Consider the JFET circuit in Figure 10.24. The transistor parametersare: I D s s 2 = 0.5 m A , I D s s 1 = 0.8 m A , V P 1 = V P 2 = − 2 V , and λ P 1 = λ P 2 = 0.15 V − 1 . Determine the minimum values of V S and V I such that Q 2 is biased inthe saturation region. What is the value of I O ? What is the output impedance looking into the drain of Q 2 ? (Ans. V S ( min ) = − 3 V , I O = 0.65 m A , V I ( min ) = − 3.2 V , r o = 1.09 k Ω )
Consider the JFET circuit in Figure 10.24. The transistor parametersare: I D s s 2 = 0.5 m A , I D s s 1 = 0.8 m A , V P 1 = V P 2 = − 2 V , and λ P 1 = λ P 2 = 0.15 V − 1 . Determine the minimum values of V S and V I such that Q 2 is biased inthe saturation region. What is the value of I O ? What is the output impedance looking into the drain of Q 2 ? (Ans. V S ( min ) = − 3 V , I O = 0.65 m A , V I ( min ) = − 3.2 V , r o = 1.09 k Ω )
Solution Summary: The author analyzes the output impedance of mathrmR_MathrO looking in to the drain of transistor.
Consider the JFET circuit in Figure 10.24. The transistor parametersare:
I
D
s
s
2
=
0.5
m
A
,
I
D
s
s
1
=
0.8
m
A
,
V
P
1
=
V
P
2
=
−
2
V
, and
λ
P
1
=
λ
P
2
=
0.15
V
−
1
. Determine the minimum values of
V
S
and
V
I
such that
Q
2
is biased inthe saturation region. What is the value of
I
O
? What is the output impedance looking into the drain of
Q
2
? (Ans.
V
S
(
min
)
=
−
3
V
,
I
O
=
0.65
m
A
,
V
I
(
min
)
=
−
3.2
V
,
r
o
=
1.09
k
Ω
)
1. The communication channel bandwidth is 25 MHz centered at 1GHz and has a noise power spectral
density of 10^-9 W/Hz. The channel loss between the transmitter and receiver is 25dB. The application
requires a bit rate of 200Mbps and BER of less than 10^-4. Excluding Mary FSK, Determine the minimum
transmit power required.
2. An existing system uses noncoherent BASK. The application requires a BER of <10^-5. The current
transmit power is 25 Watts. If the system changes to a coherent BPSK modulation scheme, what is the
new transmit power required to deliver the same BER?
3. You are to design a 9-volt battery operated communication system that must last 3 years without
replacing batteries. The communication channel bandwidth is 100 KHz centered at 5.8 GHz. The
application requires a BER of <10^-5 and a data rate of 1 Mbps. The channel can be modeled as AWGN
with a noise power spectral density of 10^-8 W/Hz. ((a) What modulation scheme would you use? B)
what is the required capacity of the batteries? and (c) is the battery commercially available?
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