ECE4450 L8: Voltage Controlled Oscillators: Sawtooth Cores (Analog Circuits for Music Synthesis)

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...   MAJOR CORRECTION: The integrating capacitor should be 2.2 nF, not 4.7 nF; all of the calculations should then change accordingly. Also, I forgot to mention that the integrating capacitor should be robust to temperature changes; usually people recommend polystyrene, polypropylene, or C0G or NP0 ceramic (that's the good stuff, you don't want to use mediocre ceramics in that position). I recorded this during the Spring 2021 offering of ECE4450: Analog Circuits for Music Synthesis, but this material will likely be appropriate for future offerings as well.

ECE4450 L9: Scaling and Shifting Waveforms (Analog Circuits for Music Synthesis, Georgia Tech)
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ECE4450 L9: Scaling and Shifting Waveforms (Analog Circuits for Music Synthesis, Georgia Tech)

ECE4450 L12: Voltage Controlled Oscillators: Triangle Cores; Buchla 259 (Analog Circuits for Music)
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ECE4450 L12: Voltage Controlled Oscillators: Triangle Cores; Buchla 259 (Analog Circuits for Music)

From Russell’s Paradox to Immortal Coordinates
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From Russell’s Paradox to Immortal Coordinates

ECE4450 L18: Exponential Voltage-to-Current Conversion & Tempco Resistors (Analog Circuits 4 Music)
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ECE4450 L18: Exponential Voltage-to-Current Conversion & Tempco Resistors (Analog Circuits 4 Music)

ECE4450 L26: Sallen-Key Filters & the Korg MS-20 VCF (Analog Circuits for Music Synthesis)
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ECE4450 L26: Sallen-Key Filters & the Korg MS-20 VCF (Analog Circuits for Music Synthesis)

Understanding Voltage Controlled Oscillators
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Understanding Voltage Controlled Oscillators

Designing a simple analog kick drum from scratch
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Designing a simple analog kick drum from scratch

All About Op-Amps
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All About Op-Amps

ECE4450 L19: Single-Pole OTA-C Filters (Analog Circuits for Music Synthesis, Georgia Tech  course)
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ECE4450 L19: Single-Pole OTA-C Filters (Analog Circuits for Music Synthesis, Georgia Tech course)

ECE4450 L27: Buchla Lowpass Gates (Analog Circuits for Music Synthesis, Georgia Tech course)
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ECE4450 L27: Buchla Lowpass Gates (Analog Circuits for Music Synthesis, Georgia Tech course)

5 Ways To Generate A Sine Wave (Analog)
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5 Ways To Generate A Sine Wave (Analog)

Inside a 3000W Water-Cooled Power Supply (with GaN & SiC)
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Inside a 3000W Water-Cooled Power Supply (with GaN & SiC)

PLL's - The Voltage Controlled Oscillator (VCO)
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PLL's - The Voltage Controlled Oscillator (VCO)

Casper Electronics DIY synth building. Part 2: Sequencers
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Casper Electronics DIY synth building. Part 2: Sequencers

The Scariest Chart in Electrical Engineering
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The Scariest Chart in Electrical Engineering

ECE4450 L16: Buchla's Timbre Modulation (Easel & 259) (Analog Circuits for Music Synthesis, GA Tech)
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ECE4450 L16: Buchla's Timbre Modulation (Easel & 259) (Analog Circuits for Music Synthesis, GA Tech)

ECE4450 L22: Moog Ladder Filters Analyzed (Analog Circuits for Music Synthesis, Georgia Tech course)
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ECE4450 L22: Moog Ladder Filters Analyzed (Analog Circuits for Music Synthesis, Georgia Tech course)

ECE4450 L14: Triangle-to-Sine Waveshaping (Analog Circuits for Music Synthesis, Georgia Tech course)
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ECE4450 L14: Triangle-to-Sine Waveshaping (Analog Circuits for Music Synthesis, Georgia Tech course)

ECE4450 L6: Roland 130 VCA Analysis (Analog Circuits for Music Synthesis, Georgia Tech course)
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ECE4450 L6: Roland 130 VCA Analysis (Analog Circuits for Music Synthesis, Georgia Tech course)

ECE4450 L24: State Variable Filters and the Oberheim SEM VCF (Analog Circuits for Music Synthesis)
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ECE4450 L24: State Variable Filters and the Oberheim SEM VCF (Analog Circuits for Music Synthesis)