Advancing Automotive Functional Safety Through Analog & Mixed-Signal Fault Simulation


The automotive industry is undergoing a major transformation, driven by the rise of electric vehicles, ADAS, connected cars, and autonomous vehicles. Due to the safety-critical nature of automotive applications, the reliability and tolerance to faults in semiconductor designs becomes paramount. This white paper delves into the role of analog fault simulation in the context of automotive functio... » read more

Framework For Early Anomaly Detection In AMS Components Of Automotive SoCs


A technical paper titled “Enhancing Functional Safety in Automotive AMS Circuits through Unsupervised Machine Learning” was published by researchers at University of Texas at Dallas, Intel Corporation, NXP Semiconductors, and Texas Instruments. Abstract: "Given the widespread use of safety-critical applications in the automotive field, it is crucial to ensure the Functional Safety (FuSa) ... » read more

Verification In Crisis


Why is it still so hard to ensure good quality sign-off happens without leaving behind bugs in silicon? The answer, according to my colleagues at DVCon, is highly nuanced. The industry has been improving overall, as has the complexity of designs. For ASICs, 74% of the designs surveyed in the recent Wilson Research Group/Siemens EDA report have one or more processor cores, 52% have two or mor... » read more

Interoperability And Automation Yield A Scalable And Efficient Safety Workflow


By Ann Keffer, Arun Gogineni, and James Kim Cars deploying ADAS and AV features rely on complex digital and analog systems to perform critical real-time applications. The large number of faults that need to be tested in these modern automotive designs make performing safety verification using a single technology impractical. Yet, developing an optimized safety methodology with specific f... » read more

Formal Verification’s Usefulness Widens


Formal verification is being deployed more often and in more places in chip designs as the number of possible interactions grows, and as those chips are used in more critical applications. In the past, much of formal verification was focused on whether a chip would function properly. But as designs become more complex and heterogeneous, and as use cases change, formal verification is being u... » read more

An Entangled Heterarchy


For decades, a form of structural hierarchy has been the principal means of handling complexity in chip design. It's not always perfect, and there is no ideal way in which to divide and conquer because that would need to focus on the analysis being performed. In fact, most systems can be viewed from a variety of different hierarchies, equally correct, and together forming a heterarchy. The e... » read more

Importance Of Certifications In Automotive IP


The automotive industry is renowned for its unwavering commitment to enforcing strict standards for enabling safety, quality, reliability, and security. However, upholding stringent measures to ensure vehicle safety and reliability has led to the need for predictive maintenance i.e., using advanced monitoring and analytical techniques as a part of Silicon Lifecycle Management (SLM) to anticipat... » read more

Automotive Safety Requires PVT Monitoring IP Within Semiconductor ICs


The modern automobile, especially with the move toward more electrification, presents huge challenges to the designers of vehicular electronics. Gone are the days of mechanical issues and oil changes being primary concerns. Today’s automobile has a high number of semiconductor chips performing functions for self-driving autonomous systems, advanced driver assistance systems (ADAS), connectivi... » read more

A Perfect Blend Of Quality In Functional Safety To Accelerate An Automotive IP Product Release


The integration of functional safety and quality into the automotive development process is crucial for ensuring the safety and reliability of vehicles on the road. Automotive manufacturers must take a comprehensive approach to both functional safety and quality, considering all aspects of the vehicle from design to production and beyond. This includes the use of advanced technologies s... » read more

FMEDA Powered Safety Verification Methodology For Semiconductors


Today’s automobiles require increasingly complex systems and chips, adherence to functional safety processes has become essential during the design development phase. The intricate nature of  semiconductors used in automotive applications is driving the need for functional safety throughout the entire supply chain, reaching not just the automobile manufacturers but also the semiconductor des... » read more

← Older posts