Overcurrent Protection and Fuse/Switch Coordination
IEC 60364-4-43 Selectivity Analysis of Short Circuit, Overload and Automatic Circuit BreakersIn the event of a short circuit, does the correct fuse blow, or does the main circuit breaker upstairs trip? A lack of selectivity can cause a single fault to black out the entire building.
Managing the Destructive Energy of a Short Circuit
IEC 60364-4-43 regulates the selection and coordination of automatic protection devices (fuses, circuit breakers/MCBs, MCCBs) that protect wiring and equipment in installations from thermal and mechanical damage caused by overload and short-circuit currents.
AES Innovation measures actual short-circuit current levels (Ik) in the field using a prospective short-circuit test device, verifying whether the breaking capacity of existing fuses/circuits meets this value. It also analyzes selectivity (step) compliance in the protection chain extending from the main panel to the last socket.
Insurance Coordination and Short Circuit Analysis
Parameters Tested in Overcurrent Protection Control:
WHY AES INNOVATION?
Not a Blown Fuse, but a Coordinated Defense Line
Incorrectly selected or uncoordinated protection devices can either burn the cable or unnecessarily black out the entire building in the event of a short circuit. AES Innovation's selectivity analysis helps you build a defense architecture that isolates the point of failure, keeping the rest of the installation alive.
International Standards and Relevant Legislation
The IEC 60364-4-43:2023 (Protection against overcurrent) standard is implemented in coordination with the IEC 60898 (MCB) and IEC 60947-2 (MCCB) device standards.
Frequently Asked Questions
Overcurrent protection FAQs for electrical project and installation engineers.