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【极致中配】新型模拟电路设计 New Analog Circuit Design (By Prof. Ali Hajimiri, Caltech)

由Caltech的Ali Hajimiri讲授,从半导体物理、器件模型讲到放大器、运放、反馈、稳定性、噪声与数据转换器,构建完整的模拟集成电路设计知识体系。

难度
难度 4/5从固态物理到反馈与噪声的完整模拟IC体系,需扎实电路与数学功底
适合人群
电子/微电子专业本科高年级及研究生,欲深入模拟IC设计者
前置要求
电路分析(节点分析、网络定理)、电子器件基础(二极管、BJT、MOSFET工作原理)、信号与系统(传递函数、频率响应、极点零点)、微积分与微分方程(用于小信号与动态分析)
课程规模
91 · 1.9 万播放

主题覆盖

固态物理与半导体PN结与二极管BJT与MOSFET小信号模型放大器级差分放大器偏置与电流镜运放设计高频与频率响应反馈与稳定性噪声分析ADC与振荡器

课程大纲(91 讲)

  1. P1 · 101N. Basic Solid-State Physics: Energy bands, Electrons and Holes35 分钟
  2. P2 · 102N. Basic Solid-State Physics: Doping, Carrier Density, Distributions22 分钟
  3. P3 · 103N. Carrier Movement in Semiconductors, Drift and Diffusion16 分钟
  4. P4 · 104N. PN Junction, Depletion Region, Diode Equation26 分钟
  5. P5 · 105N. PN Junction, Junction Capacitance, Doping Profile19 分钟
  6. P6 · 106N. Bipolar Junction Transistor, basic operation, current flow properties, dop37 分钟
  7. P7 · 107N. Bipolar transistor: Early effect, Ebers-Moll model, large-signal T- & pi-m29 分钟
  8. P8 · 108N. MOS Capacitor: Energy band diagram, accumulation, depletion, and inversion46 分钟
  9. P9 · 109N. MOSFET Introduction, threshold and body effect, IV characteristic in linea15 分钟
  10. P10 · 110N. MOSFET IV Characteristics Derivation, Regions of Operation, Channel length34 分钟
  11. P11 · 111N. MOSFET Channel charge in pinch-off, Channel capacitance calculations5 分钟
  12. P12 · 112N. Velocity saturated MOSFETs, short channel effects, SOI, FinFET, Pillar FET27 分钟
  13. P13 · 113N. MOSFET Sub-threshold behavior6 分钟
  14. P14 · 114N. Kelvin Generator, water FET, positive feedback.3 分钟
  15. P15 · 115N. Small-signal model, MOS vs. BJT, core transistor behavior, transconductanc31 分钟
  16. P16 · 116N. Small-signal model, MOS vs. BJT, input and output resistance, capacitance,37 分钟
  17. P17 · 117N. Circuit and network theory brief overview, nodal analysis, theorems.28 分钟
  18. P18 · 118N. Economics of Integrated Circuits, Yield, Pricing23 分钟
  19. P19 · 119N. (Pt.1) Amplifier Fundamentals, MOS, BJT, and ATD (arbitrary 3-terminal dev38 分钟
  20. P20 · 120N. (Pt.2) Amplifier Fundamentals, MOS, BJT, and ATD (arbitrary 3-terminal dev26 分钟
  21. P21 · 121N. (Pt. 1) BJT Amplifier, Emitter Degeneration, Transfer characteristics and40 分钟
  22. P22 · 122N. (Pt. 2) BJT Amplifier, Emitter follower, common-based, cascode, active loa33 分钟
  23. P23 · 123N. (Pt. 1) MOS amplifier stages: Source degeneration, input and output impeda46 分钟
  24. P24 · 124N. (Pt. 2) MOS amplifier stages: common-drain, common-gate, cascade, increasi24 分钟
  25. P25 · 125N. Two transistor stages: cascade, folded cascade, active load, Darlington, c40 分钟
  26. P26 · 126N. Differential Signaling and differential pair: core concept and large signa24 分钟
  27. P27 · 127N. (Pt. 1) Differential Amplifiers: MOS, BJT, and ATD38 分钟
  28. P28 · 128N. (Pt. 2) Differential Amplifiers: MOS, BJT, and ATD29 分钟
  29. P29 · 129N. Differential amplifier with active load. Differential-to-single-ended conv36 分钟
  30. P30 · 130N. MOS Differential-to-Single-Ended Conversion. Gain Enhancement12 分钟
  31. P31 · 131N. Basic Biasing Concepts18 分钟
  32. P32 · 132N. Integrated circuit biasing, current mirrors, headroom43 分钟
  33. P33 · 133N Process, Supply, and Temperature Independent Biasing25 分钟
  34. P34 · 134N. Scaled bandgap reference, adjustable voltage PVT independent references.32 分钟
  35. P35 · 135N. Driver stages, output stages, Class A and Class B23 分钟
  36. P36 · 136N. Op-Amp Design: Basic MOS Op-Amp17 分钟
  37. P37 · 137N. MOS Op-Amp Design Examples45 分钟
  38. P38 · 138N. BJT Op-Amp Design Example32 分钟
  39. P39 · 139N. High frequency: transfer functions, lower pass and high pass response.38 分钟
  40. P40 · 140N. Time- and transfer-constants in 1st order system26 分钟
  41. P41 · 141N. 1st Order high-frequency TTC analysis of common source and common drain33 分钟
  42. P42 · 142N. Zero/pole in 1st order system, step response, undershoot and overshoot12 分钟
  43. P43 · 143N. Miller multiplication and effect, input impedance of common-source19 分钟
  44. P44 · 144N. Zero-value time and transfer constants (ZVT), b1 and a1 term calculation28 分钟
  45. P45 · 145N. Bandwidth estimation using ZVT, High-frequency Amplifier design example44 分钟
  46. P46 · 146N. When ZVT bandwidth estimation fails37 分钟
  47. P47 · 147N.Taking zeros into account in ZVT bandwidth estimate10 分钟
  48. P48 · 148N. Creation of zeros: series RC branch in parallel6 分钟
  49. P49 · 149N. Creation of zeros: parallel signal paths16 分钟
  50. P50 · 150N. Generalized Time- and Transfer constants; higher order terms15 分钟
  51. P51 · 151N. TTC Examples, 2nd Order System, Quality Factor and Natural Frequency36 分钟
  52. P52 · 152N.TTC Examples, negative resistance, oscillator, RLC circuit26 分钟
  53. P53 · 153N. High Frequency behavior of basic amplifier stages (CS, CE, CD, CC, CG, CB)34 分钟
  54. P54 · 154N. Uncoupled time-constants, independent poles and zeros, observable dynamics13 分钟
  55. P55 · 155N. Low Cut-off Frequency Estimation, Infinite value time-constants (IVT)14 分钟
  56. P56 · 156N. Discrete vs. Integrated Variations, Low Cut-Off Estimation with IVT exampl23 分钟
  57. P57 · 157N. Broadband amplifiers, gain-bandwidth product, optimum gain per stage17 分钟
  58. P58 · 158N. Feedback: Asymptotic Transfer Function, 1st Order Analysis, Rapid design37 分钟
  59. P59 · 159N. Feedback dynamics, forward and feedback path frequency effect, feedback se29 分钟
  60. P60 · 160N. Effect of Feedback on Nonlinearity15 分钟
  61. P61 · 161N. Return Ratio, Asymptotic Gain Formula, Direct forward transfer50 分钟
  62. P62 · 162N. Active feedback, dual feedback loop, Source dependence of return ratio exa27 分钟
  63. P63 · 163N. Port Impedance under Feedback, Blackman Formula42 分钟
  64. P64 · 164N. Unilateral Loop gain, voltage and current loop gains22 分钟
  65. P65 · 165N. Bilateral loop gain, derivation, feedback18 分钟
  66. P66 · 166N. Instability and conditional stability, circuit examples.21 分钟
  67. P67 · 167N. Stability criteria: Routh-Hurwitz, Nyquist derivation33 分钟
  68. P68 · 168N. Nonlinear stability criteria: Circle criterion, off-axis circle criterion16 分钟
  69. P69 · 169N. Phase margin and gain margin9 分钟
  70. P70 · 170N. Feedback amplifier compensation, general view for 1st, 2nd, and 3rd order31 分钟
  71. P71 · 171N. Circuit compensation techniques, one- and two-stage op-amp, Miller compens37 分钟
  72. P72 · 172N. Overview of random variable, PSD, auto- and cross-correlation28 分钟
  73. P73 · 173N. Thermal white noise physics, properties, and spectrum, KT/C noise, total a36 分钟
  74. P74 · 174N. Shot noise, burst noise, flicker(1/f) noise, avalanche noise23 分钟
  75. P75 · 175N. Noise models for pn-junction diode, bipolar transistor, and MOS transistor17 分钟
  76. P76 · 176N. Intro. to amplifier noise, output noise, and input-referred noise10 分钟
  77. P77 · 177N. Input-referred noise, 2-port noise model, common-emitter21 分钟
  78. P78 · 178N. Noise behavior of basic stages, input-referred noise vs. frequency, Friis49 分钟
  79. P79 · 179N. Intro to comparators and offset cancellation44 分钟
  80. P80 · 180N. Latch dynamics, latched comparator10 分钟
  81. P81 · 181N. Intro to data converters metrics, basic DAC20 分钟
  82. P82 · 182N. Basic digital-to-analog converter architectures31 分钟
  83. P83 · 183N. Basic analog-to-digital converter architectures30 分钟
  84. P84 · 184N. Oscillator general topology, large signal Gm, amplitude and frequency calc28 分钟
  85. P85 · 185N. Phase noise in oscillators (introduction)57 分钟
  86. P86 · 186N. Oscillator design, noise shifting oscillator example9 分钟
  87. P87 · 187N. Intro. to phase-locked loops (PLL) noise19 分钟
  88. P88 · 188N. Intro. to RF power amplifiers45 分钟
  89. P89 · 189N. Brief course summary9 分钟
  90. P90 · Time and Transfer Constants in Circuits (High Frequency Circuit Analysis)34 分钟
  91. P91 · Feedback Circuit Analysis and Design (Overview)38 分钟

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