Shunt coil controlled transformer
First Claim
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1. A controllable transformer comprising:
- a shunt magnetic core;
a shunt coil inductively coupled to said shunt magnetic core;
switch means for selectively controlling the magnitude of an output of the transformer by selectively controlling current flow through said shunt coil;
wherein said switch means comprises magnitude sensing means for sensing a magnitude difference between a first input signal applied to a first terminal and a second input signal applied to a second terminal and for selectively controlling the resistance of said switch means, and further wherein power for said switch means is derived from said magnitude sensing means;
a main magnitude core wherein a high reluctance path separates said shunt magnetic core and said main magnetic core;
wherein said main magnetic core and said shunt magnetic core are generally co-planar;
a primary coil inductively coupled to said main magnetic core, said primary coil having a first axis of symmetry; and
a secondary coil inductively coupled to said main magnetic core, said secondary coil having a second axis of symmetry, said first and second axes being generally collinear;
wherein said shunt coil comprises a shunt axis of symmetry disposed generally perpendicular to said first axis of symmetry.
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Abstract
A transformer having a shunt magnetic path and a shunt coil is provided. The transformer includes control circuitry to control the output of the transformer by controlling current flow in the shunt coil, thereby controlling the flux through the shunt magnetic path and the flux coupling with the secondary coil. The current in the shunt coil is phase-controlled and power for the control circuitry is derived from the current induced in the shunt coil.
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Citations
4 Claims
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1. A controllable transformer comprising:
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a shunt magnetic core; a shunt coil inductively coupled to said shunt magnetic core; switch means for selectively controlling the magnitude of an output of the transformer by selectively controlling current flow through said shunt coil; wherein said switch means comprises magnitude sensing means for sensing a magnitude difference between a first input signal applied to a first terminal and a second input signal applied to a second terminal and for selectively controlling the resistance of said switch means, and further wherein power for said switch means is derived from said magnitude sensing means; a main magnitude core wherein a high reluctance path separates said shunt magnetic core and said main magnetic core; wherein said main magnetic core and said shunt magnetic core are generally co-planar; a primary coil inductively coupled to said main magnetic core, said primary coil having a first axis of symmetry; and a secondary coil inductively coupled to said main magnetic core, said secondary coil having a second axis of symmetry, said first and second axes being generally collinear; wherein said shunt coil comprises a shunt axis of symmetry disposed generally perpendicular to said first axis of symmetry. - View Dependent Claims (2)
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3. A controllable transformer comprising:
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a shunt magnetic core; a shunt coil inductively coupled to said shunt magnetic core; and switch means for selectively controlling the magnitude of an output of the transformer by selectively controlling current flow through said shunt coil; wherein said switch means comprises magnitude sensing means for sensing a magnitude difference between a first input signal applied to a first terminal and a second input signal applied to a second terminal and for selectively controlling the resistance of said switch means, and further wherein power for said switch means is derived from said magnitude sensing means; and means for providing a current induced in said shunt coil to an output current of the transformer. - View Dependent Claims (4)
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Specification