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EE-423: Low power electronics: analog mixed signal design
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Lectures in this course (26)
From Comparator to Amplifier
Covers the transition from a comparator to an amplifier, focusing on the different stages and components involved.
Simple OTA Design: gm/ID Methodology
Covers the design of simple OTAs using the gm/ID methodology and key parameters like transconductance and gain-bandwidth product.
Analog IC Design: MOSFET Operations, Modeling, and Tradeoffs
Explores MOSFET operations, modeling, and tradeoffs in analog IC design, emphasizing biasing, mode of operation, and small-signal parameters.
Exercise: Voltage Saturation
Covers exercises on voltage saturation in electronic circuits to reinforce understanding of saturation concepts.
Design of Fully Differential Amplifier
Covers the design of a fully differential amplifier and key design concepts.
Design of Fully Differential Amplifier
Covers the design of a fully differential amplifier, focusing on transistor sizing and performance optimization.
Design of Fully Diff Amp
Covers the design methodology of a fully differential folded cascode OTA.
MOSFET: Basic Operations, Modeling and Tradeoffs
Explores MOSFET basic operations, modeling, tradeoffs, and frequency response.
Current Mirrors: Passive and Active
Explores the design and analysis of current mirrors in analog circuits, emphasizing accuracy and layout optimization.
Supply independent Biasing
Covers supply independent biasing, beta-multiplier reference, and temperature behavior in analog circuits design.
Temperature Analysis: Reference Circuits
Explores temperature-independent biasing circuits, negative-TC references, diode-referenced self-biasing circuits, and bandgap references in low-voltage ICs.
Temperature Independent Ref (Band Gap)
Covers the design and analysis of temperature-independent references and band gap circuits.
Temperature-Independent References
Covers the design of bandgap references focusing on temperature-independent references.
Bandgap References
Covers the design of bandgap voltage references for various applications.
Operational Transconductance Amplifiers: Evolution and Frequency Analysis
Explores the evolution and frequency analysis of Operational Transconductance Amplifiers, including stability considerations and the impact of feedback.
Multistage OTA: Stability and Compensation
Explores multistage OpAmps, stability, compensation, AC behavior, and frequency compensation objectives, including Miller compensation techniques.
Folded Cascode OTA: DC Biasing
Discusses the DC biasing of a Folded Cascode OTA in CMOS technology.
OTA Folded Cascode: Large Signal Analysis
Covers the large signal analysis of an OTA Folded Cascode circuit.
OTA Folded Cascode: AC Analysis
Covers the AC analysis of the OTA Folded Cascode circuit and discusses output resistance and LF gain.
Fully Differential Amplifier: Basics
Covers the basics of fully differential amplifiers, including their definition, output swing, and common-mode feedback circuits.
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