By considering the advantages offering in CM circuits and to meet the need for generating square wave generator circuit and all pass filter circuits in most electronic appliances, some new square wave generators and all pass filter circuits are proposed in this thesis.
In the thesis, new all-pass filters with the DCCII as the main active device are proposed. The proposed circuits consist of two resistors and two capacitors, including one grounded capacitor, suitable for tuning. In literature, it is widely accepted that use of grounded capacitors makes the designs suitable for integrated circuit (IC) realisation. Grounded IC capacitors have less parasitics compared to floating counterparts, which is important from the performance point of view and to avoid noise effects.
Inhaltsverzeichnis (Table of Contents)
- Abstract
- List of Figures
- List of Tables
- Chapter 1: Introduction
- 1.1. Overview
- 1.2. Literature Survey
- 1.3. Motivation of the Work
- 1.4. Organization of the Thesis
- Chapter 2: Fundamental Concepts and Existing Architectures
- 2.1. Conventional Current Conveyors
- 2.2. Second Generation Current Conveyors (SGCCs)
- 2.3. Applications of Current Conveyors
- Chapter 3: Proposed Second Generation Differential Current Conveyor (DCCII)
- 3.1. Proposed Circuit Design
- 3.2. Simulation Results
- 3.3. Performance Analysis
- Chapter 4: Applications of DCCII
- 4.1. Application 1: High-Speed Current Amplifier
- 4.2. Application 2: Precision Current-Mode Active Filter
- 4.3. Application 3: High-Performance Current Comparator
- Chapter 5: Conclusion and Future Work
- References
Zielsetzung und Themenschwerpunkte (Objectives and Key Themes)
This thesis aims to present a novel design for a Second Generation Differential Current Conveyor (DCCII) and explore its potential applications in analog circuit design. The research focuses on improving the performance and functionality of current conveyors, leading to enhanced capabilities for various analog circuit applications.
- Design and analysis of a novel DCCII circuit.
- Investigation of the performance characteristics of the proposed DCCII.
- Exploration of practical applications of the DCCII in analog circuit design.
- Comparison of the proposed DCCII with existing current conveyor architectures.
- Assessment of the potential advantages and limitations of the DCCII.
Zusammenfassung der Kapitel (Chapter Summaries)
- Chapter 1: Introduction provides an overview of the research area, including a literature survey on existing current conveyor architectures and their applications. It highlights the motivation behind this thesis and outlines the organization of the research work.
- Chapter 2: Fundamental Concepts and Existing Architectures introduces the basic principles of current conveyors and explores various existing architectures, including conventional current conveyors and Second Generation Current Conveyors (SGCCs). It also discusses various applications of current conveyors in analog circuit design.
- Chapter 3: Proposed Second Generation Differential Current Conveyor (DCCII) presents the detailed design of the novel DCCII circuit proposed in this thesis. It includes the circuit schematic, simulation results, and performance analysis of the proposed device.
- Chapter 4: Applications of DCCII explores the practical applications of the proposed DCCII in analog circuit design. It presents three specific applications: a high-speed current amplifier, a precision current-mode active filter, and a high-performance current comparator.
Schlüsselwörter (Keywords)
The thesis primarily focuses on the design, analysis, and applications of a novel Second Generation Differential Current Conveyor (DCCII). Key keywords include: current conveyors, analog circuit design, differential current conveyors, high-speed current amplifiers, precision current-mode active filters, high-performance current comparators, simulation results, performance analysis, and applications in analog circuit design. The research contributes to the advancement of current conveyor technology and its potential applications in various analog circuits.
- Quote paper
- Dr. Vallabhuni Vijay (Author), 2017, Second Generation Differential Current Conveyor (DCCII) and its Applications, Munich, GRIN Verlag, https://www.grin.com/document/934406