Seyed Masoud Hosseini · Overview · Study log · Ideas · Transcript · RSS feed

Circuits & Electronics

MIT 6.002 · Hardware · Fall 2027 · Planned

Lectures

  1. Lecture 1: What Is Engineering, and the Lumped Circuit Abstraction (41:10)
  2. Lecture 2: Basic Circuit Analysis - KVL, KCL and the Node Method (49:10)
  3. Lecture 3: Superposition and the Thevenin Method (51:12)
  4. Lecture 4: The Digital Abstraction (49:07)
  5. Lecture 5: Inside the Digital Gate (51:07)
  6. Lecture 6: Nonlinear Analysis (44:50)
  7. Lecture 7: Incremental (Small-Signal) Analysis (50:11)
  8. Lecture 8: Dependent Sources and Amplifiers (52:25)
  9. Lecture 9: The MOSFET as a Dependent Source (50:34)
  10. Lecture 9B: Large Signal Analysis of a MOSFET Amplifier (50:36)
  11. Lecture 10: Small Signal Model of the MOSFET Amplifier (50:29)
  12. Lecture 11: Bias Points and the Small Signal Circuit Method (50:05)
  13. Lecture 12: Capacitors and First-order RC Systems (49:11)
  14. Lecture 13: Digital Circuit Speed and RC Delay (52:52)
  15. Lecture 14: State and Memory Using Capacitors (48:00)
  16. Lecture 15: Second-Order Systems - Deriving the LC Circuit Response (50:11)
  17. Lecture 17b: The RLC Circuit and Damped Oscillation (50:11)
  18. Lecture 18: Sinusoidal Steady-State and the Exponential Trick (52:08)
  19. Lecture 19: The Impedance Model (49:31)
  20. Lecture 20: Filters and the AM Radio (48:00)
  21. Lecture 21: The Operational Amplifier Abstraction (52:32)
  22. Lecture 22: Op Amp Circuits — Subtractor, Integrator, Differentiator (49:51)
  23. Lecture 23: Positive Feedback, Comparators, and Hysteresis (51:14)
  24. Lecture 22: Energy and Power (51:43)
  25. Lecture 23: Energy, CMOS (40:12)
  26. Lecture 25: Violating the Abstraction Barrier (46:37)

Notes

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