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| Technical details | |
| Supported memory types | DDR4 |
| Product type | Processor |
| Processor cache | 25344 KB |
| Status | Discontinued |
| Launch date | Q3'17 |
| Bus type units | GT/s |
| Bus bandwidth | 8 |
| Maximum memory | 128 GB |
| Processor brand name | Intel Core i9 Extreme Edition Intel Core i9 Extreme Edition processor |
| Last change | 63903513 |
| Product family | Intel Core Processors |
| Processor | |
| Processor model | i9-7980XE |
| Processor manufacturer | Intel |
| Processor family | Intel® Core™ i9 X-series Extreme Edition |
| Box | ![]() |
| Processor socket | LGA 2066 (Socket R4) |
| Processor cores | 18 |
| System bus rate | 8 GT/s |
| Processor threads | 36 |
| Processor operating modes | 64-bit |
| Processor boost frequency | 4.2 GHz |
| Component for | PC |
| Processor cache | 24.75 MB |
| Bus type | DMI3 |
| Thermal Design Power (TDP) | 165 W |
| Processor codename | Skylake |
| Processor cache type | Smart Cache |
| Memory bandwidth supported by processor (max) | 85 GB/s |
| Processor ARK ID | 126699 |
| Cooler included | ![]() |
| Memory | |
| ECC | ![]() |
| Memory channels | Quad-channel |
| Maximum internal memory supported by processor | 128 GB |
| Memory types supported by processor | DDR4-SDRAM |
| Memory clock speeds supported by processor | 2666 MHz |
| Operational conditions | |
| Tjunction | 94 °C |
| Packaging data | |
| Package type | Retail box |
| Other features | |
| Maximum internal memory | 128 GB |
| Graphics | |
| On-board 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 64 | ![]() |
| Intel Virtualization Technology for Directed I/O (VT-d) | ![]() |
| Intel Virtualization Technology (VT-x) | ![]() |
| Conflict-Free processor | ![]() |
| Virtual Reality (VR) ready | ![]() |
| Intel Turbo Boost Max Technology 3.0 | ![]() |
| Intel® Optane™ Memory Ready | ![]() |
| Features | |
| Supported instruction sets | SSE4.1,SSE4.2,AVX 2.0,AVX-512 |
| PCI Express slots version | 3.0 |
| Execute Disable Bit | ![]() |
| Scalability | 1S |
| CPU configuration (max) | 1 |
| Embedded options available | ![]() |
| Thermal solution specification | PCG 2017X |
| Maximum number of PCI Express lanes | 44 |
| Market segment | Desktop |
| EAN | 5032037114905 |
| Warranty | 3 years |
| 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.
Enhanced Intel SpeedStep® Technology is an advanced means of enabling high performance while meeting the power-conservation needs of mobile systems. Conventional Intel SpeedStep® Technology switches both voltage and frequency in tandem between high and low levels in response to processor load. Enhanced Intel SpeedStep® Technology builds upon that architecture using design strategies such as Separation between Voltage and Frequency Changes, and Clock Partitioning and Recovery.
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.
Enhanced Intel SpeedStep® Technology is an advanced means of enabling high performance while meeting the power-conservation needs of mobile systems. Conventional Intel SpeedStep® Technology switches both voltage and frequency in tandem between high and low levels in response to processor load. Enhanced Intel SpeedStep® Technology builds upon that architecture using design strategies such as Separation between Voltage and Frequency Changes, and Clock Partitioning and Recovery.
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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The above technical details are for reference only and may change without notice. We reserve the right to correct printing errors and use illustrations for guidance. Some text may be auto-generated or machine-translated, which could lead to inaccuracies.


