Power Electronics
Conversion topology, modular power stages, protection coordination and component selection are developed through simulation and validation.
Power electronics, control, communication, safety and energy management are developed as integrated components of the EV charging ecosystem.
Conversion topology, modular power stages, protection coordination and component selection are developed through simulation and validation.
Embedded control coordinates charging states, limits, safety conditions and controlled transitions without exposing proprietary implementation details.
The target architecture considers DIN 70121 and ISO 15118 for communication between the electric vehicle and charging equipment.
OCPP is considered for structured communication between charging stations and the central charging management system.
Airflow, component derating and cooling strategy are assessed against the final enclosure, duty cycle and environmental conditions.
Protection, isolation monitoring, emergency stop behavior and fault handling are addressed through staged engineering verification.
Planned capabilities include controlled power allocation and future integration with site-level energy constraints and assets.
Structured service zones, replaceable modules and diagnostic visibility guide maintainability objectives.