Infineon EVAL_3KW_50V_PSU Half-Bridge Driver for IMZA65R048M1H PFC half-bridge, IPW60R017C7 PFC SRs for Hardware Board
- N° de stock RS:
- 248-9727
- Référence fabricant:
- EVAL3KW50VPSUTOBO1
- Fabricant:
- Infineon
Offre groupée disponible
Sous-total (1 unité)*
942,89 €
(TVA exclue)
1 140,90 €
(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 08 décembre 2025
Besoin de plus? Cliquez sur " Vérifier les dates de livraison " pour plus de détails
Unité | Prix par unité |
|---|---|
| 1 - 1 | 942,89 € |
| 2 - 4 | 916,76 € |
| 5 + | 893,84 € |
*Prix donné à titre indicatif
- N° de stock RS:
- 248-9727
- Référence fabricant:
- EVAL3KW50VPSUTOBO1
- 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 | Half-Bridge Driver | |
| For Use With | Hardware Board or Reference Design | |
| Kit Classification | Evaluation Board | |
| Featured Device | IMZA65R048M1H PFC half-bridge, IPW60R017C7 PFC SRs | |
| Kit Name | EVAL_3KW_50V_PSU | |
| Sélectionner tout | ||
|---|---|---|
Marque Infineon | ||
Power Management Function Half-Bridge Driver | ||
For Use With Hardware Board or Reference Design | ||
Kit Classification Evaluation Board | ||
Featured Device IMZA65R048M1H PFC half-bridge, IPW60R017C7 PFC SRs | ||
Kit Name EVAL_3KW_50V_PSU | ||
Infineon Evaluation Board, 50V Maximum Operating Voltage, Half-Bridge Driver Type - EVAL3KW50VPSUTOBO1
This evaluation board offers a complete power management solution, specifically designed for a 3kW power supply unit (PSU) targeted at server and data centre applications. Featuring a half-bridge driver and aiming for OCP rectifier V3 specifications, it showcases a robust design with a form factor of 73.5mm x 520mm x 40mm, delivering exceptional performance in power efficiency.
Features & Benefits
• Integrated CoolSiC™ and CoolMOS™ technologies enhance performance
• Seamlessly addresses PFC and THD requirements
• Designed for easy integration in various power electronics usage
• Provides a tightly regulated output voltage for precise performance
• Optimised for both hardware board and reference design use
• Seamlessly addresses PFC and THD requirements
• Designed for easy integration in various power electronics usage
• Provides a tightly regulated output voltage for precise performance
• Optimised for both hardware board and reference design use
Applications
• Utilised in data centres and server power supply designs
• Ideal for testing and evaluating power management solutions
• Suitable for automation and industrial control systems
• Effective in development labs for exploring high-efficiency power management systems
• Ideal for testing and evaluating power management solutions
• Suitable for automation and industrial control systems
• Effective in development labs for exploring high-efficiency power management systems
What specific performance metrics are achievable with this board?
The board is engineered to deliver a peak efficiency of 97.5% at a nominal output of 50V DC and provides operational metrics that comply with OCP rectifier V3 specifications, ensuring reliability under heavy load conditions.
How does the integrated half-bridge driver enhance system performance?
The half-bridge driver facilitates significant reductions in switching losses, enabling faster switch speeds and enhancing overall efficiency. This integration also allows for better thermal management during operational peaks.
Can this evaluation board handle different input voltage ranges?
Yes, it supports a wide input voltage range of 180V AC to 275V AC, accommodating various power supply requirements while ensuring stable output performance.
What components are essential for optimal operation during evaluations?
Key components include the IMZA65R048M1H half-bridge and IPW60R017C7 for power factor correction and synchronous rectification, both integral for managing high efficiency in various applications.
How does the evaluation board accommodate rapid load changes?
This design includes features that ensure minimal output voltage ripple during load transients, maintaining stability during quick changes in operational demand, typically allowing for variations of up to 30A in rapid tests.
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