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c Transformer with multiple secondary windings.
A transformer with multiple secondary windings is shown in Fig. 5c.
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According to Faraday's law of induction, since the same magnetic flux passes through both the primary and secondary windings in an ideal transformer, a voltage is induced in each winding, according to eq. (1) in the secondary winding case, according to eq. (2) in the primary winding case.
Whereas windings in the ideal model have no resistances and infinite inductances, the windings in a real transformer have finite non-zero resistances and inductances associated with: Joule losses due to resistance in the primary and secondary windings Leakage flux that escapes from the core and passes through one winding only resulting in primary and secondary reactive impedance.
The primary and secondary windings of each HFCI are inserted in the same phase and the tertiary winding is inserted in one of the two other phases.
That versatility, the ability to play multiple secondary positions and on special teams, impressed the Jets.
The primary and secondary windings had 20 turns.
The high frequency signals are transferred through the windings turn to turn transformer action and the turn to earth capacitances of the primary and secondary windings.
This shows the primary connected in delta, whereas the secondary windings are connected in star.
The structures of primary and secondary windings are solenoid and double-pancake respectively.
The gas-cooled current leads of secondary windings are optimally designed.
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