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Homepage>BS Standards>17 METROLOGY AND MEASUREMENT. PHYSICAL PHENOMENA>17.140 Acoustics and acoustic measurements>17.140.50 Electroacoustics>BS EN IEC 63305:2024 Underwater acoustics. Calibration of acoustic wave vector receivers in the frequency range 5 Hz to 10 kHz
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immediate downloadReleased: 2024-04-09
BS EN IEC 63305:2024 Underwater acoustics. Calibration of acoustic wave vector receivers in the frequency range 5 Hz to 10 kHz

BS EN IEC 63305:2024

Underwater acoustics. Calibration of acoustic wave vector receivers in the frequency range 5 Hz to 10 kHz

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Standard number:BS EN IEC 63305:2024
Pages:68
Released:2024-04-09
ISBN:978 0 539 13522 0
Status:Standard
BS EN IEC 63305:2024 - Underwater Acoustics Calibration Standard

BS EN IEC 63305:2024 - Underwater Acoustics Calibration Standard

Standard Number: BS EN IEC 63305:2024

Pages: 68

Released: 2024-04-09

ISBN: 978 0 539 13522 0

Name: Underwater acoustics. Calibration of acoustic wave vector receivers in the frequency range 5 Hz to 10 kHz

Status: Standard

Unlock the Full Potential of Underwater Acoustics with BS EN IEC 63305:2024

Delve into the world of underwater acoustics with the BS EN IEC 63305:2024 standard, a comprehensive guide designed to ensure the precise calibration of acoustic wave vector receivers. This standard is essential for professionals and researchers working in the field of underwater acoustics, providing a robust framework for accurate measurements and data collection in the frequency range of 5 Hz to 10 kHz.

Why Choose BS EN IEC 63305:2024?

The BS EN IEC 63305:2024 standard is meticulously crafted to meet the highest industry standards, ensuring that your acoustic wave vector receivers are calibrated with utmost precision. Here are some compelling reasons to choose this standard:

  • Comprehensive Coverage: Spanning 68 pages, this standard offers detailed guidelines and procedures for the calibration of acoustic wave vector receivers, ensuring you have all the information you need at your fingertips.
  • Up-to-Date Information: Released on 2024-04-09, this standard incorporates the latest advancements and best practices in underwater acoustics, keeping you ahead of the curve.
  • Wide Frequency Range: Covering frequencies from 5 Hz to 10 kHz, this standard is versatile and applicable to a broad range of underwater acoustic applications.
  • ISBN: 978 0 539 13522 0 - Easily reference and cite this standard in your research and professional work.

Key Features and Benefits

The BS EN IEC 63305:2024 standard is packed with features and benefits that make it an indispensable tool for anyone involved in underwater acoustics:

  • Precision Calibration: Ensure your acoustic wave vector receivers are calibrated to the highest standards, providing accurate and reliable data for your underwater acoustic measurements.
  • Enhanced Data Quality: With precise calibration, you can trust the quality and accuracy of your data, leading to more reliable and meaningful results in your research and applications.
  • Industry Compliance: Adhering to this standard ensures compliance with industry regulations and best practices, enhancing your credibility and reputation in the field.
  • Improved Efficiency: Follow the detailed procedures and guidelines to streamline your calibration process, saving time and resources while maintaining high standards of accuracy.

Who Should Use This Standard?

The BS EN IEC 63305:2024 standard is ideal for a wide range of professionals and organizations, including:

  • Marine Researchers: Ensure your underwater acoustic measurements are accurate and reliable, supporting your research and discoveries.
  • Acoustic Engineers: Calibrate your equipment to the highest standards, ensuring optimal performance and data quality.
  • Environmental Scientists: Collect precise acoustic data to support your environmental studies and assessments.
  • Military and Defense: Ensure your underwater acoustic systems are calibrated for accurate detection and analysis.
  • Oil and Gas Industry: Utilize precise acoustic measurements for exploration and monitoring in underwater environments.

Stay Ahead with the Latest Standard

In the rapidly evolving field of underwater acoustics, staying up-to-date with the latest standards is crucial. The BS EN IEC 63305:2024 standard provides you with the most current and comprehensive guidelines for the calibration of acoustic wave vector receivers, ensuring you remain at the forefront of your field.

Invest in Quality and Precision

Investing in the BS EN IEC 63305:2024 standard is an investment in quality and precision. By adhering to this standard, you can be confident that your acoustic wave vector receivers are calibrated to the highest standards, providing you with accurate and reliable data for your underwater acoustic applications.

Order Your Copy Today

Don't miss out on the opportunity to enhance your underwater acoustic measurements with the BS EN IEC 63305:2024 standard. Order your copy today and take the first step towards achieving unparalleled precision and accuracy in your underwater acoustic work.

Conclusion

The BS EN IEC 63305:2024 standard is an essential resource for anyone involved in underwater acoustics. With its comprehensive guidelines, up-to-date information, and focus on precision calibration, this standard is your key to unlocking the full potential of your acoustic wave vector receivers. Invest in the BS EN IEC 63305:2024 standard today and ensure your underwater acoustic measurements are accurate, reliable, and compliant with the highest industry standards.

DESCRIPTION

BS EN IEC 63305:2024


This standard BS EN IEC 63305:2024 Underwater acoustics. Calibration of acoustic wave vector receivers in the frequency range 5 Hz to 10 kHz is classified in these ICS categories:
  • 17.140.99 Other standards related to acoustics
  • 17.140.50 Electroacoustics
IEC 63305:2024 specifies methods and procedures for calibration of vector receivers in the frequency range 5 Hz to 10 kHz, which are applicable to vector receivers based on the two different principles. In addition, it describes an absolute method of inertial vector receiver calibration in air using optical interferometry. Usually, acoustic wave vector receivers are designed and constructed based on one of two principles. One is the sound pressure difference (gradient) principle. When measuring with this sensor, the vector receiver is rigidly fixed on a mount and supported in water. The other is the co-vibrating (inertial) principle. When measuring with this sensor, the vector receiver is suspended on a mount and supported in water in a non-rigid manner, which allows the vector receiver co-vibrate in the same direction as the sound particle in the sound wave field. Many methods have been used to calibrate vector receivers, such as free-field calibration, calibration in standing wave tube and calibration in a travelling wave tube.