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3 场效应管的基本电路

3 场效应管的基本电路. 3.1 场效应管的直流偏置电路和静态工作点. 3.2 场效应管放大电路的等效电路分析. +V DD. R D. C 2. D. +. C 1. + u o . G. S. + u i . +. R G. R S. C S. 3.1 场效应管的直流偏置电路和静态工作点. 三种组态:. 共源、共漏、共栅. 特点:. 输入电阻极高, 噪声低,热稳性好. 一、直流偏置电路. 栅极电阻 R G 的作用:. 1. 自给偏压电路. ( 1 ) 为栅偏压提供通路. ( 2 ) 泻放栅极积累电荷.

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3 场效应管的基本电路

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  1. 3场效应管的基本电路 3.1 场效应管的直流偏置电路和静态工作点 3.2 场效应管放大电路的等效电路分析

  2. +VDD RD C2 D + C1 + uo  G S + ui  + RG RS CS 3.1场效应管的直流偏置电路和静态工作点 三种组态: 共源、共漏、共栅 特点: 输入电阻极高, 噪声低,热稳性好 一、直流偏置电路 栅极电阻 RG 的作用: 1. 自给偏压电路 (1)为栅偏压提供通路 (2)泻放栅极积累电荷 源极电阻 RS 的作用: 提供负栅偏压 漏极电阻 RD 的作用: 把 iD 的变化变为 uDS 的变化 UGSQ = UGQ–USQ= – IDQRS

  3. +VDD RD C2 RG1 D + C1 G S + uo  RG3 RL + ui  + CS RS RG2 2. 分压式自偏压电路 UGSQ > 0 调整电阻的大小,可获得: UGSQ = 0 UGSQ < 0

  4. +24V 10 k RD C2 200 k RG1 D + C1 G + uo  S 1 M 5 k RG3 RL + ui  2 k 64 k + RG2 10 k CS 例 3.1已知 UGS(off)=  0.8 V,IDSS = 0.18 mA,求Q点。 解方程得:IDQ1 = 0.69 mA,UGSQ = –2.5V (增根,舍去) IDQ2 = 0.45 mA ,UGSQ = –0.4 V

  5. +VDD RD C2 RG1 D + C1 G S + uo  RG3 RL + ui  + CS RS RG2 3.2场效应管放大电路的等效电路分析 1. 共源放大电路

  6. ii id G D + ugs  + ui  RG3 gmugs + uo  RL S RD RG2 RG1 RS 有 CS 时: 无 CS 时: Ri、 Ro 不变

  7. +VDD RG1 D C1 G C2 S RG3 + ui  + + uo  RS RL RG2 2. 共漏放大电路

  8. ii G S + ugs  + ui  RG3 gmugs + uo  RL RS RG2 RG1 D io Ro

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