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Product Overview |
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The HP System Board Motherboard for the XW8200 Workstation is a dual-processor board designed to support Socket 604 Xeon CPUs running at an 800MHz front-side bus. It fits specifically in HP’s XW8200 series, offering the necessary foundation for professional-grade computing tasks and workloads that require stable multi-processor coordination. |
General Information |
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| Brand | HP |
Technical Information |
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| Board Socket Type | Socket 604 (604 pins) |
| USB Port | USB 2.0 |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Miscellaneous |
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| Assembly Required | Yes |
| Eco Friendly | Yes |
| Compliance Standards | WEEE, RoHS, cURus, CE, FCC, CCC, UL, TUV, cULus, CSA, cUL |
Product Description |
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This HP system board is built for the XW8200 Workstation, providing a reliable platform for demanding professional applications. It hosts dual NOCONA Xeon processors, each running with an 800MHz front-side bus to handle intensive multitasking and compute-heavy workloads efficiently. Commonly found in engineering, design, and data analysis environments, this motherboard supports users who need stable and scalable performance. It fits into the workstation chassis seamlessly, ensuring compatibility and system integrity. Key Features
Typically deployed in professional settings where reliable uptime is critical, such as 3D rendering studios or scientific research labs, this motherboard helps maintain steady system performance. It plays a key role in supporting the heavy computational loads these applications demand without compromise. |
Use Cases |
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The HP XW8200 Workstation Dual-Processor System Board is primarily utilized in professional environments where high computational throughput and multi-threaded processing are essential. It caters to IT departments and technical professionals requiring reliable dual-CPU setups for demanding workloads such as simulations, rendering, and data analysis. How It's Used:
This system board facilitates efficient operation in multi-processor configurations, enhancing compute density and throughput. Its design supports scalability and reliability, making it suitable for sustained workloads where system stability and performance consistency are critical. |