阻抗变换器的概述

2025-04-08 03:46:33
推荐回答(1个)
回答1:

阻抗匹配是无线电技术中常见的一种工作状态,它反映了输入电路与输出电路之间的功率传输关系.当电路实现阻抗匹配时,将获得最大的功率传输.反之,当电路阻抗失配时,不但得不到最大的功率传输,还可能对电路产生损害.
阻抗匹配常见于各级放大电路之间、放大器与负载之间、测量仪器与被测电路之间、天线与接收机或发信机与天线之间,等等.例如,扩音机的输出电路与扬声器之间必须做到阻抗匹配,不匹配时,扩音机的输出功率将不能全部送至扬声器.如果扬声器的阻抗远小于扩音机的输出阻抗,扩音机就处于过载状态,其末级功率放大管很容易损坏.反之,如果扬声器的阻抗高于扩音机的输出阻抗过多,会引起输出电压升高,同样不利于扩音机的工作,声音还会产生失真.因此扩音机电路的输出阻抗与扬声器的阻抗越接近越好.
为使其阻抗匹配,需采用阻抗变换器进行匹配。常用的同轴线阻抗变换器有直线渐变式和阶梯式两种。
使入端阻抗与出端阻抗形成一定关系的二端口网络。1954年J.G.林维尔把负阻抗变换器用于有源滤波器并建立了有关理论。
随着集成电路技术的进步,使用集成运算放大器构成阻抗变换器,已成为有源滤波器设计的基该方法。
阻抗变换器可分为广义阻抗变换器 (GIC)和广义阻抗倒量器(GII)两种。

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