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Intel Product ID: CM8071505094017
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Intel Core i9-14900K. Processorfamilie: Intel® Core™ i9, Processor socket: LGA 1700, Type verpakking: Lade. Geheugen kanaal: Dubbelkanaals, Maximaal intern geheugen ondersteund door processor: 192 GB, Geheugentypen ondersteund door processor: DDR4-SDRAM, DDR5-SDRAM. On-board graphics adapter model: Intel UHD Graphics 770, On-board ondersteunde grafische adapter uitgangen: Embedded DisplayPort (eDP) 1.4b, DisplayPort 1.4a, HDMI 2.1, Basisfrequentie ingebouwde grafische adapter: 300 MHz. Marktsegment: Desktop, Gebruiksvoorwaarden: Workstation, PC/Client/Tablet, PCI Express slots versie: 4.0, 5.0. Intel® Turbo Boost Max Technology 3.0 frequency: 5,8 GHz, Intel® Thermal Velocity Boost Frequency: 6 GHz
| Specificatie | Waarde |
|---|---|
| Processor | |
| Processorfabrikant | Intel |
| Processorgeneratie | Intel Core i9-14xxx |
| Processormodel | i9-14900K |
| Processorfamilie | Intel® Core™ i9 |
| Aantal processorkernen | 24 |
| Processor socket | LGA 1700 |
| Processor aantal threads | 32 |
| Processor operating modes | 64-bit |
| Prestatiekernen | 8 |
| Efficiënte kernen | 16 |
| Maximale turbofrequentie van processor | 6 GHz |
| Prestatie-kernboostfrequentie | 5,6 GHz |
| Prestatie-kernbasisfrequentie | 3,2 GHz |
| Efficiënte kernboostfrequentie | 4,4 GHz |
| Efficiënte kernbasisfrequentie | 2,4 GHz |
| Processor cache | 36 MB |
| Processor cache type | Smart Cache |
| Type verpakking | Lade |
| Processor basisvermogen | 125 W |
| Maximaal turbovermogen | 253 W |
| Stepping | B0 |
| Maximum aantal DMI lanes | 8 |
| Geheugenbandbreedte ondersteund door de processor ( max) | 89,6 GB/s |
| Codenaam processor | Raptor Lake |
| ARK ID processor | 236773 |
| Geheugen | |
| Maximaal intern geheugen ondersteund door processor | 192 GB |
| Geheugentypen ondersteund door processor | DDR4-SDRAM, DDR5-SDRAM |
| Geheugen kanaal | Dubbelkanaals |
| ECC | Ja |
| Geheugen bandbreedte (max) | 89,6 GB/s |
| Grafisch | |
| Ingebouwde grafische adapter | Ja |
| Aparte grafische adapter | Nee |
| On-board graphics adapter model | Intel UHD Graphics 770 |
| On-board ondersteunde grafische adapter uitgangen | Embedded DisplayPort (eDP) 1.4b, DisplayPort 1.4a, HDMI 2.1 |
| Basisfrequentie ingebouwde grafische adapter | 300 MHz |
| Graphics on-board -adapter dynamische frequentie (max) | 1650 MHz |
| Aantal displays ondersteund (door on-board grafische adapter) | 4 |
| On-board grafische adapter DirectX-versie | 12.0 |
| On-board grafische adapter OpenGL versie | 4.5 |
| Graphics aan boord maximale resolutie adapter (DisplayPort ) | 7680 x 4320 Pixels |
| Maximale resolutie (eDP - Integrated Flat Panel) | 5120 x 3200 Pixels |
| Maximale resolutie ingebouwde grafische adapter (HDMI) | 4096 x 2160 Pixels |
| Grafische adapter refresh rate on-board bij maximale resolutie (DisplayPort ) | 60 Hz |
| Refresh rate op maximale resolutie (eDP - Integrated Flat Panel) | 120 Hz |
| Verversingsfrequentie ingebouwde grafische adapter bij maximale resolutie (HDMI) | 60 Hz |
| On-board grafische adapter ID | 0xA780 |
| Discreet grafische adapter model | Niet beschikbaar |
| Aantal verwerkingseenheden | 32 |
| Multi-Formaat Codec-motoren | 2 |
| Kenmerken | |
| Execute Disable Bit | Ja |
| Idle States | Ja |
| Thermal Monitoring Technologies | Ja |
| Marktsegment | Desktop |
| Gebruiksvoorwaarden | Workstation, PC/Client/Tablet |
| Maximaal aantal PCI Express-lijnen | 20 |
| PCI Express slots versie | 4.0, 5.0 |
| PCI Express configuraties | 1x16+1x4, 2x8+1x4 |
| Ondersteunde instructie sets | AVX 2.0, SSE4.1, SSE4.2 |
| Schaalbaarheid | 1S |
| CPU configuratie (max) | 1 |
| Ingebouwde opties beschikbaar | Nee |
| Thermal solution specificatie | PCG 2020A |
| Directe media-interface (DMI) revisie | 4.0 |
| Export Control Classification Number (ECCN) | 5A992C |
| Commodity Classification Automated Tracking System (CCATS) | 740.17B1 |
| Processor speciale functies | |
| Intel® Hyper Threading Technology (Intel® HT Technology) | Ja |
| Intel® Turbo Boost Technology | 2.0 |
| Intel® Quick Sync Video Technology | Ja |
| Intel® Clear Video HD Technology (Intel® CVT HD) | Ja |
| Intel® AES New Instructions (Intel® AES-NI) | Ja |
| Enhanced Intel SpeedStep Technology | Ja |
| Intel® Speed Shift-technologie | Ja |
| Intel® Thermal Velocity Boost | Ja |
| Intel® Adaptive Boost-technologie | Ja |
| Intel® Turbo Boost Max Technology 3.0 frequency | 5,8 GHz |
| Intel® Gaussian & Neural Accelerator (Intel® GNA) 3.0 | Ja |
| Intel® Thermal Velocity Boost Frequency | 6 GHz |
| Intel® Control-flow Enforcement Technology (CET) | Ja |
| Intel® Thread Director | Ja |
| Intel® VT-x with Extended Page Tables (EPT) | Ja |
| Intel® Secure Key | Ja |
| Intel® OS Guard | Ja |
| Intel® 64 | Ja |
| Intel® Virtualization Technology (VT-x) | Ja |
| Intel® Virtualization Technology for Directed I/O (VT-d) | Ja |
| Intel® Turbo Boost Max Technology 3.0 | Ja |
| Intel® Boot Guard | Ja |
| Intel® Deep Learning Boost (Intel® DL Boost) on CPU | Ja |
| Intel® Volume Management Device (VMD) | Ja |
| Mode-based Execute Control (MBE) | Ja |
| Intel® Standard Manageability (ISM, Standaard beheerbaarheid) | Ja |
| Eisen aan de omgeving | |
| Tjunction | 100 °C |
| Technische details | |
| OpenCL-versie | 3.0 |
| Lanceringsdatum | Q4'23 |
| Status | Launched |
| Logistieke gegevens | |
| Code geharmoniseerd systeem (HS) | 8542310001 |
| Gewicht en omvang | |
| Verpakkingsgrootte processor | 45 x 37.5 mm |
| Overige specificaties | |
| L2 cache | 32768 KB |
| Maximum intern geheugen | 192 GB |
| Grafische uitvoer | eDP 1.4b, DP 1.4a, HDMI 2.1 |
The CPU, often described as the computer's brain, processes instructions, stores data, and delivers output. Its role in overall system performance, though not as dominant as before, remains crucial for the device's responsiveness and speed. Essentially, without a CPU, a computer cannot function.
A CPU, made up of logic gates, executes low-level instructions essential for basic operations and directing commands within the system. It's the core of a computer's integrated circuitry, managing logic, arithmetic, and input/output operations.
Modern CPUs are multi-core, incorporating multiple processing units within a single chip to lower power use, boost performance, and allow for the simultaneous processing of tasks, enhancing parallel processing capabilities.
CPU computing plays a critical role in various industries and research fields. Some of the key applications include:
Which CPU Should You Choose
Both Intel and AMD offer high-performance CPUs suitable for enterprise applications. Intel's CPUs have traditionally been favored for their single-threaded performance and efficiency, making them ideal for certain workloads such as virtualization and database management. On the other hand, AMD's CPUs often offer more cores and threads for parallel processing, making them well-suited for tasks like data analytics and content creation.
For further consultation, reach out to one of our professionals to make an informed decision.


CPUs and GPUs each bring unique strengths to AI projects, tailored to different types of tasks. The CPU, serving as the computer's central command, manages core speeds and system operations. It excels at executing complex mathematical calculations sequentially, but its performance may dip under heavy multitasking.
For AI, CPUs fit specific niches, excelling in tasks that require sequential processing or lack parallelism. Suitable applications include:
High Performance Computing (HPC) utilizes technologies for large-scale, parallel computing. Modern HPC systems increasingly incorporate GPUs alongside traditional CPUs, often combining them within the same server for enhanced performance.
These HPC systems employ a dual root PCIe bus design to efficiently manage memory across numerous processors. This setup features two main processors each with its own memory zone, dividing the PCIe slots (often used for GPUs) between them for balanced access.
Key to this architecture are three types of fast data connections:
This dual-root PCIe configuration optimizes both CPU and GPU memory usage, catering to applications that demand both parallel and sequential processing capabilities.
GIGABYTE
NVIDIA HGX™ H100 with 8 x SXM5 GPUs
900GB/s GPU-to-GPU bandwidth with NVLink® and NVSwitch™
5th/4th Gen Intel® Xeon® Scalable Processors
Intel® Xeon® CPU Max Series

While the majority of AI applications today leverage the parallel processing prowess of GPUs for efficiency, CPUs remain valuable for certain sequential or algorithm-intensive AI tasks. This makes CPUs an essential tool for data scientists who prioritize specific computational approaches in AI development.
For machine learning and AI applications, the Intel® Xeon® and AMD Epic™ CPUs are recommended for their reliability, ability to support the necessary PCI-Express lanes for multiple GPUs, and superior memory performance in the CPU domain, making them ideal choices for demanding computational tasks.


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