Broadband high power amplifiers for instrumentation

F. Sechi, M. Bujatti
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Abstract

Microwave power amplifiers designed for instrumentation are characterized by a range of properties which sets them apart from other types of applications. Broad bandwidths are generally desired, and so are low noise (both in amplitude and phase), high stability, and low spurious responses. High reliability is a plus for most applications, but in this case ease of repair is also quite significant and so is the ability to maintain some working capability in case of failure (the so-called graceful degradation). When a measurement is performed by transmitting and receiving a signal, the ability to turn off and on the amplifier at a fast rate may dramatically improve the instrument sensitivity and fast pulsing can be a very desirable option. All of these characteristics are much more favorable in Solid State Power Amplifiers (SSPAs) than in traveling wave tubes (TWTs) and the former are generally the preferred choice unless an unusually high power output is required.
用于仪表的宽带高功率放大器
为仪器仪表设计的微波功率放大器具有一系列特性,这些特性使它们与其他类型的应用区别开来。通常需要宽频带、低噪声(幅度和相位)、高稳定性和低杂散响应。对于大多数应用程序来说,高可靠性是一个加分项,但在这种情况下,易于修复也非常重要,在发生故障时保持一些工作能力(所谓的优雅退化)的能力也是如此。当通过发送和接收信号进行测量时,快速关闭和打开放大器的能力可以显着提高仪器灵敏度,快速脉冲可以是一个非常理想的选择。所有这些特性在固态功率放大器(sspa)中比在行波管(twt)中更有利,除非需要异常高的功率输出,否则前者通常是首选。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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