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Sometimes, a more complex model is required such as the equivalent circuit shown in figure 4.
There are a number of very well known and often used equivalent circuits in linear network analysis.
Operation of a solar cell can be understood from the equivalent circuit at right.
In its most common form, an equivalent circuit is made up of linear, passive elements.
A thin post has an equivalent circuit of an inductor.
The resulting equivalent circuit of a solar cell is shown on the left.
Postulation of the first electronic equivalent circuit for the visual process.
The equivalent circuit and the formula at right are valid for any type of antenna.
The equivalent circuit of a generator and load is shown in the diagram to the right.
The equivalent circuit made from innovative silicon transistors is 250,000 times as large.
This is not the only possible equivalent circuit.
These are not the only possible equivalent circuits.
The Miller theorem refers to the process of creating equivalent circuits.
The equivalent circuit is shown at the right for a diode driven by a Norton source.
These can be represented by simple equivalent circuits of impedances and dependent sources.
The output signal is then related to this mechanical force as if it had passed through the equivalent circuit.
The number of equivalent circuits that a linear network can be transformed into is unbounded.
The net result is a lumped element equivalent circuit of a ladder network.
Their new design worked, but the equivalent circuits were larger and this caused problems trying to fit them into the original chassis.
The equivalent circuit is represented in Fig. 11.
For a simple two-terminal device, the small signal equivalent circuit may be no more than two components.
The Steinmetz equivalent circuit is expressed simply in terms of the following components:
However, more complex equivalent circuits are used that approximate the nonlinear behavior of the original circuit as well.
There will always be dependent generators in a two-port parameter equivalent circuit.
With more terminals, more complicated equivalent circuits are required.