Mapping to IEC 61508 the hardware safety integrity of elements developed to ISO 26262

Author:

Okoh Peter1ORCID,Myklebust Thor2

Affiliation:

1. Autronica Fire and Security, Trondheim, Norway

2. SINTEF Digital, Trondheim, Norway

Funder

The Norwegian Research Council

Integrated Service & Safety Platform

Publisher

Informa UK Limited

Reference28 articles.

1. Fitting Software Execution-Time Exceedance into a Residual Random Fault in ISO-26262

2. ARC. (2022). International Engineering Safety Management (IESM) Good Practice Handbook Volume 2 Issue 1.4: Methods Tools and Techniques for Projects. Abbot Risk Consulting Ltd. Retrieved from https://static1.squarespace.com/static/60e5bc3a5cbea5566b74ada9/t/627093c0ef8e2040b9a3def8/1651545038338/iESM_Volume_2_Issue_1.4.pdf

3. ARC. (2022a). International Engineering Safety Management (IESM) Good Practice Handbook Application Note 9 Issue 1.2: Safety Integrity Within Engineering Safety Management. Abbot Risk Consulting Ltd. Retrieved from https://static1.squarespace.com/static/60e5bc3a5cbea5566b74ada9/t/62709965fa5f667208d2a3c2/1651546475902/iESM_AN9_Issue_1.2.pdf

4. Probability of Failure on Demand – The Why and the How

5. Divaklar K. P. (2017). ISO26262 and IEC61508 Functional Safety Overview. AMF-AUT-T2713. Retrieved from https://community.nxp.com/pwmxy87654/attachments/pwmxy87654/tech-days/160/1/AMF-AUT-T2713.pdf

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1. Mapping to IEC 61508 software developed to ISO 26262;Safety and Reliability;2024-06-20

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