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    • 7. 发明授权
    • Method and apparatus for adaptive impedance matching
    • 自适应阻抗匹配的方法和装置
    • US08558633B2
    • 2013-10-15
    • US13425626
    • 2012-03-21
    • William E. McKinzie, III
    • William E. McKinzie, III
    • H03H7/38G01R27/00
    • H03H7/40H01Q1/50H03H7/38H03H11/30H04B1/44H04L25/0278H04W52/18
    • A system that incorporates teachings of the present disclosure may include, for example, an apparatus having an RF matching network including one or more variable reactive elements, where the RF matching network has a first port coupled to a transceiver and second port coupled to an antenna. The RF matching network can modify signal power transferred between the first port and the second port according to one or more bias signals applied to the one or more variable reactive elements to vary a variable impedance of the RF matching network. The one or more variable reactive elements are coupled to a circuit that maps one or more control signals to the one or more bias signals, and wherein the one or more control signals are generated by a controller according to a mode of operation of a communication device. Additional embodiments are disclosed.
    • 结合本公开的教导的系统可以包括例如具有包括一个或多个可变无功元件的RF匹配网络的装置,其中RF匹配网络具有耦合到收发器的第一端口和耦合到天线的第二端口 。 RF匹配网络可以根据施加到一个或多个可变无功元件的一个或多个偏置信号来修改在第一端口和第二端口之间传输的信号功率,以改变RF匹配网络的可变阻抗。 一个或多个可变无功元件耦合到将一个或多个控制信号映射到一个或多个偏置信号的电路,并且其中一个或多个控制信号由控制器根据通信设备的操作模式生成 。 公开了另外的实施例。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR ADAPTIVE IMPEDANCE MATCHING
    • 自适应阻抗匹配的方法和装置
    • US20100164639A1
    • 2010-07-01
    • US12722156
    • 2010-03-11
    • William E. McKinzie, III
    • William E. McKinzie, III
    • H03H7/38
    • H03H7/40H01Q1/50H03H7/38H03H11/30H04B1/44H04L25/0278H04W52/18
    • A system that incorporates teachings of the present disclosure may include, for example, an adaptive impedance matching network having an RF matching network coupled to at least one RF input port and at least one RF output port and comprising one or more controllable variable reactive elements. The RF matching network can be adapted to reduce a level of reflected power transferred from said at least one input port by varying signals applied to said controllable variable reactive elements. The one or more controllable variable reactive elements can be coupled to a circuit adapted to map one or more control signals that are output from a controller to a signal range that is compatible with said one or more controllable variable reactive elements. Additional embodiments are disclosed.
    • 结合本公开的教导的系统可以包括例如具有耦合到至少一个RF输入端口和至少一个RF输出端口并且包括一个或多个可控可变无功元件的RF匹配网络的自适应阻抗匹配网络。 RF匹配网络可以适于通过改变施加到所述可控变量无功元件的信号来减少从所述至少一个输入端口传送的反射功率的电平。 一个或多个可控可变无功元件可以耦合到适于将从控制器输出的一个或多个控制信号映射到与所述一个或多个可控变量无功元件兼容的信号范围的电路。 公开了另外的实施例。
    • 10. 发明申请
    • Adaptive impedance matching module
    • 自适应阻抗匹配模块
    • US20080122553A1
    • 2008-05-29
    • US11594310
    • 2006-11-08
    • William E. McKinzie
    • William E. McKinzie
    • H03H7/40
    • H03H7/40
    • An embodiment of the present invention provides an apparatus, comprising an RF input port, an RF output port connected to the RF input port via a multichip adaptive impedance matching module (AIMM), and the multichip AIMM comprising one or more voltage or current controlled variable reactive elements, wherein the multichip AIMM is adapted to maximize RF power transferred from the at least one RF input port to the at least one RF output port by varying the bias voltage or bias current to the voltage or current controlled variable reactive elements to maximize the RF voltage at the at least one RF output port.
    • 本发明的实施例提供了一种装置,包括RF输入端口,经由多芯片自适应阻抗匹配模块(AIMM)连接到RF输入端口的RF输出端口,以及多芯片AIMM,其包括一个或多个电压或电流控制变量 其中所述多芯片AIMM适于通过将所述偏置电压或偏置电流改变为所述电压或电流控制的可变电抗元件来最大化使从所述至少一个RF输入端口传输到所述至少一个RF输出端口的RF功率最大化 至少一个RF输出端口处的RF电压。