CHE 331- Chapter 3 Operational Amplifiers in Chemical Instrumentation Most modern analog signal-conditioning circuits owe their success to the class of.

Slides:



Advertisements
Similar presentations
Lecture 2 Operational Amplifiers
Advertisements

Operational Amplifiers
Introduction Goal: Understand the design of op-amp based ICs (comparators, oscillators, integrators, differentiators, instrumentation amplifiers) for applications.
Chapter 7 Operational-Amplifier and its Applications
Revision analog electronics
CHAPTER 1: INTRODUCTION TO OPERATIONAL AMPLIFIERS
Fundamentals of Electric Circuits Chapter 10 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
* Operational Amplifiers * Op-Amp Circuits * Op-Amp Analysis
1 Chapter 5 Sensors and Detectors A detector is typically the first stage of a communication system. Noise in this stage may have significant effects on.
Lecture 91 Loop Analysis (3.2) Circuits with Op-Amps (3.3) Prof. Phillips February 19, 2003.
Chapter 2 – Operational Amplifiers
EGR 2201 Unit 7 Operational Amplifiers
Operational Amplifiers in Chemical Instrumentation By Naaimat Muhammed.
ELECTRICAL ENGINEERING: PRINCIPLES AND APPLICATIONS, Third Edition, by Allan R. Hambley, ©2005 Pearson Education, Inc. Chapter 14 Operational Amplifiers.
Announcements Assignment 3 due now, or by tomorrow 5pm in my mailbox Assignment 4 posted, due next week –Thursday in class, or Friday 5pm in my mailbox.
Content Op-amp Application Introduction Inverting Amplifier
Storey: Electrical & Electronic Systems © Pearson Education Limited 2004 OHT 8.1 Operational Amplifiers  Introduction  An Ideal Operational Amplifier.
Chapter 8 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
Integrator Op Amp Amplifier
IDEAL OPERATIONAL AMPLIFIER AND OP-AMP CIRCUITS
Basic Block Diagram of Op-Amp
Analogue Electronics II EMT 212/4
EKT314/4 Electronic Instrumentation
EKT314/4 Electronic Instrumentation
Chapter 8 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
Topic 28: Direct Sensing 28.1 Sensing devices
Differential Amplifier
1 Circuit Theory Chapter 5 Operational Amplifier Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
ECE 4991 Electrical and Electronic Circuits Chapter 8.
EE445:Industrial Electronics. Outline Introduction Some application Comparators Integrators & Differentiators Summing Amplifier Digital-to-Analog (D/A)
Operational Amplifiers Instructor: Chia-Ming Tsai Electronics Engineering National Chiao Tung University Hsinchu, Taiwan, R.O.C.
OPERATIONAL AMPLIFIERS. BASIC OP-AMP Symbol and Terminals A standard operational amplifier (op-amp) has; V out is the output voltage, V+ is the non-inverting.
ECA1212 Introduction to Electrical & Electronics Engineering Chapter 7: Operational Amplifier by Muhazam Mustapha, November 2011.
EE 1270 Introduction to Electric Circuits Suketu Naik 0 EE 1270: Introduction to Electric Circuits Lecture 13: Operational Amplifiers Part 1 Chapter 5.
An understanding of the complex circuitry within the op amp is not necessary to use this amplifying circuit in the construction of an amplifier.
EMLAB 1 Chapter 4. Operational amplifiers
Alexander-Sadiku Fundamentals of Electric Circuits
Fundamentals of Electric Circuits Chapter 5 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
Operational Amplifiers The operational amplifier, also know as an op amp, is essentially a voltage amplifier with an extremely high voltage gain. One of.
Fundamentals of Electric Circuits Chapter 10 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
1 1.6 Op-Amp Basics Basic Op-Amp Op-amp equivalent circuit Practical (R i = high, R o = small)Ideal (R i =∞, R o = 0)
Operational Amplifiers Op Amps – a useful building block K. El-Ayat 11.
Teachers Name - Suman Sarker Subject Name Subject Name – Industrial Electronics (6832) Department Department – Computer (3rd) IDEAL INSTITUTE OF SCIENCE.
For Third year Biophysics Special Students. Prepared by: Abdo A. Elfiky. Assistant Lecturer, Biophysics Department, Faculty of Science, Cairo University.
OP-AMPs Op Amp is short for operational amplifier. An operational amplifier is modeled as a voltage controlled voltage source. An operational amplifier.
Analogue Electronics Higher Physics Unit 2 Electricity And Electronics Introduction to Op-Amps.
OPERATIONAL AMPLIFIERS + - Presented by D.Satishkumar Asst. Professor, Electrical & Electronics Engineering
EE101-Lecture 8 Operational Amplifier Basics of amplifiers EE101 Fall 2012 Lect 8- Kang1 Noninverting amplifier & Inverting amplifier.
 The differentiator or differentiating amplifier is as shown in figure.  This circuit will perform the mathematical operation of differentiation.
Chapter 3 Operational Amplifiers
Chapter 5 Operational Amplifier
Basic Block Diagram of Op-Amp
INSTITUTE & TECHNOLOGY
ECE 1270: Introduction to Electric Circuits
ELG4135: Electronics III (Fall 2005)
Analogue Electronic 2 EMT 212
Alexander-Sadiku Fundamentals of Electric Circuits
Operational Amplifiers
Operational Amplifiers (Op Amps) in Chemical Instrumentation
Differential Op - Amplifier TIM. 1 Introduction 2 Differential Amplifier: 2.1 Input Resistances: 2.2 Differential Gain: 2.3 Common Mode Input: 2.4 Common.
Operational Amplifiers
OP-AMPS: basics & Inverting-amplifier
تقویت کننده های عملیاتی
Operational Amplifiers in Chemical Instrumentation
Operational Amplifier (Op-Amp)-μA741
Medical electronics II
ELECTRONICS II 3rd SEMESTER ELECTRICAL
Alexander-Sadiku Fundamentals of Electric Circuits
Chapter 5 OUTLINE Op-Amp from 2-Port Blocks
CHAPTER 59 TRANSISTOR EQUIVALENT CIRCUITS AND MODELS
Presentation transcript:

CHE 331- Chapter 3 Operational Amplifiers in Chemical Instrumentation Most modern analog signal-conditioning circuits owe their success to the class of integrated circuits known as operational amplifiers, which can be referred to as op amps. Operational amplifiers are everywhere. If you open any instrument or piece of electronic equipment, it would be likely to find one or more op amps. This fact, along with the ease of complex functions that may be accomplished, makes clear the importance of understanding their principles of operation. In this chapter, we will briefly discuss some operational amplifier circuits and applications.

Op Amps: Systems-on-a-chip Op amps are key analog building blocks that condition signals throughout a system. Many systems, especially more sophisticated ones, use more than one op amp because different types fulfill various requirements. Operational amplifiers derive their name from their original applications in analog computers, where they were used to perform mathematical operations. Op amps also find general application in the precise measurement of voltage, current, and resistance, which are measured variables in transducers that are used in chemical instruments. They are also widely used as constant-current and constant- voltage sources.

Symbols for Operational Amplifiers Figure 3-1 is an equivalent circuit representation of an op amp. In this figure, the input potentials are represented by v + and v -. The input difference voltage v s is the difference between these two potentials. The power supply connections are labeled +PS and –PS and usually have values of +15 and –15 V dc. The open-loop gain of the operational amplifier is shown as A; thus the output voltage v o is given by v o= - Av s. Finally, Z i and Z o are the input and output impedance of the operational amplifier. Realize that the input signal may be either ac or dc and the out put signal will correspond. Note that all the potentials of op amps are measured with respect to the circuit common shown in Figure 3-1. Circuit common is also referred to as ground.

Symbols for Operational Amplifiers Figure 3-1 is an equivalent circuit representation of an op amp.

Operational Amplifier Circuits Operational amplifiers are used in circuit networks that contain various combinations of capacitors, resistors, and other electrical components. Under ideal conditions, the output of the amplifier is determined entirely by the nature of the network and its components and is independent of the operational amplifier itself.

Feedback Circuits It is often advantageous to return the output signal or some fraction of the output signal of an op amp to one of the two inputs. When an output signal of an op amp is connected to one of its inputs, the signal is called feedback. Figure 3-2 is an operational amplifier with a feedback loop consisting of the feedback resistor R f that is connected to the output S, which is called the summing point. Note that the feedback signal is opposite in sense to the input signal v i as a result of the characteristics of the inverting input and is called negative feedback.

Applications of Operational Amplifiers Op amps are easily used to generate constant-potential or constant-current signals. Constant-voltage sources include several instrumental methods that require a dc power source whose potential is precisely known and from which reasonable currents can be obtained without alteration of this potential. A circuit, which satisfies such qualifications, is a potentiostat. Constant-current dc sources, called amperostats, find applications in several analytical instruments. These devices may be used to maintain a constant current through an electrochemical cell, for example. An amperostat reacts to a change in input power or a change in internal resistance of the cell by altering its output potential in such a way as to maintain the current at a predetermined level. Mathematical operations with operational amplifiers include addition or subtraction, multiplication or division, integration, and differentiation.

On the Business End Operational amplifiers, one of the oldest types of semiconductors, have outlived their technological contemporaries and remain in strong demand. Oddly enough, the more complicated digital functions become, the more designers demand op amps. Despite its maturity, the market for these analog chips continues to grow substantially.

Some of these common applications of operational amplifiers were explored in a recent experiment. It described the purpose of the operational amplifiers (op-amps) as devices with a large number of uses in the measurement of electrical signals. In the current market, solid-state operational amplifiers of high quality are readily available from commercial sources at quite modest cost. Some of their applications include voltage gain, impedance matching, integration and analog computation.

REFERENCES: main.html s/elec221/opamps.htmhttp://bolongo.ee.queensu.ca:8000/www/dept/course s/elec221/opamps.htm ps/opamps.html Skoog, Holler, and Neiman. Principles of Instrumental Analysis. 5 th ed. Orlando: Harcourt Brace & Co., 1998.