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DEMODULATION RADIO FREQUENCY INTERFERENCE EFFECTS IN OPERATIONAL AMPLIFIER CIRCUITS (EMI, NCAP, NONLINEAR TRANSFER FUNCTION).

机译:工作放大器电路(EMI,NCAP,非线性传递函数)中的解调无线电频率干扰效应。

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摘要

A series of investigations have been carried out to determine RFI effects in analog circuits using monolithic integrated operational amplifiers (op amps) as active devices. The specific RFI effect investigated is how amplitude-modulated (AM) RF signals are demodulated in op amp circuits to produce undesired low frequency responses at AM-modulation frequency. The undesired demodulation responses were shown to be characterized by a second-order nonlinear transfer function.;The Nonlinear Circuit Analysis Program, NCAP, was used to simulate the demodulation RFI response. In the simulation, the op amp was replaced with its incremental macromodel. Values of macromodel parameters were obtained from previous investigations and manufacturer's data sheets.;Some key results of this work are: (1) The RFI demodulation effects are 10 to 20 dB lower in CA081 and LF355 FET-bipolar op amp than in 741 and LM10 bipolar op amp except above 40 MHz where the LM10 RFI response begins to approach that of CA081. (2) The experimental mean values for 30 741 op amps show that RFI demodulation responses in the inverting amplifier with a 27 pF feedback capacitor were suppressed from 10 to 35 dB over the RF frequency range 0.1 to 150 MHz except at 0.15 MHz where only 3.5 dB suppression was observed. (3) The NCAP program can predict RFI demodulation responses in 741 and LF355 unity gain buffer circuits within 6 and 7 dB respectively for RF frequencies 0.1 to 400 MHz except near the resonant frequencies for the LF355 circuit. (4) The NCAP simulations suggest that the resonances of the LF355 unity gain buffer circuit are related to small parasitic capacitance values of the order of 1 to 5 pF. (5) The NCAP sensitivity analysis indicates that variations in a second-order transfer function are sensitive to some macromodel parameters.;Four representative op amp types investigated were the 741 bipolar op amp, the LM10 bipolar op amp, the LF355 JFET-Bipolar op amp, and the CA081 MOS-Bipolar op amp. Two op amp circuits were investigated. The first circuit was a noninverting unity voltage gain buffer circuit. The second circuit was an inverting op amp configuration. In the second circuit, the investigation includes the effects of an RFI suppression capacitor in the feedback path. Approximately 30 units of each op amp type were tested to determine the statistical variations of RFI demodulation effects in the two op amp circuits.
机译:使用单片集成运算放大器(op amps)作为有源器件,已经进行了一系列研究来确定模拟电路中的RFI效应。研究的特定RFI效果是如何在运放电路中对调幅(AM)RF信号进行解调,以在AM调制频率下产生不希望的低频响应。结果表明,不期望的解调响应具有二阶非线性传递函数的特征。非线性电路分析程序NCAP用于仿真解调RFI响应。在仿真中,运算放大器被其增量宏模型代替。宏模型参数的值是从以前的研究和制造商的数据表中获得的;这项工作的一些主要结果是:(1)CA081和LF355 FET双极运算放大器的RFI解调效果比741和LM10低10至20 dB双极性运算放大器,除了40 MHz以上的地方,LM10 RFI响应开始接近CA081的响应。 (2)30 741个运算放大器的实验平均值表明,在0.1至150 MHz的RF频率范围内,具有27 pF反馈电容器的反相放大器中的RFI解调响应在10至35 dB的范围内被抑制,但在0.15 MHz处只有3.5观察到dB抑制。 (3)NCAP程序可以预测741和LF355单位增益缓冲电路中的RFI解调响应,对于RF频率0.1至400 MHz,除了在LF355电路的谐振频率附近,分别在6 dB和7 dB之内。 (4)NCAP仿真表明,LF355单位增益缓冲电路的谐振与1-5 pF量级的小寄生电容值有关。 (5)NCAP灵敏度分析表明,二阶传递函数的变化对某些宏模型参数敏感。;研究的四种代表性运算放大器类型为741双极运算放大器,LM10双极运算放大器,LF355 JFET-双极运算放大器放大器和CA081 MOS双极性运算放大器。研究了两个运算放大器电路。第一个电路是同相单电压增益缓冲电路。第二个电路是反相运算放大器配置。在第二个电路中,研究包括反馈路径中的RFI抑制电容器的影响。测试了每种运算放大器类型的大约30个单元,以确定两个运算放大器电路中RFI解调效果的统计变化。

著录项

  • 作者

    SUTU, YUE-HONG.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Electromagnetics.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 251 p.
  • 总页数 251
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:51:23

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