IP Library Granted Patent US 12665115
Granted Patent B2
US 12665115 · App. 18/661,623 · Granted Jun 23, 2026

Superconducting magnet device

Inventor: Yuta Ebara (Yokosuka, JP)
Assignee: SUMITOMO HEAVY INDUSTRIES, LTD.
H01F6/065H01F6/02H01F6/04
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Quick Facts
Patent No.
US 12665115
App. No.
18/661,623
Granted
Jun 23, 2026
Kind
B2
Abstract

A superconducting magnet device includes a superconducting coil, a quenching protection circuit that is connected in parallel to the superconducting coil and that allows a current in one direction, and an excitation power supply that is connected to the superconducting coil with proper polarity determined such that a current flows in the one direction to the quenching protection circuit when quenching occurs in the superconducting coil, and excites the superconducting coil. The excitation power supply is configured to detect incorrect connection with the superconducting coil when the excitation power supply is connected to the superconducting coil with a polarity opposite to the proper polarity.

Claims (30)

1 . A superconducting magnet device comprising:

a superconducting coil;

a quenching protection circuit that is connected in parallel to the superconducting coil and that allows a current in one direction; and

an excitation power supply that is connected to the superconducting coil with proper polarity determined such that a current flows in the one direction to the quenching protection circuit when quenching occurs in the superconducting coil, and excites the superconducting coil, wherein

the excitation power supply is configured to detect incorrect connection with the superconducting coil when the excitation power supply is connected to the superconducting coil with a polarity opposite to the proper polarity.

2 . The superconducting magnet device according to claim 1 , wherein

the quenching protection circuit includes a rectifying element connected in parallel to the superconducting coil or to a portion thereof, and

the excitation power supply is configured to control a current increase rate when the superconducting coil is excited such that an induced electromotive force generated in the superconducting coil or in the portion thereof according to the current increase rate exceeds a threshold voltage of the rectifying element.

3 . The superconducting magnet device according to claim 2 , further comprising:

a sensor that detects energization of the rectifying element, wherein

the excitation power supply is configured to control the current increase rate such that the induced electromotive force exceeds the threshold voltage of the rectifying element, and to detect the incorrect connection based on an output of the sensor.

4 . The superconducting magnet device according to claim 2 , wherein

the excitation power supply is configured to control the current increase rate such that the induced electromotive force exceeds the threshold voltage of the rectifying element, to measure a voltage at both ends of the excitation power supply, and to detect the incorrect connection based on the voltage at both of the ends.

5 . The superconducting magnet device according to claim 4 , wherein

the excitation power supply is configured to be stopped when the measured voltage at the both ends is below a voltage lower limit value,

the excitation power supply is configured to control the current increase rate such that the induced electromotive force exceeds the voltage lower limit value, to measure the voltage at the both ends of the excitation power supply, and to detect the incorrect connection based on the measured voltage at the both ends, and

the voltage lower limit value is preset so as to exceed the threshold voltage of the rectifying element.

6 . The superconducting magnet device according to claim 1 , wherein

a set of coil-side terminals connected to the superconducting coil is provided,

the excitation power supply includes a set of power supply-side terminals connected to the set of coil-side terminals,

the superconducting magnet device further comprises a detector that generates a detection signal representing whether the set of coil-side terminals and the set of power supply-side terminals are connected to each other with the proper polarity or the opposite polarity, and

the excitation power supply is configured to detect the incorrect connection based on the detection signal.

7 . A superconducting magnet device comprising:

a superconducting coil;

a quenching protection circuit that is connected in parallel to the superconducting coil and that allows a current in one direction;

an excitation power supply that is connected to the superconducting coil with proper polarity determined such that a current flows in one direction to the quenching protection circuit when quenching occurs in the superconducting coil, and excites the superconducting coil; and

a coil-side positive terminal and a coil-side negative terminal connected to the superconducting coil, wherein

the excitation power supply includes a power supply-side positive terminal connected to the coil-side positive terminal and a power supply-side negative terminal connected to the coil-side negative terminal,

the coil-side positive terminal is configured to be disconnected from the power supply-side negative terminal, and

the coil-side negative terminal is configured to be disconnected from the power supply-side positive terminal.