1. Fill the below table with the components used in building the circuit (Figure 1), and their values from the hand calculation part:

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Fill the table
3. Design Components
The transformation of this filter characteristic can be easily implemented using a single low
pass and high pass filter circuits isolated from each other by non-inverting voltage follower,
(Av = 1). The output from these two filter circuits is then summed using a third operational
amplifier connected as a voltage summer (adder) as shown in Figure 1.
R= 10ko
10kn
A
Ves
s
oVour
Cu
Summing
Amplfier
low-pass
VINO
10
ko
Ce
A
Rie
high-pass
Figure 1: Band Stop Filter Circuit
1. Fill the below table with the components used in building the circuit (Figure 1), and their
values from the hand calculation part:
Copyright © American College of the Middle East. 2020
Page V of 6
FL=200HZ
FH=900HZ
Component
Name
Value or Gain
3.978 kilo ohm
RHP
0.884194 kilo ohm
CLP
0.2 micro farad
Сараcitors
CHP
0.2 micro farad
Amplifiers
Transcribed Image Text:3. Design Components The transformation of this filter characteristic can be easily implemented using a single low pass and high pass filter circuits isolated from each other by non-inverting voltage follower, (Av = 1). The output from these two filter circuits is then summed using a third operational amplifier connected as a voltage summer (adder) as shown in Figure 1. R= 10ko 10kn A Ves s oVour Cu Summing Amplfier low-pass VINO 10 ko Ce A Rie high-pass Figure 1: Band Stop Filter Circuit 1. Fill the below table with the components used in building the circuit (Figure 1), and their values from the hand calculation part: Copyright © American College of the Middle East. 2020 Page V of 6 FL=200HZ FH=900HZ Component Name Value or Gain 3.978 kilo ohm RHP 0.884194 kilo ohm CLP 0.2 micro farad Сараcitors CHP 0.2 micro farad Amplifiers
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