Sustainability, Ecosystems, And Consumer Requirements In 2022


Last December, my 2021 outlook focused on "industry transformations" across different verticals. I had referenced a lot of the ongoing transformations in hyperscale computing, aerospace/defense, automotive, and healthcare. 2021 didn't disappoint—most of what I discussed further accelerated pace. For instance, pretty much no booth felt complete at the annual Army AUSA event if they were not... » read more

EDA In The Cloud Is Driving Semiconductor Innovation


In the past decade, the move towards cloud computing occurred primarily in sectors like finance, retail, and healthcare, with the emergence of leading public cloud vendors such as Amazon Web Services (AWS), Microsoft Azure, Google Cloud Platform, and others accelerating the trend. However, the chip design industry has been slower to adopt cloud computing. In the current highly competitive en... » read more

Growth And Enthusiasm At The RISC-V Summit 2021


We weren’t sure what to expect from our first major attendance at a #RISCVSummit. Although we were a founding member of RISC-V – as we’ve been saying quite a lot recently – we have been hiding our light under a bushel. We’ve certainly been busy though – enabling over 2 billion RISC-V cores with our RISC-V processor IP and Studio tools while helping customers use architecture lice... » read more

Towards Decarbonization: Keeping Electronics Energy Consumption In Check


The International Technology Roadmap for Semiconductors (ITRS) roadmap famously said in 2001 that "cost of design is the greatest threat to the continuation of the semiconductor roadmap." For years, the industry followed the ITRS updates on productivity improvements provided by automating design and hardware to counteract the looming design cost. The discussion on decarbonization has some simil... » read more

Eliminating Software Development Bottlenecks For SoCs


System on chip (SoC) devices, by definition, use a combination of hardware and embedded software to provide their specified functionality. Both the design and programming teams face many challenges and have huge tasks. No matter how well they may perform, the full system cannot be verified and validated until the hardware and software are brought together in the bring-up lab. This is usually wa... » read more

Improving Predictability Through Design Solutions Methodologies


“Plans are useless, but planning is indispensable.” – Dwight D. Eisenhower Our first article called for the need to change how we think about verification. In this follow-up, we dive deeper into the tools needed for today’s verification. Project milestones are destined to move. Development estimates are rough and almost always optimistic. Each development stage contains interdepe... » read more

Functional Safety Across Analog And Digital Domains


The autonomy of vehicles has been all the rage recently. There are different levels of autonomous driving, with level 5 “Full Automation” being the target the industry is working towards, and Level 2 “Partial Automation” and Level 3 “Conditional Automation” being the level at which the automotive sector currently delivers the most technology. The amount of electronics in cars has be... » read more

Debug Solutions For Designers Accelerate Time To Verification


Complexity continues to explode as designs become larger and more complicated with more functionality and more aggressive expectations. The cost of doing business as usual, for the entire design and verification team, in turn, grows exponentially, in terms of time, effort, and dollars. Fig. 1: Discovering issues later than possible requires more effort to find and fix. (Source: Wilson Rese... » read more

Intelligent Coverage Optimization: Verification Closure In Hyperdrive


Coverage dominates every aspect of verification for today’s complex IP and chip designs. Coverage metrics provide critical feedback on what has been verified and what has not, especially when automated stimulus generation techniques are used. All modern hardware design and verification languages include constructs for functional coverage specification and support a range of structural coverag... » read more

Customize Off-The-Shelf Processor IP


Processor customization is one approach to optimizing a processor IP core to handle a certain workload. In some case it makes sense to design a dedicated core from scratch, but in many cases an existing core may partially meet your requirements and can be a good starting point for your optimized core. In the past some processor IP vendors, notably ARC and Tensilica, offered extensible cores ... » read more

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