Basic Electrical and Electronics Engineering detailed Syllabus for Electronics & Instrumentation Engineering (DEIE), C18 curriculum has been taken from the TSSBTET official website and presented for the diploma students. For Course Code, Course Name, Lectures, Tutorial, Practical/Drawing, Internal Marks, Max Marks, Total Marks, Min Marks and other information, do visit full semester subjects post given below.
For all other Diploma in Electronics & Instrumentation Engineering (DEIE) Syllabus for 1st Sem C18 Curriculum TSSBTET, do visit Diploma in Electronics & Instrumentation Engineering (DEIE) Syllabus for 1st Sem C18 Curriculum TSSBTET Subjects. The detailed Syllabus for basic electrical and electronics engineering is as follows.
Prerequisites:
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Course Outcome:
On successful completion of the course, the students will be able to attain below
Course Outcome:
- Define specific Resistance, conductance, temperature coefficient of Resistance and solve problems
- Write formula for star to Delta and Delta to star transformation and Solve simple problems on Resistance connected in series and parallel and Solve simple problems on work, power and Energy
- State and Explain Kirchhoffs voltage Laws and Solve simple problems on Faradays law and dynamically induced EMF
- Derive formula for Average value, RMS value of Sinusoidal wave and solve problems on average and RMS value of Sinusoidal wave and learn the working principle of transformers & stepper motors
- Protecting devices
- Classify semiconductor and learn the working principle of stabilizer and UPS
Course Contents:
For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier..
References:
- Basic Electricity vol. 1 – vol. 5 by ME Van Valkenburgh
- Basic Electrical Technology by VK Mehta.
- Basics Of Electrical Engineering By V.U.Bakshi U.A. Bakshi
- Basic Electrical and Electronics Engineering, 1e By D P Kothari; I J Nagrath
- A Textbook of Electrical Tech. Vol. 1 Basic Electrical Engineering BL. THERAJA
- Principles of Electronics by V.K. MEHTA and ROHIT MEHTA
Course Outcome:
Basic Principles of Electricity
- Define Electric charge, current, potential difference
- State ohms Law and limitations of ohms Law
- Define Resistance and laws of Resistance
- Define the terms specific Resistance and conductance
- Know about effect of temperature on Resistance
- Derive the formula for resistance at any temperature
- Define temperature coefficient of Resistance
- Derive the formula for temperature coefficient of Resistance at any temperature
- Solve simple problems on specific Resistance
- Solve simple problems on temperature coefficient of Resistance
Dc Circuits
- Know about Resistance in series, DC circuits with 3 resistors and DC source and specify relationship between applied voltage & currents through resistors
- Know about Resistance in parallel, DC circuits with 3 resistors and DC source and specify relationship between applied voltage & currents through resistors
- Know about Resistance in series and parallel and find equivalent resistance
- Derive the formula for current in parallel circuits with 2 resistors
- Write formula for star to Delta transformation
- Write formula for Delta to star transformation
- Solve simple problems on Resistance connected in series and parallel
- Define the active circuit passive circuit
- Define active elements and passive elements
- Define junction, branch and loop
- State and Explain Kirchhoffs current Law
- State and Explain Kirchhoffs voltage Law
- Define Electrical work done and write its units
- Define Electrical power and write units
- Define Electrical Energy and write its units
- Solve simple problem on Electrical Power
- Solve simple problems on Energy
Electromagnetic Induction.
- Define Magnetic field
- Define Magnetic Flux
- Define Flux density
- Define Magneto Motive Force (MMF)
- Define Reluctance
- Define Permeability,
- State Faradays law of Electromagnetic Induction
- State Lenzs law
- Classify statically induced emf
- Define dynamically induced emf
- Define self-inductance and mutual inductance.
- Define coefficient of coupling
- Write the expression for
- Inductances in series
- Inductances in parallel
- State Flemings right hand rule and left hand rule
- Derive the formula for energy stored in a magnetic field
- Solve simple problems on Faradays law and dynamically induced emf
- Solve simple problems on equivalent Inductance when connected in series
Ac Fundamentals
- Define the terms
- Cycle
- Time period
- frequency.
- Define
- Peak value
- Average value
- R.M.S value.
- Define
- Phase
- Phase difference
- Define
- form factor
- peak factor
- Derive formula for Average value of Sinusoidal wave
- Derive formula for RMS value for Sinusoidal value
- Solve simple problems on average and RMS value of Sinusoidal wave
Transformers, Stepper Motors Andprotective Devices
- Explain the construction and working principle of Transformer
- Define the terms Turns ratio, current ratio, voltage ratio and ratings of transformers
- State the types of transformers and their applications
- Know the applications of Stepper motor, Spindle motor, and Brushless DC motors
- Know about Switch- different types of switches with their symbols
- Know about Fuse – necessity of fuse, ratings and types
- Know about Relay- symbol, working principle of relay
- Necessity of grounding/earthing of any electrical/electronic equipment
- Need of spike busters for protection of computers
- Need of antistatic device and types of antistatic devices for protection of computercomponents
Basic Electronics Andups
- Classify conductor semiconductor and insulator based on valance electrons
- Classify semiconductors
- Distinguish intrinsic and extrinsic semiconductors
- Distinguish P- type and N- Type semiconductors
- Working principle of PN junction Diode
- Write application of PN junction Diode and Zener diode.
- Types of Transistors and working principle of Transistors
- Write applications of Transistors
- Knowthe necessity of stabilizer and types of stabilizers
- Working principle of stabilizer with block diagram
- Know the rating of stabilizers
- Know the necessity of UPS and types of UPS
- Working principle of online UPS with block diagram
- Working principle of off line UPS with block diagram
- Knowabout UPS ratings and back-up time with example
- Knowabout criteria for Selection of UPS
- Know aboutBattery- Types, Ah rating, Maintenance of battery
- Learn about SMPS – Meaning,working, block diagram, advantages, ratings
Suggested Student Activities
For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier..
E-Learning Links:
- http://nptel.ac.in
- http://www.facstaff.bucknell.edu
- http://electrical4u.com/
- http://www.electronics-tutorials
Course Outcome:
- Define specific Resistance, conductance, temperature coefficient of Resistance and solve problems
- Write formula for star to Delta and Delta to star transformation and Solve simple problems on Resistance connected in series and parallel and Solve simple problems on work, power and Energy
- State and Explain Kirchhoffs voltage Laws and Solve simple problems on Faradays law and dynamically induced EMF
- Derive formula for Average value, RMS value of Sinusoidal wave and solve problems on average and RMS value of Sinusoidal wave
- Learn the working principle of transformers & stepper motors and know about protective devices
- Classify semiconductor and learn the working principle of stabilizer and UPS
For detail Syllabus of all other subjects of Electronics & Instrumentation Engineering, C18 curriculum do visit Diploma In Electronics & Instrumentation Engineering 1st Sem Syllabus for C18 curriculum.
For all Electronics & Instrumentation Engineering results, visit TSSBTET DEIE all semester results direct links.