Low Voltage CMOS Op-amps for Switched-capacitor Applications

Low Voltage CMOS Op-amps for Switched-capacitor Applications
Title Low Voltage CMOS Op-amps for Switched-capacitor Applications PDF eBook
Author Herbert Gregory Bell
Publisher
Pages 206
Release 1990
Genre
ISBN

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Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems

Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems
Title Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems PDF eBook
Author Vincent S.L. Cheung
Publisher Springer Science & Business Media
Pages 207
Release 2013-03-14
Genre Technology & Engineering
ISBN 1475737017

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This volume emphasizes the design and development of advanced switched-opamp architectures and techniques for low-voltage low-power switched-capacitor systems. It presents a novel multi-phase switched-opamp technique together with new system architectures that are critical in improving significantly the performance of switched-capacitor systems at low supply voltages.

Design Of Low-Voltage Cmos Switched-Opamp Switched-Capacitor Systems

Design Of Low-Voltage Cmos Switched-Opamp Switched-Capacitor Systems
Title Design Of Low-Voltage Cmos Switched-Opamp Switched-Capacitor Systems PDF eBook
Author Cheung
Publisher
Pages 210
Release 2007-01-01
Genre
ISBN 9788181285843

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Design of Low-Voltage Low-Power CMOS Delta-Sigma A/D Converters

Design of Low-Voltage Low-Power CMOS Delta-Sigma A/D Converters
Title Design of Low-Voltage Low-Power CMOS Delta-Sigma A/D Converters PDF eBook
Author Vincenzo Peluso
Publisher Springer Science & Business Media
Pages 178
Release 2013-03-09
Genre Technology & Engineering
ISBN 1475729782

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Design of Low-Voltage Low-Power CMOS Delta-Sigma A/D Converters investigates the feasibility of designing Delta-Sigma Analog to Digital Converters for very low supply voltage (lower than 1.5V) and low power operation in standard CMOS processes. The chosen technique of implementation is the Switched Opamp Technique which provides Switched Capacitor operation at low supply voltage without the need to apply voltage multipliers or low VtMOST devices. A method of implementing the classic single loop and cascaded Delta-Sigma modulator topologies with half delay integrators is presented. Those topologies are studied in order to find the parameters that maximise the performance in terms of peak SNR. Based on a linear model, the performance degradations of higher order single loop and cascaded modulators, compared to a hypothetical ideal modulator, are quantified. An overview of low voltage Switched Capacitor design techniques, such as the use of voltage multipliers, low VtMOST devices and the Switched Opamp Technique, is given. An in-depth discussion of the present status of the Switched Opamp Technique covers the single-ended Original Switched Opamp Technique, the Modified Switched Opamp Technique, which allows lower supply voltage operation, and differential implementation including common mode control techniques. The restrictions imposed on the analog circuits by low supply voltage operation are investigated. Several low voltage circuit building blocks, some of which are new, are discussed. A new low voltage class AB OTA, especially suited for differential Switched Opamp applications, together with a common mode feedback amplifier and a comparator are presented and analyzed. As part of a systematic top-down design approach, the non-ideal charge transfer of the Switched Opamp integrator cell is modeled, based upon several models of the main opamp non-ideal characteristics. Behavioral simulations carried out with these models yield the required opamp specifications that ensure that the intended performance is met in an implementation. A power consumption analysis is performed. The influence of all design parameters, especially the low power supply voltage, is highlighted. Design guidelines towards low power operation are distilled. Two implementations are presented together with measurement results. The first one is a single-ended implementation of a Delta-Sigma ADC operating with 1.5V supply voltage and consuming 100 &mgr;W for a 74 dB dynamic range in a 3.4 kHz bandwidth. The second implementation is differential and operates with 900 mV. It achieves 77 dB dynamic range in 16 kHz bandwidth and consumes 40 &mgr;W. Design of Low-Voltage Low-Power CMOS Delta-Sigma A/D Converters is essential reading for analog design engineers and researchers.

Low Voltage, Low Power CMOS Operational Amplifier Design for Switched Capacitor Circuits

Low Voltage, Low Power CMOS Operational Amplifier Design for Switched Capacitor Circuits
Title Low Voltage, Low Power CMOS Operational Amplifier Design for Switched Capacitor Circuits PDF eBook
Author Priti Manher Naik
Publisher
Pages 100
Release 1998
Genre
ISBN

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Demystifying Switched Capacitor Circuits

Demystifying Switched Capacitor Circuits
Title Demystifying Switched Capacitor Circuits PDF eBook
Author Mingliang (Michael) Liu
Publisher Elsevier
Pages 332
Release 2006-06-12
Genre Technology & Engineering
ISBN 0080458769

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This book helps engineers to grasp fundamental theories and design principles by presenting physical and intuitive explanations of switched-capacitor circuits. Numerous circuit examples are discussed and the author emphasizes the most important and fundamental principles involved in implementing state-of-the-art switched-capacitor circuits for analog signal processing and power management applications. Throughout the book, the author presents numerous step-by-step tutorials and gives practical design examples.While some quantitative analysis is necessary to understand underlying concepts, tedious mathematical equations and formal proofs are avoided. An intuitive appreciation for switched-capacitor circuits is achieved.Much of the existing information on contemporary switched-capacitor circuit applications is in the form of applications notes and data sheets for various switched-capacitor ICs. This book compiles such information in a single volume and coherently organizes and structures it.The author has his own website at www.mingliangliu.com * Step-by-step tutorials which emphasize the most fundamental principals of switched-capacitor circuits * Few tedious mathematical equations * The first easy-to-understand compilation on this subject--most information available is not very cohesive

Analog Circuit Design

Analog Circuit Design
Title Analog Circuit Design PDF eBook
Author Rudy J. van de Plassche
Publisher Springer Science & Business Media
Pages 394
Release 2013-06-29
Genre Technology & Engineering
ISBN 1475723539

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The realization of signal sampling and quantization at high sample rates with low power dissipation is an important goal in many applications, includ ing portable video devices such as camcorders, personal communication devices such as wireless LAN transceivers, in the read channels of magnetic storage devices using digital data detection, and many others. This paper describes architecture and circuit approaches for the design of high-speed, low-power pipeline analog-to-digital converters in CMOS. Here the term high speed is taken to imply sampling rates above 1 Mhz. In the first section the dif ferent conversion techniques applicable in this range of sample rates is dis cussed. Following that the particular problems associated with power minimization in video-rate pipeline ADCs is discussed. These include optimi zation of capacitor sizes, design of low-voltage transmission gates, and opti mization of switched capacitor gain blocks and operational amplifiers for minimum power dissipation. As an example of the application of these tech niques, the design of a power-optimized lO-bit pipeline AID converter (ADC) that achieves =1. 67 mW per MS/s of sampling rate from 1 MS/s to 20 MS/s is described. 2. Techniques for CMOS Video-Rate AID Conversion Analog-to-digital conversion techniques can be categorized in many ways. One convenient means of comparing techniques is to examine the number of "analog clock cycles" required to produce one effective output sample of the signal being quantized.