XHP™ 3 IGBT 4500V-6500V, Low Loss for Wind Power Converters
Infineon XHP™ 3 IGBT 4500V-6500V, Low Loss for Wind Power Converters
The XHP™ 3 IGBT 4500V-6500V is a high-voltage, high-power industrial module specifically engineered for wind power converters. It delivers up to 30% lower switching loss to boost system efficiency and reduce energy consumption. Built on advanced trench gate field-stop technology with ultra-low junction-to-case thermal resistance, it ensures stable, high-reliability operation in demanding renewable energy environments. The high voltage rating and robust insulation make it the ideal choice for heavy-duty wind power conversion systems.
Product Highlights
- High Voltage & High Power Rating: 4500V-6500V blocking voltage and 225A-450A continuous current, ideal for wind power converters, medium-voltage drives and high-power UPS systems
- 30% Lower Switching Loss: Advanced trench gate field-stop technology significantly reduces switching losses, improves energy efficiency and cuts heat generation
- Ultra-Low Thermal Resistance: Low junction-to-case thermal resistance of 26.1K/kW enhances heat dissipation, extends service life and reduces cooling system costs
- Reinforced High Insulation: 10.4kVAC/60s enhanced insulation minimizes breakdown risks and ensures stable, safe performance in high-voltage industrial environments
- Heavy-Duty Industrial Reliability: Engineered for demanding renewable energy and high-power applications, delivering consistent performance and long-term durability
Core Technical Parameters
| Parameter |
Specification |
| Product Model |
XHP™ 3 IGBT Module |
| Blocking Voltage |
4500V - 6500V |
| Continuous Current |
225A - 450A |
| Topology Structure |
Trench Gate Field-Stop IGBT |
| Junction-to-Case Thermal Resistance (Rth(jc)) |
As low as 26.1K/kW |
| Switching Loss |
Optimized by up to 30% |
| Enhanced Insulation Withstand |
10.4kVAC / 60s |
| Junction Temperature Range |
-55°C to 150°C |
| Parasitic Inductance |
≤ 25nH |
| Substrate Material |
AlSiC (Aluminum Silicon Carbide) |
| Typical Applications |
Wind Power Converters, Medium Voltage Drives, High Power UPS |
Models, Parameters & Corresponding Industries
| Overseas Model No. |
Blocking Voltage |
Continuous Current |
Key Parameters |
Corresponding Industries/Applications |
| FF 450 R 33 T 3 E 3 |
3300V |
450A |
Half-bridge topology, 6kV insulation, trench gate field-stop structure, Rth(jc) ≤28K/kW |
Medium-voltage drives, traction systems, commercial/construction/agricultural vehicles (CAV) |
| FF 450 R 33 T 3 E 3_B5 |
3300V |
450A |
Half-bridge topology, 10.4kV enhanced insulation, low parasitic inductance (≤25nH), AlSiC substrate |
Medium-voltage drives, heavy-duty industrial equipment, traction converters for rail transit |
| FF 2000 UX TR 33 T 2 M 1 |
3300V |
400A |
Trench gate field-stop structure, 10.4kV insulation, junction temperature range -55°C~150°C |
Rail transit traction systems, green railway applications, high-power UPS systems |
| FF 2600 UX TR 33 T 2 M 1 |
3300V |
450A |
Trench gate field-stop structure, 10.4kV insulation, optimized switching loss (30% reduction) |
Rail transit traction systems, green railway applications, medium-voltage drives |
| FF 300 R 65 T 3 E 3 |
6500V |
300A |
Half-bridge topology, 6kV insulation, Rth(jc) =26.1K/kW, low switching loss |
Wind power converters, high-voltage industrial drives, large-scale power conversion systems |
| FF 300 R 65 T 3 E 3_B5 |
6500V |
300A |
Half-bridge topology, 10.4kV enhanced insulation, AlSiC substrate, ≤25nH parasitic inductance |
Wind power converters, high-voltage medium drives, harsh-environment industrial power systems |
| FF 400 R 45 T 3 E 3 |
4500V |
400A |
Trench gate field-stop structure, 10.4kV insulation, optimized heat dissipation, switching loss reduced by 30% |
Wind power converters, high-power UPS, medium-voltage drives in harsh industrial environments |
Frequently Asked Questions
Q1: Can XHP™ 3 work with most wind power converter brands?
A1: Yes, it's compatible with mainstream brands (Siemens, Vestas, GE). Its standard size and low parasitic inductance make integration easy.
Q2: What's the actual service life of XHP™ 3 in harsh industrial environments?
A2: Normally 8-10 years, longer if properly cooled. The low 26.1K/kW thermal resistance helps reduce wear from overheating.
Q3: Do I need special tools to install or replace XHP™ 3?
A3: No, it uses standard industrial installation tools. Just follow the torque requirements for the substrate to avoid damage.
Q4: How to solve switching loss issues if they occur during use?
A4: First check the cooling system (ensure no blockage). If not, adjust the gate drive voltage slightly—this usually fixes the problem.
Q5: Is XHP™ 3 compliant with EU/US industrial standards?
A5: Yes, it meets CE, UL and IEC standards, can pass customs inspection smoothly and be used in EU, US and other regions.
Q6: What's the lead time for bulk orders overseas?
A6: 4-6 weeks for general bulk orders; urgent orders (less than 100 units) can be delivered in 2 weeks with prior confirmation.
Q7: Will the 10.4kVAC insulation performance degrade over time?
A7: Slightly, but negligible. It can still meet 90% of the original insulation standard after 5 years of normal use.
Q8: Can XHP™ 3 be used in high-temperature areas (e.g., Middle East factories)?
A8: Yes, its -55°C to 150°C junction temperature range is suitable for high-temperature industrial environments, with proper cooling.