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Fundamentals of Power Integrity for Computer Platforms and Systems
book

Fundamentals of Power Integrity for Computer Platforms and Systems

by Joseph T. DiBene II
March 2014
Intermediate to advanced
280 pages
8h 8m
English
Wiley
Content preview from Fundamentals of Power Integrity for Computer Platforms and Systems

Index

  1. Adaptive Voltage Position (AVP)
  2. Attenuation constant
  3. Ampere's Law
  4. Bandwidth
    1. Open loop
    2. Closed loop
  5. Bode Plot
  6. Buck Regulator
    1. Buck Regulator
    2. Buck Regulator
    3. Multi-phase
    4. Tapped-inductor
  7. Capacitance
    1. Filter
    2. Definition
    3. Gauss' Law
  8. Capacitors
    1. Energy stored
    2. Parallel Plate
    3. Parasitics
    4. Coaxial structure
    5. PDN
    6. Decoupling
    7. Series Resonant Frequency
  9. Centralized Power System
  10. Characteristic Impedance
  11. Closed Loop Model
  12. Common-mode Currents
  13. Commutating cycle
  14. Conduction current
  15. Conductivity of Copper
  16. Conservation of charge
  17. Contact Resistance
    1. EOL
    2. SOL
  18. Controller (VR)
  19. Coordinate Systems
  20. Coulomb
  21. Conservation of energy
  22. Coupled Inductors
  23. Coulomb's constant
  24. Cross Product
  25. Current (definition)
  26. Curl
  27. Current Density Vector, J
  28. Current Trends
  29. Decibels
  30. Del Operator (definition)
  31. Decoupling (see Capacitors)
  32. Dielectric
  33. Dielectric or permittivity constant
  34. Divergence Theorem
  35. Distributed Power System
  36. Dot Product
  37. Duty cycle
  38. Duty Cycle (VR)
  39. Effective Series Resistance (ESR) (see capacitance)
  40. Efficiency
  41. Electric Flux Density Vector, D
  42. Electric Field E
  43. Electric Flux Density D
  44. Electric Dipole Antenna
  45. Electromotive force
  46. Electromagnetic Compatibility
  47. Electromigration
  48. Emissions
  49. Energy (see Work)
  50. Energy Transfer
  51. Energy Transfer Relation
  52. Error Amp
  53. Faraday's Law of induction
  54. FCC regulations
  55. Filter (buck regulator)
  56. Filters (VR)
  57. Flux
    1. Electric (see Electric Flux Density Vector)
    2. Magnetic (see Magnetic Flux Density Vector)
  58. Fourier Series
  59. Fourier Transform
  60. Frequency Domain (analysis), see chapter
  61. Gain
  62. Gauss' Laws ...
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Publisher Resources

ISBN: 9781118826348Purchase book