ee 343 electronics ii s `94/95

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ELE 343
ELECTRONICS II
Spring '07/08
Dr. M.G. Guvench
Course Objectives/Outcomes:
Students who successfully complete this course will have demonstrated
1. their knowledge of the subjects to be covered in class and laboratory (see the list attached),
2. their knowledge of the design procedures covered in class and laboratory experiments (see the list
attached),
3. their competence in putting the design procedures into mathematical format,
4. their competence in verifying both via use of SPICE simulations and building on protoboard and via
measurements that their designes worked, that is, satisfied a set of design criteria specified for each
experiment,
5. their competence in presenting their work in technical reports,
all individually, and
6. performing the laboratory experiments (design implementation, verification and measurements) in
teams of two or three, i.e. practicing a team work.
Policies regarding the evaluation of student performance can be found in the list attached.
ELE 343
ELECTRONICS II
S '07/08
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343Notes +
TOPICS
Chapters No. Appr.Time
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1. AC Coupled BJT Amplifier Design (review)
3,5,7
1 wk
CE, CB, CC Configurations
Capacitance calculations
2. FET Operation and Biasing Tradeoffs
4,5
1.5 wk
Principles of operation, types, characteristics and modeling of
MOSFETs and JFETs, CMOS fabrication
Biasing tradeoffs for stability and gain for
FET amplifiers
3. FET Midrange Frequency AC Amplifier Designs
4
1 wk
7
1 wk
3
1 wk
6
1.5 wk
9
2 wks
CS, CD configured AC amplifier designs
SPICE simulations
4. Frequency Response of AC Amplifiers
Hybrid-pi model
High frequency response of BJT and FET amplifiers
SPICE simulations
5. Multi-stage A.C. Amplifier Design
Bipolar CC/CE/CC three-stage design
Hybrid JFET/CE/CC three-stage design
6. Other Discrete Amplifiers
Power amplifiers, Class-A, -B, -AB
Push-pull amplifiers
Tuned R.F. Amplifiers, Class-A, -C
7. Operational Amplifiers
The difference amplifier
Common-mode, differential-mode amplification
Generic IC OpAmp circuit
OpAmp models
8. Functional Design with Operational Amps.
8,10,12,13
2 wks
11 & notes
2.5 wks
15
1 wks
Inverting, non-inverting, summing amplifiers
Differentiators, integrators, active filters
Rectifying and logarithmic amplifiers
Power amplifiers, dc voltage regulators
9. Oscillator Design (Feedback and Stability of Amplifiers)
Frequency response of op. amps.
Feedback and stability of feedback sysyems
Frequench compensation of op. amp circuits
Controlled instability for oscillator
The phase-shift oscillator, Wien bridge oscillator
Discrete resonant oscillators
10. Digital Logic Families: Internal Design
DTL, TTL, Schottky-TTL, ECL principles
PMOS, NMOS, CMOS circuits
Comparison of logic circuit families
Timers
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Grading Policy:
TESTS :
Quizzes & Homeworks :
Lab. Reports/performance
Test Dates:
TEST 1
TEST 2
TEST 3
Guvench S'08
3 X 20%
10% or less
30% or more
February 28, ’08
April 10, 2008
May 6, 2008
Thursday
Thursday
Tuesday (Finals Week)
UNIVERSITY OF SOUTHERN MAINE
Department of Electrical Engineering
ELE 343
Electronics II
Spring 2008
Dr. M.G. Guvench
ELECTRONICS LABORATORY EXPERIMENTS
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TITLE
Dates
Report due
1
2
3
4
AC Coupled BJT Amplifier Design II
Measurement of JFET Characteristics
JFET Amplifier Design
BJT Amplifier Design for Max. Swing
Winter Break
Test Review
TEST #1
5
6
7
8
9
10
Feb. 26 March 4 & 6
March 11 & 13
March 18 & 20
March 13
March 20
April 3
April 8 & 10
April 15 & 17
April 22 & 24
April 17
April 24
May 1
March 22 – March 30
April 1, 2008 Tuesday
April 3, 2008 Thursday
Design with Op. Amps. II
Design with Op. Amps. III
Design with Op. Amps. IV
Test Review
TEST #3
January 31
February 7
February 14
March 4
February 16 - Feb. 24
February 26, 2008 Tuesday
February 28, 2008 Thursday
Multi-Stage Amplifier Design
BJT Difference Amplifier Design
Design with Op. Amps. I
Spring Break
Test Review
TEST #2
Jan. 17 & 22 &24
Jan.29 & 31
Feb. 5 & 7
Feb. 12 & Feb.14
May 1, 2008
May 6, 2008
Tuesday
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