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Product Overview |
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The Dell Pentium M 760 processor runs at 2.00GHz with a single core and 2 MB of L2 cache. It fits into a PGA478 socket and is usually installed in compact desktop setups where energy efficiency is important. This CPU balances fundamental processing power with lower heat generation, making it suitable for basic computing tasks in office and home environments. |
General Information |
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| Brand | Intel |
| Part Number | 0U9685 |
Technical Information |
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| Processor Family | Intel Pentium |
| Total Threads | 1 |
| Base Clock Speed | 2.00 GHz |
| Lithography | Other |
| Socket Type | PGA 478 |
| Cache | 2 MB L2 |
| Thermal Design Power | 27 W |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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This Dell Pentium M 760 processor is built to deliver reliable single-core performance at 2.00GHz. It's often found in compact systems where energy efficiency matters alongside decent processing power. The 2 MB L2 cache helps speed up data access, making everyday tasks smoother. Commonly used in business desktops and entry-level workstations, this CPU suits users who need steady performance without high power demands. It's ideal for office applications, basic multitasking, and light media use. Key Features
This processor is typically deployed in Dell desktops aimed at small business or home office environments. It provides a solid foundation for daily computing without unnecessary complexity or excess heat output. Users benefit from a stable platform that supports common productivity needs well. |
Use Cases |
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The Dell Pentium M 760 processor is ideal for environments requiring low power consumption paired with sufficient performance for basic computing tasks. It is most suitable for small office setups, legacy systems, and compact desktop configurations where thermal management and energy efficiency are critical. How It's Used:
This processor supports operational efficiency by balancing performance with reduced power draw, enabling cost-effective maintenance in environments with limited cooling infrastructure. While not designed for high scalability, it reliably handles routine workloads that do not demand intensive processing resources. |