首页> 外国专利> MULTI-BAND OUTPUT IMPEDANCE MATCHING CIRCUIT FORMED BY PASSIVE DEVICES, AMPLIFIER HAVING MULTI-BAND INPUT IMPEDANCE MATCHING CIRCUIT FORMED BY PASSIVE DEVICES AND AMPLIFIER HAVING MULTI-BAND INPUT-OUTPUT IMPEDANCE MATCHING CIRCUIT FORMED BY PASSIVE DEVICES

MULTI-BAND OUTPUT IMPEDANCE MATCHING CIRCUIT FORMED BY PASSIVE DEVICES, AMPLIFIER HAVING MULTI-BAND INPUT IMPEDANCE MATCHING CIRCUIT FORMED BY PASSIVE DEVICES AND AMPLIFIER HAVING MULTI-BAND INPUT-OUTPUT IMPEDANCE MATCHING CIRCUIT FORMED BY PASSIVE DEVICES

机译:由无源器件构成的多带输出阻抗匹配电路,放大器由无源器件构成的多带输入阻抗匹配电路,放大器具有由无源器件构成的多带输入阻抗匹配电路

摘要

A multi band output impedance matching circuit composed of a passive element, an amplifier having a multi band input impedance matching circuit composed of the passive element, and the amplifier having a multi band input and output impedance matching circuit composed of the passive element are provided to suppress current consumption by adopting the passive element. A first inductor(112) and a second inductor(114) are connected between a wireless signal input terminal and a driving power terminal to supply a predetermined driving power in series. A first capacitor(111) is connected between a coupling terminal of the first and second inductors and the wireless signal output terminal in series. An input impedance matching circuit(110) matches the impedance with the wireless signal output terminal and sets up a first output frequency band by resonating according to the capacitance of the first capacitor. The input impedance matching circuit sets up a second output frequency band higher than the first output frequency band by resonating according to a parallel combination of the capacitance of the first capacitor and the combined inductance of the first and second inductors.
机译:提供了由无源元件构成的多频带输出阻抗匹配电路,具有由无源元件构成的多频带输入阻抗匹配电路的放大器,以及具有由无源元件构成的多频带输入输出阻抗匹配电路的放大器。通过采用无源元件来抑制电流消耗。第一电感器(112)和第二电感器(114)连接在无线信号输入端子和驱动功率端子之间,以串联地供应预定的驱动功率。第一电容器(111)串联连接在第一和第二电感器的耦合端子与无线信号输出端子之间。输入阻抗匹配电路(110)使阻抗与无线信号输出端子匹配,并通过根据第一电容器的电容进行谐振来建立第一输出频带。输入阻抗匹配电路通过根据第一电容器的电容与第一电感器和第二电感器的组合电感的并联组合而谐振来设置高于第一输出频带的第二输出频带。

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