High-Level Design And High-Level Verification


Not so long ago, some EDA vendors were painting a very attractive picture of chip design in the then-near future. The idea was that an architectural team would write a single description of the complete system in some high-level language, usually C/C++/SystemC, and that a new class of EDA tool would automatically partition the design into hardware and software, choosing the functionality of eac... » read more

The Growing Impact Of Portable Stimulus


It has been a year since Accellera's Portable Test and Stimulus Specification became a standard. Semiconductor Engineering sat down to discuss the impact it has had, and the future direction of it, with Dave Kelf, chief marketing officer for Breker Verification Systems; Larry Melling, product management director for Cadence; Tom Fitzpatrick, strategic verification architect for Mentor, a Siemen... » read more

A Specification-Driven Methodology For The Design And Verification Of Reset Domain Crossing Logic


Reset architectures have increased in complexity along with SoC designs. Sadly, traditional reset design and verification techniques have not evolved to address this increase in complexity. In order to avoid ad-hoc reset methods, this paper presents a three-step specification-driven methodology that provides a requirements-based approach for reset domain crossing design and verification. To ... » read more

Ensuring A 5G Design Is Viable


Ron Squiers, network solutions specialist at Mentor, a Siemens Business, explains what’s different in 5G chips versus 4G, how to construct a front haul and back haul system so it is testable in the network stack. » read more

The Race For Better Computational Software


Anirudh Devgan, president of Cadence, sat down with Semiconductor Engineering to talk about computational software, why it's so critical at the edge and in AI systems, and where the big changes are across the semiconductor industry. What follows are excerpts of that conversation. SE: There is no consistent approach to how data will be processed at the edge, in part because there is no consis... » read more

IP’s Growing Impact On Yield And Reliability


Chipmakers are finding it increasingly difficult to achieve first-pass silicon with design IP sourced internally and from different IP providers, and especially with configurable IP. Utilizing poorly qualified IP and waiting for issues to appear during the design-to-verification phase just before tape-out can pose high risks for design houses and foundries alike in terms of cost and time to... » read more

A Complete System-Level Security Verification Methodology


Hardware is at the root of all digital systems, and security must be considered during the system-on-chip (SoC) design and verification process. Verifying the security of an SoC design is challenging because of time to market pressure and resource constraints. Resources allocated to the already time-consuming task of functional verification must be diverted to security verification, which requi... » read more

Enabling Faster Design, Verification and Debug of FPGAs


Field programmable gate arrays (FPGAs) are no longer the co-processor of full-custom chips and application-specific integrated circuits (ASICs). Today’s FPGA offerings include devices as large and complex as any ASIC system-on-chip (SoC) on the market. The dramatic increase in size, complexity and functionality means that many FPGA development teams are adopting ASIC-style design, verificatio... » read more

Clock Domain Crossing Signoff Through Static-Formal-Simulation


By Sudeep Mondal and Sean O'Donohue Clocking issues are one of the most common reasons for costly design re-spins. This has been the driving factor in the ever-increasing demand for Clock Domain Crossing (CDC) analysis tools. Today, the majority of IP and SoC teams are focusing on “Structural CDC” analysis, which is important but not sufficient. Structural CDC analysis ensures that the d... » read more

Synthesizing Hardware From Software


The ability to automatically generate optimized hardware from software was one of the primary tenets of system-level design automation that was never fully achieved. The question now is whether that will ever happen, and whether it is just a matter of having the right technology or motivation to make it possible. While high-level synthesis (HLS) did come out of this work and has proven to be... » read more

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