Frequency Discrimination by Inverse Feedback

G.H. Fritzinger
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引用次数: 4

Abstract

This paper deals with the application of feedback to amplifiers for the sole purpose of obtaining a frequency discrimination in the gain-frequency characteristic of the amplifier. The theory of the feed-back amplifier is given and the general form of the vector envelope μβ representing the over-all propagation factor of the amplifier and feed-back circuit is described for a feed-back amplifier which is to have a predetermined gain-frequency characteristic. A basis of feed-back amplifier design is indicated in which the desired over-all μβ-vector envelope is formed by choosing and synthesizing the propagation factors of the component circuits in the amplifier and feed-back circuits. The analysis of the amplifier and feed-back circuits into component circuits which have either fixed- or variable-frequency propagation factors is indicated. Various common resistance-capacitance circuit configurations useful in feed-back amplifier design are shown and simple graphical means for determining the propagation-factor-vector envelopes for these circuits are illustrated. The allocation of the frequency scale on these vector envelopes is also done by graphical means. Two specific cases in feed-back amplifier design are then illustrated for obtaining respectively a high-pass and low-pass gain-frequency characteristic to resistance-capacitance-coupled amplifiers utilizing only resistive and capacitive elements in the feed-back circuit. The amplifier circuit arrangements, the μβ-vector envelopes, and the gain-frequency characteristics of the feed-back amplifiers are given in these illustrated cases. The analytical proof for the graphical determination of the behavior of the propagation factor for one of the resistance-capacitance circuits illustrated is submitted in the Appendix.
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基于逆反馈的频率识别
本文讨论了反馈在放大器中的应用,其唯一目的是在放大器的增益-频率特性中获得频率判别。给出了反馈放大器的工作原理,并对具有预定增益-频率特性的反馈放大器给出了表示放大器和反馈电路总体传播系数的矢量包络μβ的一般形式。给出了反馈放大器设计的基础,通过选择和综合放大器和反馈电路中各分量电路的传播因子,形成所需的总体μβ矢量包络。将放大器和反馈电路分析为具有固定或可变传播因子的元件电路。在反馈放大器设计中显示了各种常用的电阻-电容电路结构,并说明了用于确定这些电路的传播因子-矢量包络的简单图形方法。在这些矢量包络上的频率标度分配也是通过图形化的方法完成的。然后说明了反馈放大器设计中的两种具体情况,分别利用反馈电路中的电阻和电容元件获得电阻-电容耦合放大器的高通和低通增益-频率特性。文中给出了反馈放大器的电路布置、μβ-矢量包络和增益-频率特性。图中所示的其中一个电阻-电容电路的传播因子行为的图解测定的分析证明在附录中提出。
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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