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Product Overview |
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The 0MVP7C Dell 2000-Watts Power Supply is a top-tier solution for PowerEdge FX2S systems, offering both high energy efficiency and reliable power to handle demanding workloads. Its 80 Plus Platinum rating ensures minimal energy loss, while the hot-pluggable feature makes maintenance seamless, supporting business continuity in critical server operations. |
General Information |
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| Brand | Dell |
| Part Number | 0MVP7C |
| Product Type | Server Power Supply |
| Condition | Refurbished |
Compatibility |
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| Compatible For | PowerEdge FX2S |
Physical Characteristics |
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| Weight | 3.00 |
Product Description |
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This is a 2000-Watt power supply designed specifically for Dell PowerEdge FX2S systems, ensuring optimal power delivery for high-performance server environments. With its 80 Plus Platinum certification, this unit maximizes energy efficiency, reducing power consumption and cooling requirements. The hot-pluggable design allows for easy replacement without interrupting system operations, making it ideal for mission-critical applications. Built to handle the power needs of modern enterprise IT, this power supply guarantees reliable performance even under heavy workloads. Key Features
With its high efficiency and hot-pluggable design, this power supply ensures uninterrupted power delivery and optimal system performance for enterprise server environments. |
Use Cases |
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The 0MVP7C Dell 2000-Watt 80 Plus Platinum Hot-Pluggable Power Supply is primarily utilized in high-density server environments where continuous uptime and energy efficiency are critical. It is especially beneficial for IT administrators managing Dell PowerEdge FX2S chassis in data centers and enterprise infrastructures requiring scalable and reliable power solutions. How It's Used:
This power supply supports operational efficiency by maintaining stable power delivery and enabling swift maintenance without interrupting server workloads. Its design aligns with scalable IT environments where energy savings and hardware availability directly impact overall system performance. |