SlideShare ist ein Scribd-Unternehmen logo
1 von 6
Downloaden Sie, um offline zu lesen
www.studentyogi.com                                                                         www.studentyogi.com

         Code No: R05310401
                                                                                   Set No. 1
                III B.Tech I Semester Regular Examinations, November 2007
                                      LINEAR IC APPLICATIONS
                             (Electronics & Communication Engineering)
         Time: 3 hours                                                                    Max Marks: 80
                                       Answer any FIVE Questions
                                     All Questions carry equal marks



           1. (a) Explain the use of constant bias circuit in operation of di erential ampli er.
               (b) Analyze the dual input balanced output con guration of di erential ampli er
                    using DC.                                                                         [8+8]

           2. (a) Explain how the input o set voltage compensated for?
               (b) How fast can the output of an op - amp change by 10V, if its slew rate is 1
                    V/ s.
               (c) De ne thermal drift & slew rate.                                                 [6+4+6]

           3. (a) Design a di erentiator to di erentiate an input signal that varies in frequency
                    from 10 Hz to about 1KHz. If a sine wave of 1V peak at 1000 Hz is applied
                    to this di erentiator draw the output waveforms.
               (b) Why active di erentiator circuits are not used in analog computer to solve
                   di erential equations.                                                            [10+6]
           4. (a) Explain, How to obtain triangular wave using a square wave generator.
               (b) With the help of a neat circuit diagram explain the working of a logarithmic
                   ampli er.                                                                          [8+8]

           5. (a) De ne Bessel, Butterworth and Chebysher lters, and compare their frequency
                    response.
               (b) Sketch the circuit diagram of band elimination lter and design a wide band-
                    reject having fH =200Hz and fL =1KHz. Assume necessary data. [8+8]

           6. Explain an application in which the 555 timer can be used as Astable multivibrator.
                                                                                                       [16]

           7. (a) Compare R - 2R and weight resistor types of DACs.
               (b) Write short notes on A/D converters.
               (c) De ne the following terms as related to DAC:
                      i. Linearity
                     ii. Resolution.                                                                [8+4+4]
           8. What are all basic blocks of analog multiplexer? Explain how the data selections
              pro cess is performed it.                                                                [16]
www.studentyogi.com                                                                         www.studentyogi.com

         Code No: R05310401
                                                                                   Set No. 2
                III B.Tech I Semester Regular Examinations, November 2007
                                      LINEAR IC APPLICATIONS
                             (Electronics & Communication Engineering)
         Time: 3 hours                                                                    Max Marks: 80
                                       Answer any FIVE Questions
                                     All Questions carry equal marks


           1. (a) Explain how large open circuit voltage gain of an op - amp can be obtained
                    by using cascading of di erential ampli er stages.
               (b) Explain ac analysis of di erential ampli er.                                          [8+8]
           2. (a) Discuss the Pole - Zero and Dominant pole compensation techniques for an
                    op - amp.
               (b) An op - amp has a slew rate of 1.5V/ s. What is the maximum frequency of
                    an output sinusoid of peak value 10 V at which the distortion sets in due to
                    the slew rate limitation?                                                            [8+8]

           3. (a) Design a di erentiator to di erentiate an input signal that varies in frequency
                    from 10 Hz to about 1KHz. If a sine wave of 1V peak at 1000 Hz is applied
                    to this di erentiator draw the output waveforms.
               (b) Why active di erentiator circuits are not used in analog computer to solve
                   di erential equations.                                                               [10+6]
           4. (a) Describe the operation of logarithmic ampli er using op - amp.
               (b) List the conditions for oscillation in all the three types of oscillators, namely,
                    RC phase shift, Wien - bridge and quadrature oscillators. [8+8]
           5. (a) Draw the wide band reject lter circuit and also the frequency response of it.
               (b) Draw the schematic diagram of an all pass lter and determine the phase shift
                      between the input and output at f = 2kHz.                                          [8+8]
           6. (a) Con gure a 555 timer as a Schmitt trigger and explain.
               (b) Explain frequency translation and FSK demodulation using 565 PLL. [8+8]

           7. (a) Explain the di erence between Analog to Digital converter and Digital to
                    Analog converters through underlying equations.
               (b) Illustrate one application each of Analog to Digital and Digital to Analog
                    converters.                                                                         [6+10]
           8. (a) Explain the function of a typical adjustable voltage regulator. How can you
                    increase the current driving capacity of the regulator?
               (b) Describe the principle of working of a balanced modulator using op - amp.
                    Give the applications of it.                                                        [6+10]
www.studentyogi.com                                                                               www.studentyogi.com

         Code No: R05310401
                                                                                     Set No. 3
                III B.Tech I Semester Regular Examinations, November 2007
                                      LINEAR IC APPLICATIONS
                             (Electronics & Communication Engineering)
         Time: 3 hours                                                                       Max Marks: 80
                                       Answer any FIVE Questions
                                     All Questions carry equal marks



           1. (a) Explain how large open circuit voltage gain of an op - amp can be obtained
                    by using cascading of di erential ampli er stages.
               (b) Explain ac analysis of di erential ampli er.                                         [8+8]

           2. (a) Calculate the e ect of variation in power supply voltages on the output o set
                    voltage for an op - amp circuit.
               (b) Why frequency compensation is required for an op - amp and explain frequency
                   compensation technique using suitable diagrams.                             [6+10]

           3. (a) Design a di erentiator to di erentiate an input signal that varies in frequency
                    from 10 Hz to about 1KHz. If a sine wave of 1V peak at 1000 Hz is applied
                    to this di erentiator draw the output waveforms.
               (b) Why active di erentiator circuits are not used in analog computer to solve
                   di erential equations.                                                              [10+6]

           4. (a) Derive the expression of the output voltage of an antilog ampli er using op -
                    amp.
               (b) Design a saw tooth wave form generator using op - amp and plot the waveforms
                    for the given speci cations frequency: 5kHz, Vsat = ± 15V (Assume necessary
                    data).                                                                      [8+8]

           5. (a) For the all pass lter, determine the phase shift between the input and output
                    at f = 2kHz. To obtain a phase shift , what modi cations are necessary in
                    the circuit?
               (b) Derive the expression for the transfer function of 2nd order High pass lter.
                                                                                                        [8+8]

           6. (a) Explain the operation of Monostable multivibrator using 555 timer. Derive
                    the expression of time delay of a Monostable multivibrator using 555 timer.
               (b) Design monostable multivibrator using 555 timer to produce a pulse width of
                    100 m sec.                                                                         [10+6]

           7. (a) What are the basic blocks preceding an Analog to Digital converter in a typical
                   application like digital audio recording?
               (b) With the help of a neat circuit diagram and waveforms, explain the operation
                   of a dual slope ADC. What are its special features?                                 [6+10]
www.studentyogi.com                                  www.studentyogi.com

         Code No: R05310401
                                                  Set No. 3
               (a) IC 1496 and its applications
               (b) Sample and hold circuit.                   [16]
www.studentyogi.com                                                                           www.studentyogi.com

         Code No: R05310401
                                                                                    Set No. 4
                III B.Tech I Semester Regular Examinations, November 2007
                                      LINEAR IC APPLICATIONS
                             (Electronics & Communication Engineering)
         Time: 3 hours                                                                     Max Marks: 80
                                       Answer any FIVE Questions
                                     All Questions carry equal marks



           1. (a) Discuss the di erences between the di erential ampli ers used in the rst two
                    stages of op - amp.
               (b) Compare and contrast an ideal op - amp and practical op - amp.
               (c) Draw an ideal voltage transfer curve of an op - amp. [8+5+3]

           2. (a) What are the three factors that e ect the electrical parameters of an op - amp
               (b) Compare and contrast an ideal op - amp and practical op - amp.
               (c) What are the features of 741 op - amp and also draw the pin diagram.[3+6+7]

           3. (a) Draw the circuit diagram of a two input non-inverting type summing ampli er
                    and derive the expression for the output voltage.
               (b) Brie y explain why negative feedback is desirable in ampli er applications.
               (c) How does negative feedback a ect the performance of an inverting ampli er?
                                                                                                       [7+5+4]

           4. (a) Derive the expression of the output voltage of an antilog ampli er using op -
                    amp.
               (b) Design a saw tooth wave form generator using op - amp and plot the waveforms
                    for the given speci cations frequency: 5kHz, Vsat = ± 15V (Assume necessary
                    data).                                                                      [8+8]

           5. (a) List the conditions for oscillation in all the three types of oscillators, namely,
                     RC phase shift, Wien - bridge and quadrature oscillators.
               (b) Design an op ? amp based relaxation oscillator and derive the frequency of
                    oscillation.                                                                          [8+8]

           6. (a) Draw the circuit of PLL as frequency multiplier and explain its working.
               (b) Explain with neat diagram how 555 timers can be used as a Schmitt trigger.
                                                                                                         [8+8]

           7. (a) Sketch and explain the transfer characteristic of a DAC with necessary equa-
                    tions.
               (b) LSB of a 9 - bit DAC is represented by 19.6mv. If an input of 9 zero bits is
                    represented by 0 volts.
                      i. Find the output of the DAC for an input 10110 1101 and 01101 1011.
www.studentyogi.com                                                                       www.studentyogi.com

         Code No: R05310401
                                                                               Set No. 4
           8. (a) Describe the operation of four quadrant multiplier with neat diagram.
               (b) Explain the operation of IC 1496 as mixer circuit.                           [8+8]

Weitere ähnliche Inhalte

Was ist angesagt?

Lect2 up350 (100328)
Lect2 up350 (100328)Lect2 up350 (100328)
Lect2 up350 (100328)
aicdesign
 
ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...
ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...
ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...
NMDG NV
 

Was ist angesagt? (16)

Ch1 lecture slides Chenming Hu Device for IC
Ch1 lecture slides Chenming Hu Device for IC Ch1 lecture slides Chenming Hu Device for IC
Ch1 lecture slides Chenming Hu Device for IC
 
Variation of Electrical Transport Parameters with Large Grain Fraction in Hig...
Variation of Electrical Transport Parameters with Large Grain Fraction in Hig...Variation of Electrical Transport Parameters with Large Grain Fraction in Hig...
Variation of Electrical Transport Parameters with Large Grain Fraction in Hig...
 
8th Semester Electronic and Communication Engineering (2012June) Question Papers
8th Semester Electronic and Communication Engineering (2012June) Question Papers8th Semester Electronic and Communication Engineering (2012June) Question Papers
8th Semester Electronic and Communication Engineering (2012June) Question Papers
 
Ch8 lecture slides Chenming Hu Device for IC
Ch8 lecture slides Chenming Hu Device for ICCh8 lecture slides Chenming Hu Device for IC
Ch8 lecture slides Chenming Hu Device for IC
 
7th Semester Electronic and Communication Engineering (2013-December) Questio...
7th Semester Electronic and Communication Engineering (2013-December) Questio...7th Semester Electronic and Communication Engineering (2013-December) Questio...
7th Semester Electronic and Communication Engineering (2013-December) Questio...
 
Ch3 lecture slides Chenming Hu Device for IC
Ch3 lecture slides Chenming Hu Device for ICCh3 lecture slides Chenming Hu Device for IC
Ch3 lecture slides Chenming Hu Device for IC
 
Lect2 up350 (100328)
Lect2 up350 (100328)Lect2 up350 (100328)
Lect2 up350 (100328)
 
Ch6 lecture slides Chenming Hu Device for IC
Ch6 lecture slides Chenming Hu Device for ICCh6 lecture slides Chenming Hu Device for IC
Ch6 lecture slides Chenming Hu Device for IC
 
Ch5 lecture slides Chenming Hu Device for IC
Ch5 lecture slides Chenming Hu Device for ICCh5 lecture slides Chenming Hu Device for IC
Ch5 lecture slides Chenming Hu Device for IC
 
Ch7 lecture slides Chenming Hu Device for IC
Ch7 lecture slides Chenming Hu Device for ICCh7 lecture slides Chenming Hu Device for IC
Ch7 lecture slides Chenming Hu Device for IC
 
Ch2 lecture slides Chenming Hu Device for IC
Ch2 lecture slides Chenming Hu Device for ICCh2 lecture slides Chenming Hu Device for IC
Ch2 lecture slides Chenming Hu Device for IC
 
Microwave Systems
Microwave SystemsMicrowave Systems
Microwave Systems
 
18 ec41 analog circuits model papers
18 ec41 analog circuits model papers18 ec41 analog circuits model papers
18 ec41 analog circuits model papers
 
LOW POWER DIGITAL DESIGN
LOW POWER DIGITAL DESIGNLOW POWER DIGITAL DESIGN
LOW POWER DIGITAL DESIGN
 
ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...
ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...
ZVxPlus Application: Transistor Characterization, Reliability and Model Verif...
 
Evidence Of Bimodal Crystallite Size Distribution In Microcrystalline Silico...
Evidence Of Bimodal Crystallite Size Distribution In  Microcrystalline Silico...Evidence Of Bimodal Crystallite Size Distribution In  Microcrystalline Silico...
Evidence Of Bimodal Crystallite Size Distribution In Microcrystalline Silico...
 

Andere mochten auch

Fundamentals of digital electronics
 Fundamentals of digital electronics Fundamentals of digital electronics
Fundamentals of digital electronics
sandeep patil
 
Report On Image Sensors
Report On Image SensorsReport On Image Sensors
Report On Image Sensors
pranavhaldar
 

Andere mochten auch (20)

Linear Integrated Circuit
Linear Integrated Circuit Linear Integrated Circuit
Linear Integrated Circuit
 
17445 linear integrated circuits
17445   linear integrated circuits17445   linear integrated circuits
17445 linear integrated circuits
 
CHRISLIAODESIGN
CHRISLIAODESIGNCHRISLIAODESIGN
CHRISLIAODESIGN
 
Computer presentation
Computer presentationComputer presentation
Computer presentation
 
Linear IC Technology
Linear IC TechnologyLinear IC Technology
Linear IC Technology
 
Introduction to sensors
Introduction to sensorsIntroduction to sensors
Introduction to sensors
 
types of computer
types of computer types of computer
types of computer
 
Types of Computer
Types of ComputerTypes of Computer
Types of Computer
 
Image sensor
Image sensorImage sensor
Image sensor
 
Types of computer
Types of computerTypes of computer
Types of computer
 
Charged coupled device
Charged coupled deviceCharged coupled device
Charged coupled device
 
Fundamentals of digital electronics
 Fundamentals of digital electronics Fundamentals of digital electronics
Fundamentals of digital electronics
 
CCD vs CMOS!
CCD vs CMOS!CCD vs CMOS!
CCD vs CMOS!
 
Charge coupled device(ccd)
Charge coupled device(ccd)Charge coupled device(ccd)
Charge coupled device(ccd)
 
Basics of digital electronics
Basics of digital electronicsBasics of digital electronics
Basics of digital electronics
 
Report On Image Sensors
Report On Image SensorsReport On Image Sensors
Report On Image Sensors
 
Image Sensor PPT
Image Sensor PPTImage Sensor PPT
Image Sensor PPT
 
Linear Integrated Circuits -LIC!
Linear Integrated Circuits -LIC!Linear Integrated Circuits -LIC!
Linear Integrated Circuits -LIC!
 
CCD (Charge Coupled Device)
CCD (Charge Coupled Device)CCD (Charge Coupled Device)
CCD (Charge Coupled Device)
 
Types of Computer
Types of ComputerTypes of Computer
Types of Computer
 

Ähnlich wie Linear Ic Applications Jntu Model Paper{Www.Studentyogi.Com}

Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}
Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}
Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 
E L E C T R I C A L M E A S U R E M E N T S J N T U M O D E L P A P E R{Www
E L E C T R I C A L  M E A S U R E M E N T S  J N T U  M O D E L  P A P E R{WwwE L E C T R I C A L  M E A S U R E M E N T S  J N T U  M O D E L  P A P E R{Www
E L E C T R I C A L M E A S U R E M E N T S J N T U M O D E L P A P E R{Www
guest3f9c6b
 
C O M M U N I C A T I O N T H E O R Y J N T U M O D E L P A P E R{Www
C O M M U N I C A T I O N  T H E O R Y  J N T U  M O D E L  P A P E R{WwwC O M M U N I C A T I O N  T H E O R Y  J N T U  M O D E L  P A P E R{Www
C O M M U N I C A T I O N T H E O R Y J N T U M O D E L P A P E R{Www
guest3f9c6b
 
Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}
Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}
Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 
Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}
Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}
Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 
Analog Communications Jntu Model Paper{Www.Studentyogi.Com}
Analog Communications Jntu Model Paper{Www.Studentyogi.Com}Analog Communications Jntu Model Paper{Www.Studentyogi.Com}
Analog Communications Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 

Ähnlich wie Linear Ic Applications Jntu Model Paper{Www.Studentyogi.Com} (20)

Basic electronic devices and circuits
Basic electronic devices and circuitsBasic electronic devices and circuits
Basic electronic devices and circuits
 
Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}
Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}
Basicelectronicdevicesandcircuits Jntu Model Paper{Www.Studentyogi.Com}
 
Basic electronic devices and circuits Jntu Model Paper{Www.Studentyogi.Com}
Basic electronic devices and circuits Jntu Model Paper{Www.Studentyogi.Com}Basic electronic devices and circuits Jntu Model Paper{Www.Studentyogi.Com}
Basic electronic devices and circuits Jntu Model Paper{Www.Studentyogi.Com}
 
E L E C T R I C A L M E A S U R E M E N T S J N T U M O D E L P A P E R{Www
E L E C T R I C A L  M E A S U R E M E N T S  J N T U  M O D E L  P A P E R{WwwE L E C T R I C A L  M E A S U R E M E N T S  J N T U  M O D E L  P A P E R{Www
E L E C T R I C A L M E A S U R E M E N T S J N T U M O D E L P A P E R{Www
 
Electrical Measurements Jntu Model Paper{Www.Studentyogi.Com}
Electrical Measurements Jntu Model Paper{Www.Studentyogi.Com}Electrical Measurements Jntu Model Paper{Www.Studentyogi.Com}
Electrical Measurements Jntu Model Paper{Www.Studentyogi.Com}
 
C O M M U N I C A T I O N T H E O R Y J N T U M O D E L P A P E R{Www
C O M M U N I C A T I O N  T H E O R Y  J N T U  M O D E L  P A P E R{WwwC O M M U N I C A T I O N  T H E O R Y  J N T U  M O D E L  P A P E R{Www
C O M M U N I C A T I O N T H E O R Y J N T U M O D E L P A P E R{Www
 
Basic Electronics Jntu Btech 2008
Basic Electronics Jntu Btech 2008Basic Electronics Jntu Btech 2008
Basic Electronics Jntu Btech 2008
 
Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}
Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}
Basic Electronics Jntu Btech 2008 Jntu Model Paper{Www.Studentyogi.Com}
 
410402 Electronic Measurements And Instrumentation
410402 Electronic Measurements And Instrumentation410402 Electronic Measurements And Instrumentation
410402 Electronic Measurements And Instrumentation
 
Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}
Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}
Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}
 
Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}
Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}
Electronic Devices And Circuits Jntu Model Paper{Www.Studentyogi.Com}
 
12302 Basic Electrical And Electronics Engineering
12302 Basic Electrical And Electronics Engineering12302 Basic Electrical And Electronics Engineering
12302 Basic Electrical And Electronics Engineering
 
Antennas And Wave Propagation
Antennas And Wave PropagationAntennas And Wave Propagation
Antennas And Wave Propagation
 
Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}
Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}
Antennas And Wave Propagation Jntu Model Paper{Www.Studentyogi.Com}
 
Hvdc Transmission Jntu Model Paper{Www.Studentyogi.Com}
Hvdc Transmission Jntu Model Paper{Www.Studentyogi.Com}Hvdc Transmission Jntu Model Paper{Www.Studentyogi.Com}
Hvdc Transmission Jntu Model Paper{Www.Studentyogi.Com}
 
Awp
AwpAwp
Awp
 
05212201 Calibration And Electronic Measurements
05212201 Calibration  And  Electronic Measurements05212201 Calibration  And  Electronic Measurements
05212201 Calibration And Electronic Measurements
 
05212201 C A L I B R A T I O N A N D E L E C T R O N I C M E A S U R E ...
05212201  C A L I B R A T I O N   A N D   E L E C T R O N I C  M E A S U R E ...05212201  C A L I B R A T I O N   A N D   E L E C T R O N I C  M E A S U R E ...
05212201 C A L I B R A T I O N A N D E L E C T R O N I C M E A S U R E ...
 
Analog Communications Jntu Model Paper{Www.Studentyogi.Com}
Analog Communications Jntu Model Paper{Www.Studentyogi.Com}Analog Communications Jntu Model Paper{Www.Studentyogi.Com}
Analog Communications Jntu Model Paper{Www.Studentyogi.Com}
 
Analog Communications
Analog CommunicationsAnalog Communications
Analog Communications
 

Mehr von guest3f9c6b

Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}
Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}
Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 
Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}
Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}
Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 
Control Systems Jntu Model Paper{Www.Studentyogi.Com}
Control Systems Jntu Model Paper{Www.Studentyogi.Com}Control Systems Jntu Model Paper{Www.Studentyogi.Com}
Control Systems Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 
Computer Programming Jntu Model Paper{Www.Studentyogi.Com}
Computer Programming Jntu Model Paper{Www.Studentyogi.Com}Computer Programming Jntu Model Paper{Www.Studentyogi.Com}
Computer Programming Jntu Model Paper{Www.Studentyogi.Com}
guest3f9c6b
 

Mehr von guest3f9c6b (20)

Mass Transfer Operations I Jntu Model Paper{Www.Studentyogi.Com}
Mass Transfer Operations I Jntu Model Paper{Www.Studentyogi.Com}Mass Transfer Operations I Jntu Model Paper{Www.Studentyogi.Com}
Mass Transfer Operations I Jntu Model Paper{Www.Studentyogi.Com}
 
Linear Ic Applications Jntu Model Paper{Www.Studentyogi.Com}
Linear Ic Applications Jntu Model Paper{Www.Studentyogi.Com}Linear Ic Applications Jntu Model Paper{Www.Studentyogi.Com}
Linear Ic Applications Jntu Model Paper{Www.Studentyogi.Com}
 
English Jntu Model Paper{Www.Studentyogi.Com}
English Jntu Model Paper{Www.Studentyogi.Com}English Jntu Model Paper{Www.Studentyogi.Com}
English Jntu Model Paper{Www.Studentyogi.Com}
 
Engineering Chemistry Jntu Model Paper{Www.Studentyogi.Com}
Engineering Chemistry Jntu Model Paper{Www.Studentyogi.Com}Engineering Chemistry Jntu Model Paper{Www.Studentyogi.Com}
Engineering Chemistry Jntu Model Paper{Www.Studentyogi.Com}
 
Engineering Chemistry 1 Jntu Model Paper{Www.Studentyogi.Com}
Engineering Chemistry 1 Jntu Model Paper{Www.Studentyogi.Com}Engineering Chemistry 1 Jntu Model Paper{Www.Studentyogi.Com}
Engineering Chemistry 1 Jntu Model Paper{Www.Studentyogi.Com}
 
Emwavesandtransmission Lines Jntu Model Paper{Www.Studentyogi.Com}
Emwavesandtransmission Lines Jntu Model Paper{Www.Studentyogi.Com}Emwavesandtransmission Lines Jntu Model Paper{Www.Studentyogi.Com}
Emwavesandtransmission Lines Jntu Model Paper{Www.Studentyogi.Com}
 
Embedded Systems Jntu Model Paper{Www.Studentyogi.Com}
Embedded Systems Jntu Model Paper{Www.Studentyogi.Com}Embedded Systems Jntu Model Paper{Www.Studentyogi.Com}
Embedded Systems Jntu Model Paper{Www.Studentyogi.Com}
 
Electromagneticwavesandtransmissionlines Jntu Model Paper{Www.Studentyogi.Com}
Electromagneticwavesandtransmissionlines Jntu Model Paper{Www.Studentyogi.Com}Electromagneticwavesandtransmissionlines Jntu Model Paper{Www.Studentyogi.Com}
Electromagneticwavesandtransmissionlines Jntu Model Paper{Www.Studentyogi.Com}
 
Electrical Technology Jntu Model Paper{Www.Studentyogi.Com}
Electrical Technology Jntu Model Paper{Www.Studentyogi.Com}Electrical Technology Jntu Model Paper{Www.Studentyogi.Com}
Electrical Technology Jntu Model Paper{Www.Studentyogi.Com}
 
Electrical Machines Iii Jntu Model Paper{Www.Studentyogi.Com}
Electrical Machines Iii Jntu Model Paper{Www.Studentyogi.Com}Electrical Machines Iii Jntu Model Paper{Www.Studentyogi.Com}
Electrical Machines Iii Jntu Model Paper{Www.Studentyogi.Com}
 
Electrical Machines Ii Jntu Model Paper{Www.Studentyogi.Com}
Electrical Machines Ii Jntu Model Paper{Www.Studentyogi.Com}Electrical Machines Ii Jntu Model Paper{Www.Studentyogi.Com}
Electrical Machines Ii Jntu Model Paper{Www.Studentyogi.Com}
 
Electrical Circuits Analysis Jntu Model Paper{Www.Studentyogi.Com}
Electrical Circuits Analysis Jntu Model Paper{Www.Studentyogi.Com}Electrical Circuits Analysis Jntu Model Paper{Www.Studentyogi.Com}
Electrical Circuits Analysis Jntu Model Paper{Www.Studentyogi.Com}
 
Digital Ic Applications Jntu Model Paper{Www.Studentyogi.Com}
Digital Ic Applications Jntu Model Paper{Www.Studentyogi.Com}Digital Ic Applications Jntu Model Paper{Www.Studentyogi.Com}
Digital Ic Applications Jntu Model Paper{Www.Studentyogi.Com}
 
Digital Control Systems Jntu Model Paper{Www.Studentyogi.Com}
Digital Control Systems Jntu Model Paper{Www.Studentyogi.Com}Digital Control Systems Jntu Model Paper{Www.Studentyogi.Com}
Digital Control Systems Jntu Model Paper{Www.Studentyogi.Com}
 
Designofmachinemembers I Jntu Model Paper{Www.Studentyogi.Com}
Designofmachinemembers I Jntu Model Paper{Www.Studentyogi.Com}Designofmachinemembers I Jntu Model Paper{Www.Studentyogi.Com}
Designofmachinemembers I Jntu Model Paper{Www.Studentyogi.Com}
 
Digital Communications Jntu Model Paper{Www.Studentyogi.Com}
Digital Communications Jntu Model Paper{Www.Studentyogi.Com}Digital Communications Jntu Model Paper{Www.Studentyogi.Com}
Digital Communications Jntu Model Paper{Www.Studentyogi.Com}
 
Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}
Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}
Databasemanagementsystems Jntu Model Paper{Www.Studentyogi.Com}
 
Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}
Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}
Decision Support Systems Jntu Model Paper{Www.Studentyogi.Com}
 
Control Systems Jntu Model Paper{Www.Studentyogi.Com}
Control Systems Jntu Model Paper{Www.Studentyogi.Com}Control Systems Jntu Model Paper{Www.Studentyogi.Com}
Control Systems Jntu Model Paper{Www.Studentyogi.Com}
 
Computer Programming Jntu Model Paper{Www.Studentyogi.Com}
Computer Programming Jntu Model Paper{Www.Studentyogi.Com}Computer Programming Jntu Model Paper{Www.Studentyogi.Com}
Computer Programming Jntu Model Paper{Www.Studentyogi.Com}
 

Kürzlich hochgeladen

Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
KarakKing
 

Kürzlich hochgeladen (20)

On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptxOn_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
 
REMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptxREMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptx
 
Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024
 
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
 
Google Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptxGoogle Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptx
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan Fellows
 
How to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptxHow to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptx
 
Towards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptxTowards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptx
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptx
 
Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
 
How to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSHow to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POS
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
SOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning PresentationSOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning Presentation
 
Wellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptxWellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptx
 
FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibit
 

Linear Ic Applications Jntu Model Paper{Www.Studentyogi.Com}

  • 1. www.studentyogi.com www.studentyogi.com Code No: R05310401 Set No. 1 III B.Tech I Semester Regular Examinations, November 2007 LINEAR IC APPLICATIONS (Electronics & Communication Engineering) Time: 3 hours Max Marks: 80 Answer any FIVE Questions All Questions carry equal marks 1. (a) Explain the use of constant bias circuit in operation of di erential ampli er. (b) Analyze the dual input balanced output con guration of di erential ampli er using DC. [8+8] 2. (a) Explain how the input o set voltage compensated for? (b) How fast can the output of an op - amp change by 10V, if its slew rate is 1 V/ s. (c) De ne thermal drift & slew rate. [6+4+6] 3. (a) Design a di erentiator to di erentiate an input signal that varies in frequency from 10 Hz to about 1KHz. If a sine wave of 1V peak at 1000 Hz is applied to this di erentiator draw the output waveforms. (b) Why active di erentiator circuits are not used in analog computer to solve di erential equations. [10+6] 4. (a) Explain, How to obtain triangular wave using a square wave generator. (b) With the help of a neat circuit diagram explain the working of a logarithmic ampli er. [8+8] 5. (a) De ne Bessel, Butterworth and Chebysher lters, and compare their frequency response. (b) Sketch the circuit diagram of band elimination lter and design a wide band- reject having fH =200Hz and fL =1KHz. Assume necessary data. [8+8] 6. Explain an application in which the 555 timer can be used as Astable multivibrator. [16] 7. (a) Compare R - 2R and weight resistor types of DACs. (b) Write short notes on A/D converters. (c) De ne the following terms as related to DAC: i. Linearity ii. Resolution. [8+4+4] 8. What are all basic blocks of analog multiplexer? Explain how the data selections pro cess is performed it. [16]
  • 2. www.studentyogi.com www.studentyogi.com Code No: R05310401 Set No. 2 III B.Tech I Semester Regular Examinations, November 2007 LINEAR IC APPLICATIONS (Electronics & Communication Engineering) Time: 3 hours Max Marks: 80 Answer any FIVE Questions All Questions carry equal marks 1. (a) Explain how large open circuit voltage gain of an op - amp can be obtained by using cascading of di erential ampli er stages. (b) Explain ac analysis of di erential ampli er. [8+8] 2. (a) Discuss the Pole - Zero and Dominant pole compensation techniques for an op - amp. (b) An op - amp has a slew rate of 1.5V/ s. What is the maximum frequency of an output sinusoid of peak value 10 V at which the distortion sets in due to the slew rate limitation? [8+8] 3. (a) Design a di erentiator to di erentiate an input signal that varies in frequency from 10 Hz to about 1KHz. If a sine wave of 1V peak at 1000 Hz is applied to this di erentiator draw the output waveforms. (b) Why active di erentiator circuits are not used in analog computer to solve di erential equations. [10+6] 4. (a) Describe the operation of logarithmic ampli er using op - amp. (b) List the conditions for oscillation in all the three types of oscillators, namely, RC phase shift, Wien - bridge and quadrature oscillators. [8+8] 5. (a) Draw the wide band reject lter circuit and also the frequency response of it. (b) Draw the schematic diagram of an all pass lter and determine the phase shift between the input and output at f = 2kHz. [8+8] 6. (a) Con gure a 555 timer as a Schmitt trigger and explain. (b) Explain frequency translation and FSK demodulation using 565 PLL. [8+8] 7. (a) Explain the di erence between Analog to Digital converter and Digital to Analog converters through underlying equations. (b) Illustrate one application each of Analog to Digital and Digital to Analog converters. [6+10] 8. (a) Explain the function of a typical adjustable voltage regulator. How can you increase the current driving capacity of the regulator? (b) Describe the principle of working of a balanced modulator using op - amp. Give the applications of it. [6+10]
  • 3. www.studentyogi.com www.studentyogi.com Code No: R05310401 Set No. 3 III B.Tech I Semester Regular Examinations, November 2007 LINEAR IC APPLICATIONS (Electronics & Communication Engineering) Time: 3 hours Max Marks: 80 Answer any FIVE Questions All Questions carry equal marks 1. (a) Explain how large open circuit voltage gain of an op - amp can be obtained by using cascading of di erential ampli er stages. (b) Explain ac analysis of di erential ampli er. [8+8] 2. (a) Calculate the e ect of variation in power supply voltages on the output o set voltage for an op - amp circuit. (b) Why frequency compensation is required for an op - amp and explain frequency compensation technique using suitable diagrams. [6+10] 3. (a) Design a di erentiator to di erentiate an input signal that varies in frequency from 10 Hz to about 1KHz. If a sine wave of 1V peak at 1000 Hz is applied to this di erentiator draw the output waveforms. (b) Why active di erentiator circuits are not used in analog computer to solve di erential equations. [10+6] 4. (a) Derive the expression of the output voltage of an antilog ampli er using op - amp. (b) Design a saw tooth wave form generator using op - amp and plot the waveforms for the given speci cations frequency: 5kHz, Vsat = ± 15V (Assume necessary data). [8+8] 5. (a) For the all pass lter, determine the phase shift between the input and output at f = 2kHz. To obtain a phase shift , what modi cations are necessary in the circuit? (b) Derive the expression for the transfer function of 2nd order High pass lter. [8+8] 6. (a) Explain the operation of Monostable multivibrator using 555 timer. Derive the expression of time delay of a Monostable multivibrator using 555 timer. (b) Design monostable multivibrator using 555 timer to produce a pulse width of 100 m sec. [10+6] 7. (a) What are the basic blocks preceding an Analog to Digital converter in a typical application like digital audio recording? (b) With the help of a neat circuit diagram and waveforms, explain the operation of a dual slope ADC. What are its special features? [6+10]
  • 4. www.studentyogi.com www.studentyogi.com Code No: R05310401 Set No. 3 (a) IC 1496 and its applications (b) Sample and hold circuit. [16]
  • 5. www.studentyogi.com www.studentyogi.com Code No: R05310401 Set No. 4 III B.Tech I Semester Regular Examinations, November 2007 LINEAR IC APPLICATIONS (Electronics & Communication Engineering) Time: 3 hours Max Marks: 80 Answer any FIVE Questions All Questions carry equal marks 1. (a) Discuss the di erences between the di erential ampli ers used in the rst two stages of op - amp. (b) Compare and contrast an ideal op - amp and practical op - amp. (c) Draw an ideal voltage transfer curve of an op - amp. [8+5+3] 2. (a) What are the three factors that e ect the electrical parameters of an op - amp (b) Compare and contrast an ideal op - amp and practical op - amp. (c) What are the features of 741 op - amp and also draw the pin diagram.[3+6+7] 3. (a) Draw the circuit diagram of a two input non-inverting type summing ampli er and derive the expression for the output voltage. (b) Brie y explain why negative feedback is desirable in ampli er applications. (c) How does negative feedback a ect the performance of an inverting ampli er? [7+5+4] 4. (a) Derive the expression of the output voltage of an antilog ampli er using op - amp. (b) Design a saw tooth wave form generator using op - amp and plot the waveforms for the given speci cations frequency: 5kHz, Vsat = ± 15V (Assume necessary data). [8+8] 5. (a) List the conditions for oscillation in all the three types of oscillators, namely, RC phase shift, Wien - bridge and quadrature oscillators. (b) Design an op ? amp based relaxation oscillator and derive the frequency of oscillation. [8+8] 6. (a) Draw the circuit of PLL as frequency multiplier and explain its working. (b) Explain with neat diagram how 555 timers can be used as a Schmitt trigger. [8+8] 7. (a) Sketch and explain the transfer characteristic of a DAC with necessary equa- tions. (b) LSB of a 9 - bit DAC is represented by 19.6mv. If an input of 9 zero bits is represented by 0 volts. i. Find the output of the DAC for an input 10110 1101 and 01101 1011.
  • 6. www.studentyogi.com www.studentyogi.com Code No: R05310401 Set No. 4 8. (a) Describe the operation of four quadrant multiplier with neat diagram. (b) Explain the operation of IC 1496 as mixer circuit. [8+8]