ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #3: MSI Circuits
September 13, 2016
In this lab, we were required to work with simple medium scale integrated logic circuits to build
and test a digital system. Specifically, we worked with an 8-c
Elec2210 Spring 14 Test 1
Friday, September 20, 2013 9:19 AM
Name: 1 1'
_ Please turn in your equation sheet together with
Your exam paper.
Time is 5.0 minutes sharp. So do not spending.
much time on oneparticular problem. before you
have had a chance to.
Please turn in exam papers, your solutions, and equation sheet.
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ELEC2210 Exam 1 (50 minutes)
WU MZ 79; .
Table 1: Physical Constants
| Symbol Name Value
q Elementary charge 1.6 ><10_19 coul
60 permitivity of free space 8.85 x 1014 F/cm xi
Student Name
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ELEC 2210 Digital Electronics 95/ f
. Spring 2010 3
EXAM-1
February 24, 2010
Instructions to work groblem
Please read carefully betore starting
Please work the exam on your own. Collaborating with your colleagues is NOT allowed
during t
EL C 2210 Exam 3
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follows KP(NMOS)=400 uA/VZ, KP(PMOS)= 800 W, ,VTO(NMOS)=I .VTO(PMQS)
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Linear Algebra Chapter 1 Test
Name:
Test length: 50 minutes
Please provide the details:
1. (15 points) Please describe the elementary row operations I, II, III.
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COMP 2710: Project 1 Phase 1: Analysis
Dragons A Simple Text-Based Game
Points Possible: 100 points
Analysis Portion turned in via Canvas
No collaboration between students. Students should NOT share any project c
QUlZ #6 Name: W
MATH 3710 Discrete Math / COMP 3240 Discrete Structures
Friday, November 20, 2015 User id:
Instructions:
0 This quiz has two sides (pages), and is out of a total of 10 points.
0 This quiz is open notes. You can have any of the following to
1.27
(a)
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Quiz 1, ELEC 2210
1. Find the Thevenin equivalent representation of the circuit if gm=1mS, R1=1k, R2=100k
Solution:
The open circuit voltage is vth g m v R2 where v ii R1.
vth g m R1 R2ii 0.001 1x103 1x105 ii 1.0 x 105 ii
For ii 0, v 0, and Rth R2 100k
Qu
ElecZZlO Fall 13 Test 1
Friday, September 20, 2013 9:19 AM
Please turn in you requation egogerwwith
7 your exampaper.
Time is 50 minutes sharp. So do not spend too 7 ,
much time on one particular problem before. you
have hada chance togo through _
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rectifie rs
Wednesday, September 19, 2012
100
11:46 AM
H 1/15/cfw_3
1. A 5V, 1A dc power supply is to be designed to have a ripple voltage of no more than 5 mV. A full
wave diode bridge design is required. Assume a diode turn-on voltage of 1V. Th
rectIerrs
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wave didde bridge design l5 reqUIred Assume a dIod tu
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #10: CMOS Logic Circuits
November 8, 2016
The objective of this lab was to reinforce basic principles of CMOS logic that were
taught in class. In this lab, I gained experience with complex CMOS ga
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #1: Basic Logic Circuits
September 6, 2016
1. The experiments in this lab will provide an introduction to digital electronic circuits. Tools like
National Instruments ELVIS II+ workstation will be
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #5: Binary Arithmetic Circuits
September 20, 2016
The main purpose of this lab was to review binary arithmetic and learn how to build digital logic
circuits for the addition of binary numbers. In
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #2: Simulation of Logic Circuits
September 6, 2016
1. Through this lab, we became familiar with the basic tools used in Multisim. We were tasked
with designing a basic 3 bit and 4bit circuit along
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #10: Amplifiers
November 15, 2016
In this lab, we learned how to use a MOSFET as an amplifier. Alongside this, we
increased our experience with designing and implementing an amplifier bias network
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #5: Switch Debounce Circuits
September 27, 2016
The purpose of this lab was to review basic principles of latches in order to gain understanding of
mechanical switch bounce and its impact on syste
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #9: MOSFETs and CMOS Inverter
November 1, 2016
The goals of this lab were as follows: Measure threshold voltage and IDS-Vgs in forced
saturation configurations, Measure the ids-Vgs curves for a mu
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #7: BJT Transistors
October 11, 2016
Through this lab, we were exposed to real world characteristics of bipolar junction
transistors and a few of their applications. We measured forced base curren
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #8: Free Space Optical Communication Link
October 18, 2016
In this lab, we experimented with an infrared LED and photo transistors. With these
components, I created an experiment that tested free
ELEC2210 Lab Report
ELEC2210 MWF 11 AM 12:50 PM
Experiment #6: Diodes
October 4, 2016
This experiment provides an introduction to diodes. The objectives of this experiment are to review
basic principles of diodes and to understand rectifier circuits. In a
Bipolar 4R @ -
Friday,April13,2012 m . '
5:04 PM A)
1. Design a 4R bias circuit using a NPN transistor.i-S=5763x1029 rtlTemTal'volta-ge-is-ZSTSmVT'BFE
(1,5,9. W5 cfw_seq-WWW Choose V(RE)=2V. You must calculate VBE
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Discrete Math/ Structures Quiz 1 Name: W
August 211 2015 User id:
Score: /10
1. [1pt] How much is participation worth in this course? 5 670
2. [1pt] If your final grade in this course. is 76%, what letter grade will you get? B
3. (a) [1pt] All evaluations
Steven Whipple
ELEC2210 T 2-3:50 pm
Experiment #2: Simulation of Logic Circuit
9/3/16
The objectives of this experiment were to learn how to simulate digital logic circuits
using Multisim software and develop professional lab skills and written communicat