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Either or both of the secondary windings may be used for measurement or control.
Any problem here can be overcome by swopping the primary and secondary windings.
One which has two secondary windings on the same magnetic circuit insulated from each other and the primary.
Some secondary windings may also be connected together.
The other end of the 3 secondary windings, along with the neutral, are brought down the service drop to the service panel.
This extends the high voltage pulse at the output of the secondary windings.
It is now quite common for mains transformers to have two secondary windings that are identical.
In contrast, an ordinary transformer has separate primary and secondary windings which are not connected.
The secondary windings could be connected to several 'electric candles' (arc lamps) of his own design.
Bi-monaural is not also the amplifier with the separate secondary windings on the power transformer.
Suppose that a transformer has to 6 volt 250 milliamp secondary windings.
A more likely method of connection is with the two secondary windings connected in series, as shown in Fig. 1 (a).
The low voltage secondary windings are attached to three or four terminals on the transformer's side.
The stator, containing four slots, contains both the primary winding and the two secondary windings.
There are 4 separate identical secondary windings which can be configured for 4/8/16 ohms.
In addition to magnetostriction, the alternating magnetic field causes fluctuating forces between the primary and secondary windings.
One can also make an autotransformer from an ordinary transformer by cross-wiring the primary and secondary windings.
A transformer with two equal secondary windings can be used (often with an amplifier stage to drive the primary).
The Flatcap 2 transformer has two separate secondary windings to isolate each of the dual supplies from the other.
The two secondary windings permit separate bias supplies to the grids of the stage fed by the transformer.
Independent secondary windings may be used in series or parallel to provide a broad range of output current and voltage options, to your custom specifications.
There are three 230 V secondary windings, each receiving power from a primary winding attached to one of the primary phases.
Power units have multiple separate secondary windings dedicated to supplying the various sections of the preamp that they feed.
This provides a transformer with an inherent current limitation due to the loose coupling between its primary and the secondary windings.
In Operation this unique generator heats water simply by passing it through tubular secondary windings of a transformer.