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Product Overview |
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The Dell Pentium II 400MHz SECC processor is a single-core CPU designed for Slot 1 motherboards, providing reliable performance with its 512 KB L2 cache. It fits classic desktop setups and legacy systems where maintaining original hardware compatibility is important. This processor helps keep older machines functional without needing modern replacements. |
General Information |
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| Brand | Intel |
| Part Number | 05389E |
Technical Information |
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| Processor Family | Intel Pentium |
| Total Threads | 1 |
| Base Clock Speed | 400 MHz |
| Lithography | Other |
| Cache | 512 KB |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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This Dell Pentium II processor operates at 400MHz and is built with a single core, providing solid performance for its era. It is commonly found in older desktop systems or workstations that rely on Slot 1 CPU compatibility. The 512 KB L2 cache helps reduce bottlenecks by speeding up access to frequently used data. Often used in legacy hardware setups, this processor benefits users maintaining or restoring vintage machines and industrial computers that need reliable processing power without modern features. Its SECC packaging ensures easy installation in compatible motherboards. Key Features
This processor is typically deployed in older Dell systems or similar vintage desktops where replacement parts are required. It plays a crucial role in maintaining the operation of legacy applications and hardware that have not yet transitioned to newer architectures. Users benefit from stable, proven technology that fits original system specifications without modification. |
Use Cases |
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The Intel Pentium II 400MHz SECC processor is ideal for organizations maintaining legacy Slot 1 systems that require stable and compatible CPU performance. IT environments with older infrastructure can leverage this processor to ensure continuity of service without extensive hardware overhauls. How It's Used:
This processor sustains operational efficiency within legacy computing frameworks by offering reliable performance tuned to older architectures. It helps extend lifecycle value in environments where modern replacements are impractical, ensuring continued serviceability and minimizing disruption. |