Consider the circuit shown in Figure P7.5. (a) What is the value of the voltage transfer function V o / V i at very low frequencies? (b) Determine the voltage transfer function at very high frequencies. (c) Derive the expression for the voltage transfer function T ( s ) = V o ( s ) / V i ( s ) . Put the expression in the form T ( s ) = K ( 1 + s τ A ) / ( 1 + s τ B ) .What are the values of K , τ A , and τ B ? Figure P7.5
Consider the circuit shown in Figure P7.5. (a) What is the value of the voltage transfer function V o / V i at very low frequencies? (b) Determine the voltage transfer function at very high frequencies. (c) Derive the expression for the voltage transfer function T ( s ) = V o ( s ) / V i ( s ) . Put the expression in the form T ( s ) = K ( 1 + s τ A ) / ( 1 + s τ B ) .What are the values of K , τ A , and τ B ? Figure P7.5
Solution Summary: The author explains that the given circuit can be redrawn by using voltage division rule.
Consider the circuit shown in Figure P7.5. (a) What is the value of the voltage transfer function
V
o
/
V
i
at very low frequencies? (b) Determine the voltage transfer function at very high frequencies. (c) Derive the expression for the voltage transfer function
T
(
s
)
=
V
o
(
s
)
/
V
i
(
s
)
. Put the expression in the form
T
(
s
)
=
K
(
1
+
s
τ
A
)
/
(
1
+
s
τ
B
)
.What are the values of K,
τ
A
, and
τ
B
?
2.56. The impulse response of a discrete-time LTI system is given by
h[n] = ()u[n]
Let y[n] be the output of the system with the input
Find y[1] and y[4].
Ans. y[1] = 1 and y[4] = 1.
x[n] = 28[n]+8[n-3]
NEED HANDWRITTEN SOLUTION DO NOT USE AI
Lecture Notes with Tutorials Quesi
Introduction
Introduction
Q Is a Chegg subscription w
s.polite.edu.sg/d21/e/enhancedSequenceViewer/560826?url=https%3A%2F%2F5ff0cccf-42fe-41ae-a18f-a4e0f77dec33.sequences.api.brightsp
↑↓
1 of 4
EDA Assignment 1 (15% )
-
+ Automatic Zoom
8. Please note you may be asked to explain your solution to any of the questions.
Question 1 (25 marks)
Use constant-voltage-drop model to analyse the circuit in Figure 1.
(a) Re-draw the circuit by replacing each diode with its equivalent circuit.
(b) Calculate the values of li, 12, b and Is.
(c) Determine the voltage across R1, VR-
(5 marks)
(15 marks)
(5 marks)
Si R 3.3kQ
ΚΩ
ww
+ VR1
12
15
13
14
Ge
+
Ge
R3
20V
Ge
Si
12.2ΚΩ
R4
R₂
4.7 ΚΩ
5.1 ΚΩ
Ge
Figure 1
EPIC
Pri
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, electrical-engineering and related others by exploring similar questions and additional content below.
L21E127 Control Systems Lecture 21 Exercise 127: State-space model of an electric circuit; Author: bioMechatronics Lab;https://www.youtube.com/watch?v=sL0LtyfNYkM;License: Standard Youtube License