BS EN IEC 61788-17:2021
Superconductivity Electronic characteristic measurements. Local critical current density and its distribution in large-area superconducting films
Standard number: | BS EN IEC 61788-17:2021 |
Pages: | 48 |
Released: | 2021-06-16 |
ISBN: | 978 0 539 03980 1 |
Status: | Standard |
BS EN IEC 61788-17:2021 - Superconductivity Electronic Characteristic Measurements
Welcome to the world of advanced superconductivity with the BS EN IEC 61788-17:2021 standard. This comprehensive document is an essential resource for professionals and researchers working with superconducting materials, particularly those focusing on the electronic characteristics of large-area superconducting films. Released on June 16, 2021, this standard provides a detailed framework for measuring the local critical current density and its distribution, a crucial aspect in the development and application of superconducting technologies.
Key Features of the Standard
The BS EN IEC 61788-17:2021 standard is meticulously crafted to ensure that you have all the necessary guidelines and methodologies at your disposal. Here are some of the key features:
- Standard Number: BS EN IEC 61788-17:2021
- Pages: 48
- Release Date: June 16, 2021
- ISBN: 978 0 539 03980 1
- Status: Standard
Understanding Superconductivity and Its Importance
Superconductivity is a phenomenon where a material can conduct electricity without resistance when it is cooled below a certain temperature. This property is not only fascinating but also holds immense potential for technological advancements. Superconductors are used in a variety of applications, including magnetic resonance imaging (MRI), particle accelerators, and quantum computing. The ability to measure and understand the local critical current density in superconducting films is vital for optimizing these applications and pushing the boundaries of what is possible with superconducting materials.
Why Local Critical Current Density Matters
The local critical current density is a measure of the maximum current a superconducting material can carry without losing its superconducting properties. Understanding this parameter is crucial for the design and application of superconducting films, as it directly impacts their performance and efficiency. The BS EN IEC 61788-17:2021 standard provides a detailed methodology for measuring this parameter, ensuring that you can accurately assess the capabilities of your superconducting materials.
Comprehensive Methodologies and Guidelines
This standard offers a comprehensive set of methodologies and guidelines for measuring the local critical current density and its distribution in large-area superconducting films. It covers various techniques and approaches, ensuring that you have the flexibility to choose the method that best suits your specific needs and circumstances. Whether you are working in a research laboratory or an industrial setting, this standard provides the tools you need to achieve accurate and reliable measurements.
Who Can Benefit from This Standard?
The BS EN IEC 61788-17:2021 standard is an invaluable resource for a wide range of professionals and organizations, including:
- Researchers and scientists working in the field of superconductivity
- Engineers and technicians involved in the design and application of superconducting materials
- Academic institutions and laboratories conducting research on superconducting technologies
- Companies and industries utilizing superconducting materials in their products and services
Enhance Your Superconductivity Projects
By adhering to the guidelines and methodologies outlined in the BS EN IEC 61788-17:2021 standard, you can enhance the quality and reliability of your superconductivity projects. This standard not only helps you achieve precise measurements but also ensures that your work aligns with international best practices, giving you a competitive edge in the field of superconductivity.
Conclusion
The BS EN IEC 61788-17:2021 standard is a must-have for anyone involved in the study or application of superconducting materials. With its detailed guidelines and comprehensive methodologies, it provides the foundation you need to accurately measure and understand the local critical current density in large-area superconducting films. Embrace the future of superconductivity with this essential standard and unlock new possibilities in your research and applications.
BS EN IEC 61788-17:2021
This standard BS EN IEC 61788-17:2021 Superconductivity is classified in these ICS categories:
- 91.140.50 Electricity supply systems
- 35.110 Networking
- 17.220.01 Electricity. Magnetism. General aspects
- 17.220.20 Measurement of electrical and magnetic quantities
- 29.050 Superconductivity and conducting materials
IEC 61788-17:2021 specifies the measurements of the local critical current density (Jc) and its distribution in large-area high-temperature superconducting (HTS) films by an inductive method using third-harmonic voltages. The most important consideration for precise measurements is to determine Jc at liquid nitrogen temperatures by an electric-field criterion and obtain current-voltage characteristics from its frequency dependence. Although it is possible to measure Jc in applied DC magnetic fields [20] [21], the scope of this document is limited to the measurement without DC magnetic fields. This technique intrinsically measures the critical sheet current that is the product of Jc and the film thickness d. The range and measurement resolution for Jcd of HTS films are as follows. - Jcd: from 200 A/m to 32 kA/m (based on results, not limitation). - Measurement resolution: 100 A/m (based on results, not limitation).