138N. BJT Op-Amp Design Example

Analog Circuit Design (New 2019) Professor Ali Hajimiri California Institute of Technology (Caltech) http://chic.caltech.edu/hajimiri/ © Copyright, Ali Hajimiri

139N. High frequency: transfer functions, lower pass and high pass response.
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139N. High frequency: transfer functions, lower pass and high pass response.

137N. MOS Op-Amp Design Examples
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137N. MOS Op-Amp Design Examples

133N Process, Supply, and Temperature Independent Biasing
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133N Process, Supply, and Temperature Independent Biasing

136N. Op-Amp Design: Basic MOS Op-Amp
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136N. Op-Amp Design: Basic MOS Op-Amp

57 - Designing a Simple Transistor Amplifier
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57 - Designing a Simple Transistor Amplifier

132N. Integrated circuit biasing, current mirrors, headroom
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132N. Integrated circuit biasing, current mirrors, headroom

134N. Scaled bandgap reference, adjustable voltage PVT independent references.
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134N. Scaled bandgap reference, adjustable voltage PVT independent references.

125N. Two transistor stages: cascade, folded cascade, active load, Darlington, current mirror
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125N. Two transistor stages: cascade, folded cascade, active load, Darlington, current mirror

The Insane Genius of a Formula 1 Gearbox
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The Insane Genius of a Formula 1 Gearbox

121N. (Pt. 1) BJT Amplifier, Emitter Degeneration, Transfer characteristics and gain
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121N. (Pt. 1) BJT Amplifier, Emitter Degeneration, Transfer characteristics and gain

CMOS Transistor Sizing: Gm/ID Approach — Boris Murmann | ISSCC 2026 | Circuit Insights (5)
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CMOS Transistor Sizing: Gm/ID Approach — Boris Murmann | ISSCC 2026 | Circuit Insights (5)

127N. (Pt. 1) Differential Amplifiers: MOS, BJT, and ATD
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127N. (Pt. 1) Differential Amplifiers: MOS, BJT, and ATD

126N. Differential Signaling and differential pair: core concept and large signal behavior (BJT)
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126N. Differential Signaling and differential pair: core concept and large signal behavior (BJT)

Creator of C++: Bell Labs, Negative Overhead Abstraction, Mistakes | Bjarne Stroustrup
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Creator of C++: Bell Labs, Negative Overhead Abstraction, Mistakes | Bjarne Stroustrup

The World's Simplest Audio Amp just got BETTER?! (MOSFET Amp) EB#61
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The World's Simplest Audio Amp just got BETTER?! (MOSFET Amp) EB#61

Op-Amps  - Using Operational Amplifiers
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Op-Amps - Using Operational Amplifiers

188N. Intro. to RF power amplifiers
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188N. Intro. to RF power amplifiers

ECE3400 Lecture 28: One-BJT Current Sources & Jensen 990 Op Amp Analysis (Analog Electronics)
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ECE3400 Lecture 28: One-BJT Current Sources & Jensen 990 Op Amp Analysis (Analog Electronics)

Electrical Engineering: Ch 5: Operational Amp (17 of 28) Design a Circuit: Example 1
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Electrical Engineering: Ch 5: Operational Amp (17 of 28) Design a Circuit: Example 1

171N. Circuit compensation techniques, one- and two-stage op-amp, Miller compensation
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171N. Circuit compensation techniques, one- and two-stage op-amp, Miller compensation