IP Library Granted Patent US 8,345,392
Granted Patent B2
US 8,345,392 · App. 12/823,661 · Granted Jan 1, 2013

Quench energy dissipation for superconducting magnets

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,345,392
App. No.
12/823,661
Granted
Jan 1, 2013
Kind
B2
Abstract

An energy dissipation arrangement for a cryogenically cooled superconductive magnet comprising a plurality of superconductive coils ( 10 ) connected in series and housed within a cryostat ( 24 ), comprising a superconducting switch ( 25 ) having a superconductive current path ( 28 ) in series with the superconductive coils ( 10 ); and a resistor ( 38 ), external to the cryostat, electrically connected in parallel with the superconductive current path ( 28 ) of the superconducting switch ( 25 ). The superconductive switch is arranged ( 26, 32, 30 ) to open in response to an electric current applied to an associated heater ( 26; 40 ).

Claims (11)

1. An arrangement for a cryogenically cooled superconductive magnet comprising a plurality of superconductive coils connected in series and housed within a cryostat, comprising:

first and second superconducting switches having superconductive current paths connected in series between terminals of the series arrangement of superconductive coils; and

a resistor, external to the cryostat, electrically connected in parallel with the superconductive current path of the second superconducting switch, wherein

the second superconductive switch is arranged to open in response to an electric current applied to an associated heater element provided in thermal contact with the superconductive current path of the second superconducting switch;

wherein the heater element is connected between a node located between electrically adjacent superconductive coils and another node located between electrically adjacent superconductive coils or between the first and second superconducting switches.

2. The arrangement according to claim 1 wherein the resistor, external to the cryostat, has a lower resistance than the second superconductive switch when open.

3. The arrangement of claim 1 , wherein an inverse-parallel pair of diodes is provided in series with the heater element.

4. A method of removing stored energy from a cryogenically cooled superconductive magnet comprising a plurality of superconductive coils connected in series and housed within a cryostat, comprising:

providing first and second superconducting switches having superconductive current paths connected in series between terminals of the series arrangement of superconductive coils and a heater element controlling the second superconducting switch connected between a node located between electrically adjacent superconductive coils and another node located between electrically adjacent superconductive coils or between the first and second superconducting switches;

providing a resistor, external to the cryostat, electrically connected in parallel with the superconductive current path of the second superconducting switch, and

in response to the onset of a quench in any of the coils, opening the second superconducting switch, so as to divert current flowing in the coils through the resistor, external to the cryostat, wherein the heater element is subjected to a voltage when quench occurs, but not when the magnet is operating in persistent mode, whereby the heater opens the second superconducting switch by heating in response to the applied voltage and resultant current through the heater element.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2016
From: SIEMENS PLC
To: SIEMENS HEALTHCARE LIMITED
Reel/Frame 040244/0507 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2010
From: BLAKES, HUGH ALEXANDER
To: SIEMENS PLC.
Reel/Frame 025367/0430 →