DocumentCode :
73445
Title :
New Fast Response Thin Film-Based Superconducting Quench Detectors
Author :
Dudarev, A. ; Mulder, T. ; van de Camp, W. ; Ravaioli, E. ; Teixeira, Antonio ; ten Kate, H.H.J.
Author_Institution :
CERN (Eur. Center for Nucl. Res.), Geneva, Switzerland
Volume :
24
Issue :
3
fYear :
2014
fDate :
Jun-14
Firstpage :
1
Lastpage :
4
Abstract :
Quench detection on superconducting bus bars and other devices with a low normal zone propagation velocity and low voltage build-up is quite difficult with conventional quench detection techniques. Currently, on ATLAS superconducting bus bar sections, superconducting quench detectors (SQD) are mounted to detect quench events. A first version of the SQD essentially consists of an insulated superconducting wire glued to a superconducting bus line or windings, which in the case of a quench rapidly builds up a relatively high resistance that can be easily and quietly detected. We now introduce a new generation of drastically improved SQDs. The new version makes the detection of quenches simpler, more reliable, and much faster. Instead of a superconducting wire, now a superconducting thin film is used. The layout of the sensor shows a meander like pattern that is etched out of a copper coated 25 μm thick film of Nb-Ti glued in between layers of Kapton. Since the sensor is now much smaller and thinner, it is easier to install and build up a high resistance with a much shorter response time. The design of the sensors is explained. The test results of the new sensors in a few variants in a calibration setup as well as when mounted on the windings surface of a magnet are reported.
Keywords :
superconducting particle detectors; superconducting thin films; transition radiation detectors; ATLAS superconducting bus bar; Kapton; SQD; calibration; fast response thin film-based detectors; insulated superconducting wire; low normal zone propagation velocity; low voltage build-up; superconducting bus line; superconducting quench detectors; superconducting thin film; superconducting windings; Coils; Heating; Resistance; Superconducting filaments and wires; Superconducting magnets; Time factors; Voltage measurement; Magnet protection; quench detection; super-conducting coil;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2013.2286813
Filename :
6650104
Link To Document :
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