模电 正弦波振荡器的构成和特点。

2025-03-16 16:15:00
推荐回答(1个)
回答1:

  一个振荡器要建立振荡,必须满足自激振荡的两个基本条件。当振荡幅度逐渐增大,最后达到稳态,电路需要有稳幅环节使放大器的放大倍数下降,满足|AF|=1的幅值条件。所以,根据上述条件,正弦波振荡电路由四部分组成,即放大电路、选频网络、反馈网络和稳幅环节。
  ①放大电路:对交流信号具有一定的电压放大倍数,其作用是对选择出来的某一频率的信号进行放大。根据电路需要可采用单级放大电路或多级放大电路。
  ②选频网络:选择出某一频率的信号产生谐振,其作用是选出指定频率的信号,以便使正弦波振荡电路实现单一频率振荡,并有最大幅度的输出。选频网络分为LC选频网络和RC选频网络。使用LC选频网络的正弦波振荡电路,称为LC振荡电路;使用RC选频网络的正弦波振荡电路,称为RC振荡电路。选频网络可以设置在放大电路中,也可以设置在反馈网络中。
  ③反馈网络:是反馈信号所经过的电路,其作用是将输出信号反馈到输入端,引入自激振荡所需的正反馈,并与放大器共同满足振荡条件。一般反馈网络由线性元件R、L和C按需要组成。 ④稳幅环节:具有稳定输出信号幅值的作用。利用电路元件的非线性特性和负反馈网络,限制输出幅度螬大,达到稳幅目的。因此稳幅环节是正弦波振荡电路的重要组成部分。
  手打不易,如有帮助请采纳,或点击右上角的满意,谢谢!!

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