| IGBT Traction Converter |
| Redundancy & Fault Isolation | Implements highly robust line-side and drive-side separation to keep locomotives running in degraded modes rather than risking block section failures. The system architecture guarantees dimensions within 3000 × 1100 × 2087 mm (W x D x H) using rugged grade 304 stainless steel cabinets, matching original equipment slots. |
| Proven Cooling Integration | Adapts perfectly to the existing locomotive radiator circuits using an environmentally safe 30:70 green ethylene-glycol and water mixture. Features a completely sealed enclosure conforming to an IP 54 rating for control electronics and power modules to resist dusty and humid railway environments. |
| IGBT Auxiliary Converter (BUR) System |
| Tri-Modular Configuration | Houses three fully identical 130 kVA auxiliary converters (BUR1, BUR2, BUR3) to provide continuous, isolated sinusoidal output (415 V ± 5% L-L at 50 Hz). Features advanced soft starting capabilities to enable soft starting of heavy auxiliary loads (cooling fans, oil pumps) utilizing variable voltage variable frequency (VVVF) control. |
| Automatic Re-routing | If one BUR unit fails, control system software automatically triggers contactors to re route and sustain all critical auxiliary loads. Includes a fully integrated, independent battery charger supplying a regulated 110 V DC output at 80 A optimized for standard 199 AH Ni-Cd batteries. |
| Safety and Quality Design Standards |
| Proven Safety Compliance | Designed under strict compliance with protective insulation standards (EN 50153) and electro-technical rolling stock guidelines (IEC 60077). |
| Extensive EMC/EMI Protection | Segmented grounding, robust shielding, and low electromagnetic emission levels conforming to EN 50121 and EN 50238 standards. |
| Reliability Margin | All core power semiconductors (IGBTs) are selected with a minimum voltage and current safety margin of 25% and a junction temperature safety margin of ≥ 10°C under worst-case thermal loads. |
| Open Architecture Vehicle Control Unit (VCU) |
| Designed on open-architecture network control compliant with IEC-61375 Train Communication Network (TCN) protocols. Advanced diagnostics and non-volatile memory log comprehensive parameters, pre-trigger/ post-trigger wave-forms, and fault data up to card-level for over 100 days. |
| Out-of-the-box compatibility with existing pneumatic and electronic brake networks, with future-proof multiplexed RS-485 interfaces. The system drives high-resolution Driver Display Units in both cabs, offering real-time status and context-sensitive troubleshooting instructions to the loco pilot. |