ISO 26262

ISO 26262…the tale of Transient and Permanent Faults

Introduction Are you designing to the ISO 26262 standard and trying to decide if your design is safe from random…

Advisors

Safety Lifecycle Evaluation Part 2: The Data is Compelling

Introduction This post builds upon the first post titled Key findings of a safety critical lifecycle evaluation. Simply put, productivity…

Engineering Tools

Clearing the Fog of ISO 26262 Tool Qualification

Introduction Developing products to the ISO 26262 standard requires many activities across multiple disciplines. One of those activities is ensuring…

Automotive Safety Lifecycle Solutions

Key findings of a safety critical lifecycle evaluation

Introduction The demand for innovation continues to grow in safety-critical markets such as automotive, industrial, mil-aero, and medical. All Semiconductor…

Guidelines to a successful ISO 26262 Lifecycle

New business models continue to drive disrupting innovation into the automotive market. This includes everything from mobility as a service, to…

Getting your Safety Architecture just right

Introduction In a recent industry survey, roughly 40% of ASIC and FPGA project starts had functional safety part of their…

The configurability dilemma creating safe ICs

A traditional automobile today consists of multiple systems controlling everything from the interior atmosphere to drive train to more advanced…

The importance of effective Safety Analysis

In the recent Wilson research industry survey, semiconductor companies reporting have made it clear that functional safety activities consume a…

Deploying Formal in a DO-254 Program

The primary focus of DO-254, referred to as ED-80 in Europe, is hardware reliability of airborne electronic hardware. DO-254 is…