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Product Overview |
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The Dell Pentium 4-M 2.40 GHz processor is a single-core chip designed for mobile and compact systems. It delivers consistent processing power with its 512 KB L2 cache and fits into motherboards using the PGA478 socket. This processor fits well in older laptops and desktops where dependable, straightforward computing is needed without demanding the latest multicore technology. |
General Information |
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| Brand | Intel |
| Part Number | 0U2759 |
Technical Information |
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| Processor Family | Intel Pentium |
| Total Threads | 1 |
| Base Clock Speed | 2.40 GHz |
| Lithography | Other |
| Socket Type | PGA 478 |
| Cache | 512 KB L2 |
Memory Specifications |
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| Memory Types | DDR |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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This Intel Pentium 4-M processor operates at 2.40 GHz and features a single core with 512 KB of L2 cache, providing a balance between speed and power consumption. It’s built for mobile platforms, making it suitable for laptops or compact desktops that need reliable performance without excessive heat or energy use. Often found in older Dell systems, this processor supports basic computing tasks such as office applications, web browsing, and multimedia playback. It’s commonly used by individuals or businesses requiring straightforward, dependable processing in legacy hardware setups. Key Features
Processors like this are typically found in older laptop models or compact desktop systems that prioritize basic computing functions. They are valued for their simplicity and reliability in settings that don’t require multi-core processing or heavy multitasking. |
Use Cases |
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The Dell Pentium 4-M 2.40 GHz processor is commonly utilized in legacy mobile and compact desktop environments where moderate computing tasks are performed. It suits organizations maintaining older hardware platforms or requiring cost-effective systems for basic office workloads and embedded applications. How It's Used:
This processor maintains operational efficiency in constrained hardware scenarios by providing consistent single-core performance. While limited in scalability, it remains relevant for specialized workloads and legacy system support where multicore processors are unnecessary or incompatible. |