CS302 Assignment No 1
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CS302 Assignment No 1 Solution and Discussion Spring 2017 |
CS302 Assignment No 1 Spring 2017
Lectures covered: 1-8CS302 Assignment Objectives:
To understand different operational characteristics of digital circuits and implementation of Boolean algebra with Logic Gates.CS302 Assignment Instructions:
It should be clear that your assignment will not get any credit if:- The assignment is submitted after due date.
- The assignment is submitted via email.
- The assignment is copied from Internet or from any other student.
- The submitted assignment does not open or file is corrupt.
- It is in some other format than .doc/docx.
Note: All types of plagiarism are strictly prohibited.
For any query about the assignment, contact at CS302@vu.edu.pk
CS302 Assignment Important Note!
You have to provide all processing steps in all questions otherwise, marks will be deductedCS302 Assignment Question No. 1
The data sheet of a Quad two-input AND gate IC type 74LS08 specifies the propagation delay and power supply parameters as:
VCC = 5.0V ICCH = 19 mA
ICCL = 35 mA tPLH = 4 ns
tPHL = 5 ns VOH = 2.7 V
VIH = 2 V VIL = 0.8 V
VOL = 0.5 V
Tasks You have to do:
- Determine the speed–power product specification.
- The HIGH state noise margin.
- The LOW state noise margin.
CS302 Assignment Question No. 2
Simplify the given expression to its Sum of Product (SOP) form using Boolean algebra and also draw the logic circuit diagram for that simplified expression.
CS302 Assignment No 1 Solution Spring 2017
CS302 Assignment Question No 1 Solution
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CS302 Assignment Question No 1 Solution Spring 2017 |
CS302 Assignment Question No 2 Solution
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CS302 Assignment Question No 2 Solution Spring 2017 |
page no. 65 pe noise margin k first 2 formulas hn wo answer hai 2nd and 3rd part ka 1st question.
ReplyDeleteor page 68 pe spp ka dia hua. evaluate ap khud karlijiega.
or page no. 73 pe boolean algebra k rules hn
sum of product form bnani hai jesi page no. 77 pe bni hui
Boolean algebra ke rules ko use kar k,
high and low noise margin
ReplyDeleteVNH = VOH – VIH
2.7 – 2 = 0.7
The LOW state noise margin.
VNL = VIL – VOL
0.8 – 0.5 = 0.3