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Product Overview |
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The 300-2006-03 Sun 550-Watts Redundant Power Supply is designed to support Fire T2000 servers by offering backup power in case of primary supply failure. It's a practical component used in environments where maintaining continuous server operation is essential, fitting into existing setups to provide seamless power redundancy. |
General Information |
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| Brand | Sun |
| Part Number | 300-2006-03 |
| Product Type | Desktop Power Supply |
| Condition | Refurbished |
Technical Information |
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| Input Voltage | AC 100-240V (auto-ranging) |
| Input Frequency | 50/60 Hz |
| Output | 12V,5VSB |
| Max. Output Power | 550W |
| 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 | Sun Fire T2000 |
Physical Characteristics |
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| Weight | 3.00 |
Product Description |
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This 550-watt redundant power supply is built for Fire T2000 servers, providing reliable backup power to keep your system running smoothly. It's often found in data centers and enterprise environments where continuous uptime is critical. IT professionals and system administrators rely on this power supply to minimize downtime during power issues. Key Features
Typically deployed in server racks powering Fire T2000 machines, this power supply plays a crucial role in maintaining operational stability. Its redundancy feature helps prevent interruptions caused by power source failures, making it a staple in high-availability setups. |
Use Cases |
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The 300-2006-03 Sun 550-Watt Redundant Power Supply is typically deployed in enterprise data centers running Fire T2000 servers, where maintaining uninterrupted power is critical to avoid downtime. IT administrators managing virtualization clusters or mission-critical applications benefit from its hot-swappable redundancy to ensure continuous operations during power supply maintenance or failure. How It's Used:
This power supply enhances operational resilience by enabling seamless power transitions in critical server deployments. Its integration supports scalability and performance by minimizing unplanned outages, thus preserving service levels in complex IT environments. |