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1038 In a small-signal AC equivalent circuit of a
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circuit containing FETs, AC coupling or DC blocking capacitors, bypass capacitors, internal transistor capacitance, and ideal DC sources, how are the following components in the circuit modeled in the mid-frequency range: a Transistors b AC coupling or DC blocking capacitors c Bypass capacitors d Internal capacitances in the transistor There is a small internal capacitance between the gate and drain terminals and another between the gate and source terminals e Ideal DC source
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1041 De ne the input resistance, output resistance, and 1039 Given below are the transistor parameters, a
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hypothetical Q point for the transistor, and the component values in the circuit shown in Figure P1039 IDSS = 05 mA IDQ = 05 mA R1 = 10 M RD = 6 k RSS = 50 VT = 1 V VGSQ = 2 V R2 = 10 M RS = 6 k RL = 3 k
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no-load voltage gain of an ampli er stage Include the conditions required for determining each Use the AC small-signal equivalent circuit shown in Figure P1041 to specify the voltages, currents, etc used in your de nitions and conditions Draw a simpli ed model using these three circuit parameters Include the signal source and load and derive an expression for the overall gain
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a Determine the AC model for the transistor including numerical values b Draw the small-signal AC equivalent circuit
Figure P1041
Part II
Electronics
1042 The circuit shown in Figure P1039 is a
common-source stage The transistor parameters, Q point, and component values in the circuit are: VT = 15 V IDSS = 1125 mA IDQ = 1125 mA VGSQ = 3 V R2 = 22 M R1 = 132 M RD = 4 k RS = 4 k RL = 13 k RSS = 700 VDD = 12 V a Determine all the component values for and draw the AC small-signal equivalent circuit (for mid-frequencies, of course) b Derive expressions for and determine the values of the input resistance Ri , the output resistance Ro , and the no-load voltage gain Avo c Determine the overall voltage gain vo /vs (which accounts for the effects of the load and signal source resistance) in dB
VCC RC RB3 RC Q3 vo1
vo2 Q1 v1 RB1 Q2 RB2 v2
Figure P1044
1045 Show that the circuit of Figure P1044 functions
as a NOR gate if the output is taken at vo2
1043 The circuit shown in Figure P1043 is a
common-drain (or source follower) ampli er stage The transistor parameters, the Q point, and component values are: IDSS = 1125 mA VT = 15 V IDQ = 1125 mA VGSQ = 3 V R1 = 132 M R2 = 22 M RS = 4 k RL = 13 k RSS = 700 VDD = 12 V a Draw the AC small-signal equivalent circuit b Derive expressions for and determine the values of the input resistance Ri , the output resistance Ro , and the no-load voltage gain Avo c Determine the overall voltage gain vo /vs (which accounts for the effects of the load and signal source resistance) in dB
+ VDD _
1046 Show that the circuit of Figure P1046 functions
as an AND gate if the output is taken at vo1
Rc vo1 Rc RB3 Q3
vo2 RB1
R1 ii
C Vi R2 RS C
io RL
+ V o _
+ Vs _ _
Figure P1046 Figure P1043
1047 Show that the circuit of Figure P1046 functions Section 3: Gates and Switches 1044 Show that the circuit of Figure P1044 functions
as an OR gate if the output is taken at vo1 as a NAND gate if the output is taken at vo2
1048 In Figure P1048, the minimum value of vin for a
high input is 20 V Assume that transistor Q1 has a
10
Transistor Ampli ers and Switches
of at least 10 Find the range for resistor RB that can guarantee that the transistor Q1 is on
+VCC = 5 V
1051 For the inverter of Figure P1050, RB = 4 k ,
RC1 = 25 k , and 1 = 2 = 4 Show that Q1 saturates when vin is high Find a condition for RC2 to ensure that Q2 also saturates
2 k vout RB vin + vBE Q1
1052 The basic circuit of a TTL gate is shown in the
circuit of Figure P1052 Determine the logic function performed by this circuit
VCC
Figure P1048
1049 Figure P1049 shows a circuit with two transistor
Rc vo
inverters connected in series, where R1C = R2C = 10 k and R1B = R2B = 27 k a Find vB , vout , and the state of transistor Q1 when vin is low b Find vB , vout , and the state of transistor Q1 when vin is high
+VCC = 5 V +VCC = 5 V R2C R1C R2B R1B vB + vBE Q1 + vBE Q2 vout
vA vB
Figure P1052
1053 Figure P1053 is a circuit diagram for a
three-input TTL NAND gate Assuming that all the input voltages are high, nd vB1 , vB2 , vB3 , vC2 , and vout Also, indicate the operating region of each transistor
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