Exam Details
Subject | Linear Integrated Circuits | |
Paper | ||
Exam / Course | BTCVI / BTECVI / BTELVI | |
Department | School of Engineering & Technology (SOET) | |
Organization | indira gandhi national open university | |
Position | ||
Exam Date | December, 2016 | |
City, State | new delhi, |
Question Paper
1. Design an active load for an emitter-coupled pair (differential amplifier) and perform a detailed analysis to find its differential mode gain and the output resistance.
2. Obtain the frequency response of an open-loop op-amp and discuss about the methods of frequency compensation.
3. Define offset voltage. Explain a method to nullify offset voltage.
Enlist the specification of a typical OP-AMP (741).
What are the limitations in a temperature compensated Zener-reference source?
Design a low pass filter with a cut-off frequency of 1 kHz and with a pass band gain of 2.
Discuss the operation of a monostable multivibrator.
6. Explain the functions of all the basic .building blocks of an op-amp.
7.
With neat sketch representations, explain the operation of positive peak follower.
State the advantages of sample and hold circuits.
8. Mention the ideal characteristics of an operational amplifier.
State the causes for slew rate in an operational amplifier? How is it indicated
9. Explain the triangle wave generator with a neat diagram and derive the expression of time period.
10. Write short notes on any two of the following:
Phase Shift Oscillator
Frequency Response of Non-compensated Op-amp
Voltage-to-Current Converters
2. Obtain the frequency response of an open-loop op-amp and discuss about the methods of frequency compensation.
3. Define offset voltage. Explain a method to nullify offset voltage.
Enlist the specification of a typical OP-AMP (741).
What are the limitations in a temperature compensated Zener-reference source?
Design a low pass filter with a cut-off frequency of 1 kHz and with a pass band gain of 2.
Discuss the operation of a monostable multivibrator.
6. Explain the functions of all the basic .building blocks of an op-amp.
7.
With neat sketch representations, explain the operation of positive peak follower.
State the advantages of sample and hold circuits.
8. Mention the ideal characteristics of an operational amplifier.
State the causes for slew rate in an operational amplifier? How is it indicated
9. Explain the triangle wave generator with a neat diagram and derive the expression of time period.
10. Write short notes on any two of the following:
Phase Shift Oscillator
Frequency Response of Non-compensated Op-amp
Voltage-to-Current Converters
Other Question Papers
Departments
- Centre for Corporate Education, Training & Consultancy (CCETC)
- Centre for Corporate Education, Training & Consultancy (CCETC)
- National Centre for Disability Studies (NCDS)
- School of Agriculture (SOA)
- School of Computer and Information Sciences (SOCIS)
- School of Continuing Education (SOCE)
- School of Education (SOE)
- School of Engineering & Technology (SOET)
- School of Extension and Development Studies (SOEDS)
- School of Foreign Languages (SOFL)
- School of Gender Development Studies(SOGDS)
- School of Health Science (SOHS)
- School of Humanities (SOH)
- School of Interdisciplinary and Trans-Disciplinary Studies (SOITDS)
- School of Journalism and New Media Studies (SOJNMS)
- School of Law (SOL)
- School of Management Studies (SOMS)
- School of Performing Arts and Visual Arts (SOPVA)
- School of Performing Arts and Visual Arts(SOPVA)
- School of Sciences (SOS)
- School of Social Sciences (SOSS)
- School of Social Work (SOSW)
- School of Tourism & Hospitality Service Sectoral SOMS (SOTHSM)
- School of Tourism &Hospitality Service Sectoral SOMS (SOTHSSM)
- School of Translation Studies and Training (SOTST)
- School of Vocational Education and Training (SOVET)
- Staff Training & Research in Distance Education (STRIDE)
Subjects
- Advance Microprocessor And Architecture
- Analog and Mixed Mode VLSI Design
- Analog Communication
- Analog Electronic Circuits
- Analog Integrated Circuits Design
- Antennas and Propagation
- B10-Informatics
- Basics Of Electronics Engineering
- Computer Architecture
- Computer Communication Networks
- Control Engineering
- Data Communication And Network
- Device Modelling For Circuit Simulation
- Digital Electronics
- Digital Signal Processing
- Digital System Design
- Electromagnetic Field Theory
- Electronic Measurement and Inst
- Electronic Switching Circuits
- Embedded System Design
- Information Theory And Coding
- Linear Integrated Circuits
- Microcontrollers
- Microprocessor And Its Applications
- Microwave And Radar Engineering
- Multirate Systems
- Optical Fiber Communication
- Power Electronics
- Satellite And Tv Engineering
- Signal And Systems
- Wireless Communication