The use of the ferromagnetic switch with orthogonal control field for diverting of current in an inductance-capacitance storage

The operational principle of the ferromagnetic opening switch with transversal magnetizing is discussed. For fast switching current in inductive and inductive-capacitive energy storage, the circuits are used in which a sharp increase of transient impedance of the circuit element occurs. The possibil...

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Hauptverfasser: Shneerson, G.A., Botcharov, Yu.N., Efimov, I.P., Krivosheev, S.I.
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Efimov, I.P.
Krivosheev, S.I.
description The operational principle of the ferromagnetic opening switch with transversal magnetizing is discussed. For fast switching current in inductive and inductive-capacitive energy storage, the circuits are used in which a sharp increase of transient impedance of the circuit element occurs. The possibility is considered of using for switching purposes the jump in magnetization of a coil core under external action. In the initial state the core should be deeply saturated, and at the required moment the material of the core should transit into the unsaturated state, which is accompanied by the sharp increase in the inductance, and transition of the current into the load. The control of the process should be performed in such a way that the inductance jump and the time of its realization were determined by the external action and not by the current in the storage circuit. It is proposed in this work to use to that end the system with orthogonal fields.
doi_str_mv 10.1109/BEAMS.1998.822446
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ispartof 12th International Conference on High-Power Particle Beams. BEAMS'98. Proceedings (Cat. No.98EX103), 1998, Vol.1, p.326-329 vol.1
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Coils
Energy storage
Impedance
Inductance
Magnetic cores
Magnetic materials
Magnetic switching
Saturation magnetization
Switches
Switching circuits
title The use of the ferromagnetic switch with orthogonal control field for diverting of current in an inductance-capacitance storage
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