IEC 61788-13 Ed. 2.0 b:2012 PDF

IEC 61788-13 Ed. 2.0 b:2012 PDF

Name:
IEC 61788-13 Ed. 2.0 b:2012 PDF

Published Date:
07/25/2012

Status:
Active

Description:

Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites

Publisher:
International Electrotechnical Commission

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

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$57
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IEC 61788-13:2012 describes considerations for the measurement of hysteretic loss in Cu/Nb-Ti multifilamentary composites using DC- or low-ramp-rate magnetometry. This international standard specifies a method of the measurement of hysteretic loss in multifilamentary Cu/Nb-Ti composite conductors. Measurements are assumed to be on round wires with temperatures at or near 4,2 K. DC or low-ramp-rate magnetometry will be performed using either a superconducting quantum interference device or a vibrating-sample magnetometer. Extension to the measurement of superconductors in general is given in Annex. This second edition cancels and replaces the first edition published in 2003. It constitutes a technical revision. Modifications made to the second edition extend to the measurement of superconductors in general, in various sample sizes and shapes, and at temperatures other than 4,2 K, and use the word "uncertainty" for all quantitative statistical expressions to eliminate the quantitative use of "precision" and "accuracy".
Edition : 2.0
File Size : 1 file , 520 KB
Note : This product is unavailable in Ukraine, Russia, Belarus
Number of Pages : 47
Published : 07/25/2012

History

IEC 61788-13 Ed. 2.0 b:2012
Published Date: 07/25/2012
Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
$57
IEC 61788-13 Ed. 1.0 b:2003
Published Date: 05/19/2003
Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
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