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Product Overview |
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The HPE 592267-001 595-Watt AC Power Supply provides reliable and efficient power tailored for StorageWorks MSA2000 storage systems. Its robust design and hot-swappable feature make it essential for maintaining high availability in data-intensive environments. |
General Information |
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| Brand | HPE |
| Part Number | 592267-001 |
| Product Type | Storage Enclosure Power Supply |
| Condition | Refurbished |
Technical Information |
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| Input Voltage | 100-240V AC |
| Input Frequency | 50-60 Hz |
| Max. Output Power | 595W |
| Hot Swappable | Yes |
| Redundant Support | Yes |
| Cooling Type | Active Fan |
| Modularity | Non-Modular |
| rail_design | Single 12V Rail |
| Number of Fans | 1 |
Compatibility |
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| Form Factor | Proprietary |
| Compatible For | HP StorageWorks MSA2000 G3 / P2000 G3 |
Physical Characteristics |
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| Weight | 7.00 |
Certifications and Environmental |
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| Eco Friendly | Yes |
| Compliance Standards | RoHS, CE |
Product Description |
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The HPE 592267-001 595-Watt AC Power Supply is crafted to deliver consistent, reliable power to StorageWorks MSA2000 storage arrays. It ensures continuous operation and supports critical data storage environments with robust performance. Key Features
This power supply is ideal for enterprise storage setups demanding high availability and efficiency. Its hot-swappable nature supports uninterrupted service during hardware replacement or upgrades. |
Use Cases |
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The HPE 592267-001 595W AC Power Supply is designed for deployment in storage systems within enterprise IT and data center environments that require consistent power delivery with minimal downtime. It is particularly suited for operations managing storage clusters where maintaining continuous access to data is critical. How It's Used:
This power supply aids in sustaining operational efficiency by facilitating easy replacement without service interruption and ensuring stable power delivery under demanding storage workloads. Its compatibility with multiple StorageWorks models allows scalable power management across evolving storage infrastructures. |