Category Archives: DesignSync – Design Data Management.
ENOVIA Synchronicity DDM
A Unified DDM System is a Major Competitive Advantage : The majority of data management problems associated with integrating large designs and the associated software can be eliminated if all the data is managed in a single unified DDM system, which could exist at a single design center, or could be distributed around the world. […]
Continue readingSITaR ENOVIA DesignSync Data Manager
Submit, Integrate, Test, and Release – SITaR ENOVIA Synchronicity DesignSync Data Manager provides an intuitive built-in workflow called SITaR (Submit, Integrate, Test, and Release). SITaR consists of a set of commands that leverage the power of module-based design in an environment consisting of multiple design modules aggregated together by an integrator into a higher level […]
Continue readingSEMICONDUCTOR COLLABORATIVE DESIGN PROCESS
Enable collaborative design for complex semiconductor projects: Dassault Systèmes Silicon Thinking Semiconductor Collaborative Design process integrates deep design analytics from ENOVIA® Pinpoint® and design data management from ENOVIA Synchronicity® DesignSync® to enhance team productivity for IC design. This process experience is used today by over 120 IC development organizations around the world to boost design […]
Continue readingDesignSync Data Manager
Dassault Systeme ENOVIA Synchronicity® DesignSync® Data Manager is used by semiconductor companies to manage the hardware and software data in their products. Data can be managed at both the detailed file/directory level, and at a “modular” level of abstraction. As such, design data contributed by individual teams can be seamlessly integrated into higher level designs. […]
Continue readingSilicon Thinking Experience
Turn Technical Complexity into Market Profitability Advancements in integrated circuit (IC) density and competition for market leadership drive demand for more complex devices from semiconductor manufacturers. To compete successfully, manufacturers must use teams of diverse design specialists and complex project workflows to maximize device differentiation and team productivity. As a result, IC projects carry increasing […]
Continue readingDesignSync Data Manager
ENOVIA® Synchronicity® DesignSync® Data Manager is used by semiconductor companies to manage the hardware and software data in their products. Data can be managed at both the detailed file/directory level, and at a “modular” level of abstraction. As such, design data contributed by individual teams can be seamlessly integrated into higher level designs Key Benefits […]
Continue readingSilicon Thinking
Semiconductor Collaborative Design Faster design integration through advanced element modularization. Semiconductor design is exceedingly complex. In order to produce integrated circuits (ICs) that are competitive, design companies now use specialized design teams and complex design workflows to maximize productivity and value from their engineers. As a result complex hierarchical designs and distributed design centers are […]
Continue readingSpecial Offer on ENOVIA DesignSync
“Semiconductor companies need to manage Design Data for Hardware and Software. Complexity of design touching billion transistor, thousands of different file database and few database size are touching Terabytes – how do you handle such complex database management ? “ ENOVIA® Synchronicity® DesignSync® Data Manager : Is used by semiconductor companies to manage the hardware […]
Continue readingDassault Systeme High-Tech Silicon Thinking
SHORTEN TIME TO MARKET AND INCREASE CUSTOMER SATISFACTION THROUGH ENHANCED DESIGN AND VALIDATION Intelligence is now a key differentiator for a wide range of consumer and business products. Automobiles, medical devices, home appliances, office building HVAC, and consumer apparel all now embed semiconductors and electronic circuits to improve their customer value. And the pace of […]
Continue readingENOVIA DesignSync and Pinpoint
Faster design integration through advanced element modularization. Semiconductor design is exceedingly complex. In order to produce integrated circuits (ICs) that are competitive, design companies now use specialized design teams and complex design workflows to maximize productivity and value from their engineers. As a result complex hierarchical designs and distributed design centers are now every-day realities […]
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