サインイン

In the realm of AC circuits, passive circuit elements like resistors, inductors, and capacitors take on a different character when characterized by phasor voltage and current. Their behavior is expressed through impedance, a vital concept in AC circuit analysis.

Impedance is a measure of resistance to sinusoidal current flow in an AC circuit. Unlike their behavior in DC circuits, where inductors appear as short circuits and capacitors as open circuits, the behavior of these components in AC circuits is frequency-dependent. At high frequencies, inductors act as open circuits, while capacitors become short circuits.

Impedance is a complex quantity with a real part denoting resistance and an imaginary part representing reactance. Reactance can be either positive or negative, indicating inductive impedance when current lags behind voltage and capacitive impedance when current leads voltage. Impedance can also be represented in polar form, highlighting its magnitude and phase angle.

Equation1

Equation2

The reciprocal of impedance is admittance, which is measured in Siemens (S). Admittance represents the ease with which current flows through a circuit. It comprises conductance (real part) and susceptance (imaginary part). Admittance, like impedance, is a valuable tool in AC circuit analysis, enabling engineers to understand and manipulate electrical circuits operating under sinusoidal conditions.

タグ
ImpedanceAdmittanceAC CircuitsPassive Circuit ElementsResistorsInductorsCapacitorsPhasor VoltagePhasor CurrentFrequency dependent BehaviorReactanceComplex QuantityPolar FormMagnitudePhase AngleConductanceSusceptance

章から 6:

article

Now Playing

6.7 : Impedances and Admittance

AC Circuit Analysis

488 閲覧数

article

6.1 : Sinusoidal Sources

AC Circuit Analysis

335 閲覧数

article

6.2 : Graphical and Analytic Representation of Sinusoids

AC Circuit Analysis

332 閲覧数

article

6.3 : Phasors

AC Circuit Analysis

407 閲覧数

article

6.4 : Phasor Arithmetics

AC Circuit Analysis

183 閲覧数

article

6.5 : Phasor Relationships for Circuit Elements

AC Circuit Analysis

401 閲覧数

article

6.6 : Kirchoff's Laws using Phasors

AC Circuit Analysis

317 閲覧数

article

6.8 : Impedance Combination

AC Circuit Analysis

256 閲覧数

article

6.9 : Node Analysis for AC Circuits

AC Circuit Analysis

236 閲覧数

article

6.10 : Mesh Analysis for AC Circuits

AC Circuit Analysis

294 閲覧数

article

6.11 : Source Transformation for AC Circuits

AC Circuit Analysis

418 閲覧数

article

6.12 : Thévenin Equivalent Circuits

AC Circuit Analysis

131 閲覧数

article

6.13 : Norton Equivalent Circuits

AC Circuit Analysis

271 閲覧数

article

6.14 : Superposition Theorem for AC Circuits

AC Circuit Analysis

517 閲覧数

article

6.15 : Op Amp AC Circuits

AC Circuit Analysis

128 閲覧数

See More

JoVE Logo

個人情報保護方針

利用規約

一般データ保護規則

研究

教育

JoVEについて

Copyright © 2023 MyJoVE Corporation. All rights reserved