サインイン

Norton's theorem is a fundamental principle stating that a linear two-terminal circuit can be substituted with an equivalent circuit, which comprises a current source (N) in parallel with a resistor (RN). Here, N represents the short-circuit current flowing through the terminals, and RN stands for the input or equivalent resistance at the terminals when all independent sources are deactivated. This implies that the circuit illustrated in Figure (a) can be exchanged with the one depicted in Figure (b).

Figure1

Figure (a)

Figure1

Figure (b)

The determination of Norton's resistance involves the process of setting all independent sources within the circuit to zero. The resulting value represents Norton's resistance, which is essential for the theorem's application. To calculate Norton's current, one must restore all sources to their original configurations and then ascertain the short-circuit current between the marked terminals. Replacing the network with the Norton equivalent circuit and reconnecting the load resistor is necessary to complete the transformation. To establish either the Thévenin or Norton equivalent circuit, one must have knowledge of the open-circuit voltage, short-circuit current, and input or equivalent resistance. These parameters serve as crucial inputs for these circuit transformations. The close relationship between Norton's and Thévenin's theorems given by the following relations,

Equation1

Equation1

coupled with the principles of Ohm's law, provides valuable tools for resolving intricate electrical circuits.

タグ

Norton s TheoremLinear Two terminal CircuitEquivalent CircuitCurrent SourceShort circuit CurrentEquivalent ResistanceIndependent SourcesNorton s ResistanceTh v nin Equivalent CircuitOpen circuit VoltageElectrical CircuitsOhm s Law

章から 2:

article

Now Playing

2.9 : Norton's Theorem

DC Circuit Analysis

395 閲覧数

article

2.1 : Nodal Analysis

DC Circuit Analysis

701 閲覧数

article

2.2 : Nodal Analysis with Voltage Sources

DC Circuit Analysis

826 閲覧数

article

2.3 : Mesh Analysis

DC Circuit Analysis

426 閲覧数

article

2.4 : Mesh Analysis with Current Sources

DC Circuit Analysis

1.1K 閲覧数

article

2.5 : Source Transformation

DC Circuit Analysis

2.0K 閲覧数

article

2.6 : Linear Circuits

DC Circuit Analysis

338 閲覧数

article

2.7 : Superposition Theorem

DC Circuit Analysis

436 閲覧数

article

2.8 : Thevinin's Theorem

DC Circuit Analysis

335 閲覧数

article

2.10 : Maximum Power Transfer

DC Circuit Analysis

168 閲覧数

article

2.11 : Design Example: Strain Gauge Bridge or Wheatstone Bridge

DC Circuit Analysis

263 閲覧数

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