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清华大学:《模拟电子技术基础》课程教学资源(第三版,习题)第三章 多级放大电路自测题(童诗白、华成英)

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一、(1)× (2)√√ (3)√× (4)× (5)√ 二、(1)A A (2)D A (3)B A (4)D B (5)C B 三、(1)B D (2)C (3)A
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第三章多级放大电路 自测题 (1)×(2)√√(3)√×(4)×(5)√ 二、(1)AA(2)DA(3)BA(4)DB(5)CB 三、(1) (2)C(3)A(4)AC(5)B(6)C 四、(1) (Uz-UBEo3)/Re3=0.3mA JEI=lE2=0.15mA (2)减小Rc2 当=0时to=0,lo4=E/RC4=06mA la=0.14r TE4RE4+U R ≈7.14kQ r+(1+ 0.7kQ 26mV rbe4=rb +(1+B 2.74kQ B{Ra2∥[h4+(+B)Ra4 16.5 BRd -18 re4+(+B)R24 An=An1·A 习题 3.1(a)共射,共基(b)共射,共射(c)共射,共射(d)共集,共基 (e)共源,共集(f)共基,共集 3.2图(a) A=-BB∥n+(+B.+BR R1 (1+B2)R3 R1=R1+ +r R。=R B2 图(b 11

11 第三章 多级放大电路 自测题 一、(1)× (2)√√ (3)√× (4)× (5)√ 二、(1)A A (2)D A (3)B A (4)D B (5)C B 三、(1)B D (2)C (3)A (4)A C (5)B (6)C 四、(1)IC3=(UZ-UBEQ3)/ Re3=0.3mA IE1=IE2=0.15mA (2)减小 RC2。 当 uI=0 时 uO=0,ICQ4=VEE / RC4=0.6mA。 = + +   = + +     + = = − = 2.74k 26mV (1 ) 10.7k 26mV (1 ) 7.14k 0.14mA EQ4 be4 bb' EQ2 be2 bb' E4 E4 BEQ4 C2 C2 B4 C 2 C 4 I r r I r r I I R U R I I I R R     297 18 (1 ) 16.5 2 [ (1 ) ] 1 2 be4 e4 c4 2 be2 c2 be4 e4 1 =    − + + = −  − + + = − u u u u u A A A r R R A r R r R A         ∥  习题 3.1 (a)共射,共基 (b)共射,共射 (c)共射,共射 (d)共集,共基 (e)共源,共集 (f)共基,共集 3.2 图(a)   2 be2 2 o 3 i 1 be1 be2 2 3 2 3 1 be1 1 2 be2 2 3 1 (1 ) [ (1 ) ] (1 )      + + = = + + + +  + + + = − r R R R R R r r R R R r R r R Au ∥  ∥ 图(b)

R1=R1∥[1+(1+B1R2∥R3∥re2) R。=R4 ≈BR2∥h+(+B2DD B2R3 R1 +(1+B2)r Ri=R+rhel R。=R3 4=-gn(R1∥B6∥B∥k2小(B2R3 R1=R3+R1∥R2 R。=R8 3.3(1)(d)(e)(2)(c)(e)(3)(e) 3.4图(a) B +B2 B2R3 125 A=An·An2≈-125 R1=R1∥R2∥r!≈0.93kg R;=R3=3k2 B1·(R1∥re2) B2R An=An1·A12≈2 R1=(R5+R2∥R3)∥rhe1≈1.2k Ri=R4=lkQ2 3.5图(c)

12 o 4 i 1 be1 1 2 3 be2 be2 2 4 be1 1 2 3 be2 1 2 3 be2 [ (1 )( )] ( ) (1 )( ) (1 ) R R R R r R R r r R r R R r R R r Au = = + +  − + + + = − ∥ ∥ ∥ ∥ ∥ ∥ ∥      图(c)   o 3 i 1 be1 be2 2 2 3 1 be1 1 2 be2 2 ] (1 ) [ [ (1 ) R R R R r r r R R r R r r A D D u = = + + +  − + + + =   ∥    图(d) o 8 i 3 1 2 be2 2 8 m 4 6 7 be2 [ ( )] ( ) R R R R R R r R A g R R R r u = = + = −  − ∥ ∥ ∥ ∥   3.3 (1)(d)(e) (2)(c)(e) (3)(e) 3.4 图(a) = =  =   =   − = = + −  = 3k 0.93k 125 125 1 i 3 i 1 2 be1 1 2 be2 2 3 2 be1 2 be2 1 1 R R R R R r A A A r R A r r A u u u u u ∥ ∥         图(b) = =  = +   =   =  −  − −  = 1k ( ) 1.2k 2100 42 50 ( ) i 4 i 5 2 3 be1 1 2 be2 2 4 2 be1 1 1 be2 1 R R R R R R r A A A r R A r R r A u u u u u ∥ ∥ ∥        3.5 图(c)

B1·(R3∥re2) β2R4≈-10 07 rbe A 2≈6634 R1=R1∥r1≈1.5kg R1=R4=2k 图(e) A=-g R2//he+(1+ B)R4I (1+B)R4 rhe +(+B)R R1=R1=10Mg2 R.=R,∥5+R243 3.6 B(R (1)Ad (2)△l B(R+Rw) B △o=△lc1-△lc2 B(R+ Ad rie 3 VBEQ*/ w +2IfoR=VEE, IEQ Rw+2Re BEQ 2≈0.517mA 26mv The =rbb+(1+B) ≈2.66kQ A= BR (1+B) R1=2re+(1+B)

13 = =  =   =   =  −  − −  = 2k 1.5k 6634 107 62 ( ) i 4 i 1 be1 1 2 be2 2 4 2 be1 1 3 be2 1 R R R R r A A A r R A r R r A u u u u u ∥ ∥        图(e)     + + = = =  =   −  + + + = = − + +  −  − 43 1 10M 6 1 (1 ) (1 ) [ (1 ) ] 6 be 2 o 4 i 1 1 2 be 4 4 2 1 2 be 4 2     r R R R R R A A A r R R A A g R r R g R u u u u u m m ∥ ∥      3.6 be W c I O d O C1 C2 I be c I C2 be c W C1 be W c I O d ) 2 ( 2 2 ( ) (2) ) 2 ( (1) r R R u u A u u u u r R u u r R R u r R R u u A + = −   =  =  −     = −   +  = − + = −   =     3.7 = + +    − + + = − = + +    − +  + = = 2 (1 ) 10.4k 97 2 (1 ) 2.66k 26mV (1 ) 0.517mA 2 2 2 2 i be W W be c d E Q be bb' e W E E BEQ E Q e E E E Q W BEQ E Q R r R R r R A I r r R R V U I R V I R U I     +

3.8 l1+p2 1 5mv 10mV BR 67 A 0.67V 39(1)R1=R∥R1≈66 RL R+R VEE -=0.265mA 2R CQI R1≈3.23V Vcc=15V (2)△ao=l0-Uco1≈-1.23V 26mA (1+B) 5.lkQ BR1-327 Ad-2(Rb+rbe) Auo a 29V B1B2(R∥-) Ad (1+B1)b R1=2{kl+(1+B1)te2 3.11 Ad=-gmR Ri 3.12 R

14 3.8 0.67V 67 2 10mV 15mV 2 O d Id be c d Id I1 I2 I1 I2 IC  =  − = −  − = − = = + = u A u r R A u u u u u u  3.9 (1) 6.67k CC 5V c L ' L c L CC ' L  = + =   = V R R R R R ∥R V 15V 3.23V 0.265mA 2 CQ2 CC ' CQ L ' CQ1 CC e EE BEQ EQ = = = −  = −  U V U V I R R V U I (2) △uO=uO-UCQ1≈-1.23V 2.9V 0.327V 37.6mV 32.7 2( ) 5.1k 26mA (1 ) O 1 O O d I d O I b be ' L d EQ be bb' = +    =  −   =  − + = − = + +   u U u u A u A u u R r R A I r r CQ   3.10 2[ (1 ) ] (1 ) ) 2 ( i be1 1 be2 be1 1 be2 L 1 2 c d R r r r r R R A     = + + + +  − ∥ 3.11 Ad=-gmRD=-40 Ri=∞ 3.12 1600 2 1 Ad = −  gm  RD = − Ri=∞

3.13 B{R2∥a4+(1+B4)R3} 2 B4{R6∥[e4+(1+B4)R (1+B5)R7 (1+B5)R7 R=R7∥ R6 3.14(1) c=cg≈778V (2)若V1=10mV,则U=1V(有效值)。 若R3开路,则l=0V。若R3短路,则l=11.3V(直流)

15 3.13     5 be5 6 o 7 1 2 2 be5 5 7 5 7 3 be1 4 6 be4 4 5 2 be1 1 2 be4 4 5 1 1 (1 ) (1 ) 2 [ (1 ) 2 [ (1 )        + + = = + + + = + + = − + + = r R R R A A A A r R R A r R r R A r R r R A u u u u u u u ∥ ∥ ∥        3.14 (1) 77.8mV 7.78V 2 o i CC CEQ o =   − = Au U U V U U  (2) 若 Ui=10mV,则 Uo=1V(有效值)。 若 R3 开路,则 uo=0V。若 R3 短路,则 uo=11.3V(直流)

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