Intel CM8071505093011 Core i5-14400F Tray Processor
Overview :
The Intel CM8071505093011 is an OEM/tray 14th generation Core i5-14400F desktop processor built on the Raptor Lake Refresh architecture. System integrators, corporate IT procurement departments, and infrastructure engineers deploy this 10-core computing unit to power mainstream business workstations, edge processing nodes, and localized task-specific machines. By utilizing a hybrid architecture, it addresses budget-to-performance constraints by dynamically separating lightweight operating processes from heavy client computing applications.
Technically, this unit combines 6 Performance-cores and 4 Efficient-cores to deliver 16 simultaneous computing threads, backed by a 20 MB Intel Smart Cache. Operating at a base thermal power of 65W, it shifts processing clock speeds from a base of 2.5 GHz up to a maximum turbo frequency of 4.7 GHz when demanding workloads scale. Built for the FCLGA1700 socket, it supports up to 20 PCI Express lanes split across Gen 5.0 and Gen 4.0 architectures to maximize throughput for expansion cards and high-speed NVMe storage rays.
This tray microchip is deployed within micro-towers, desktop enclosures, industrial standard workstations, and edge infrastructure equipment requiring multi-core execution capabilities. It is fully compatible with motherboard platforms driven by Intel 600 and 700 series chipsets, including Z790, B760, and H610 layouts, though older design footprints require a baseline BIOS update before validation. Do not deploy this specific model in setups running workloads that require integrated motherboard graphics interfaces or multi-socket server scalability, as this variant lacks integrated silicon graphics and operates strictly in single-socket configurations.
Key Features :
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Performance hybrid architecture splits 10 cores into 6P and 4E zones.
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Maximum clock frequency reaches up to 4.7 GHz via Turbo Boost.
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Dual-channel memory controllers link to DDR5 4800 or DDR4 3200 modules.
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Integrated PCIe Gen 5.0 lines provide direct high-speed array links.
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Missing integrated graphics keeps processing thermal footprints controlled.


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