Intel Core i5-12600K 12th Gen Alder Lake 10-Core 3.7 GHz (4.9 Turbo) LGA 1700 Desktop Processor
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Intel Core i5-12400F Alder Lake CPU LGA 1700 2.5 GHz 6-Core 65W 18MB Cache Desktop Processor
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Intel Core i3-13100F 3.4GHz 4 Core LGA1700 OEM/Tray Processor
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Intel Core i7-12700K 3.6GHz 12 Cores LGA 1700 OEM/Tray Processor
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AMD Ryzen 5 5600G Wraith Stealth Cooler Zen 3 3.9GHZ 16MB L3 Desktop Processor Boxed
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Intel Core i7-12700F 4.9GHz Alder Lake CPU LGA1700 Desktop Processor Boxed
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AMD Ryzen 5 5600X 3.7GHz 32MB L3 AM4 CPU Desktop Processor Boxed
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Intel Core i5-11400 2.6GHz Rocket Lake 12MB Smart Cache Desktop Processor Boxed
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AMD Ryzen 3 4100 3.8GHZ 4 Core L3 Desktop Processor Boxed
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Intel Core i7-13700F 2.1GHz 16 Core LGA 1700 Desktop Processor OEM/Tray
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Intel Core i7-12700 2.1GHz 12 Cores LGA 1700 OEM/Tray Processor
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Intel Celeron G6900 3.4GHz Dual Core LGA 1700 CPU Desktop Processor (Alder Lake)
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Intel Core i7-9700 Coffee Lake 3GHz 12MB Cache Desktop Processor OEM/Tray Version
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Intel Core i5-12500 Alder Lake CPU LGA 1700 3.0 GHz 6-Core 18MB Cache Desktop Processor
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AMD Ryzen 5 5500 3.6GHz 6-Core AM4 Desktop Processor with Wraith Stealth Cooler
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Hyper-Threading Technology (HT Technology)
Today's Intel® Hyper-Threading Technology (Intel® HT Technology) delivers thread-level parallelism on each processor resulting in more efficient use of processor resources—higher processing throughput—and improved performance on the multi-threaded software of today and tomorrow.
Intel® Virtualization Technology (Intel® VT)
Increasing manageability, security, and flexibility in IT environments, virtualization technologies like hardware-assisted Intel® Virtualization Technology (Intel® VT) combined with software-based virtualization solutions provide maximum system utilization by consolidating multiple environments into a single server or PC. By abstracting the software away from the underlying hardware, a world of new usage models opens up that reduce costs, increase management efficiency, strengthen security, while making your computing infrastructure more resilient in the event of a disaster.
Intel® Virtualization Technology (Intel® VT) for Directed I/O (Intel® VT-d)
Intel® Virtualization Technology for Directed I/O (VT-d) extends Intel's Virtualization Technology (VT) roadmap by providing hardware assists for virtualization solution. VT-d continues from the existing support for IA-32 (VT-x) and Itanium® processor (VT-i) virtualization adding new support for I/O-device virtualization. Intel VT-d can help end users improve security and reliability of the systems and also improve performance of I/O devices in virtualized environment. These inherently helps IT managers reduce the overall total cost of ownership by reducing potential down time and increasing productive throughput by better utilization of the data center resources.
Intel® Trusted Execution Technology (Intel® TXT)
Intel® Trusted Execution Technology for safer computing is a versatile set of hardware extensions to Intel® processors and chipsets that enhance the digital office platform with security capabilities such as measured launch and protected execution. Intel Trusted Execution Technology provides hardware-based mechanisms that help protect against software-based attacks and protects the confidentiality and integrity of data stored or created on the client PC. It does this by enabling an environment where applications can run within their own space, protected from all other software on the system. These capabilities provide the protection mechanisms, rooted in hardware, that are necessary to provide trust in the application's execution environment. In turn, this can help to protect vital data and processes from being compromised by malicious software running on the platform.
Intel® 64 Architecture
Intel® 64 architecture delivers 64-bit computing on server, workstation, desktop and mobile platforms when combined with supporting software.¹ Intel 64 architecture improves performance by allowing systems to address more than 4 GB of both virtual and physical memory.
Intel® Fast Memory Access (Intel® FMA)
Intel® Fast Memory Access is an updated Graphics Memory Controller Hub (GMCH) backbone architecture that improves system performance by optimizing the use of available memory bandwidth and reducing the latency of the memory accesses.
| SERIES | Intel Xeon E3-1200 |
| CPU SOCKET | LGA 1155 (Socket H2) |
| NUMBER OF CORES | 4 |
| BOOST FREQUENCY | 3.8GHz |
| CORE NAME | Sandy Bridge |
| NUMBER OF THREADS | 8 |
| CACHE | 8MB Smart Cache |
| MANUFACTURING PROCESS | 32nm |
| INTEGRATED GRAPHICS TYPE | Intel HD Graphics P3000 |
| INTEGRATED GRAPHICS SPEED | 850MHz |
| MEMORY TYPES SUPPORTED | DDR3-SDRAM |
| MAXIMUM PCI EXPRESS LANES | 20 |
| MAX MEMORY SUPPORTED | 32GB |
| PCI-E VERSION SUPPORTED | 2.0 |