Infineon FF400R07A01E3S6XKSA2 Dual IGBT Module, 400 A 700 V, 14-Pin PG-MDIP-14, Surface Mount
- RS Stock No.:
- 229-1784
- Mfr. Part No.:
- FF400R07A01E3S6XKSA2
- Brand:
- Infineon
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£125.78
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£150.94
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Units | Per unit |
|---|---|
| 1 - 1 | £125.78 |
| 2 - 4 | £122.51 |
| 5 + | £119.49 |
*price indicative
- RS Stock No.:
- 229-1784
- Mfr. Part No.:
- FF400R07A01E3S6XKSA2
- Brand:
- Infineon
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | Infineon | |
| Maximum Continuous Collector Current | 400 A | |
| Maximum Collector Emitter Voltage | 700 V | |
| Maximum Gate Emitter Voltage | +/-20V | |
| Number of Transistors | 2 | |
| Maximum Power Dissipation | 1.5 kW | |
| Configuration | Dual | |
| Package Type | PG-MDIP-14 | |
| Mounting Type | Surface Mount | |
| Channel Type | N | |
| Pin Count | 14 | |
| Transistor Configuration | Dual | |
| Dimensions | 42 x 42 x 4.7mm | |
| Gate Capacitance | 18nF | |
| Minimum Operating Temperature | -40 °C | |
| Maximum Operating Temperature | +175 °C | |
| Select all | ||
|---|---|---|
Brand Infineon | ||
Maximum Continuous Collector Current 400 A | ||
Maximum Collector Emitter Voltage 700 V | ||
Maximum Gate Emitter Voltage +/-20V | ||
Number of Transistors 2 | ||
Maximum Power Dissipation 1.5 kW | ||
Configuration Dual | ||
Package Type PG-MDIP-14 | ||
Mounting Type Surface Mount | ||
Channel Type N | ||
Pin Count 14 | ||
Transistor Configuration Dual | ||
Dimensions 42 x 42 x 4.7mm | ||
Gate Capacitance 18nF | ||
Minimum Operating Temperature -40 °C | ||
Maximum Operating Temperature +175 °C | ||
Infineon IGBT Module, 400A Maximum Continuous Collector Current, 700V Maximum Collector Emitter Voltage - FF400R07A01E3S6XKSA2
This IGBT module is engineered for high performance in industrial applications, combining advanced Infineon technology with robust specifications. Designed in a compact form factor with dimensions of 42 x 42 x 4.7 mm, this device features a dual transistor configuration that allows for efficient power management. The module supports a maximum continuous collector current of 400A and a collector-emitter voltage of 700V, making it an ideal solution for demanding applications.
Features & Benefits
• Suitable for double-sided cooling, optimising thermal performance
• Designed with low stray inductance for improved efficiency
• Supports high power dissipation of up to 1500 W
• Surface mount configuration simplifies installation and space management
• Robust thermal management ensures reliable operation up to 175°C
• Designed with low stray inductance for improved efficiency
• Supports high power dissipation of up to 1500 W
• Surface mount configuration simplifies installation and space management
• Robust thermal management ensures reliable operation up to 175°C
Applications
• Utilised in hybrid and electric vehicle power systems
• Effective in renewable energy converters and inverters
• Suitable for high power industrial automation systems
• Ideal for electric traction in public transport
• Used in UPS and energy storage systems to improve reliability
• Effective in renewable energy converters and inverters
• Suitable for high power industrial automation systems
• Ideal for electric traction in public transport
• Used in UPS and energy storage systems to improve reliability
What is the significance of the integrated current and temperature sensors?
The integrated sensors provide real-time monitoring of the IGBTs operational state, allowing for immediate adjustments to protect against potential thermal overloads and to optimise performance under varying load conditions.
How does the double-sided cooling design contribute to performance?
The double-sided cooling feature significantly enhances the thermal performance of the module by dissipating heat efficiently, which allows for higher power ratings and improved reliability in challenging environments.
What kind of applications benefit from using this IGBT module?
This module is particularly beneficial in applications that require high power management, such as inverters for renewable energy systems and electric vehicles, where efficiency and reliability are paramount.
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