ETE

CEC353: Signal Integrity syllabus for ETE 2021 regulation (Professional Elective-III)

Signal Integrity detailed syllabus for Electronics & Telecommunication Engineering (ETE) for 2021 regulation curriculum has been taken from the Anna Universities official website and presented for the ETE students. For course code, course name, number of credits for a course and other scheme related information, do visit full semester subjects post given below.

For Electronics & Telecommunication Engineering 5th Sem scheme and its subjects, do visit ETE 5th Sem 2021 regulation scheme. For Professional Elective-III scheme and its subjects refer to ETE Professional Elective-III syllabus scheme. The detailed syllabus of signal integrity is as follows.

Course Objectives:

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Unit I

SIGNAL REFLECTION AND IMPEDANCE MATCHING TECHNIQUE
Phenomenon of signal reflection. Signal reflection at transmitting end.
Signal reflection at branch point. Multiple reflection in transmission line.
Prevention of signal reflection by using impedance matching technique.

Unit II

CROSSTALK NOISE
Crosstalk definition and classification. Crosstalk mechanism. Analysis of crosstalk noise in transmission line. Main factor of causing crosstalk noise.

Unit III

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Unit IV

FREQUENCY RESPONSE OF A CIRCUIT
Frequency response of transmission line and circuit. Inter-symbol interference (ISI) and eye-pattern. Deterioration of a signal waveform due to ISI. Circuit techniques to prevent the deterioration. Linear time-invariant systems. Frequency response of pulse.

Unit V

EYE DIAGRAM AND JITTER
Jitter Definition and Types of Jitter; Jitter decomposition; Eye diagram analysis and related measurement

Practical Exercises

  1. Generating 1GHz Differential signal from AWG
  2. Getting Eye on oscilloscope and conduct various measurement on Eye as well Timing parametric such as rise/fall times, pulse width, and duty cycle Programmable software clock recovery including software PLL .
  3. Accurate jitter analysis using the spectral and Q-scale methods for detailed decomposition of jitter components, including the extraction of industry standard dual-dirac model parameters
  4. Generate LVDS signal and conduct signal integrity measurement

List of Equipments needed:

  • 2Ch 1 GHz Arbitary waveform generator
  • 2GHz 4 flex channel scope with automated jitter and eye diagram measurement
  • LVDS measurement suite

Course Outcomes:

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Text Books:

  1. Signal and Power integrity Simplified -Eric Bogatin, Pearson, 3rd Edition
  2. High Speed Digital Design by Howard Johnson and Martin Graham, Prentice Hall,1st Edition

Reference Books:

  1. High Speed Signal Propagation and Howard Johnson,Prentice Hall,1st Edition

For detailed syllabus of all the other subjects of Electronics & Telecommunication Engineering 5th Sem, visit ETE 5th Sem subject syllabuses for 2021 regulation.

For all Electronics & Telecommunication Engineering results, visit Anna University ETE all semester results direct link.

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