Design of switched-capacitor filter circuits using low gain amplifiers. ([2014])
- Record Type:
- Book
- Title:
- Design of switched-capacitor filter circuits using low gain amplifiers. ([2014])
- Main Title:
- Design of switched-capacitor filter circuits using low gain amplifiers
- Further Information:
- Note: Hugo Alexandre de Andrade Serra, Nuno Paulino.
- Authors:
- Serra, Hugo Alexandre de Andrade
Paulino, Nuno - Contents:
- Preface; Acknowledgements; Contents; List of Abbreviations and Acronyms; Chapter 1 Introduction; Chapter 2 Switched-Capacitor Circuits; 2.1 Switched-Capacitor Filters Building Blocks; 2.1.1 Operational Amplifiers; 2.1.2 Switches; 2.1.3 Capacitors; 2.1.4 Non-Overlapping Clock Phases; 2.2 Switched-Capacitor Resistor Emulation Networks; 2.2.1 Parasitic-Sensitive Integrator; 2.2.2 Parasitic-Insensitive Integrator; 2.2.3 Signal Flow Graph Analysis; 2.3 Sallen-Key Topology; 2.3.1 Low-Pass Sallen-Key Topology; 2.3.2 Band-Pass Sallen-Key Topology; Chapter 3 Low-Pass Filter Topologies. 3.1 Continuous-Time Sallen-Key Low-Pass Filter3.2 Switched-Capacitor Low-Pass Filter; 3.2.1 Single-Ended Switched-Capacitor Low-Pass Filter; 3.2.2 Differential Switched-Capacitor Low-Pass Filter; 3.3 Switched-Capacitor Filters Using Cascaded Sections; 3.4 Conclusions; Chapter 4 Band-Pass Filter Topologies; 4.1 Continuous-time Sallen-Key Band-Pass Filter; 4.2 Switched-Capacitor Band-Pass Filter; 4.2.1 Single-Ended Switched-Capacitor Band-Pass Filter; 4.2.2 Differential Switched-Capacitor Band-Pass Filter; 4.3 Switched-Capacitor Filters Using Cascaded Sections; 4.4 Conclusions. Chapter 5 Non-Ideal Effects5.1 Non-linear Effects due to Real Switches; 5.1.1 Filter Analysis; 5.1.2 Simulation Results; 5.2 Clock Boost Circuit; 5.2.1 Clock Boost Circuit Analysis; 5.2.2 Simulation Results; 5.3 Low-Voltage Clock Boost Circuit; 5.3.1 Low-Voltage Clock Boost Circuit Analysis; 5.3.2 Simulation Results; 5.4 SourcePreface; Acknowledgements; Contents; List of Abbreviations and Acronyms; Chapter 1 Introduction; Chapter 2 Switched-Capacitor Circuits; 2.1 Switched-Capacitor Filters Building Blocks; 2.1.1 Operational Amplifiers; 2.1.2 Switches; 2.1.3 Capacitors; 2.1.4 Non-Overlapping Clock Phases; 2.2 Switched-Capacitor Resistor Emulation Networks; 2.2.1 Parasitic-Sensitive Integrator; 2.2.2 Parasitic-Insensitive Integrator; 2.2.3 Signal Flow Graph Analysis; 2.3 Sallen-Key Topology; 2.3.1 Low-Pass Sallen-Key Topology; 2.3.2 Band-Pass Sallen-Key Topology; Chapter 3 Low-Pass Filter Topologies. 3.1 Continuous-Time Sallen-Key Low-Pass Filter3.2 Switched-Capacitor Low-Pass Filter; 3.2.1 Single-Ended Switched-Capacitor Low-Pass Filter; 3.2.2 Differential Switched-Capacitor Low-Pass Filter; 3.3 Switched-Capacitor Filters Using Cascaded Sections; 3.4 Conclusions; Chapter 4 Band-Pass Filter Topologies; 4.1 Continuous-time Sallen-Key Band-Pass Filter; 4.2 Switched-Capacitor Band-Pass Filter; 4.2.1 Single-Ended Switched-Capacitor Band-Pass Filter; 4.2.2 Differential Switched-Capacitor Band-Pass Filter; 4.3 Switched-Capacitor Filters Using Cascaded Sections; 4.4 Conclusions. Chapter 5 Non-Ideal Effects5.1 Non-linear Effects due to Real Switches; 5.1.1 Filter Analysis; 5.1.2 Simulation Results; 5.2 Clock Boost Circuit; 5.2.1 Clock Boost Circuit Analysis; 5.2.2 Simulation Results; 5.3 Low-Voltage Clock Boost Circuit; 5.3.1 Low-Voltage Clock Boost Circuit Analysis; 5.3.2 Simulation Results; 5.4 Source Follower with gds Compensation; 5.4.1 Source Follower with gds Compensation; 5.4.1.1 Low Frequency Small Signal Model; 5.4.1.2 Transistor Thermal Noise Referred to the Input; 5.4.1.3 Medium Frequency Small Signal Model. 5.4.2 Complementary Source Follower with gds Compensation5.4.2.1 Low Frequency Small Signal Model; 5.4.2.2 Transistor Thermal Noise Referred to the Input; 5.4.2.3 Medium Frequency Small Signal Model; 5.4.3 Source Follower with gds and Body Effect Compensation; 5.4.3.1 Low Frequency Small Signal Model; 5.4.3.2 Transistor Thermal Noise Referred to the Input; 5.4.3.3 Medium Frequency Small Signal Model; 5.4.4 Simulation Results; 5.5 Low-Voltage Fully-Differential Voltage-Combiner; 5.5.1 Fully-Differential Voltage Combiner; 5.5.1.1 Low Frequency Small Signal Model. 5.5.1.2 Transistor Thermal Noise Referred to the Input5.5.1.3 Medium Frequency Small Signal Model; 5.5.2 Complementary Fully-Differential Voltage-Combiner; 5.5.2.1 Low Frequency Small Signal Model; 5.5.2.2 Transistor Thermal Noise Referred to the Input; 5.5.2.3 Medium Frequency Small Signal Model; 5.5.3 Simulation Results; Chapter 6 Switched Capacitor Filter Implementation; 6.1 Second-Order Low-Pass SC Filter; 6.1.1 Filter using Clock Boost and Complementary Source Follower with gds Compensation; 6.1.2 Filter Using Low-Voltage Clock Boost and VoltageCombiner at 1.2 V. … (more)
- Publisher Details:
- Cham : Springer
- Publication Date:
- 2014
- Copyright Date:
- 2015
- Extent:
- 1 online resource (xiii, 92 pages), illustrations (some color)
- Subjects:
- 621.3815
Engineering
Switched capacitor circuits -- Design
TECHNOLOGY & ENGINEERING -- Mechanical
Switched capacitor circuits -- Design
Technology & Engineering -- Electronics -- General
Electronics engineering
Imaging systems & technology
Systems engineering
Electronics
Technology & Engineering -- Electronics -- Circuits -- General
Circuits & components
Electronic books - Languages:
- English
- ISBNs:
- 9783319117911
3319117912
3319117904
9783319117904 - Related ISBNs:
- 9783319117904
- Notes:
- Note: Includes bibliographical references.
Note: Online resource; title from PDF title page (SpringerLink, viewed December 10, 2014). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.354193
- Ingest File:
- 01_314.xml