6 Item(s) found

​​Discover new safety methods that integrate device duty, short circuit and arc flash in ETAP 2026​

​​Discover new safety methods that integrate device duty, short circuit and arc flash in ETAP 2026​

Learn how ETAP 2026, transforms complex results into simpler safety solutions by considering the rules of device duty, arc flash protection, and protective coordination all together. This presentation shares how to study short circuit and arc flash analysis in both three-phase and single-phase networks - especially useful for complex systems, special locations, and large data sets. The demonstration also shares how to use this solution for arc flash mitigation strategies, including maintenance mode evaluations, helping to reduce incident energy and keep workers safe.

​​Learn how to determine the optimal feeder hosting capacity for DER integrations with ETAP 2026​

​​Learn how to determine the optimal feeder hosting capacity for DER integrations with ETAP 2026​

Learn how ETAP Feeder Hosting Capacity (FHC) provides immediate insights on the optimal amount and placement of distributed energy resources (DERs). Enhanced in ETAP 2026, short circuit and harmonic constraints have been added to this module. The presentation walks through how to apply various methods, such as nodal and stochastic, with key constraints, including min/max voltage, thermal, protection/bus bracing (IEC vs. ANSI), and harmonic (IEEE 519) to get a comprehensive view of the PV integration. The FHC Impact Analysis study is also presented, which is used to verify system stability using the IEEE 1547 rulebook, or by defining custom control curves.

​​Learn how to maximize productivity with integrated workflows using Caneco and SEE​

​​Learn how to maximize productivity with integrated workflows using Caneco and SEE​

Learn how to improve the quality of project deliverables in engineering design projects using a connected workflow between Caneco low-voltage software and SEE Electrical Expert. This software demonstration uses a fully sized electrical installation with auto-generated calculations to automatically produce single-line or multiline diagrams for each panel. You’ll see how the compliance-backed calculations and sizing in Caneco can leverage the design and documentation within electrical CAD software, including all the circuit information and cabling with minimal re-entry, thereby saving time and reducing the duplication of efforts.

ETAP Motor Simulation Made Practical: From Nameplate Data to Dynamic Performance

ETAP Motor Simulation Made Practical: From Nameplate Data to Dynamic Performance

Learn how to use ETAP MotorPro™, a new Power Simulator enhancement in ETAP 2026 that combines motor modeling, performance simulation, energy usage analysis and lifecycle economic evaluation within one integrated tool.​ This presentation introduces the uses for graphical motor parameter estimation (GMPE) to simplify the estimation of motor performance graphically, using nameplate data and manufacturer performance curves. Also demonstrated is a walkthrough of how to evaluate motor dynamic acceleration under different operating conditions. The presentation also touches on the importance of including energy usage analysis and lifecycle economic evaluation into motor studies. With so much energy and investment tied to motors, GMPE analysis helps engineers improve the accuracy of motor performance analysis, ensure the reliable operation of motors during acceleration​, and make sound financial decisions on motor purchases and replacements.

​​Learn the fundamentals of efficient cable ampacity and sizing methods using ETAP​

​​Learn the fundamentals of efficient cable ampacity and sizing methods using ETAP​

Explore how ETAP saves time in the calculation-intensive process of verifying that each cable is sized correctly in electrical installation projects. This webinar steps through the options available and the set up process for cable ampacity and sizing in ETAP, including how to apply project-specific settings and thermal or standards-based analysis methods. ETAP provides the flexibility to support diverse project workflows, whether the data input method is tabular or graphically defined within the ETAP integrated intelligent single-line diagram (iSLD). The presentation shows how a project design requirements can be customized or automatically determined from load flow, short circuit, and protective device calculation results. By using ETAP for voltage, current, and distance analysis, engineers can ensure safety and code compliance and prolong cable integrity in their electrical installations.

Siemens Teamcenter Integration for SEE Electrical Expert

Siemens Teamcenter Integration for SEE Electrical Expert

Siemens Teamcenter Integration for SEE Electrical Expert