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Product Overview |
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The DPS-700GB-A Delta 700W Redundant Power Supply is engineered for HP Proliant DL360 Gen5 servers, delivering high-efficiency power with built-in redundancy for uninterrupted operation. This unit ensures minimal downtime and maximum uptime, making it a critical component for maintaining high-performance, enterprise-level server environments. |
General Information |
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| Brand | Delta |
| Part Number | DPS-700GB-A |
| Product Type | Server Power Supply |
| Condition | Refurbished |
Technical Information |
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| Max. Output Power | 700W |
Compatibility |
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| Compatible For | Proliant DL360 Gen5 |
Physical Characteristics |
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| Weight | 3.00 |
Product Description |
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The DPS-700GB-A is a 700-Watt redundant power supply designed for HP Proliant DL360 Gen5 servers, providing reliable power to ensure high server uptime. Its redundant design guarantees uninterrupted power, crucial for mission-critical workloads. This power supply is engineered to deliver efficient power distribution, maintaining the performance of your server while minimizing energy waste. Perfectly compatible with the Proliant DL360 Gen5, it integrates seamlessly into enterprise environments, helping to maximize your server's reliability and operational continuity. Key Features
The DPS-700GB-A provides efficient, reliable power and redundancy, making it the ideal choice for Proliant DL360 Gen5 server users looking to maintain operational stability in demanding environments. |
Use Cases |
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The DPS-700GB-A Delta 700W Redundant Power Supply is primarily utilized in enterprise data centers and IT environments where HP Proliant DL360 Gen5 servers are deployed. It is ideal for organizations requiring continuous server uptime and reliable power delivery to support critical applications and workloads. How It's Used:
This power supply facilitates operational efficiency by reducing downtime risks and enabling scalable power management in complex server environments. Its redundant design is essential for maintaining performance continuity amid increased IT workload demands. |