The Intel® Optane memory is the next generation of non-volatile memory that sits in between system memory and storage to enhance system performance and responsiveness.
Together with the Intel® Rapid Storage Technology Driver, it seamlessly manages multiple tiers of storage while presenting a single virtual drive to the operating system, ensuring that important data is stored on the fastest tier of storage.
There are specific hardware and software requirements for Intel® Optane memory.
By taking advantage of the processor's thermal and power headroom, Intel® Turbo Boost Technology increases the processor's frequency dynamically when needed, giving you enhanced performance when you need it, and increased efficiency when you don't.
The Intel® Hyper-Threading Technology (Intel® HT Technology) provides two threads for each physical core. High-threaded applications can perform more tasks in parallel, completing tasks faster.
One hardware platform can be used as multiple "virtual" platforms with Intel® Virtualization Technology (VT-x). In addition to improving manageability, it increases productivity by separating computing activities into separate partitions.
It includes continued support for IA-32 (VT-x) and Itanium® processor (VT-i) virtualization as well as support for I/O devices. VT-d can help end users improve the security and reliability of their systems, as well as improve I/O performance in virtualized environments.
Second-level address translation (SLAT), also known as Intel® VT-x with Extended Page Tables (EPT), provides acceleration for memory-intensive virtualized applications.
Through hardware optimization of page table management, Intel® Virtualization Technology platforms reduce memory and power overhead costs and maximize battery life.
The Intel 64 architecture offers 64-bit computing on server, workstation, desktop and mobile platforms with the right software.
Intel 64 architecture improves performance by allowing systems to address more than 4 GB of virtual and physical memory.
An instruction set refers to the basic set of commands and instructions that a microprocessor understands and can carry out. The value shown represents which Intel’s instruction set this processor is compatible with.
Instruction Set Extensions are additional instructions which can increase performance when the same operations are performed on multiple data objects. These can include SSE (Streaming SIMD Extensions) and AVX (Advanced Vector Extensions).
Intel® Advanced Vector Extensions 512 (AVX-512), new instruction set extensions, delivering ultra-wide (512-bit) vector operations capabilities, with up to 2 FMAs (Fused Multiply Add instructions), to accelerate performance for your most demanding computational tasks.
Intel® Speed Shift Technology uses hardware-controlled P-states to deliver dramatically quicker responsiveness with single-threaded, transient (short duration) workloads, such as web browsing, by allowing the processor to more quickly select its best operating frequency and voltage for optimal performance and power efficiency.
A new set of embedded processor technologies designed to accelerate AI deep learning use cases. It extends Intel AVX-512 with a new Vector Neural Network Instruction (VNNI) that significantly increases deep learning inference performance over previous generations.
A capability to configure the processor to run at three distinct operating points.
Intel® RDT brings new levels of visibility and control over how shared resources such as last-level cache (LLC) and memory bandwidth are used by applications, virtual machines (VMs) and containers.
Intel® Volume Management Device (VMD) provides a common, robust method of hot plug and LED management for NVMe-based solid state drives.
| Processor family | Intel Xeon Platinum |
| Processor cores | 36 |
| Processor socket | LGA 4189 |
| Component for | Server/Workstation |
| Processor lithography | 10 nm |
| Processor model | 8360Y |
| Processor threads | 72 |
| Processor operating modes | 64-bit |
| Processor cache | 54 MB |
| Box | |
| Cooler included | |
| Processor codename | Ice Lake |
| Processor boost frequency | 3.5 GHz |
| Processor ARK ID | 212459 |
| Maximum internal memory supported by processor | 6144 GB |
| Memory types supported by processor | DDR4-SDRAM |
| Memory clock speeds supported by processor | 3200 MHz |
| Memory channels | Octa-channel |
| ECC |
| On-board graphics adapter | |
| Discrete graphics adapter | |
| On-board graphics adapter model | Not available |
| Discrete graphics adapter model | Not available |
| Thermal Design Power (TDP) | 250 W |
| Execute Disable Bit | |
| Maximum number of PCI Express lanes | 64 |
| PCI Express slots version | 4.0 |
| Supported instruction sets | SSE4.2, AVX, AVX 2.0, AVX-512 |
| Embedded options available | |
| Scalability | 2S |
| Intel® Hyper Threading Technology (Intel® HT Technology) | |
| Intel® AES New Instructions (Intel® AES-NI) | |
| Intel® Turbo Boost Technology | 2.0 |
| Intel® Speed Shift Technology | |
| Intel Trusted Execution Technology | |
| Intel VT-x with Extended Page Tables (EPT) | |
| Intel 64 | |
| Intel Software Guard Extensions (Intel SGX) | |
| Intel Virtualization Technology (VT-x) | |
| Intel® Resource Director Technology (Intel® RDT) | Y |
| Intel Virtualization Technology for Directed I/O (VT-d) | |
| Intel® Volume Management Device (VMD) | |
| Intel® Optane™ Memory Ready | |
| Intel® Deep Learning Boost (Intel® DL Boost) | |
| Intel® Run Sure Technology | Y |
| AVX-512 Fused Multiply-Add (FMA) units | 2 |
| Intel® Speed Select technology - Performance Profile | |
| Mode-based Execute Control (MBE) | Y |
| Tcase | 80 °C |
| Processor package size | 77.5 x 56.5 mm |
| Y | |
| Y | |
| Intel | |
| 2.4 |
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