A new high frequency realization of Chua s chaotic circuit using current feedback operational amplifiers (CFOA s)

Size: px
Start display at page:

Download "A new high frequency realization of Chua s chaotic circuit using current feedback operational amplifiers (CFOA s)"

Transcription

1 International Journal of Electronics and Computer Science Engineering 223 Available Online at ISSN: A new high frequency realization of Chua s chaotic circuit using current feedback operational amplifiers Prem Bhushan Mital 1, Umesh Kumar 2, Rai Sachindra Prasad 3 1 United College of Engineering& Research, Greater Noida U.P. India 2 Department of Electrical Engineering IIT New Delhi India 3 Inderprastha Engineering College Ghaziabad U.P. India Abstract: A new implementation of Chua s chaotic circuit using current feedback operational amplifier (CFOAs) and giving high frequency oscillations is presented. Both the circuit topologies based on CFOA S i.e. CFOA based nonlinear resistor and CFOA based synthetic inductor are used together The new circuit is operated at high frequencies in which the CFOAs have excellent performance. The workability of the proposed realization is verified using P-spice simulation. Key Words: Chaos; Chua s circuit; current feedback operational amplifier; high frequency chaotic oscillations. I-INTRODUCTION Since Chua s circuit is structurally the most simple circuit ( 3 energy storage elements, one linear resistor and one nonlinear resistor) yet dynamically the most complicated, exhibiting a rich variety of chaos and bifurcations, the same has been very active topic of research and studied extensively and accepted as a paradigm for generating and studying chaos. Several realizations of Chua s circuit have been proposed in the literature. Chaotic signals have been used successfully in modern communication systems including secure communication, spread spectrum communication, optical communication, signal encryption, chaos based modulation Schemes viz chaotic on-off keying (COOK), chaos shift keying (CSK), Differential CSK (DCSK), Quadrature chaos shift keying (QCSK) etc., Figure.1 the Chua s circuit and v R -i R characteristics of the Chua s diode The nonlinearity of the Chua s diode N R is expressed as G b v R + (G b G a )E 1, if v R E 1 g(v R ) G a v R if v R < E 1 (1 ) G b v R + (G a G b )E 1 if v R E 1

2 IJECSE,Volume1,Number 2 Prem Bhushan Mital et al. Where G a and G b are the slopes of inner segment and two outer segments and ±E 1 are the break points. If V1, V 2 and i L are the voltage across capacitor C 1, the voltage across the capacitor C 2 and the current in the inductor L respectively, the state equations of the Chua s circuit are written as: dv 1 /dt 1/C 1 [G(v 2 v 1 ) g(v 1 )] dv 2 /dt 1/C 2 [G(v 1 v 2 ) + i L ] (2) di L /dt 1/L v 2 Rescaling these equations by making substitutions as below, x v 1 /E 1 τ tg/c 2 α C 2 /C 1 y v 2 /E 1 a Ga/G β C 2 /(LG 2 ) (3) z i l / (E 1 G) b Gb/G The above equations are written as where, bx + b a, x α[y x f(x)] y x y + z (4) z βy if x 1 f(x) ax, if x < 1 (5) Simplifying we have bx + a b, if x 1 x α[y h(x)] y x y + z (6) z βy These are known as Chua s equations which are used in a more convenient form for the analytical treatment 1.1 Frequency of operation In case of a sinusoidal oscillator, the output power is concentrated in a single frequency component around the operating frequency of the sinusoidal oscillator (ω ). However, as the system is moved around the chaotic region, the power is spread to more frequency components aroundω. The linearized form of Chua's Circuit is given by + + s+ 0 (7) where + ; + ; (8) ;

3 A new high frequency realization of Chua s chaotic circuit using current feedback operational amplifiers 225 Here ; for slope of inner segments ( -0:8 normally) ; for slope of outer segments ( -0:5 normally) The condition for system to oscillate is given by ( ) G - and the frequency of oscillation is given by (ω a ); (9) ω 1 (10) The frequency of oscillation of the sinusoidal oscillator is given by Estimated frequency range is given by ω (11) ω ω 1 (12) Thus, whereas L and C2 specify the central frequency of operation, L, G, mi and C1 are responsible for the range covered by the spectrum. II. PROPOSED CHUA S CHAOTIC CIRCUIT CFOA s are recognized as versatile alternatives to the traditional voltage mode OP amps ( VOA s) due to their high performance with almost constant bandwidth ( up to 100 MHz) available independent of the closed loop gain and very high slew rate around 2000V/µs. Commercial types available are AD844/AD811 manufactured by M/s Analog Devices USA. These have been used instead of VOA s in new implementation of Chua s circuit giving high frequency performance. In the proposed CFOA-based Chua s circuit (inductor less), both the circuit topologies based on CFOA s i.e. CFOA based non linear resistor and CFOA based synthetic inductors are used together in the same design so that the novel circuit exhibits original chaotic behaviour Chua s circuit and also high frequency chaotic oscillations as shown in Fig. 2. All CFOA s (AD844 type) are biased with ±9V.. The new circuit is operated at high frequencies in which the CFOA has excellent performance. With the proposed realization, several enhancements are achieved. Firstly, in addition to a current output signal, a buffered output voltage (V O ) is also available which represents a state variable for direct access which is isolated from all other components.v O equals V C which is by connection forced to V t. However V t is just the voltage across C. Hence V O directly represents a state variable. Secondly the operating frequency is extended i.e. chaotic spectrum is extended to higher frequencies i.e. upto 50MHz making use of excellent performance of CFOA s at higher frequencies. The circuit parameters used for very high- frequency operation mode are: R1 R2 1K, RN1 RN2 2K RN3 2K, RN4 2.2 K C 1 1pF C 2 10 pf C 3 1nF L 1 µh CFOA s are biased with ±9V. ISSN: /V1N

4 IJECSE,Volume1,Number 2 Prem Bhushan Mital et al. III. SIMULATION RESULTS The plots of voltage across C1 vs time and voltage across C2 vs time are shown in Fig.3 and Fig.4 respectively. The plots of VC1 vs VC2 are shown in Fig.5. Fast Fourier transform of the chaotic signal has been obtained through P-spice simulation and is shown in Fig.6. It is seen that although the circuit is operating at wide range of frequencies, it is mostly concentrated around 50 MHz which is the fastest for any double scroll reported so far. Figure.2 Proposed CFOA based Chua s circuit Figure3: Voltage across C1 Vs time

5 A new high frequency realization of Chua s chaotic circuit using current feedback operational amplifiers 227 Figure 4 Voltage across C2 Vs time ISSN: /V1N

6 IJECSE,Volume1,Number 2 Prem Bhushan Mital et al. Figure 5: Plots of VC1 Vs VC2 Figure 6. Fast Fourier Transform (FFT) of the chaotic signal obtained from proposed circuit IV- CONCLUSION A new implementation of Chua s chaotic circuit using current feedback operational amplifier (CFOAs) and giving high frequency oscillations of the order of 50 MHz is proposed. Both the circuit topologies based on CFOA s i.e.

7 A new high frequency realization of Chua s chaotic circuit using current feedback operational amplifiers 229 CFOA based nonlinear resistor and CFOA based synthetic inductor are used together. All the state variables Vc1, Vc2 and Il are made available in a direct manner. The new circuit is operated at high frequencies in which the CFOAs have excellent performance. The workability of the proposed realization is verified using P-spice simulation which confirms that the proposed circuit exhibits the original chaotic circuit. The proposed implementation offers very attractive and useful circuit structure for high frequency chaos applications. The design provide advantages as high frequency of operation, simple design and availability of current across inductor. REFERENCES [1] R. Senani and S.S.Gupta, Implementation of Chua s chaotic circuit using CFOA s Electronic letters, vol 34,pp April [2] U.Cam, A new high performance realization of mixed-mode chaotic circuit using current feedback operational amplifiers. Computer and Electrical Engineering, 30 pp , [3] A.S.Elwakil and M.P.Kennedy, High frequency Wein type chaotic oscillator, Electronic letters,vol 32 pp June [4] A.S.Elwakil and M.P.Kennedy, Chua s circuit decomposition: A systematic design approach for chaotic oscillators, Journal of the Franklin Institute,337 pp , [5] A.S.Elwakil and M.P.Kennedy, Improved Implementation of Chua s chaotic oscillator using current feedback op amp. IEEE Trans. On C&S part I vol 47,no.1 Jan [6] Kilic R, Study of CFOA-based inductorless Chua's circuit," International Journal of Bifurcation and Chaos, vol. 14, pp , [7] Kilic R, On current feedback operational amplifer-based realization of Chua's circuit," Circuits, systems, and signal processing, vol. 22, No. 5, pp , [8] Soliman A M, Applications of the current feedback operational amplifiers, Analog integrated circuit and signal processing, 14, pp , [9] Bales J, A low power,high speed current feedback operational amplifier with a novel class AB high current output stage, IEEE J.Solid state circuits, Vol.32, pp , [10] Toumazou C and Lidgey J, Current feedback op-amp : a blessing in disguise?. IEEE Circuits devices magazine, 10 (1), pp 34-37, [11] Kilic R and Yildiram F, CFOA based inductorless mixed-mode chaotic circuit Int. J. Bif. and chaos, Vol.16, No.3, pp , ISSN: /V1N

Rich Variety of Bifurcation and Chaos in a Simple Non-Source Free Electronic Circuit with a Diode

Rich Variety of Bifurcation and Chaos in a Simple Non-Source Free Electronic Circuit with a Diode International Journal of Pure and Applied Physics ISSN 0973-1776 Volume 6, Number 1 (2010), pp. 63 69 Research India Publications http://www.ripublication.com/ijpap.htm Rich Variety of Bifurcation and

More information

A Synthetic Inductor Implementation of Chua's Circuit

A Synthetic Inductor Implementation of Chua's Circuit A Synthetic Inductor Implementation of Chua's Circuit Bharathwaj Muthuswamy Tamara Blain Kyle Sundqvist Electrical Engineering and Computer Sciences University of California at Berkeley Technical Report

More information

A New Design Technique of CMOS Current Feed Back Operational Amplifier (CFOA)

A New Design Technique of CMOS Current Feed Back Operational Amplifier (CFOA) Circuits and Systems, 2013, 4, 11-15 http://dx.doi.org/10.4236/cs.2013.41003 Published Online January 2013 (http://www.scirp.org/journal/cs) A New Design Technique of CMOS Current Feed Back Operational

More information

Chaotic-Based Processor for Communication and Multimedia Applications Fei Li

Chaotic-Based Processor for Communication and Multimedia Applications Fei Li Chaotic-Based Processor for Communication and Multimedia Applications Fei Li 09212020027@fudan.edu.cn Chaos is a phenomenon that attracted much attention in the past ten years. In this paper, we analyze

More information

Simultaneous amplitude and frequency noise analysis in Chua s circuit

Simultaneous amplitude and frequency noise analysis in Chua s circuit Typeset using jjap.cls Simultaneous amplitude and frequency noise analysis in Chua s circuit J.-M. Friedt 1, D. Gillet 2, M. Planat 2 1 : IMEC, MCP/BIO, Kapeldreef 75, 3001 Leuven, Belgium

More information

DVCC Based Current Mode and Voltage Mode PID Controller

DVCC Based Current Mode and Voltage Mode PID Controller DVCC Based Current Mode and Voltage Mode PID Controller Mohd.Shahbaz Alam Assistant Professor, Department of ECE, ABES Engineering College, Ghaziabad, India ABSTRACT: The demand of electronic circuit with

More information

Analysis of CMOS Second Generation Current Conveyors

Analysis of CMOS Second Generation Current Conveyors Analysis of CMOS Second Generation Current Conveyors Mrugesh K. Gajjar, PG Student, Gujarat Technology University, Electronics and communication department, LCIT, Bhandu Mehsana, Gujarat, India Nilesh

More information

On the New Design of CFA based Voltage Controlled Integrator/ Differentiator Suitable for Analog Signal Processing

On the New Design of CFA based Voltage Controlled Integrator/ Differentiator Suitable for Analog Signal Processing On the New Design of CFA based Voltage Controlled Integrator/ Differentiator Suitable for Analog Signal Processing R. K. NAGARIA Department of Electronics and Communication Engineering otilal Nehru National

More information

Explicit-current-output sinusoidal oscillators employing only a single current-feedback op-amp

Explicit-current-output sinusoidal oscillators employing only a single current-feedback op-amp Explicit-current-output sinusoidal oscillators employing only a single current-feedback op-amp R. Senani a) and R. K. Sharma Analog Signal Processing Research Lab., Division of Electronics and Communication

More information

Homework Assignment 06

Homework Assignment 06 Question 1 (2 points each unless noted otherwise) Homework Assignment 06 1. True or false: when transforming a circuit s diagram to a diagram of its small-signal model, we replace dc constant current sources

More information

Novel MOS-C oscillators using the current feedback op-amp

Novel MOS-C oscillators using the current feedback op-amp INT. J. ELECTRONICS, 2000, VOL. 87, NO. 3, 269± 280 Novel MOS-C oscillators using the current feedback op-amp SOLIMAN A. MAHMOUDy and AHMED M. SOLIMANyz Three new MOS-C oscillators using the current feedback

More information

Operational Amplifier BME 360 Lecture Notes Ying Sun

Operational Amplifier BME 360 Lecture Notes Ying Sun Operational Amplifier BME 360 Lecture Notes Ying Sun Characteristics of Op-Amp An operational amplifier (op-amp) is an analog integrated circuit that consists of several stages of transistor amplification

More information

About the Tutorial. Audience. Prerequisites. Copyright & Disclaimer. Linear Integrated Circuits Applications

About the Tutorial. Audience. Prerequisites. Copyright & Disclaimer. Linear Integrated Circuits Applications About the Tutorial Linear Integrated Circuits are solid state analog devices that can operate over a continuous range of input signals. Theoretically, they are characterized by an infinite number of operating

More information

1) Consider the circuit shown in figure below. Compute the output waveform for an input of 5kHz

1) Consider the circuit shown in figure below. Compute the output waveform for an input of 5kHz ) Consider the circuit shown in figure below. Compute the output waveform for an input of 5kHz Solution: a) Input is of constant amplitude of 2 V from 0 to 0. ms and 2 V from 0. ms to 0.2 ms. The output

More information

CHAPTER 3 ACTIVE INDUCTANCE SIMULATION

CHAPTER 3 ACTIVE INDUCTANCE SIMULATION CHAPTER 3 ACTIVE INDUCTANCE SIMULATION The content and results of the following papers have been reported in this chapter. 1. Rajeshwari Pandey, Neeta Pandey Sajal K. Paul A. Singh B. Sriram, and K. Trivedi

More information

A Novel Equi-amplitude Quadrature Oscillator Based on CFOA

A Novel Equi-amplitude Quadrature Oscillator Based on CFOA A Novel Equiamplitude Quadrature Oscillator Based on CFOA Sahaj Saxena 1, Prabhat Kumar Mishra 2 1 Indian Institute of Technology, Roorkee 2 D. J. College of Engineering & Technology, Modinagar mrsahajsaxena@hotmail.com,

More information

EXPERIMENTAL STUDY OF IMPULSIVE SYNCHRONIZATION OF CHAOTIC AND HYPERCHAOTIC CIRCUITS

EXPERIMENTAL STUDY OF IMPULSIVE SYNCHRONIZATION OF CHAOTIC AND HYPERCHAOTIC CIRCUITS International Journal of Bifurcation and Chaos, Vol. 9, No. 7 (1999) 1393 1424 c World Scientific Publishing Company EXPERIMENTAL STUDY OF IMPULSIVE SYNCHRONIZATION OF CHAOTIC AND HYPERCHAOTIC CIRCUITS

More information

Lab 2: Discrete BJT Op-Amps (Part I)

Lab 2: Discrete BJT Op-Amps (Part I) Lab 2: Discrete BJT Op-Amps (Part I) This is a three-week laboratory. You are required to write only one lab report for all parts of this experiment. 1.0. INTRODUCTION In this lab, we will introduce and

More information

ELEC Deterministic Chaos in Circuitry

ELEC Deterministic Chaos in Circuitry ELEC 1908 - Deterministic Chaos in Circuitry Due Midnight April 2, 2018 to Colin March 19, 2018 1 Chaos Theory Chaos is one of those words that has one meaning in common usage and another, much more precise

More information

IMPEDANCE CONVERTERS

IMPEDANCE CONVERTERS IMPEDANCE CONVERTERS L. GRIGORESCU Dunãrea de Jos University of Galaþi, Romania, luiza.grigorescu@ugal.ro Received September 26, 2006 From a lot of applications of current-conveyors, impedance converters

More information

Effect of Current Feedback Operational Amplifiers using BJT and CMOS

Effect of Current Feedback Operational Amplifiers using BJT and CMOS Effect of Current Feedback Operational Amplifiers using BJT and CMOS 1 Ravi Khemchandani ; 2 Ashish Nipane Singh & 3 Hitesh Khanna Research Scholar in Dronacharya College of Engineering Gurgaon Abstract

More information

Chaos based Communication System Using Reed Solomon (RS) Coding for AWGN & Rayleigh Fading Channels

Chaos based Communication System Using Reed Solomon (RS) Coding for AWGN & Rayleigh Fading Channels 2015 IJSRSET Volume 1 Issue 1 Print ISSN : 2395-1990 Online ISSN : 2394-4099 Themed Section: Engineering and Technology Chaos based Communication System Using Reed Solomon (RS) Coding for AWGN & Rayleigh

More information

PWL Function Approximation Circuit with Diodes and Current Input and Output

PWL Function Approximation Circuit with Diodes and Current Input and Output PWL Function Approximation Circuit with Diodes and Current Input and Output DAVID KUBANEK, KAMIL VRBA Department of Telecommunications Brno University of Technology Purkynova 8, 62 Brno CZECH REPUBLIC

More information

DESIGN AND SIMULATION OF CURRENT FEEDBACK OPERATIONAL AMPLIFIER IN 180nm AND 90nm CMOS PROCESSES

DESIGN AND SIMULATION OF CURRENT FEEDBACK OPERATIONAL AMPLIFIER IN 180nm AND 90nm CMOS PROCESSES ISSN: 95-1680 (ONINE) ICTACT JOURNA ON MICROEECTRONICS, JUY 017, VOUME: 0, ISSUE: 0 DOI: 10.1917/ijme.017.0069 DESIGN AND SIMUATION OF CURRENT FEEDBACK OPERATIONA AMPIFIER IN 180nm AND 90nm CMOS PROCESSES

More information

EMT212 Analog Electronic II. Chapter 4. Oscillator

EMT212 Analog Electronic II. Chapter 4. Oscillator EMT Analog Electronic II Chapter 4 Oscillator Objectives Describe the basic concept of an oscillator Discuss the basic principles of operation of an oscillator Analyze the operation of RC, LC and crystal

More information

A Low Voltage Tuned Colpitt s Oscillator Using CDTA

A Low Voltage Tuned Colpitt s Oscillator Using CDTA Volume 3, Issue 5, May-2016, pp. 273-278 ISSN (O): 2349-7084 International Journal of Computer Engineering In Research Trends Available online at: www.ijcert.org A Low Voltage Tuned Colpitt s Oscillator

More information

DESIGN HIGH SPEED, LOW NOISE, LOW POWER TWO STAGE CMOS OPERATIONAL AMPLIFIER. Himanshu Shekhar* 1, Amit Rajput 1

DESIGN HIGH SPEED, LOW NOISE, LOW POWER TWO STAGE CMOS OPERATIONAL AMPLIFIER. Himanshu Shekhar* 1, Amit Rajput 1 ISSN 2277-2685 IJESR/June 2014/ Vol-4/Issue-6/319-323 Himanshu Shekhar et al./ International Journal of Engineering & Science Research DESIGN HIGH SPEED, LOW NOISE, LOW POWER TWO STAGE CMOS OPERATIONAL

More information

Efficient Current Feedback Operational Amplifier for Wireless Communication

Efficient Current Feedback Operational Amplifier for Wireless Communication International Journal of Electronics and Communication Engineering. ISSN 0974-2166 Volume 10, Number 1 (2017), pp. 19-24 International Research Publication House http://www.irphouse.com Efficient Current

More information

Complex Dynamic Phenomena in Power Converters: Bifurcation Analysis and Chaotic Behavior

Complex Dynamic Phenomena in Power Converters: Bifurcation Analysis and Chaotic Behavior Complex Dynamic Phenomena in Power Converters: Bifurcation Analysis and Chaotic Behavior DONATO CAFAGNA, GIUSEPPE GRASSI Dipartimento Ingegneria Innovazione Università di Lecce via Monteroni, 700 Lecce

More information

Analog Circuits and Systems

Analog Circuits and Systems Analog Circuits and Systems Prof. K Radhakrishna Rao Lecture 4 Analog Signal Processing One-Port Networks 1 Analog Signal Processing Functions ASP Amplification Filtering Oscillation Mixing, Modulation,

More information

Physics 303 Fall Module 4: The Operational Amplifier

Physics 303 Fall Module 4: The Operational Amplifier Module 4: The Operational Amplifier Operational Amplifiers: General Introduction In the laboratory, analog signals (that is to say continuously variable, not discrete signals) often require amplification.

More information

[Kumar, 2(9): September, 2013] ISSN: Impact Factor: 1.852

[Kumar, 2(9): September, 2013] ISSN: Impact Factor: 1.852 IJESRT INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY Design and Performance analysis of Low power CMOS Op-Amp Anand Kumar Singh *1, Anuradha 2, Dr. Vijay Nath 3 *1,2 Department of

More information

CHAPTER 2 EQUIVALENT CIRCUIT MODELING OF CONDUCTED EMI BASED ON NOISE SOURCES AND IMPEDANCES

CHAPTER 2 EQUIVALENT CIRCUIT MODELING OF CONDUCTED EMI BASED ON NOISE SOURCES AND IMPEDANCES 29 CHAPTER 2 EQUIVALENT CIRCUIT MODELING OF CONDUCTED EMI BASED ON NOISE SOURCES AND IMPEDANCES A simple equivalent circuit modeling approach to describe Conducted EMI coupling system for the SPC is described

More information

Op-Amp Simulation Part II

Op-Amp Simulation Part II Op-Amp Simulation Part II EE/CS 5720/6720 This assignment continues the simulation and characterization of a simple operational amplifier. Turn in a copy of this assignment with answers in the appropriate

More information

Unit WorkBook 1 Level 4 ENG U22 Electronic Circuits and Devices 2018 UniCourse Ltd. All Rights Reserved. Sample

Unit WorkBook 1 Level 4 ENG U22 Electronic Circuits and Devices 2018 UniCourse Ltd. All Rights Reserved. Sample Pearson BTEC Level 4 Higher Nationals in Engineering (RQF) Unit 22: Electronic Circuits and Devices Unit Workbook 1 in a series of 4 for this unit Learning Outcome 1 Operational Amplifiers Page 1 of 23

More information

Final Exam. 1. An engineer measures the (step response) rise time of an amplifier as t r = 0.1 μs. Estimate the 3 db bandwidth of the amplifier.

Final Exam. 1. An engineer measures the (step response) rise time of an amplifier as t r = 0.1 μs. Estimate the 3 db bandwidth of the amplifier. Final Exam Name: Score /100 Question 1 Short Takes 1 point each unless noted otherwise. 1. An engineer measures the (step response) rise time of an amplifier as t r = 0.1 μs. Estimate the 3 db bandwidth

More information

Physics 116A Notes Fall 2004

Physics 116A Notes Fall 2004 Physics 116A Notes Fall 2004 David E. Pellett Draft v.0.9 beta Notes Copyright 2004 David E. Pellett unless stated otherwise. References: Text for course: Fundamentals of Electrical Engineering, second

More information

Laboratory 6. Lab 6. Operational Amplifier Circuits. Required Components: op amp 2 1k resistor 4 10k resistors 1 100k resistor 1 0.

Laboratory 6. Lab 6. Operational Amplifier Circuits. Required Components: op amp 2 1k resistor 4 10k resistors 1 100k resistor 1 0. Laboratory 6 Operational Amplifier Circuits Required Components: 1 741 op amp 2 1k resistor 4 10k resistors 1 100k resistor 1 0.1 F capacitor 6.1 Objectives The operational amplifier is one of the most

More information

Transistor Digital Circuits

Transistor Digital Circuits Recapitulation Transistor Digital Circuits The transistor Operating principle and regions Utilization of the transistor Transfer characteristics, symbols Controlled switch model BJT digital circuits MOSFET

More information

Differential Amplifier : input. resistance. Differential amplifiers are widely used in engineering instrumentation

Differential Amplifier : input. resistance. Differential amplifiers are widely used in engineering instrumentation Differential Amplifier : input resistance Differential amplifiers are widely used in engineering instrumentation Differential Amplifier : input resistance v 2 v 1 ir 1 ir 1 2iR 1 R in v 2 i v 1 2R 1 Differential

More information

Current Rebuilding Concept Applied to Boost CCM for PF Correction

Current Rebuilding Concept Applied to Boost CCM for PF Correction Current Rebuilding Concept Applied to Boost CCM for PF Correction Sindhu.K.S 1, B. Devi Vighneshwari 2 1, 2 Department of Electrical & Electronics Engineering, The Oxford College of Engineering, Bangalore-560068,

More information

Thursday, 1/23/19 Automatic Gain Control As previously shown, 1 0 is a nonlinear system that produces a limit cycle with a distorted sinusoid for

Thursday, 1/23/19 Automatic Gain Control As previously shown, 1 0 is a nonlinear system that produces a limit cycle with a distorted sinusoid for Thursday, 1/23/19 Automatic Gain Control As previously shown, 1 0 is a nonlinear system that produces a limit cycle with a distorted sinusoid for x(t), which is not a very good sinusoidal oscillator. A

More information

CMOS Operational-Amplifier

CMOS Operational-Amplifier CMOS Operational-Amplifier 1 What will we learn in this course How to design a good OP Amp. Basic building blocks Biasing and Loading Swings and Bandwidth CH2(8) Operational Amplifier as A Black Box Copyright

More information

Introduction to Analog Interfacing. ECE/CS 5780/6780: Embedded System Design. Various Op Amps. Ideal Op Amps

Introduction to Analog Interfacing. ECE/CS 5780/6780: Embedded System Design. Various Op Amps. Ideal Op Amps Introduction to Analog Interfacing ECE/CS 5780/6780: Embedded System Design Scott R. Little Lecture 19: Operational Amplifiers Most embedded systems include components that measure and/or control real-world

More information

NEW CFOA-BASED GROUNDED-CAPACITOR SINGLE-ELEMENT-CONTROLLED

NEW CFOA-BASED GROUNDED-CAPACITOR SINGLE-ELEMENT-CONTROLLED Active and Passive Elec. Comp., 1997, Vol. 20, pp. 19-124 Reprints available directly from the publisher Photocopying permitted by license only (C) 1997 OPA (Overseas Publishers Association) Amsterdam

More information

Friday, 1/27/17 Constraints on A(jω)

Friday, 1/27/17 Constraints on A(jω) Friday, 1/27/17 Constraints on A(jω) The simplest electronic oscillators are op amp based, and A(jω) is typically a simple op amp fixed gain amplifier, such as the negative gain and positive gain amplifiers

More information

Electric Circuit Fall 2015 Pingqiang Zhou. ShanghaiTech University. School of Information Science and Technology. Professor Pingqiang Zhou

Electric Circuit Fall 2015 Pingqiang Zhou. ShanghaiTech University. School of Information Science and Technology. Professor Pingqiang Zhou Electric Circuit Fall 5 Pingqiang Zhou ShanghaiTech University School of Information Science and Technology Professor Pingqiang Zhou LABORATORY Gyrator Guide. Objective In this laboratory measurement you

More information

ES250: Electrical Science. HW6: The Operational Amplifier

ES250: Electrical Science. HW6: The Operational Amplifier ES250: Electrical Science HW6: The Operational Amplifier Introduction This chapter introduces the operational amplifier or op amp We will learn how to analyze and design circuits that contain op amps,

More information

Isolated Industrial Current Loop Using the IL300 Linear

Isolated Industrial Current Loop Using the IL300 Linear VISHAY SEMICONDUCTORS www.vishay.com Optocouplers and Solid-State Relays Application Note Isolated Industrial Current Loop Using the IL Linear INTRODUCTION Programmable logic controllers (PLC) were once

More information

Electrochemical Impedance Spectroscopy and Harmonic Distortion Analysis

Electrochemical Impedance Spectroscopy and Harmonic Distortion Analysis Electrochemical Impedance Spectroscopy and Harmonic Distortion Analysis Bernd Eichberger, Institute of Electronic Sensor Systems, University of Technology, Graz, Austria bernd.eichberger@tugraz.at 1 Electrochemical

More information

Infrared Communications Lab

Infrared Communications Lab Infrared Communications Lab This lab assignment assumes that the student knows about: Ohm s Law oltage, Current and Resistance Operational Amplifiers (See Appendix I) The first part of the lab is to develop

More information

Laboratory 9. Required Components: Objectives. Optional Components: Operational Amplifier Circuits (modified from lab text by Alciatore)

Laboratory 9. Required Components: Objectives. Optional Components: Operational Amplifier Circuits (modified from lab text by Alciatore) Laboratory 9 Operational Amplifier Circuits (modified from lab text by Alciatore) Required Components: 1x 741 op-amp 2x 1k resistors 4x 10k resistors 1x l00k resistor 1x 0.1F capacitor Optional Components:

More information

Amplifier Frequency Response, Feedback, Oscillations; Op-Amp Block Diagram and Gain-Bandwidth Product

Amplifier Frequency Response, Feedback, Oscillations; Op-Amp Block Diagram and Gain-Bandwidth Product Amplifier Frequency Response, Feedback, Oscillations; Op-Amp Block Diagram and Gain-Bandwidth Product Physics116A,12/4/06 Draft Rev. 1, 12/12/06 D. Pellett 2 Negative Feedback and Voltage Amplifier AB

More information

CURRENT-MODE CCII+ BASED OSCILLATOR CIRCUITS USING A CONVENTIONAL AND MODIFIED WIEN-BRIDGE WITH ALL CAPACITORS GROUNDED

CURRENT-MODE CCII+ BASED OSCILLATOR CIRCUITS USING A CONVENTIONAL AND MODIFIED WIEN-BRIDGE WITH ALL CAPACITORS GROUNDED CUENT-MODE CCII+ BASED OSCILLATO CICUITS USING A CONVENTIONAL AND MODIFIED WIEN-BIDGE WITH ALL CAPACITOS GOUNDED Josef Bajer, Abhirup Lahiri, Dalibor Biolek,3 Department of Electrical Engineering, University

More information

Section 4: Operational Amplifiers

Section 4: Operational Amplifiers Section 4: Operational Amplifiers Op Amps Integrated circuits Simpler to understand than transistors Get back to linear systems, but now with gain Come in various forms Comparators Full Op Amps Differential

More information

Active Filter Design Techniques

Active Filter Design Techniques Active Filter Design Techniques 16.1 Introduction What is a filter? A filter is a device that passes electric signals at certain frequencies or frequency ranges while preventing the passage of others.

More information

Module 2. Measurement Systems. Version 2 EE IIT, Kharagpur 1

Module 2. Measurement Systems. Version 2 EE IIT, Kharagpur 1 Module Measurement Systems Version EE IIT, Kharagpur 1 Lesson 9 Signal Conditioning Circuits Version EE IIT, Kharagpur Instructional Objective The reader, after going through the lesson would be able to:

More information

Chapter 14 Operational Amplifiers

Chapter 14 Operational Amplifiers 1. List the characteristics of ideal op amps. 2. Identify negative feedback in op-amp circuits. 3. Analyze ideal op-amp circuits that have negative feedback using the summing-point constraint. ELECTRICAL

More information

A New Low Voltage Low Power Fully Differential Current Buffer and Its Application as a Voltage Amplifier

A New Low Voltage Low Power Fully Differential Current Buffer and Its Application as a Voltage Amplifier A New Low Voltage Low Power Fully Differential Current Buffer and Its Application as a Voltage Amplifier L. Safari and S. J. Azhari Abstract In this paper a novel low voltage low power fully differential

More information

CMOS Operational-Amplifier

CMOS Operational-Amplifier CMOS Operational-Amplifier 1 What will we learn in this course How to design a good OP Amp. Basic building blocks Biasing and Loading Swings and Bandwidth CH2(8) Operational Amplifier as A Black Box Copyright

More information

Development of High Power LED Driver Using LTSpice Software

Development of High Power LED Driver Using LTSpice Software Development of High Power LED Driver Using LTSpice Software 1 Muhammad Ikram Mohd Rashid, 2 Suliana Ab Ghani, 3 Mohamad Fakhrudin Sulaiman Mustahim Sustainable Energy & Power Electronics Research Group(SuPER)

More information

Common mode rejection ratio

Common mode rejection ratio Common mode rejection ratio Definition: Common mode rejection ratio represents the ratio of the differential voltage gaina d tothecommonmodevoltagegain,a cm : Common mode rejection ratio Definition: Common

More information

220 S. MAHESHWARI AND I. A. KHAN 2 DEVICE PROPOSED The already reported CDBA is characterized by the following port relationship [7]. V p V n 0, I z I

220 S. MAHESHWARI AND I. A. KHAN 2 DEVICE PROPOSED The already reported CDBA is characterized by the following port relationship [7]. V p V n 0, I z I Active and Passive Electronic Components December 2004, No. 4, pp. 219±227 CURRENT-CONTROLLED CURRENT DIFFERENCING BUFFERED AMPLIFIER: IMPLEMENTATION AND APPLICATIONS SUDHANSHU MAHESHWARI* and IQBAL A.

More information

ELC224 Final Review (12/10/2009) Name:

ELC224 Final Review (12/10/2009) Name: ELC224 Final Review (12/10/2009) Name: Select the correct answer to the problems 1 through 20. 1. A common-emitter amplifier that uses direct coupling is an example of a dc amplifier. 2. The frequency

More information

PURPOSE: NOTE: Be sure to record ALL results in your laboratory notebook.

PURPOSE: NOTE: Be sure to record ALL results in your laboratory notebook. EE4902 Lab 9 CMOS OP-AMP PURPOSE: The purpose of this lab is to measure the closed-loop performance of an op-amp designed from individual MOSFETs. This op-amp, shown in Fig. 9-1, combines all of the major

More information

A new class AB folded-cascode operational amplifier

A new class AB folded-cascode operational amplifier A new class AB folded-cascode operational amplifier Mohammad Yavari a) Integrated Circuits Design Laboratory, Department of Electrical Engineering, Amirkabir University of Technology, Tehran, Iran a) myavari@aut.ac.ir

More information

55:041 Electronic Circuits The University of Iowa Fall Exam 3. Question 1 Unless stated otherwise, each question below is 1 point.

55:041 Electronic Circuits The University of Iowa Fall Exam 3. Question 1 Unless stated otherwise, each question below is 1 point. Exam 3 Name: Score /65 Question 1 Unless stated otherwise, each question below is 1 point. 1. An engineer designs a class-ab amplifier to deliver 2 W (sinusoidal) signal power to an resistive load. Ignoring

More information

Seventh-order elliptic video filter with 0.1 db pass band ripple employing CMOS CDTAs

Seventh-order elliptic video filter with 0.1 db pass band ripple employing CMOS CDTAs Int. J. Electron. Commun. (AEÜ) 61 (2007) 320 328 www.elsevier.de/aeue LETTER Seventh-order elliptic video filter with 0.1 db pass band ripple employing CMOS CDTAs Atilla Uygur, Hakan Kuntman Department

More information

SOLIMAN A. MAHMOUD Department of Electrical Engineering, Faculty of Engineering, Cairo University, Fayoum, Egypt

SOLIMAN A. MAHMOUD Department of Electrical Engineering, Faculty of Engineering, Cairo University, Fayoum, Egypt Journal of Circuits, Systems, and Computers Vol. 14, No. 4 (2005) 667 684 c World Scientific Publishing Company DIGITALLY CONTROLLED CMOS BALANCED OUTPUT TRANSCONDUCTOR AND APPLICATION TO VARIABLE GAIN

More information

Operational Amplifier

Operational Amplifier Operational Amplifier Joshua Webster Partners: Billy Day & Josh Kendrick PHY 3802L 10/16/2013 Abstract: The purpose of this lab is to provide insight about operational amplifiers and to understand the

More information

Low Pass Filter Introduction

Low Pass Filter Introduction Low Pass Filter Introduction Basically, an electrical filter is a circuit that can be designed to modify, reshape or reject all unwanted frequencies of an electrical signal and accept or pass only those

More information

Lab 4 : Transistor Oscillators

Lab 4 : Transistor Oscillators Objective: Lab 4 : Transistor Oscillators In this lab, you will learn how to design and implement a colpitts oscillator. In part II you will implement a RC phase shift oscillator Hardware Required : Pre

More information

R. W. Erickson. Department of Electrical, Computer, and Energy Engineering University of Colorado, Boulder

R. W. Erickson. Department of Electrical, Computer, and Energy Engineering University of Colorado, Boulder R. W. Erickson Department of Electrical, Computer, and Energy Engineering University of Colorado, Boulder 6.3.5. Boost-derived isolated converters A wide variety of boost-derived isolated dc-dc converters

More information

Design and Analysis of Low Power Two Stage CMOS Op- Amp with 50nm Technology

Design and Analysis of Low Power Two Stage CMOS Op- Amp with 50nm Technology Design and Analysis of Low Power Two Stage CMOS Op- Amp with 50nm Technology Swetha Velicheti, Y. Sandhyarani, P.Praveen kumar, B.Umamaheshrao Assistant Professor, Dept. of ECE, SSCE, Srikakulam, A.P.,

More information

SINGLE OTRA BASED PD CONTROLLERS

SINGLE OTRA BASED PD CONTROLLERS SINGLE OTRA BASED PD CONTROLLERS RAJESHWARI PANDEY Department of Electronics and Communication Engineering, Delhi Technological University, Shahbad Daulatpur, Bawana Road, Delhi, 110042, India rajeshwaripandey@gmail.com

More information

Oscillators. An oscillator may be described as a source of alternating voltage. It is different than amplifier.

Oscillators. An oscillator may be described as a source of alternating voltage. It is different than amplifier. Oscillators An oscillator may be described as a source of alternating voltage. It is different than amplifier. An amplifier delivers an output signal whose waveform corresponds to the input signal but

More information

Quadrature Oscillator: A New Simple Configuration based on 45nm 2 nd Generation CMOS Current Controlled Current Conveyor

Quadrature Oscillator: A New Simple Configuration based on 45nm 2 nd Generation CMOS Current Controlled Current Conveyor International Journal of Information & Computation Technology. ISSN 0974-2239 Volume 2, Number 1 (2012), pp. 37-47 International Research Publications House http://www. ripublication.com Quadrature Oscillator:

More information

Project Report Designing Wein-Bridge Oscillator

Project Report Designing Wein-Bridge Oscillator Abu Dhabi University EEN 360 - Electronic Devices and Circuits II Project Report Designing Wein-Bridge Oscillator Author: Muhammad Obaidullah 03033 Bilal Arshad 0929 Supervisor: Dr. Riad Kanan Section

More information

Linear electronic. Lecture No. 1

Linear electronic. Lecture No. 1 1 Lecture No. 1 2 3 4 5 Lecture No. 2 6 7 8 9 10 11 Lecture No. 3 12 13 14 Lecture No. 4 Example: find Frequency response analysis for the circuit shown in figure below. Where R S =4kR B1 =8kR B2 =4k R

More information

Assume availability of the following components to DESIGN and DRAW the circuits of the op. amp. applications listed below:

Assume availability of the following components to DESIGN and DRAW the circuits of the op. amp. applications listed below: ========================================================================================== UNIVERSITY OF SOUTHERN MAINE Dept. of Electrical Engineering TEST #3 Prof. M.G.Guvench ELE343/02 ==========================================================================================

More information

ECEN 325 Lab 5: Operational Amplifiers Part III

ECEN 325 Lab 5: Operational Amplifiers Part III ECEN Lab : Operational Amplifiers Part III Objectives The purpose of the lab is to study some of the opamp configurations commonly found in practical applications and also investigate the non-idealities

More information

Operational Amplifiers

Operational Amplifiers Operational Amplifiers Jim Emery 4/7/2011 Contents 1 Operational Amplifiers 1 11 The Inverting Amplifier 3 12 The Slew rate 5 13 The Noninverting Amplifier 5 14 The Voltage Follower 6 15 The Differentiating

More information

Chaotic Circuits and Encryption

Chaotic Circuits and Encryption Chaotic Circuits and Encryption Brad Aimone Stephen Larson June 16, 2006 Neurophysics Lab Introduction Chaotic dynamics are a behavior exhibited by some nonlinear dynamical systems. Despite an appearance

More information

CHAPTER 3. Instrumentation Amplifier (IA) Background. 3.1 Introduction. 3.2 Instrumentation Amplifier Architecture and Configurations

CHAPTER 3. Instrumentation Amplifier (IA) Background. 3.1 Introduction. 3.2 Instrumentation Amplifier Architecture and Configurations CHAPTER 3 Instrumentation Amplifier (IA) Background 3.1 Introduction The IAs are key circuits in many sensor readout systems where, there is a need to amplify small differential signals in the presence

More information

Chapter 13 Oscillators and Data Converters

Chapter 13 Oscillators and Data Converters Chapter 13 Oscillators and Data Converters 13.1 General Considerations 13.2 Ring Oscillators 13.3 LC Oscillators 13.4 Phase Shift Oscillator 13.5 Wien-Bridge Oscillator 13.6 Crystal Oscillators 13.7 Chapter

More information

LINEAR IC APPLICATIONS

LINEAR IC APPLICATIONS 1 B.Tech III Year I Semester (R09) Regular & Supplementary Examinations December/January 2013/14 1 (a) Why is R e in an emitter-coupled differential amplifier replaced by a constant current source? (b)

More information

LAB 4: OPERATIONAL AMPLIFIER CIRCUITS

LAB 4: OPERATIONAL AMPLIFIER CIRCUITS LAB 4: OPERATIONAL AMPLIFIER CIRCUITS ELEC 225 Introduction Operational amplifiers (OAs) are highly stable, high gain, difference amplifiers that can handle signals from zero frequency (dc signals) up

More information

Design of a Regenerative Receiver for the Short-Wave Bands A Tutorial and Design Guide for Experimental Work. Part I

Design of a Regenerative Receiver for the Short-Wave Bands A Tutorial and Design Guide for Experimental Work. Part I Design of a Regenerative Receiver for the Short-Wave Bands A Tutorial and Design Guide for Experimental Work Part I Ramón Vargas Patrón rvargas@inictel-uni.edu.pe INICTEL-UNI Regenerative Receivers remain

More information

Analog Circuits and Systems

Analog Circuits and Systems Analog Circuits and Systems Prof. K Radhakrishna Rao Lecture 31: Waveform Generation 1 Review Phase Locked Loop (self tuned filter) 2 nd order High Q low-pass output phase compared with the input 90 phase

More information

Modulator with Op- Amp Gain Compensation for Nanometer CMOS Technologies

Modulator with Op- Amp Gain Compensation for Nanometer CMOS Technologies A. Pena Perez, V.R. Gonzalez- Diaz, and F. Maloberti, ΣΔ Modulator with Op- Amp Gain Compensation for Nanometer CMOS Technologies, IEEE Proceeding of Latin American Symposium on Circuits and Systems, Feb.

More information

CHAPTER. delta-sigma modulators 1.0

CHAPTER. delta-sigma modulators 1.0 CHAPTER 1 CHAPTER Conventional delta-sigma modulators 1.0 This Chapter presents the traditional first- and second-order DSM. The main sources for non-ideal operation are described together with some commonly

More information

PI Controller Applied in a Signal Security System Using Synchronous Chaos of Chua's Circuit

PI Controller Applied in a Signal Security System Using Synchronous Chaos of Chua's Circuit 9 PI Controller Applied in a Signal Security System Using Synchronous Chaos of Chua's Circuit 1 Yeong-Chin Chen Abstract This paper aims to study how the chaotic phenomena are applied in the signal security

More information

A High Gain OTA with Slew Rate Enhancement Technique in 45nm FinFET Technology

A High Gain OTA with Slew Rate Enhancement Technique in 45nm FinFET Technology A High Gain OTA with Slew Rate Enhancement Technique in 45nm FinFET Technology Ankur Gupta 1, Satish Kumar 2 M. Tech [VLSI] Student, ECE Department, ITM-GOI, Gwalior, India 1 Assistant Professor, ECE Department,

More information

Theory: The idea of this oscillator comes from the idea of positive feedback, which is described by Figure 6.1. Figure 6.1: Positive Feedback

Theory: The idea of this oscillator comes from the idea of positive feedback, which is described by Figure 6.1. Figure 6.1: Positive Feedback Name1 Name2 12/2/10 ESE 319 Lab 6: Colpitts Oscillator Introduction: This lab introduced the concept of feedback in combination with bipolar junction transistors. The goal of this lab was to first create

More information

Diodes. Sections

Diodes. Sections iodes Sections 3.3.1 3.3.8 1 Modeling iode Characteristics Exponential model nonlinearity makes circuit analysis difficult. Two common approaches are graphical analysis and iterative analysis For simple

More information

Design Analysis and Performance Comparison of Low Power High Gain 2nd Stage Differential Amplifier Along with 1st Stage

Design Analysis and Performance Comparison of Low Power High Gain 2nd Stage Differential Amplifier Along with 1st Stage Design Analysis and Performance Comparison of Low Power High Gain 2nd Stage Differential Amplifier Along with 1st Stage Sadeque Reza Khan Department of Electronic and Communication Engineering, National

More information

RC AUTONOMOUS CIRCUITS WITH CHAOTIC BEHAVIOUR

RC AUTONOMOUS CIRCUITS WITH CHAOTIC BEHAVIOUR Radioengineering R Autonomous ircuits With haotic Behaiour Vol., No., June 00. BERNÁT, I. BALÁŽ eter BERNÁT, Igor BALÁŽ Department o Radio and Electronics Faculty o Electrical Engineering and Inormation

More information

Wien oscillators using current conveyors

Wien oscillators using current conveyors PERGAMON Computers and Electrical Engineering 25 (1999) 45±55 Wien oscillators using current conveyors A.M. Soliman *, A.S. Elwakil Electronics and Communications Engineering Department, Cairo University,

More information

Lecture Notes Unit-III

Lecture Notes Unit-III Lecture Notes Unit-III FAQs Q1: An operational amplifier has a differential gain of 103 and CMRR of 100, input voltages are 120µV and 80µV, determine output voltage. 2 MARKS

More information