EE211--Sophomore Lab

  • Course Outline

    Office Hours:

    Instructors: A. Khondker

    Office hours (Khondker):
    MW 10:30-12:30 F 2:30-3:30 pm CAMP 134
    email: khondker@clarkson.edu

    Teaching Assistants:

    Course outline In *.pdf format
    Lab Manual
    Safety and Operations Manual

  • Know your abc's
  • Everything you always wanted to know about Oscilloscopes and were afraid to ask.

    About PSpice

    Download now (old version 8 and about 8 Megs=2-3 mp3 songs from Napster) from here. Unzip in drive C: or D:. The make shortcuts (using right click of course) to "Pspicead.exe" (Pspice A/D) & "Psched.exe" (Schematic for drawing circuits only) and drag them to your desktop.

    Or, you may be able to download Pspice version 9.1 from Orcad here. On this page you have the choice of requesting a free CD from Orcad or if you are on the Clarkson net please click on the link on their page that says "DesignLab evaluation download for students".


  • Help on PSpice

    Operational Amplifiers:

  • The Op Amp Song For late night pleasures.
  • Practical guide to Op Amp analysis
  • National Semiconductor LM741 Op-amp page
  • About LM741 Op-Amp (in *.pdf format)

    555 Timer

  • LM555 pin diagram

  • Pin diagram of TTL Gates "Combinational Logic Circuits"- Lab

  • TTL Data for 5486 chip
  • TTL Data for 7410 chips
  • TTL Data for 7411a chips

    PSpice Files:

    res.cir- A simple resistive circuit
    res1.cir- A simple resistive circuit with dummy sources
    func1.cir- Function generator -- using .tran analysis
    func2.cir- Function generator -- using .ac analysis
    tran_res.cir- Transient response (transient analysis I)
    trn_rsp.cir- Transient response (transient analysis II)

    op_amp1.cir- Op Amp integrator (transient analysis)
    op_amp2.cir- Op Amp (inverting) differentiator (transient analysis)

    trn_res1.cir- Transient response Lab -- Step 2
    trn_res2.cir- Transient response Lab -- Step 6-7

    fr_resp1.cir- Frequency Response Lab. (An example)
    Use 115 Ohm in series with the inductor.

    555_fig2.cir- The 555 time circuit for astable operation (Step 3)

    
    
    
    
    
    
    
    
    
    
    
    EE321--Systems and Signals

    Course Outline

    Office Hours:
    10:00-12:00 noon, Wed, Fri, and 12:45-1:45 pm Monday, CAMP 134.
    email: khondker@sun.soe

    Homework (assignments are from the text)

    1. Chap. 1 1.2(c),1.5(a),(c), 1.9(a),(b),(c), 1.11(b),(c), 1.16(x3(t)), 1.18, 1.20(c),(d).
    2. Chap. 2 2.4(a), (b), (d), 2.5(a), (d), 2.11 (b), (c), (g).
    3. Chap. 3 3.6(h) - sum the series for n [-5,5], plot and compare with the original waveform, 3.15, 3.19, 3.31.
    Students who are familiar with MAPLE may want to look at homework #5 and #6 and their solutions in the ES100 course that I taught last year spring.
    4. Chap. 4 4.5 (h), (i), (j), 4.9 (a), 4.14, 4.15 (a), (d), (e), 4.16. (due date: March 14, 1997)
    5. Chap. 4 4.19, 4.20, 4.24, 4.25, 4.27. (due date: March 28, 1997)

    Download spectrogram version 2.3. This one will work on small size *.wav files. Enjoy and learn.

    6. Chap. 6 6.1 (c), (h), 6.3 (a), (c), 6.8 (b), (d), 6.9 (a) (due date: April 4, 1997)

    7. Chap. 7 7.1 (e), 7.2 (a), 7.15 (c), (d), 7.23 (due date: April 23, 1997)

    8. Chap. 8 8.1 (a), (b) 8.3 (a), (b) 8.5 (a), (d), 8.9 (a) (due date: May 2, 1997)

    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    

    EE341-- Electronic Devices and Circuits

  • Help on PSpice

    pSpice Files:

    Diodes
    diode_ch.cir- diode characteristics
    sm_sg_d1.cir- small-signal analysis in a diode circuit
    3diode1.cir- 3 diode string - voltage regulator
    zener1.cir- zener diode characteristics
    zener2.cir- A circuit with 2 zener diodes
    HW_rect.cir- Half-wave rectifier
    FW_rect.cir- Full-Wave peak rectifier circuit

    Bipolar Junction Transistors
    NPN transistor output-characteristics
    Example 4.9 of Sedra-Smith
    Example 4.10 of Sedra-Smith
    Common-Emitter amplifier
    Problem 4.78
    Sensitivity analysis in Common-Emitter amplifier
    Frequency response of the Common-Emitter amplifier
    Common-Collector amplifier

    Example 14.1 Homework #7, Prob. 3
    TTL voltage transfer characteristics Homework #7, Prob. 4

    Field Effect Transistors
    Id-Vds Characteristics of an NMOS transistor
    Id-Vgs Characteristics of an NMOS transistor
    NMOS inverter with a resistive load
    CMOS inverter

    limiter.cir- Limiter circuit - Homework 3.111

    4_78.cir Problem 4.78
    4_82.cir Problem 4.82
    4_83.cir Problem 4.83
    4_84.cir Problem 4.84
    4_85.cir Problem 4.85

    Summer 1999, Homework Solutions

    Homework solution #1 In *.pdf format
    Homework solution #2 In *.pdf format
    Homework solution #3 In *.pdf format
    Homework solution #4 In *.pdf format
    Homework solution #6 In *.pdf format
    Homework solution #7 In *.pdf format
    Homework solution #8 In *.pdf format
    Homework solution #9 In *.pdf format

    The graded homework will be available after 10:30 pm (Friday) at my office

    Hour exam I In *.pdf format
    Take Home exam In *.pdf format