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Product Overview |
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The Z9000-PWR-AC Dell Force10 power supply delivers reliable AC power with an integrated reverse flow fan that aids in effective heat management. It fits within Dell Force10 switches and supports hot-swapping, making it a practical choice for maintaining continuous network operation in data centers and enterprise environments. |
General Information |
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| Brand | Dell |
| Part Number | Z9000-PWR-AC |
| Product Type | Network Equipment Power Supply |
| Condition | Refurbished |
Technical Information |
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| Input Voltage | AC |
| Input Frequency | 50/60 Hz |
| Hot Swappable | Yes |
| Cooling Type | Active Fan |
| Number of Fans | 1 |
Compatibility |
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| Form Factor | Proprietary |
| Compatible For | Z9000-PWR-AC: Dell Force10 Hot-Swappable AC Power Supply with Integrated Reverse Flow Fan |
Physical Characteristics |
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| Weight | 8.00 |
Product Description |
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The Z9000-PWR-AC is a hot-swappable AC power supply specifically built for Dell Force10 network switches. It ensures continuous power delivery while allowing easy replacement without interrupting switch operation. Often found in data centers and enterprise network environments, this power supply helps maintain network reliability and uptime. Key Features
This power supply is typically deployed in critical networking setups where downtime is not an option. Its cooling design and hot-swap capability help administrators keep switches running smoothly under demanding conditions. |
Use Cases |
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The Z9000-PWR-AC power supply is primarily utilized in enterprise and large-scale data center environments where Dell Force10 switches are deployed. IT teams managing high-availability network infrastructure benefit from its hot-swappable design, enabling power supply replacement without interrupting network operations. How It's Used:
This power supply enhances operational efficiency by minimizing network downtime during power component replacements. Its integration with Dell Force10 switches supports scalability and sustained performance in environments demanding high reliability and effective thermal management. |