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Thursday, April 17, 2014

Subject: Signals Spectra, and Signal Processing

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Signals Spectra, and Signal Processing Lecture

Course Name

  • SIGNALS SPECTRA, AND SIGNAL PROCESSING

Course Description

  • Fourier transform; z transform; convolution; FIR filters; IIR filters; random signal analysis; correlation functions; DFT; FFT; spectral analysis; applications of signal processing to speech, image, etc.

Prerequisites:

Course Objectives

Upon completion of the course, the student must be able to conceptualize, analyze and design signals, spectra and signal processing system.

Signals Spectra, and Signal Processing Course Outline

Following is the list of topics we will discuss in this course:

Signals Spectra, and Signal Processing
Note: ADDING LESSON ON-PROGRESS . . .
LESSON 1: ON-PROGRESS . . .

Suggested References


credit: CMO 24 s2008©2013 www.FroydWess.com

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Subject: Principles of Communications

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Principles of Communications Lecture

Course Name

  • PRINCIPLES OF COMMUNICATIONS

Course Description

  • Bandwidth; filters; linear modulation; angle modulation; phase locked loop; pulse modulation; multiplexing techniques; noise analysis; radio transmitters and receivers.

Prerequisites:

Course Objectives

Upon completion of the course, the student must be able to:

  • 1. Conceptualize and analyze a communication system.
  • 2. design communication circuits and subsystems

Principles of Communications Course Outline

Following is the list of topics we will discuss in this course:

Principles of Communications
Note: ADDING LESSON ON-PROGRESS . . .
LESSON 1: ON-PROGRESS . . .

Suggested References


credit: CMO 24 s2008©2013 www.FroydWess.com

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Subject: Energy Conversion

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Energy Conversion Lecture

Course Name

  • ENERGY CONVERSION

Course Description

  • Principles of energy conversion and transducers: electromechanical, photoelectric, photovoltaic, thermoelectric, piezzoelectric; hall effect; reed switch; electrochemical, etc; generators, transformers; dynamic analysis, and fuel cells.

Prerequisites:

Course Objectives

The objective of the course is to introduce the concepts of energy conversion using transducers and be able to familiarize the students with the several applications of these devices.

Energy Conversion Course Outline

Following is the list of topics we will discuss in this course:

Energy Conversion
Note: ADDING LESSON ON-PROGRESS . . .
LESSON 1: ON-PROGRESS . . .

Suggested References


credit: CMO 24 s2008©2013 www.FroydWess.com

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Subject: Electronic Devices and Circuits

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Electronic Devices and Circuits Lecture

Course Name

  • ELECTRONIC DEVICES AND CIRCUITS / ELECTRONICS 1

Course Description

  • Introduction to quantum mechanics of solid state electronics; diode and transistor characteristics and models (BJT and FET); diode circuit analysis and applications; transistor biasing; small signal analysis; large signal analysis; transistor amplifiers; Boolean logic; transistor switch.

Prerequisites:

Course Objectives

Upon completion of the course, the student must be able to:

  • 1. Acquire a strong foundation on semiconductor physics; diode and diode circuit analysis; MOS and BJT (small and large signal) circuit analysis.
  • 2. Orientation: Review of Course
  • 3. Assessment of the Different Types of Learners
  • 4. Fundamentals of tubes and other devices
  • 5. Introduction of Semiconductors
  • 6. Diode Equivalent Circuits
  • 7. Wave Shaping Circuits
  • 8. Special Diode Application
  • 9. Power Supply And Voltage Regulation
  • 10. Bipolar Junction Transistor
  • 11. Small- Signal Analysis (BJT)
  • 12. Field Effect Transistor
  • 13. Small-Signal Analysis (FET)
  • 14. Large-Signal Analysis

Electronic Devices and Circuits Course Outline

Following is the list of topics we will discuss in this course:

Electronic Devices and Circuits
Note: ADDING LESSON ON-PROGRESS . . .
LESSON 1: ON-PROGRESS . . .

Suggested References

Robert L. Boylestad, Thomas L. Floyd
credit: CMO 24 s2008©2013 www.FroydWess.com

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Monday, April 14, 2014

Field-Effect Transistors (FETs) - MCQs Answers

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Answers key for  Field-Effect Transistors (FETs)
Below are the answers key for the Multiple Choice Questions (Quiz) in Field-Effect Transistors (FETs) .

1. between the ohmic area and the constant current area

2. pinch-off voltage

3. cutoff voltage

4. forward transconductance

5. the gate-source junction being reverse-biased

6. either a depletion or an enhancement MOSFET

7. MOSFET

8. 3 V

9. d

10. a

11. c

12. b

13. 6 V

14. 6.8 V

15. –9 V

16. 2 mA

17. 3.92 mA

18. 6 V

19. 8 V

20. 0 mA

21. –6 V

22. 2 V

23. reverse

24. ohmic, constant-current, breakdown

25. any of the above

26. D-MOSFET

27. true

28. IDSS

29. 0

30. all of the above

31. VGS

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credit: Thomas L. Floyd©2013 www.FroydWess.com

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