Operational Amplifier Circuits: Analysis and Design
Download Operational Amplifier Circuits: Analysis and Design written by J.C.C. Nelson is very useful for Electronics & Communication Engineering (ECE) students and also who are all having an interest to develop their knowledge in the field of Communication Innovation. This Book provides an clear examples on each and every topics covered in the contents of the book to provide an every user those who are read to develop their knowledge. The text presents the topic in a clear, simple, practical, logical and cogent fashion that provides the students with insights into theory as well as applications to practical problems.
Operational Amplifier Circuits: Analysis and Design written to meet exhaustively the requirements of various syllabus in the subject of the courses in B.E /B.Tech/ B.Sc (Engineering) of various Indian Universities. It is Equally suitable for UPSC, AIME and all other competitive examinations in the field of Engineering.
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Book Details:
Title Of The Book | Operational Amplifier Circuits: Analysis and Design |
Author’s Name | J.C.C. Nelson |
Publishers | J.C.C. Nelson |
File Size | 2.2 MB |
File Type |
Table Of Content:
- CHAPTER 1. Introduction to Operational Amplifier Circuits
- 1.1 The Basic Amplifier
- 1.2 Inverting Mode, Operation as Scaler and Summer (1/2)
- 1.2 Inverting Mode, Operation as Scaler and Summer (2/2)
- 1.3 Noninverting Mode, the Voltage Follower
- 1.4 Differential Mode
- 1.5 Common Mode Rejection
- 1.6 Instrumentation Amplifier
- 1.7 Reference
- CHAPTER 2. Frequency Response
- 2.1 Open Loop Behavior, Compensation
- 2.2 Closed Loop Response, Rise Time
- 2.3 Large-Signal Operation, Slew Rate, and Full Power Bandwidth
- CHAPTER 3. Offset Errors
- 3.1 Offset Voltage, Bias, and Difference Currents
- 3.2 Temperature and Other Effects
- 3.3 Use of T Network to Reduce Feedback Resistance
- 3.4 Blocking of DC Offset
- 3.5 References
- CHAPTER 4. Waveform Generation
- 4.1 Preliminary Comments
- 4.2 Ramp-Based Generators
- 4.3 Sine Wave Oscillators
- 4.4 References
- CHAPTER 5. Introduction to Active Filters
- 5.1 Preliminary Comments
- 5.2 First-Order Active Filters
- 5.3 Second-Order Active Filters (1/4)
- 5.3 Second-Order Active Filters (2/4)
- 5.3 Second-Order Active Filters (3/4)
- 5.3 Second-Order Active Filters (4/4)
- 5.4 State Variable Filters
- 5.5 Band Rejection Filter
- 5.6 References
- CHAPTER 6. Nonlinear Circuits
- 6.1 Preliminary Comments
- 6.2 Simple Limiting
- 6.3 Precision Limiting
- 6.4 Precision Rectification
- 6.5 Arbitrary Function Generators
- 6.6 Logarithmic Amplifiers
- 6.7 References
- Appendix A Computer Programs
- A.1 Input and Feedback Resistance Values(Inverting Amplifier)
- A.2 Input and Feedback Resistance Values(Noninverting Amplifier)
- A.4 Slew Rate to Bandwidth Conversion
- A.5 Offset Error Determination
- A.6 Worst Case Drift Performance
- A.7 T-Network Feedback
- A.8 Triangular Wave Oscillator Design
- A.9 Wien Bridge Oscillator Design
- A.10 Filter Order Determination
- A.11 Unity Gain Sallen-Key Filter Design
- A.12 Equal Component Sallen-Key Filter Design
- A.13 Bandpass Filter Design
- A.14 Notch Filter Design
- A.15 Soft Limiter Design
- A.16 Precision Limiter Design
- A.17 Diode Function Generator Design
- A.1 Input and Feedback Resistance Values(Inverting Amplifier)
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