Semiconductor design is rapidly evolving because technologies such as AI and machine learning (ML) applications push the boundaries of complexity and specialization. Modern chips require hundreds or ...
The FSI capability lets users solve complex multidisciplinary design problems involving coupled fluid flow and structural phenomena such as blood flow in the body or turbulence loading on a lowering ...
There is a tremendous opportunity for today's engineers to integrate sensors into new designs and applications that until recently were impractical. Sensors are used to measure a specific physical ...
The Spinner I/O fabric generation tool for automated, bug-free I/O fabric synthesis of complex SoCs is said to automatically generate and validate the RTL for the complete I/O layer of an IC from a ...
Researchers propose a “cross-layer reliability analysis from the semiconductor layer up to the application layer, able to quantify, in an accurate way, the reliability of hardware designs against soft ...
Multilevel Statistical Modeling for Proteomic Experiments With Complex Designs and Isobaric Labeling
Quantitative mass spectrometry-based proteomic experiments are designed to answer increasingly complex questions. For example, we may want to characterize changes in protein abundance in biological ...
The integration level of a system-on-chip (SoC) is defined in RTL, just like the rest of the design. Historically, RTL has been built through text editors. However, a decade or more ago, the sheer ...
New specialized algorithms deliver 4x increase in feature recognition, instant CNC-optimized visualizations, and streamlined ...
What if homes could be built like cars to solve our affordable housing shortage? Or what if baristas could become construction workers? What if a car could walk? And what if an artist could become an ...
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