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Class-F and inverse class-F power amplifier loading networks design based upon transmission zeros

机译:基于传输零点的F类和F类逆功率放大器负载网络设计

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In practical implementations, class-F amplification is achieved based upon the second and/or third harmonic control provided by the output matching network. This paper presents a design method based upon inserting finite-frequency transmission zeros to a lumped-element matching network at the harmonic frequencies of interest. A two-section impedance matching network is transformed to either a class-F2,3 or inverse class-F2,3 loading network. The manipulation of transistor parasitics is described using network transformations. The resultant loading networks serve as fundamental-frequency matching and harmonic tuning simultaneously while reducing the number of components and circuit size. The simulated results show the expected wave shaping and drain impedances. The prototype amplifiers achieve 81% and 79% efficiency for the class-F and inverse class-F, respectively, at 42.32 and 42.37 dBm output powers at 300-MHz fundamental-frequency.
机译:在实际实现中,基于由输出匹配网络提供的第二和/或第三谐波控制来实现类F放大。本文介绍了基于将有限频率传输零插入到感兴趣的谐波频率下的集成元件匹配网络的设计方法。两截面阻抗匹配网络被转换为Class-F2,3或逆等级F2,3加载网络。使用网络变换描述晶体管寄生菌的操纵。由此产生的加载网络同时用作基本频率匹配和谐波调谐,同时减少组件和电路尺寸的数量。模拟结果显示了预期波形和排水阻抗。原型放大器分别为300-MHz基础频率的42.32和42.37 dBm输出功率达到81%和79%的效率。

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