Press-Pack IGBT Module 6500V/3000A with Double-Sided Cooling for UHV High Power Applications in Grid and Rail
Press-Pack IGBT 6500V/3000A
Ultra-High Voltage High Power for Grid & Rail Applications
The Press-Pack IGBT with 6500V voltage and 3000A current is a high-performance device designed for ultra-high voltage (UHV) and high-power applications. This advanced technology is ideally suited for power grid and rail transit scenarios, featuring low loss, double-sided cooling technology and high reliability to meet the rigorous operational demands of critical industrial systems.
Product Highlights
- UHV High Power Press-Pack IGBT, 4500V-6500V, low loss for Grid & Rail
- Weld-free Press-Pack IGBT, high reliability, fit for rail transit & power grid
- High density Press-Pack IGBT, double cooling, ideal for UHV power system
- Anti-shock Press-Pack IGBT, short-circuit protection, for grid transmission
Core Models, Parameters and Applicable Industries
| Model |
Rated Voltage |
Rated Current (Tc=80℃) |
Key Parameters |
Applicable Industries |
| 5SNR 10H2500 |
2500V |
1000A |
Stable short-circuit failure mode, explosion-proof package, series connection optimization, wire-bond-free press-fit structure |
UHV power grid, DC distribution network, medium-voltage industrial drive systems |
| 5SNX 13H2500 |
2500V |
1300A |
High Safe Operating Area (SOA), tolerance to uneven mounting pressure, modular design, low on-state loss |
Power grid reactive power compensation, industrial high-power converters, marine power systems |
| 5SNR 20H2500 |
2500V |
2000A |
High power cycling capability, double-sided cooling design, low junction-to-case thermal resistance, excellent vibration resistance |
Rail transit auxiliary inverters, offshore wind power converters, power plant auxiliary systems |
| 5SNA 1250K450300 |
4500V |
1250A |
50% IGBT + 50% diode ratio, maximum repetitive on/off current 4000A, optimized current and voltage sharing |
High-Voltage Direct Current (HVDC) transmission, Static Synchronous Compensator (STATCOM), medium-voltage frequency converters |
| 5SNA 2000K450300 |
4500V |
2000A |
Excellent current sharing performance, on-state voltage drop 3.4V at 125℃, shock and electromagnetic interference resistance |
Rail transit main traction converters, HVDC converter valves, DC circuit breakers |
| 5SHY4045L0003 |
6500V |
750A |
Half-bridge dual-unit structure, with anti-parallel diodes, low switching loss, high thermal stability |
Flexible DC transmission (HVDC Light®), STATCOM, medium-voltage frequency converters |
| 5SHY4045L0001 |
6500V |
750A |
StakPak™ package, explosion-proof design, high insulation performance, suitable for extreme working conditions |
Metallurgical rolling mill drives, mine hoists, marine propulsion systems |
Frequently Asked Questions
What voltage and current ranges do these Press-Pack IGBTs support?
4500V-6500V, 1500A-5000A, ideal for UHV grid and rail high-power working conditions.
Why is Press-Pack IGBT a good choice for rail transit?
Weld-free structure, shock & vibration resistant, stable for train frequent start-stop.
How does it solve heat dissipation issues in UHV systems?
Double-sided cooling, lower thermal resistance, stable temperature under high power.
Can it be used in series or parallel for high-voltage applications?
Optimized current/voltage sharing, multi-chip design, perfect for UHV series/parallel use.
What's the key advantage over traditional bonded IGBTs?
No welding or bond wires, no fall-off/breakage risks, higher long-term reliability.
How does it protect the whole system when a device fails?
Short-circuit failure mode, single device fault won't affect the entire system operation.
Is it suitable for harsh outdoor/on-board working environments?
High thermal matching materials, shock & thermal cycle resistant, fits complex scenes.
Does it help cut energy consumption of power systems?
Low on-state voltage & switching loss, soft turn-off, boosts power conversion efficiency.
What's the maximum junction temperature of these Press-Pack IGBTs?
Up to 150℃, meets the high-temperature demand of UHV/rail heavy-load work.
How about its overload and anti-impact capacity?
Strong overload & anti-electromagnetic impact, adapts to complex high-voltage environments.
Can it support flexible DC power transmission in the power grid?
Yes, grid-friendly design, supports flexible DC transmission and reactive power compensation.
Does the high power density save space for equipment?
40kVA/cm² power density, 37% higher than similar products, enables device miniaturization.