Infineon EVAL-2EDL05I06PF IGBT Gate Driver for 2EDL05I06PF for E-Forklift, E-Scooter
- N° de stock RS:
- 234-2079
- Référence fabricant:
- EVAL2EDL05I06PFTOBO1
- Fabricant:
- Infineon
Sous-total (1 unité)*
69,71 €
(TVA exclue)
84,35 €
(TVA incluse)
Frais de livraison offerts pour toute commande de plus de 75,00 €
Stock limité
- Plus 3 unité(s) expédiée(s) à partir du 09 décembre 2025
Besoin de plus? Cliquez sur " Vérifier les dates de livraison " pour plus de détails
Unité | Prix par unité |
|---|---|
| 1 + | 69,71 € |
*Prix donné à titre indicatif
- N° de stock RS:
- 234-2079
- Référence fabricant:
- EVAL2EDL05I06PFTOBO1
- Fabricant:
- Infineon
Spécifications
Documentation technique
Législations et de normes
Détails du produit
Recherchez des produits similaires en sélectionnant un ou plusieurs attributs.
Sélectionner tout | Attribut | Valeur |
|---|---|---|
| Marque | Infineon | |
| Power Management Function | IGBT Gate Driver | |
| For Use With | E-Forklift, E-Scooter | |
| Kit Classification | Evaluation Board | |
| Featured Device | 2EDL05I06PF | |
| Kit Name | EVAL-2EDL05I06PF | |
| Sélectionner tout | ||
|---|---|---|
Marque Infineon | ||
Power Management Function IGBT Gate Driver | ||
For Use With E-Forklift, E-Scooter | ||
Kit Classification Evaluation Board | ||
Featured Device 2EDL05I06PF | ||
Kit Name EVAL-2EDL05I06PF | ||
Infineon Evaluation board, IGBT Gate Driver, For Use With E-Forklift/E-Scooter - EVAL2EDL05I06PFTOBO1
This evaluation board showcases the functionalities and key features of the IGBT gate driver. Its robust design facilitates the application of drivers in advanced electric vehicle components and is particularly relevant for industries involved in automation, electronics, and electrical control systems.
Features & Benefits
• Integrated short circuit protection improves operational safety
• Under voltage lockout prevents potential damage from low voltage
• Bootstrap functionality simplifies high-side IGBT driving
• Status LED indicators provide immediate operational feedback
• Current measurement capability enables precise performance monitoring
• Offers connector flexibility for effortless integration with various systems
• Under voltage lockout prevents potential damage from low voltage
• Bootstrap functionality simplifies high-side IGBT driving
• Status LED indicators provide immediate operational feedback
• Current measurement capability enables precise performance monitoring
• Offers connector flexibility for effortless integration with various systems
Applications
• Used in electric forklifts for effective power management control
• Suitable for e-scooter driver circuits, enhancing performance
• Ideal for developing prototype power management solutions
• Supports high-performance IGBT driver in electric vehicles
• Useful for analysis and testing in power electronic projects
• Suitable for e-scooter driver circuits, enhancing performance
• Ideal for developing prototype power management solutions
• Supports high-performance IGBT driver in electric vehicles
• Useful for analysis and testing in power electronic projects
What voltage supply is required for operation?
The driver output requires a positive 15V supply, to be externally connected via the designated connector.
How does the board handle short circuit conditions?
It employs a shunt measurement technique to detect short circuits by monitoring voltage drops, enabling prompt switching off during fault conditions.
Can the board be used for different applications?
Yes, it is designed to support various applications, primarily in electric vehicle components, offering versatility for different power management requirements.
Is there any need for user modifications?
While the evaluation board is preconfigured, users may need to adapt certain components for specific applications, such as adjusting gate resistors to optimise switching characteristics.
What is the maximum output current the evaluation board can manage?
The board can handle an output current of up to 4A for peak conditions and 1A for RMS output, ensuring effective performance within specified limits.
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