Learn how Eplan Electric P8 helps utility engineering teams standardize schematic design, automate wire numbering and device tagging, run automatic checks, and maintain consistent project documentation across the full substation workflow.
See how Eplan and Rittal are helping utilities accelerate modernization with end‑to‑end data, digital twins, and standardization that cuts engineering time in half.
Discover how Netz Burgenland uses Eplan Electric P8 to streamline substation planning, unify documentation, and maintain crystal‑clear collaboration across suppliers and engineering teams.
Cut Errors, Accelerate Delivery, and Supercharge Utility Engineering
By unifying data, design, and production into one intelligent engineering platform, Eplan helps you cut errors, accelerate delivery, so your teams can focus on building a stronger, more resilient energy network. Unlock new levels of productivity:
- Reduce design errors and rework with standardized, data-driven engineering.
- Eliminate manual wiring effort with automated wire numbering, device tagging, and real-time design validation.
- Accelerate projects by connecting preplanning, detailed design, and downstream systems.
- Boost productivity with automation, templates, and rich manufacturer data.
Learn how Eplan empowers utilities to modernize their infrastructure and distribution engineering, turning complex projects into fast, reliable, and scalable processes.
Imagine generating complete, error-free schematics, panel layouts, and even PLC code automatically
Eplan Engineering Configuration (EEC) enables you to model your portfolio as modular, interdisciplinary functional units and automatically generate top‑quality schematics, 3D control‑cabinet layouts, manufacturing documentation, and even PLC code, all from a single configuration step. By ensuring consistent, standards‑based designs across every project, EEC reduces rework, accelerates production workflows, and synchronizes sales, engineering, and manufacturing in one unified data flow. For engineering teams pushing toward higher throughput and error‑free automation, this is the backbone of scalable, model‑driven electrical design.
