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Basic considerations and topologies of switched-mode assisted linear power amplifiers

机译:开关模式辅助线性功率放大器的基本注意事项和拓扑

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This paper presents a combined power amplifier system consisting of a linear amplifier unit with a switched-mode (class D) current dumping stage arranged in parallel. With this topology, the fundamental drawback of conventional linear power amplifiers-the high loss-is avoided. Compared to a pure class D (switching) amplifier, the presented system needs no output filter to reduce the switching frequency harmonics. This filter (usually of multistage type) generally deteriorates the transient response of the system and impairs the feedback loop design. Furthermore, the low-frequency distortions of switching amplifiers caused by the interlock delay of their power transistors are avoided with the presented switched-mode assisted linear amplifier system. This can be considered as a master-slave system with a guiding linear amplifier and a supporting class D slave unit. The paper describes the operating principle of the system, analyzes the fundamental relationships for the circuit design, and presents simulation results. Finally, various further topologies of switched-mode assisted linear amplifiers are given.
机译:本文提出了一种组合的功率放大器系统,该系统由线性放大器单元和并联布置的开关模式(D类)电流消耗级组成。利用这种拓扑结构,可以避免传统线性功率放大器的基本缺点-高损耗-。与纯D类(开关)放大器相比,本系统不需要输出滤波器来减少开关频率谐波。该滤波器(通常是多级滤波器)通常会恶化系统的瞬态响应并损害反馈环路的设计。此外,利用所提出的开关模式辅助线性放大器系统,避免了由开关放大器的功率晶体管的互锁延迟引起的开关放大器的低频失真。可以将其视为具有引导线性放大器和支持D类从属单元的主从系统。本文描述了系统的工作原理,分析了电路设计的基本关系,并给出了仿真结果。最后,给出了开关模式辅助线性放大器的各种其他拓扑。

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