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D. Feucht - One of the best experts on this subject based on the ideXlab platform.

  • Designing High-Performance Amplifiers (Analog Circuit Design Series: Volume 3) - Designing High-Performance Amplifiers (Analog Circuit Design Series: Volume 3)
    2010
    Co-Authors: D. Feucht
    Abstract:

    The Analog Circuit Design Series set reduces the concepts of Analog electronics to their simplest, most obvious form which can easily be applied (even quantitatively) with minimal effort. The emphasis of the set is to help you intuitively learn through inspection how Circuits work and apply the same techniques to Circuits of the same class. The third volume Designing High Performance Amplifiers applies the concepts from the first two volumes (9781891121869; 9781891121838). It is an advanced treatment of amplifier Design/analysis emphasizing both wideband and precision amplification. Topics include bandwidth extension, noise and distortion, effects of components, instrumentation and isolation, amplifiers, autocalibration, thermal effects, current-feedback amplifiers, multi-path schemes, feed forward, fT multipliers, buffers, voltage translators, Giulbert gain cells and multipliers.

  • Designing Waveform-Processing Circuits (Analog Circuit Design Series: Volume 4) - Designing Waveform-Processing Circuits (Analog Circuit Design Series: Volume 4)
    2010
    Co-Authors: D. Feucht
    Abstract:

    The Analog Circuit Design Series set reduces the concepts of Analog electronics to their simplest, most obvious form which can easily be applied (even quantitatively) with minimal effort. The emphasis of the set is to help you intuitively learn through inspection how Circuits work and apply the same techniques to Circuits of the same class. The fourth volume in the set Designing Waveform-Processing Circuits builds on the previous 3 volumes (9781891121869; 9781891121838; 9781891121845) and presents a variety of Analog non-amplifier Circuits, including voltage references, current sources, filters, hysteresis switches and oscilloscope trigger and sweep Circuitry, function generation, absolute-value Circuits, and peak detectors. Digitizing (ADCs and DACs) and sampling (including some switched-capacitor) Circuits are explained, with theory required for Design. Sampling theory is developed from both a frequency and time-domain viewpoint, with emphasis upon application to Design.

  • Designing Dynamic Circuit Response (Analog Circuit Design Series: Volume 2) - Designing Dynamic Circuit Response (Analog Circuit Design Series: Volume 2)
    2010
    Co-Authors: D. Feucht
    Abstract:

    The Analog Circuit Design set reduces the concepts of Analog electronics to their simplest, most obvious form which can easily be applied (even quantitatively) with minimal effort. The emphasis of the set is to help you intuitively learn through inspection how Circuits work and apply the same techniques to Circuits of the same class. This second volume, Designing Dynamic Circuit Response builds upon the first volume Designing Amplifier Circuits (9781891121869) by extending coverage to include reactances and their time- and frequency-related behavioral consequences. Retaining a Design-oriented analysis, this volume begins with Circuit fundamentals involving capacitance and inductance and lays down the approach using s-domain analysis. Additional concepts and perspectives fill in the blanks left by textbooks in regards to Circuit Design. It simplifies dynamic Circuit analysis by using the graphical methods of reactance plots. Methods of compensating amplifiers, including feedback amplifiers, are kept as simple as possible using reactance plots and s-domain transfer functions that mainly require algebraic skill.

  • Designing Amplifier Circuits (Analog Circuit Design Series: Volume 1) - Designing Amplifier Circuits (Analog Circuit Design Series: Volume 1)
    2010
    Co-Authors: D. Feucht
    Abstract:

    The Analog Circuit Design Series set reduces the concepts of Analog electronics to their simplest, most obvious form which can easily be applied (even quantitatively) with minimal effort. The emphasis of the set is to help you intuitively learn through inspection how Circuits work and apply the same techniques to Circuits of the same class. This first volume, Designing Amplifier Circuits, presents the basic principles of transistor Circuit analysis, basic per-stage building blocks, and feedback. The content is restricted to quasi-static (low-frequency) considerations, to emphasize basic topological principles. The reader will be able to analyze and Design multi-stage amplifiers with feedback, including calculation and specification of gain, input and output resistances, including the effects of transistor output resistance. Of note is the presentation of feedback analysis, a subject rarely covered by other books, with insights and from angles that will reduce to analysis by inspection for readers. Some Circuit transformations outlined within are especially helpful in reducing Circuits to simpler forms for analysis. They are usefully applied in considering transistor Circuits for which collector-emitter (or drain-source) resistance is not negligible, another often omitted topic which this book details.

  • Designing waveform processing Circuits Analog Circuit Design series volume 4
    2010
    Co-Authors: D. Feucht
    Abstract:

    The Analog Circuit Design Series set reduces the concepts of Analog electronics to their simplest, most obvious form which can easily be applied (even quantitatively) with minimal effort. The emphasis of the set is to help you intuitively learn through inspection how Circuits work and apply the same techniques to Circuits of the same class. The fourth volume in the set Designing Waveform-Processing Circuits builds on the previous 3 volumes (9781891121869; 9781891121838; 9781891121845) and presents a variety of Analog non-amplifier Circuits, including voltage references, current sources, filters, hysteresis switches and oscilloscope trigger and sweep Circuitry, function generation, absolute-value Circuits, and peak detectors. Digitizing (ADCs and DACs) and sampling (including some switched-capacitor) Circuits are explained, with theory required for Design. Sampling theory is developed from both a frequency and time-domain viewpoint, with emphasis upon application to Design.

Kofi A. A. Makinwa - One of the best experts on this subject based on the ideXlab platform.

Pieter Harpe - One of the best experts on this subject based on the ideXlab platform.

Andrea Baschirotto - One of the best experts on this subject based on the ideXlab platform.

Willy Sansen - One of the best experts on this subject based on the ideXlab platform.

  • Analog Circuit Design in scaled cmos technology
    Symposium on VLSI Circuits, 1996
    Co-Authors: Willy Sansen
    Abstract:

    Scaled CMOS technology gives rise to submicron devices. In such devices short-channel effects lead to shifts in threshold voltage, increased mismatch and noise. The velocity saturation limits the obtainable transconductance and hence also the high speed performance. Lower supply voltages require the operational amplifier building block to operate rail-to-rail. In delta-sigma converters this leads to very-low-power converters. Considerable attention goes to Circuit Design for telecommunication applications, in which the inductor is making a comeback. The ultimate challenge of Analog Design however is the cointegration with digital blocks, causing coupling noise and requiring sophisticated tools.