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Product Overview |
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The HPE 571436-002 Smart Array FBWC Capacitor supports the P410i RAID Controller by delivering battery-free write cache protection. It fits directly into the controller setup, helping to secure data during unexpected power loss situations without relying on traditional batteries, making it a practical choice for maintaining system reliability in enterprise servers. |
General Information |
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| Brand | HPE |
| Part Number | 571436-002 |
Technical Information |
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| Battery Type | FBWC Capacitor |
| Compatibility | HPE Smart Array P410i RAID Controller |
Physical Characteristics |
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| Condition | Refurbished |
| Weight | 5.00 |
Miscellaneous |
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| Eco Friendly | Yes |
| Assembly Required | Yes |
| Compliance Standards | WEEE, RoHS, cURus, CE, FCC, CCC, UL, TUV, cULus, CSA, cUL |
Product Description |
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This capacitor is designed to work with the HPE Smart Array P410i RAID Controller, providing reliable backup for the controller's write cache. It helps safeguard data by offering power protection without the need for traditional batteries, making maintenance simpler and reducing downtime. Often found in enterprise storage systems, this component is built for IT professionals and system administrators who require consistent data integrity and protection against unexpected power loss. Key Features
This capacitor is commonly deployed in data centers and server environments where HPE Smart Array controllers are used. It plays a crucial role in maintaining data consistency and preventing corruption, especially in critical applications where uptime and data safety matter most. |
Use Cases |
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The HPE 571436-002 Smart Array P410i FBWC Capacitor is designed for enterprise IT environments relying on the P410i RAID controller where data integrity during power interruptions is critical. It is particularly beneficial in server deployments that require persistent write cache without the maintenance overhead of batteries. How It's Used:
By integrating the FBWC capacitor, organizations benefit from sustained write cache preservation, improving system resilience in critical server applications. This approach aids in reducing downtime and maintenance efforts, which is crucial for maintaining high-performance storage operations in complex IT infrastructures. |