27/0002H04L27/0008
    • A circuit is disclosed with an external coupling port for coupling to an external antenna, for example. The circuit has an FDD receive path including a narrowband passband filter. The circuit has a TDD receive path bypassing the narrowband passband filter but relying on a same amplifier. The circuit also has an FDD transmit path including a narrowband passband filter. The circuit has a TDD transmit path bypassing the narrowband passband filter of the FDD transmit path but relying on a same transmit amplifier. A switching configuration allows the circuit to operate in TDD mode, alternating between the TDD receive path and the TDD transmit path and in the FDD mode wherein the FDD transmit and receive paths are simultaneously coupled to the external coupling port.
    • 公开了一种用于耦合到外部天线的外部耦合端口的电路。 电路具有包括窄带通带滤波器的FDD接收路径。 电路具有绕过窄带通带滤波器但依赖于相同放大器的TDD接收路径。 电路还具有包括窄带通带滤波器的FDD发送路径。 该电路具有绕过FDD发射路径的窄带通带滤波器但依赖于相同发射放大器的TDD发射路径。 切换配置允许电路在TDD模式下操作,在TDD接收路径和TDD发送路径之间交替,并且在FDD模式中,其中FDD发送和接收路径同时耦合到外部耦合端口。
    • 7. 发明授权
    • Jurisdiction based parameter setting for wireless transceivers
    • 无线收发器的基于管辖的参数设置
    • US08675680B2
    • 2014-03-18
    • US12153932
    • 2008-05-28
    • Alan TrainorDarcy Poulin
    • Alan TrainorDarcy Poulin
    • H04W24/00
    • H04W4/021H04W4/02H04W28/18
    • Low cost semiconductor manufacturing techniques have provided consumers with a wide range of electronic devices supporting communications according to multiple standards. These electronic devices will be deployed within many operational jurisdictions, particularly with roaming features, such as Japan, Europe, Asia-Pacific, South America and North America. However, operational compliance requirements can vary substantially with these different jurisdictions. Current electronic devices are designed, manufactured, calibrated and operated according to a specification providing compliance with broad range of operational jurisdictions despite the performance limitations this applies in many of the operational jurisdictions. Accordingly, there is provided a method of dynamically configuring the electronic device based upon a geographically based determination of the operational jurisdiction from global navigation systems data received by the electronic device. Based upon the determined operational jurisdiction, the operational parameters of a device's communication interfaces are adjusted for improving performance and efficiency of the device within these jurisdictions.
    • 低成本的半导体制造技术为消费者提供了根据多种标准支持通信的各种电子设备。 这些电子设备将部署在许多操作管辖区域,特别是漫游功能,如日本,欧洲,亚太,南美和北美地区。 然而,业务合规性要求可能与这些不同的司法管辖区有很大差异。 目前的电子设备是根据规范设计,制造,校准和操作的,这些规范提供了广泛的操作管辖范围的遵从性,尽管在许多操作管辖范围内都适用了性能限制。 因此,提供了一种基于从电子设备接收的全球导航系统数据基于地理位置确定操作管辖权来动态配置电子设备的方法。 根据确定的操作管辖权,调整设备通信接口的操作参数,以提高这些管辖范围内的设备的性能和效率。
    • 8. 发明申请
    • Jurisdiction based parameter setting for wireless transceivers
    • 无线收发器的基于管辖的参数设置
    • US20090023434A1
    • 2009-01-22
    • US12153932
    • 2008-05-28
    • Alan TrainorDarcy Poulin
    • Alan TrainorDarcy Poulin
    • H04M3/00
    • H04W4/021H04W4/02H04W28/18
    • Low cost semiconductor manufacturing techniques have provided consumers with a wide range of electronic devices supporting communications according to multiple standards. These electronic devices will be deployed within many operational jurisdictions, particularly with roaming features, such as Japan, Europe, Asia-Pacific, South America and North America. However, operational compliance requirements can vary substantially with these different jurisdictions. Current electronic devices are designed, manufactured, calibrated and operated according to a specification providing compliance with broad range of operational jurisdictions despite the performance limitations this applies in many of the operational jurisdictions. Accordingly, there is provided a method of dynamically configuring the electronic device based upon a geographically based determination of the operational jurisdiction from global navigation systems data received by the electronic device. Based upon the determined operational jurisdiction, the operational parameters of a device's communication interfaces are adjusted for improving performance and efficiency of the device within these jurisdictions.
    • 低成本的半导体制造技术为消费者提供了根据多种标准支持通信的各种电子设备。 这些电子设备将部署在许多操作管辖区域,特别是漫游功能,如日本,欧洲,亚太,南美和北美地区。 然而,业务合规性要求可能与这些不同的司法管辖区有很大差异。 目前的电子设备是根据规范设计,制造,校准和操作的,这些规范提供了广泛的操作管辖范围的遵从性,尽管在许多操作管辖范围内都适用了性能限制。 因此,提供了一种基于从电子设备接收的全球导航系统数据基于地理位置确定操作管辖权来动态配置电子设备的方法。 根据确定的操作管辖权,调整设备通信接口的操作参数,以提高这些管辖范围内的设备的性能和效率。