ETAP® provides market-leading software solutions for electrical systems, from design and engineering to operations and maintenance.
Through its integrated electrical digital twin platform, ETAP delivers best-in-class, seamless customer experience and cloud-leveraging technologies ensuring universal accessibility for designers, engineers, & operators empowering users to increase productivity, collaboration, and efficiency, and enabling their energy transition journey.
The Digital Twin represents virtual models of a real-world power system under various physical and operational conditions.
Offering an integrated Electrical Digital Twin platform enriched with intelligent solutions. Built on a multi-dimensional foundation, enabling efficient design, analysis, management, operations, and a complete digital transformation of projects while adapting to evolving system changes.
*Generation * Transmission * Distribution * Transportation *Industrial * Commercial & Critical Facilities
ETAP Digital Twin platform for electrical power systems supports All Sectors, Across All Time!
Harnessing the power of ETAP Digital Twin throughout the digital transformation process helps engineers, operators, and managers increase their awareness and understanding of systems, in a cost-effective and repeatable environment by offering:
ETAP Digital Twin serves as an active blueprint of the electrical system, built on a continuous intelligent platform from original concept through specification, design, integration, test, commission, and in-service support.
ETAP Electrical Digital Twin is a unified engineering and real-time platform to accelerate productivity, increase efficiency, and enable digitization of power systems at every stage of the electrical installation life cycle, from design and build, to operate and maintain.
A Superior thermal spreading performance over traditional solid metal heat spreaders, by taking advantage of two-phase liquid/vapor transport. Its lower weight & height over traditional solutions couples with its high thermal conductivity to give extremely low thermal resistance in-plane as well as through the thickness of the vapor chamber. Best suited for components with high heat densities, which need to spread their heat to a larger area heat exchanger to achieve safe operating temperatures, thereby providing extended life & reliability for components and applied products.
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