ECE3400 Lecture 29: Two-BJT Current Sources (Analog Electronics, Georgia Tech course)
Reference: https://leachlegacy.ece.gatech.edu/ec... Support this channel via a special purpose donation to the Georgia Tech Foundation (GTF210000920), earmarked for my work: • [OLD] Support This Channel via a Special P... 0:00 -- Introduction 0:58 -- Two-BJT current source 4:36 -- Boring algebra 8:57 -- Output current 9:17 -- Special case 11:24 -- Output impedance 13:49 -- PNP version 14:13 -- Design procedure 14:56 -- Cascode current source 15:56 -- Opamp+BJT current source

▶︎
ECE3400 L30: BJT Widlar Current Mirrors & Sources (Analog Electronics)

▶︎
Wilson Current Mirror and Current Source Design

▶︎
ECE3400 Lecture 27: BJT Push-Pull Amplifiers and VBE Multipliers (Analog Electronics, Georgia Tech)

▶︎
EEVblog 1688 - Constant Current Sources EXPLAINED + DEMO

▶︎
ECE4450 L4.1: Voltage Controlled Amplifiers: Operational Transconductance Amps (ACMS)

▶︎
Biasing transistors with current sources (29-Transistors)

▶︎
Transistor Circuits - Current Source, Current Mirror, Voltage/Bandgap Reference

▶︎
Transistors 101 ep6: Biasing and Bootstrapping

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

▶︎
BJT Constant Current Driver

▶︎
The Scariest Chart in Electrical Engineering

▶︎
Current Sense Amplifiers (1/2): Why not to use an OpAmp (CMRR etc.)

▶︎
Differential Amplifiers with Transistors (23-Transistors)

▶︎
Constant Current Source

▶︎
122N. (Pt. 2) BJT Amplifier, Emitter follower, common-based, cascode, active load, maximum gain

▶︎
ECE3400 L41: Deconstructing the TL071 Op Amp (Analog Electronics, Georgia Tech course)

▶︎
Push-Pull Power Amplifier design (High Voltage) with Op Amp and Darlington Transistors

▶︎
ECE3400 Lecture 13: Common Emitter Amplifiers (Analog Electronics, Georgia Tech course)

▶︎
Push-Pull Pair - Class B, Class AB and Class A operation

▶︎
