AMD 100-000000339 EPYC 7313P معالج خادم سداسي عشر النواة (16 نواة) بتردد 3.0GHz، 128MB ذاكرة تخزين مؤقت L3، قابس SP3

Exploded view of AMD EPYC 7313P processor showing the heatspreader and processor die architecture-alternate-image1
AMD EPYC processor mounted in SP3 socket showing secure installation mechanism-alternate-image2

AMD 100-000000339 EPYC 7313P معالج خادم سداسي عشر النواة (16 نواة) بتردد 3.0GHz، 128MB ذاكرة تخزين مؤقت L3، قابس SP3

AMD 100-000000339

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ميزات مفتاح المنتج

  • معالج Hexadeca-core (16 Core) بسرعة 3 غيغاهرتز
  • ذاكرة كاش L3 بسعة 128 ميجابايت لتحسين الأداء
  • قدرة تصميم حراري بقوة 155 وات لاستهلاك طاقة كفء
  • مقبس SP3 لسهولة التركيب
  • يدعم حتى 32 خيط معالج لإمكانيات التعددية
  • سرعة كسر السرعة تصل إلى 3.70 غيغاهرتز لأداء محسن
  • مصنع من قبل AMD، علامة تجارية موثوقة في الصناعة
$864.21
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AMD

100-000000339

AMD EPYC 7313P 16-Core Server Processor with 128MB L3 Cache

Experience exceptional server performance with the AMD EPYC 7313P, a powerful hexadeca-core processor designed for modern data centers and enterprise computing needs. This Socket SP3 processor delivers robust performance with its 3.0GHz base clock speed, impressive 128MB L3 cache, and support for 32 concurrent threads.

Key Features

  • 16 high-performance cores with 32 threads for superior multitasking
  • 3.0GHz base clock speed with boost capability up to 3.70GHz
  • Massive 128MB L3 cache for enhanced data access
  • Socket SP3 compatibility for enterprise server platforms
  • 155W TDP for efficient power consumption

Advanced Processing Architecture

The EPYC 7313P processor, part of AMD's 7003 series, features a sophisticated hexadeca-core architecture that delivers exceptional performance for demanding server workloads. With 32 processing threads and a substantial 128MB L3 cache, this processor excels in data-intensive applications and virtualized environments.

Performance Specifications

Specification Detail
Base Clock Speed 3.0 GHz
Maximum Boost Speed 3.70 GHz
Total Cores/Threads 16 Cores / 32 Threads
Cache Size 128MB L3 Cache
TDP 155W

Enterprise-Grade Reliability

Designed for enterprise servers and data centers, the EPYC 7313P processor delivers the performance, dependability, and security features that modern IT infrastructure demands. Its Socket SP3 design ensures compatibility with enterprise-grade server platforms while maintaining a balanced 155W TDP for efficient operation.

منتجات خادم EPYC™ سواء كنت تقوم بنشر المعدن العاري أو الافتراضي أو في السحابة، فإن معالج AMD EPYC يوفر تكنولوجيا معلومات سريعة واستجابة وآمنة. منتجات EPYC™ المدمجة تقدم للعملاء الأداء والاعتمادية والأمان بالإضافة إلى الديمومة التي يتطلبها العملاء المدمجون.

Return Policy

Time to Return

Standard Return Policy

We offer a hassle-free 30-day returns policy for domestic (US) orders, excluding non-refundable items. Refund or Replacement within 30 days of the delivery date. All products that fall under the Standard Return Policy qualify for our 30-Day Hassle-Free Returns. Please see the section above for more details.

Replacement Only Return Policy

Replacement within 30 days of the delivery date.

Manufacturer Only Return Policy

Covered by the manufacturer's warranty. Please refer to the terms and conditions for the manufacturer's warranty or contact the manufacturer.

Holiday Extended Return Policies

Extended Holiday Return Policy.

Qualifying purchases of products displaying the " Extended Holiday Return Policy ", from November 1st, 2023 to December 25, 2023, are eligible for a Refund or Replacement until January 31, 2024.


Extended Holiday Replacement-Only Return Policy

Qualifying purchases of products displaying the " Extended Holiday Replacement-Only Return Policy ", from November 1st, 2023 to December 25, 2023, are eligible for a Replacement until January 31, 2024.

Exploded view of AMD EPYC 7313P processor showing the heatspreader and processor die architecture

Cutting-Edge Architecture Drives Enterprise Performance

The AMD EPYC 7313P processor reveals its innovative dual-die architecture, showcasing the advanced engineering that enables superior server performance. The expertly crafted design features 16 high-performance cores and sophisticated thermal management, delivering the raw processing power needed for demanding enterprise workloads. Each component is precision-engineered to maximize computational efficiency while maintaining optimal operating temperatures.

Technical Specifications

  • 16 cores and 32 threads for parallel processing excellence
  • 128MB L3 cache enabling faster data access and processing
  • 3.0GHz base clock with boost capability up to 3.7GHz

Applications

  • High-performance enterprise virtualization environments
  • Data center infrastructure optimization
  • Mission-critical database operations
AMD EPYC processor mounted in SP3 socket showing secure installation mechanism

Enterprise-Grade Socket SP3 Integration

The AMD EPYC 7313P processor seamlessly integrates into enterprise server environments through its SP3 socket implementation. The precision-engineered mounting solution ensures optimal thermal contact and electrical connectivity, supporting the processor's 155W TDP for sustained performance under demanding workloads. This robust design enables reliable operation in mission-critical server deployments.

Technical Specifications

  • SP3 socket design for secure processor mounting
  • Enterprise-grade retention mechanism for stability
  • Optimized thermal interface for 155W TDP management

Applications

  • 24/7 enterprise server operations
  • High-availability data center deployments
  • Scale-out cloud computing infrastructure
أسئلة وأجوبة
The AMD EPYC 7313P is a high-performance server processor featuring 16 cores (Hexadeca-core) with 32 threads, running at a base clock speed of 3.0GHz and capable of boosting up to 3.70GHz. It comes with a substantial 128MB L3 cache and uses the Socket SP3 platform. The processor has a Thermal Design Power (TDP) of 155W and is part of AMD's 7003 series EPYC processor family.
The EPYC 7313P features a large 128MB L3 cache, which helps improve data access speeds and overall performance. In terms of threading, it supports 32 simultaneous threads across its 16 physical cores, enabling excellent multitasking and parallel processing capabilities for demanding server workloads.
The AMD EPYC 7313P has a Thermal Design Power (TDP) of 155W, which represents the maximum amount of heat generated that the cooling system needs to dissipate. This power rating is optimized for server environments, balancing performance with energy efficiency for data center operations.
The EPYC 7313P uses the Socket SP3 platform, also known as AMD's server-focused socket. This processor is designed for server implementations and can be deployed in bare metal servers, virtualized environments, or cloud infrastructure, making it versatile for various enterprise computing needs.
The AMD EPYC 7313P operates at a base clock speed of 3.0GHz and can reach up to 3.70GHz when overclocking or boosting. These clock speeds, combined with its 16 cores and 32 threads, provide excellent performance for server workloads and enterprise applications.
The EPYC 7313P is designed for server and enterprise applications, including data centers, cloud computing, virtualization, and high-performance computing workloads. It's particularly well-suited for environments that require robust multi-threading capabilities, secure computing features, and reliable performance for mission-critical operations.
The EPYC 7313P offers enterprise customers several key benefits: high core count (16 cores) for excellent multitasking, large 128MB L3 cache for improved data access, support for 32 threads for enhanced parallel processing, and AMD's enterprise-grade security features. It's optimized for both bare metal and virtualized environments, providing the performance, dependability, and security that enterprise customers require.
The EPYC 7313P is part of AMD's 7003 series of server processors. This indicates it's a third-generation EPYC processor, featuring AMD's advanced server architecture and technologies. The "P" in 7313P designates it as a single-socket solution, optimized for specific server configurations and use cases.

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