OBJECTIVE: The objective of this experiment is to gain knowledge of sequential circuts. You will use fip-flops to design up and down counters and will also design a control Crout to get the desired sequence of counting. You will become familiar with 555 timer and use it to generate puises DESIGN REQUIREMENTS: & Design a clock pulse generator using 555 timer as shown b. Using -ops, design a 4 bit binary down counter. Verify the counting sequence by connecting LED's to the outputs Modify the above crout to get a 4-bit binary up-counter. Verify the counting sequence by using LED's connected to the outputs d. Using the above binary up counter, design a counter with a sequence: 0, 1, 2, 3, 4, 5 by adding an additional control circut. verty the counting sequence by using LED'S connected to the outputs (optional) You coder and dagley, which you have 1. (optional) In adation, imp the out NOTE: S te simplify sch Saur wing and display it es nic for actual 555 pin numbering drawings LSE SENCLATOR unter ( 7490) and Further, you in paragraph. 935 2 connect the
OBJECTIVE: The objective of this experiment is to gain knowledge of sequential circuts. You will use fip-flops to design up and down counters and will also design a control Crout to get the desired sequence of counting. You will become familiar with 555 timer and use it to generate puises DESIGN REQUIREMENTS: & Design a clock pulse generator using 555 timer as shown b. Using -ops, design a 4 bit binary down counter. Verify the counting sequence by connecting LED's to the outputs Modify the above crout to get a 4-bit binary up-counter. Verify the counting sequence by using LED's connected to the outputs d. Using the above binary up counter, design a counter with a sequence: 0, 1, 2, 3, 4, 5 by adding an additional control circut. verty the counting sequence by using LED'S connected to the outputs (optional) You coder and dagley, which you have 1. (optional) In adation, imp the out NOTE: S te simplify sch Saur wing and display it es nic for actual 555 pin numbering drawings LSE SENCLATOR unter ( 7490) and Further, you in paragraph. 935 2 connect the
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...
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please explain part d and explain how it would look like on a breadboard
![OBJECTIVE:
The objective of this experiment is to gain knowledge of sequential
circuits. You will use fip-flops to design up and down counters and will also
design a control crout to get the desired sequence of counting. You will
become familiar with 555 timer and use it to generate pulses
DESIGN REQUIREMENTS:
a. Design a clock pulse generator using 555 timer as shown.
b. Using JKp-flops, design a 4 bit binary down counter. Verify the
counting sequence by connecting LED's to the outputs.
c. Modify the above circult to get a 4-bit binary up-counter. Verify the
counting sequence by using LED's connected to the outputs
d. Using the above binary up counter, design a counter with a sequence: 0,
1, 2, 3, 4, 5 by adding an additional control circuit. Verity the counting
sequence by using LED'S connected to the outputs
e. (optional) You may connect the decoder and display, which you have
designed in experimenta 3. too verify your outputs
f. (optional) In addition, you may get an IC counter (eq 7490) and
Implement the circuit a, b, and cusing this IC. Further, you can connect the
decoder to the counter and display it as indicated in paragraph e
NOTE: See data for actual 555 pin numbering. Here in numbering
rearranged to simplify schematic drawing so pin a's are not in sequence.
CLOCK PIASE GENERASSA
everyt
Saur
445
COLA](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd53b5d21-36fa-4ee2-932f-fd40dc0982c5%2Fda54cd3b-c23a-4120-90fb-9c23f6754fb5%2Fv98y0n5_processed.jpeg&w=3840&q=75)
Transcribed Image Text:OBJECTIVE:
The objective of this experiment is to gain knowledge of sequential
circuits. You will use fip-flops to design up and down counters and will also
design a control crout to get the desired sequence of counting. You will
become familiar with 555 timer and use it to generate pulses
DESIGN REQUIREMENTS:
a. Design a clock pulse generator using 555 timer as shown.
b. Using JKp-flops, design a 4 bit binary down counter. Verify the
counting sequence by connecting LED's to the outputs.
c. Modify the above circult to get a 4-bit binary up-counter. Verify the
counting sequence by using LED's connected to the outputs
d. Using the above binary up counter, design a counter with a sequence: 0,
1, 2, 3, 4, 5 by adding an additional control circuit. Verity the counting
sequence by using LED'S connected to the outputs
e. (optional) You may connect the decoder and display, which you have
designed in experimenta 3. too verify your outputs
f. (optional) In addition, you may get an IC counter (eq 7490) and
Implement the circuit a, b, and cusing this IC. Further, you can connect the
decoder to the counter and display it as indicated in paragraph e
NOTE: See data for actual 555 pin numbering. Here in numbering
rearranged to simplify schematic drawing so pin a's are not in sequence.
CLOCK PIASE GENERASSA
everyt
Saur
445
COLA
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