PRICES include / exclude VAT
Homepage>BS Standards>49 AIRCRAFT AND SPACE VEHICLE ENGINEERING>49.140 Space systems and operations>PD CEN/TR 17602-30-01:2021 Space product assurance. Worst case analysis
Sponsored link
immediate downloadReleased: 2022-01-11
PD CEN/TR 17602-30-01:2021 Space product assurance. Worst case analysis

PD CEN/TR 17602-30-01:2021

Space product assurance. Worst case analysis

Format
Availability
Price and currency
English Secure PDF
Immediate download
264.00 EUR
You can read the standard for 1 hour. More information in the category: E-reading
Reading the standard
for 1 hour
26.40 EUR
You can read the standard for 24 hours. More information in the category: E-reading
Reading the standard
for 24 hours
79.20 EUR
English Hardcopy
In stock
264.00 EUR
Standard number:PD CEN/TR 17602-30-01:2021
Pages:26
Released:2022-01-11
ISBN:978 0 539 18730 4
Status:Standard
PD CEN/TR 17602-30-01:2021 Space Product Assurance. Worst Case Analysis

PD CEN/TR 17602-30-01:2021 Space Product Assurance. Worst Case Analysis

Standard Number: PD CEN/TR 17602-30-01:2021

Pages: 26

Released: 2022-01-11

ISBN: 978 0 539 18730 4

Name: Space Product Assurance. Worst Case Analysis

Status: Standard

Overview

In the ever-evolving field of space exploration and technology, ensuring the reliability and safety of space products is paramount. The PD CEN/TR 17602-30-01:2021 standard, titled Space Product Assurance. Worst Case Analysis, is an essential document for professionals in the aerospace industry. This standard provides comprehensive guidelines and methodologies for conducting worst-case analysis, a critical aspect of space product assurance.

Why This Standard is Essential

Space missions are inherently risky and complex, involving numerous variables and potential failure points. The PD CEN/TR 17602-30-01:2021 standard helps mitigate these risks by offering a structured approach to worst-case analysis. By adhering to this standard, engineers and project managers can identify and address potential issues before they become critical, ensuring the success and safety of space missions.

Key Features

  • Comprehensive Guidelines: The standard provides detailed instructions on how to perform worst-case analysis, covering various scenarios and potential failure modes.
  • Industry Best Practices: It incorporates the latest industry best practices, ensuring that users are following the most up-to-date and effective methodologies.
  • Risk Mitigation: By identifying potential issues early in the design and development process, the standard helps mitigate risks and improve the reliability of space products.
  • Enhanced Safety: Ensuring the safety of space missions is a top priority, and this standard plays a crucial role in achieving that goal.

Who Should Use This Standard?

This standard is designed for a wide range of professionals in the aerospace industry, including:

  • Aerospace Engineers: Engineers involved in the design, development, and testing of space products will find this standard invaluable for ensuring the reliability and safety of their work.
  • Project Managers: Project managers overseeing space missions can use this standard to ensure that all potential risks are identified and addressed, improving the chances of mission success.
  • Quality Assurance Professionals: Quality assurance teams can use the guidelines provided in this standard to conduct thorough worst-case analyses, ensuring that all products meet the highest standards of safety and reliability.

Detailed Content

The PD CEN/TR 17602-30-01:2021 standard spans 26 pages and covers a wide range of topics related to worst-case analysis in space product assurance. Some of the key areas covered include:

  • Introduction to Worst Case Analysis: An overview of the importance and objectives of worst-case analysis in the context of space product assurance.
  • Methodologies and Techniques: Detailed descriptions of various methodologies and techniques used in worst-case analysis, including their advantages and limitations.
  • Case Studies: Real-world examples and case studies that illustrate the application of worst-case analysis in different scenarios.
  • Best Practices: A compilation of best practices and recommendations for conducting effective worst-case analyses.
  • Tools and Resources: Information on tools and resources that can aid in the worst-case analysis process.

Release Information

The PD CEN/TR 17602-30-01:2021 standard was officially released on January 11, 2022. It is available in a convenient format, making it easy for professionals to access and utilize the information contained within.

ISBN and Identification

The standard is identified by the ISBN number 978 0 539 18730 4, ensuring that it can be easily referenced and located in professional and academic settings.

Conclusion

The PD CEN/TR 17602-30-01:2021 standard is an indispensable resource for anyone involved in the aerospace industry. By providing comprehensive guidelines and methodologies for worst-case analysis, it helps ensure the reliability, safety, and success of space missions. Whether you are an engineer, project manager, or quality assurance professional, this standard will equip you with the knowledge and tools needed to conduct thorough and effective worst-case analyses.

Invest in the PD CEN/TR 17602-30-01:2021 standard today and take a crucial step towards enhancing the safety and reliability of your space products.

DESCRIPTION

PD CEN/TR 17602-30-01:2021


This standard PD CEN/TR 17602-30-01:2021 Space product assurance. Worst case analysis is classified in these ICS categories:
  • 49.140 Space systems and operations
This handbook provides guidelines to perform the worst case analysis. It applies to all electrical and electronic equipment. This worst case analysis (WCA) method can also be applied at subsystem level to justify electrical interface specifications and design margins for equipment. It applies to all project phases where electrical interface requirements are established and circuit design is carried out. The worst case analysis is generally carried out when designing the circuit. For selected circuitry, worst case analysis (WCA) can be used to validate a conceptual design approach.