AMD YD292XA8AFWOF 12 Core/24 Threads Ryzen Threadripper 2920X Processor
AMD (0730143309417 / YD292XA8AFWOF) - Cache: 32 MB - L2 cache: 6 MB - AMD - Twelve Core - Socket TR4 - AMD Ryzen Threadripper - CPU - CPU Speed: 3.5 GHz - Turbo speed: 4
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AMD Ryzen Threadripper 2920X Processor
Core Architecture and Performance
The Ryzen Threadripper 2920X is built on AMD’s second‑generation Zen+ microarchitecture, fabricated with a cutting‑edge 12 nm process. It features 12 physical cores and 24 threads, delivering exceptional parallel processing capabilities for demanding workloads such as 3D rendering, video encoding, scientific simulations, and high‑end content creation.
With a base clock of 3.5 GHz and a boost frequency that can reach up to 4.3 GHz, each core maintains strong single‑thread performance while the multi‑core throughput remains consistently high. The processor’s TDP of 180 W reflects its power envelope, requiring robust cooling solutions for sustained operation.
Cache Hierarchy and Memory Support
The CPU incorporates a total of 32 MB L3 cache, complemented by 6 MB L2 cache (distributed as 12 × 512 kB per core). The large L3 cache reduces memory latency for multi‑threaded tasks, ensuring that data is readily available to all cores.
Memory support is provided through a quad‑channel DDR4 controller, capable of operating at speeds up to 2933 MHz. This configuration allows for high bandwidth and low latency memory access, essential for memory‑intensive applications such as large database processing or real‑time analytics.
Socket and Platform Compatibility
The processor is designed for the Socket TR4 (sTR4), a platform that supports PCIe 3.0 lanes and offers extensive expansion options. The socket’s architecture allows for multiple GPUs, high‑speed storage devices, and other peripherals to be connected simultaneously.
Because the Threadripper family is targeted at desktop workstations, the 2920X can be paired with motherboards that provide robust power delivery, ample I/O connectivity, and support for advanced cooling solutions. The processor itself does not include an integrated GPU or a stock cooler; users must install a dedicated cooling system to maintain optimal operating temperatures.
Thermal Design Power (TDP) and Cooling Considerations
The TDP of 180 W indicates the maximum thermal output under full load. To keep the CPU within safe temperature limits, it is recommended to use a high‑performance air cooler or liquid cooling system rated for at least 200 W. Proper airflow in the chassis and adequate heat sink design are critical for maintaining stability during prolonged heavy workloads.
Key Features Summary
- 12 cores / 24 threads
- Base frequency: 3.5 GHz; Boost up to 4.3 GHz
- Cache: 32 MB L3, 6 MB L2
- Memory: Quad‑channel DDR4, 2933 MHz max
- Socket: TR4 (sTR4)
- TDP: 180 W
- Process technology: 12 nm Zen+
- No integrated graphics; requires discrete GPU
- Cooling not included; user must supply a suitable cooler
Ideal Use Cases
The Ryzen Threadripper 2920X excels in environments where multi‑core performance is paramount. Typical scenarios include:
- Professional content creation: Video editing, 3D modeling, and animation pipelines benefit from the processor’s high core count.
- Software development and testing: Compiling large codebases or running multiple virtual machines simultaneously is accelerated by the abundant threads.
- Scientific computing: Numerical simulations, data analysis, and machine learning workloads can leverage the parallel architecture for faster results.
- High‑end gaming workstations: While not a gaming CPU per se, its strong single‑thread performance combined with powerful GPUs makes it suitable for future‑proof gaming rigs that also handle content creation tasks.
Conclusion
The AMD Ryzen Threadripper 2920X Processor represents a powerful blend of core density, clock speed, and memory bandwidth. Its architecture is tailored for professionals who demand uncompromised performance across a wide range of compute‑intensive applications. By pairing it with a compatible TR4 motherboard, adequate cooling, and high‑speed DDR4 memory, users can build a workstation that delivers both raw power and reliability.
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- Processors for computers |
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| Tags | MB L3 AMD YD292XA8AFWOF 3.5 GHz AMD Ryzen Threadripper 2 AMD Ryzen Threadripper 2920X 2920X Processor 24 Threads Ryzen |
| Identifiers | |
| Brand | ![]() AMD is a computer processor manufacturer that was founded in 1969. The company produces a wide range of processors for both personal and business use, and is a major competitor to Intel. AMD is also a major supplier of graphics processors for gaming and professional use. |
| Model | AMD YD292XA8AFWOF |
| MPN | AMD YD292XA8AFWOF |
| ID | 10606933 |
| Dimensions / Weight | |
| Key Features | |
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Cache The amount of internal memory reserved for a processor’s cache, expressed in units such as megabytes (MB) or gigabytes (GB). This value indicates how much data the CPU can store locally to accelerate access and improve performance.
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32 MB |
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Component for Specifies the type of device or system that the product is intended to be used with, such as a PC, server, notebook, surveillance system, or other electronic equipment. The value represents a single category and can be used to filter or group products by their target platform.
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PC |
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CPU Brand The company that designs and produces the central processing unit (CPU) used in a device. This value identifies the brand of the processor, such as Intel, AMD, Qualcomm, or ARM Holdings, allowing users to assess compatibility, performance expectations, and support resources.
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AMD |
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CPU Cores The total count of physical processing units (cores) present in a central processing unit (CPU). This integer value indicates how many independent execution threads the CPU can handle simultaneously, influencing multitasking performance and computational throughput.
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Twelve Core |
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CPU Socket The physical connector used by a processor to attach to a motherboard or other compatible platform, such as LGA 1151, BGA 1440, Socket AM4, or LGA 1200. This attribute indicates the exact socket designation required for proper CPU installation and compatibility with other hardware components.
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Socket TR4 |
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CPU Speed The maximum operating frequency of a central processing unit (CPU), expressed in hertz (Hz). This value indicates how many cycles per second the CPU can execute under normal conditions and is useful for comparing performance potential across different models.
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3.5 GHz |
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CPU Threads The total number of independent execution units (threads) that a CPU can handle simultaneously. This value indicates how many parallel tasks the processor can process at once, affecting multitasking performance and workload distribution.
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24 |
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CPU Type The specific name or designation of the central processing unit installed in a device, such as "Intel Core i5-11400" or "AMD Ryzen 7 5800X." It identifies the exact processor variant and helps users compare performance, compatibility, and features across products.
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AMD Ryzen Threadripper |
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Form factor Specifies the physical configuration or design of a product, such as ATX, Micro‑ATX, Mini‑ITX, tower, case with cover, etc. It describes how the device is built and what mounting or expansion options it supports.
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CPU |
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Harmonized System HS code The Harmonized System (HS) code is a standardized numerical identifier used internationally to classify traded goods. It consists of up to six digits, where each pair of digits represents progressively more specific product categories. The HS code facilitates customs duties, trade statistics, and regulatory compliance by providing a common language for describing products across borders.
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85423119 |
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Integrated Graphics Indicates whether a device includes an integrated graphics processor, and if so, provides the model or resolution it supports. Typical values are "Yes" or "No", but may also include specific GPU models (e.g., "Intel UHD Graphics 620") or screen resolutions (e.g., "1920x1080"). This attribute helps users determine whether a device can render graphics without a discrete GPU and what performance level to expect.
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No |
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L1 Cache The amount of internal memory reserved for a processor’s L1 cache, expressed in units such as kilobytes (KB), megabytes (MB) or gigabytes (GB). This value indicates how much data the CPU can store locally to accelerate access and improve performance.
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1152 KB |
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L2 cache The amount of internal memory reserved for a processor’s L2 cache, expressed as a pair of values: the number of banks and the capacity per bank (e.g., "4 x 256 KB"). This format allows specification of both the count of cache banks and the capacity of each bank, which together determine the total L2 cache available to the CPU.
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6 MB |
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Market segment The target market segment for a product, such as "Business", "Home", or "Small‑medium business". This attribute helps customers quickly identify the intended user group and typical use case of the item.
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Desktop |
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Memory channels The configuration of memory channels supported by a device, indicating how many independent memory paths the system can use for data transfer (e.g., Dual‑channel, Quad‑channel). This attribute helps users understand the potential bandwidth and performance characteristics of the memory subsystem.
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Quad-channel |
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Memory clock speeds supported by processor A list of the operating frequencies that a processor can run at, expressed in hertz (Hz). The values are typically given as MHz or GHz and may include multiple speeds separated by commas to indicate base, boost, or other supported clock rates. This attribute helps users compare the performance potential of different CPUs and understand the range of speeds they can achieve under various workloads.
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2933 MHz |
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Number of cores The total count of processing cores present in a CPU or GPU. This value indicates how many independent execution units are available for parallel processing, which can affect performance and multitasking capability.
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12 |
| PCI Express slots version | 3 |
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Processor boost frequency The highest clock speed a processor can reach when its turbo or boost feature is active, expressed in hertz (Hz). This value indicates the peak performance capability of the CPU under load and helps users compare how fast a processor can run beyond its base clock speed.
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4.3 GHz |
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Processor number The unique model designation of a computer processor, such as "8250U" or "i7-1165G7". It identifies the specific CPU used in a device and can be compared across products to infer performance, generation, and compatibility.
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2920X |
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Processor operating modes The set of instruction set architectures or execution modes that a processor can operate in, such as 32‑bit or 64‑bit. This attribute lists the supported modes for the CPU and helps users determine compatibility with software that requires a specific bitness.
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64-bit |
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Thermal design power The maximum amount of power, expressed in watts (W), that a processor or other electronic component is designed to dissipate as heat under typical operating conditions. It represents the thermal load the cooling system must handle and is used by manufacturers and users to assess performance, energy consumption, and suitability for specific environments.
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180 W |
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Warranty The length of time for which the manufacturer guarantees that the product will be free from defects in materials and workmanship, typically expressed in years or months.
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1 Year |




