For the below CB amplifier circuit: C5 10u w ww R1 101k R2 11.2k 12 VBE=0.63V AIHE VCC ww Q1 www Figure 1. RC 12k Q2N3904 0 RE 1k C3 HH 16u Rsig O ○ B=100 Thermal Voltage VT=26mV, Vsig=10m V. 50 C4 HH 10u Vin VOFF = 0 VAMPL= 10m FREQ = 10k AC = V1 Vout Calculate the DC bias Analysis and using the values you found for the small signal parameters. Record the calculated input and output voltages in Table 3. Given that: RL 2.6k
For the below CB amplifier circuit: C5 10u w ww R1 101k R2 11.2k 12 VBE=0.63V AIHE VCC ww Q1 www Figure 1. RC 12k Q2N3904 0 RE 1k C3 HH 16u Rsig O ○ B=100 Thermal Voltage VT=26mV, Vsig=10m V. 50 C4 HH 10u Vin VOFF = 0 VAMPL= 10m FREQ = 10k AC = V1 Vout Calculate the DC bias Analysis and using the values you found for the small signal parameters. Record the calculated input and output voltages in Table 3. Given that: RL 2.6k
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
Related questions
Question
Solve 7,8,9
![Value
1) Req
2) Veg
3) IB
4) IE
5) Ic
6) VCE
7) VE
8) VB
9) re
10) 9m
11) T
12) Zin
13) Zout
14) Vaut
15) Av
(₁ + 2/2)^-1
R2
R2
R1 + R2
(ß + 1) * IB
IB* B
-Veq+ Req*IB+ Vbe +Re [ (ß +1) *IB]=0
IE*RE
VBE+VE
* Vcc
-VCC+ VCE+RC (IC) +RE (IE) = 0
VT
IE
(IC)
(VT)
(B)
(9m)
Rin=
Vout
Vsig
(rn)
(B+1)
RC (RL)
Rout=
-B
(B+1) Rin+Rsig
Table 3
Equations
RC+(RL)
-Rin
(Vsig)
RC* (RL)
RC+(RL)
Final Value](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa7cf143d-c2c6-4213-971b-95909956e40e%2Fea4758e0-5a69-426a-9e06-e886a3bb00ae%2F3yd114_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Value
1) Req
2) Veg
3) IB
4) IE
5) Ic
6) VCE
7) VE
8) VB
9) re
10) 9m
11) T
12) Zin
13) Zout
14) Vaut
15) Av
(₁ + 2/2)^-1
R2
R2
R1 + R2
(ß + 1) * IB
IB* B
-Veq+ Req*IB+ Vbe +Re [ (ß +1) *IB]=0
IE*RE
VBE+VE
* Vcc
-VCC+ VCE+RC (IC) +RE (IE) = 0
VT
IE
(IC)
(VT)
(B)
(9m)
Rin=
Vout
Vsig
(rn)
(B+1)
RC (RL)
Rout=
-B
(B+1) Rin+Rsig
Table 3
Equations
RC+(RL)
-Rin
(Vsig)
RC* (RL)
RC+(RL)
Final Value
![For the below CB amplifier circuit:
C5
10u
R1
101k
R2
11.2k
12
VBE=0.63V
AIHE
0
VCC
ww
Q1
www
Figure 1.
RC
12k
Q2N3904
0
RE
1k
C3
HI
16u
Rsig
0 B=100
Thermal Voltage VT=26mV, Vsig=10m V.
50
C4
HH
10u
Vin
VOFF = 0
VAMPL = 10m
FREQ = 10k
AC =
V1
Vout
Calculate the DC bias Analysis and using the values you found for the small signal
parameters. Record the calculated input and output voltages in Table 3.
Given that:
2.6k](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa7cf143d-c2c6-4213-971b-95909956e40e%2Fea4758e0-5a69-426a-9e06-e886a3bb00ae%2F8ocxe5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the below CB amplifier circuit:
C5
10u
R1
101k
R2
11.2k
12
VBE=0.63V
AIHE
0
VCC
ww
Q1
www
Figure 1.
RC
12k
Q2N3904
0
RE
1k
C3
HI
16u
Rsig
0 B=100
Thermal Voltage VT=26mV, Vsig=10m V.
50
C4
HH
10u
Vin
VOFF = 0
VAMPL = 10m
FREQ = 10k
AC =
V1
Vout
Calculate the DC bias Analysis and using the values you found for the small signal
parameters. Record the calculated input and output voltages in Table 3.
Given that:
2.6k
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