Technical details | |
Supported memory types | DDR4 |
Product type | Processor |
Processor cache | 30976 KB |
Status | Launched |
Launch date | Q3'17 |
Maximum memory | 768 GB |
Processor brand name | Intel Xeon Gold Intel Xeon Gold Processor |
Last change | 63903513 |
Product family | Intel Xeon Processors |
Intel® Speed Shift Technology version | 1.00 |
Memory speed (max) | 2666 MHz |
Mode-based Execute Control (MBE) version | 1.00 |
Intel® Run Sure Technology version | 1.00 |
Number of UPI links | 3 |
1.00 | |
Processor | |
Processor model | 6152 |
Processor manufacturer | Intel |
Processor lithography | 14 nm |
Processor family | Intel Xeon |
Box | ![]() |
Processor socket | P |
Stepping | H0 |
Processor cores | 22 |
Processor code | SR3B4 |
Processor threads | 44 |
Processor operating modes | 64-bit |
Processor boost frequency | 3.7 GHz |
Component for | Server/workstation |
Processor cache | 30.25 MB |
Thermal Design Power (TDP) | 140 W |
Processor codename | Skylake |
Processor cache type | L3 |
Processor ARK ID | 120491 |
Cooler included | ![]() |
Processor base frequency | 2.1 GHz |
Processor generation | 1st Generation Intel® Xeon® Scalable |
Memory | |
ECC | ![]() |
Memory channels | Hexa-channel |
Maximum internal memory supported by processor | 768 GB |
Memory types supported by processor | DDR4-SDRAM |
Memory clock speeds supported by processor | 2666 MHz |
Weight & dimensions | |
Processor package size | 76mm x 56.5mm |
Operational conditions | |
Tcase | 92 °C |
Packaging data | |
Package type | Retail box |
Other features | |
Maximum internal memory | 768 GB |
Graphics | |
On-board graphics card model | Not available |
Discrete graphics card model | Not available |
On-board graphics card | ![]() |
Discrete graphics card | ![]() |
Processor special features | |
Intel® Hyper Threading Technology (Intel® HT Technology) | ![]() |
Intel® Turbo Boost Technology | 2.0 |
Intel® AES New Instructions (Intel® AES-NI) | ![]() |
Enhanced Intel SpeedStep Technology | ![]() |
Intel Trusted Execution Technology | ![]() |
Intel VT-x with Extended Page Tables (EPT) | ![]() |
Intel TSX-NI | ![]() |
Intel 64 | ![]() |
Intel Virtualization Technology for Directed I/O (VT-d) | ![]() |
Intel Virtualization Technology (VT-x) | ![]() |
Intel TSX-NI version | 1.00 |
Conflict-Free processor | ![]() |
Intel Turbo Boost Max Technology 3.0 | ![]() |
Intel® Optane™ Memory Ready | ![]() |
Intel® Speed Shift Technology | ![]() |
2 | |
Intel® Run Sure Technology | ![]() |
Intel® vPro™ Platform Eligibility | ![]() |
Mode-based Execute Control (MBE) | ![]() |
Intel® Volume Management Device (VMD) | ![]() |
Intel® Transactional Synchronization Extensions | ![]() |
Features | |
Supported instruction sets | SSE4.2, AVX, AVX 2.0, AVX-512 |
PCI Express slots version | 3.0 |
Execute Disable Bit | ![]() |
Scalability | S4S |
Embedded options available | ![]() |
Maximum number of PCI Express lanes | 48 |
Market segment | Server |
Export Control Classification Number (ECCN) | 5A992C |
Commodity Classification Automated Tracking System (CCATS) | G077159 |
PCI Express CEM revision | 3.0 |
Logistics data | |
Harmonized System (HS) code | 85423119 |
EAN | 5032037101776 |
Warranty | 1 year |
Source: Icecat.biz |
Intel® AES New Instructions (Intel® AES-NI) are a set of instructions that enable fast and secure data encryption and decryption. AES-NI are valuable for a wide range of cryptographic applications, for example: applications that perform bulk encryption/decryption, authentication, random number generation, and authenticated encryption.
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. It enables an environment where applications can run within their own space, protected from all other software on the system.
Intel® Virtualization Technology (VT-x) allows one hardware platform to function as multiple “virtual” platforms. It offers improved manageability by limiting downtime and maintaining productivity by isolating computing activities into separate partitions.
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