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Intel® Virtualization Technology for Distributed I/O (VT-d) Intel® VT Virtualization Technology for Distributed I/O (VT-d) extends the existing support for Intel® VT Virtualization Technology for IA-32 (VT-x) and Itanium® (VT-i) by adding new support for virtualization of I/O devices. Intel® VT Virtualization Technology for Distributed I/O can help users improve the security and reliability of their systems, as well as the performance of I/O devices in virtualized environments. Intel® Virtualization Technology (VT-X) Intel® VT (VT-x) Virtualization Technology allows a hardware platform to split into multiple virtual platforms. It helps to increase the ease of administration of the park, to limit service interruptions and prevent productivity decreases, by isolating the operations concerned on an ad hoc partition. Intel® 64 The Intel® 64 architecture delivers 64-bit calculations on servers, workstations, PCs and mobile when the platform is combined with compatible software. Intel® Turbo Boost Technology. The Intel® Turbo Boost Technology dynamically increases the CPU frequency as required, by leveraging the thermal and electrical reserve to provide a surplus speed when needed and improved energy efficiency if not. Intel® Hyper-Threading Technology. Intel® Hyper-Threading technology provides two run units per physical core. Multi-process applications can break more parallel work and finish tasks faster. Intel® vPro™ platform eligibility The Intel vPro® platform is a set of hardware and technologies used to build corporate computing endpoints offering premium performance, integrated security, modern management, and a high stability platform. . . Intel® VT-x Virtualization Technology with Extended Page Tables Intel® VT (VT-x) Virtualization Technology with Extended Page Tables, also called SLAT (Second Level Address Translation) speeds up virtualised applications that require high memory. Extended Page Tables on Intel® Virtualization Technology platforms reduces memory and power costs while increasing battery life through hardware optimization of page table management. Intel® Optane™ memory supported. Intel® Optane™ memory is a revolutionary new class of resmanent memory that lies between system memory and storage to speed up system performance and responsiveness. When paired with the Intel® Rapid Storage Technology driver, it seamlessly manages multiple storage levels while presenting a virtual drive to SE, ensuring that the most used data is hosted on the fastest storage level. Intel® Optane™ memory requires specific hardware and software configuration. See for configuration requirements. Improved Intel SpeedStep® Technology Improved Intel SpeedStep® technology is a sophisticated way to enable high performance while meeting the needs of mobile systems in energy conservation. Classic Intel SpeedStep® technology combines voltage and frequency between high and low levels depending on the CPU load. Improved Intel SpeedStep® technology builds on this architecture and uses design strategies such as separation between voltage and frequency changes, and partitioning and clock recovery. Intel® Speed Shift Technologies Intel® Speed Shift Technology uses hardware-controlled P states to significantly speed up responsiveness with single thread transitional (low duration) workloads such as web browsing, allowing the processor to select the best operating frequency and voltage faster allowing for optimal performance and energy efficiency. Extensions to the instruction set. Extension to the instruction set refers to additional instructions to improve performance when the same operations are performed on multiple data objects. These extensions may include SSE (Streaming SIMD Extensions) and AVX (Advanced Vector Extensions). Intel® Turbo Boost Max 3.0 Technology. The Intel® Turbo Boost Max 3.0 technology identifies the most powerful cores on a processor and provides increased performance on this gold by increasing frequency as needed by leveraging the thermal and electrical reserve. Number of FMA AVX-512 units Intel® Advanced Vector Extensions 512 (AVX-512), the new instruction set extensions, offer ultra wide vector operations capabilities (512 bits), with up to 2 FMA (Fused Multiply Add instructions), to speed up the performance of your most demanding computing tasks. Intel® Volume Management Device (VMD). Intel® Volume Management Device (VMD) provides a rugged common method of managing live switching and LEDs from NVMe SSDs. Intel® Transactional Synchronization Extensions - New Instructions. Intel® Transactional Synchronization Extensions New Instructions (the new instructions for Intel® transactional sync extensions) refers to a set of instruction focused on the scaling of multithread performance. This technology improves the efficiency of parallel operations through better control of software locking.
Intel Xeon Processor Gold 6150 Processor (24.75 m cover
Pack Size 76.0 x 56.5. RAID levels 0 786432 Mo
2.70 GHz)
Xeon. Processor family Intel Xeon Gold
CPU Frequency 2.7 GHz
Processor socket LGA 3647. Memory channels supported by the CPU héxa
Internal memory maximum support from the board 768 GB
of memory types supported from the board ddr4-sdram. Thermal (TDP
Thermal Design Power) 165 W
Memory types supported ddr4-sdram, AVX 2.0, avx-512, SSE4.2