AMD 100-000000136 EPYC 도트리아콘타코어 7532 2.4GHz 서버 프로세서 32 코어 256MB L3 캐시 소켓 SP3

Close-up view of AMD EPYC server processor heat spreader with embossed EPYC branding-alternate-image1
AMD EPYC processor mounted on server motherboard showing installation context-alternate-image2

AMD 100-000000136 EPYC 도트리아콘타코어 7532 2.4GHz 서버 프로세서 32 코어 256MB L3 캐시 소켓 SP3

AMD 100-000000136

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Product Key Features

  • 2.40 GHz의 클럭 속도를 가진 32코어 Dotriaconta-core 프로세서
  • 2세대 AMD EPYC 7002 시리즈 프로세서
  • 더 빠른 데이터 접근을 위한 256 MB L3 캐시
  • 효율적인 성능을 위한 200 W의 열 설계 전력
  • 간편한 설치를 위한 SP3 소켓 프로세서 소켓
  • 멀티태스킹 기능을 위한 최대 64 프로세서 스레드 지원
  • 향상된 성능을 위한 최대 3.30 GHz의 오버클러킹 속도
  • 전문적인 사용을 위한 OEM 팩
  • 업계에서 신뢰받는 브랜드인 AMD가 설계 및 제조하였습니다.
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AMD 100-000000136 EPYC 도트리아콘타코어 7532 2.4GHz 서버 프로세서 32 코어 256MB L3 캐시 소켓 SP3

This item: AMD 100-000000136 EPYC 도트리아콘타코어 7532 2.4GHz 서버 프로세서 32 코어...

₦3,425,500.00

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AMD

100-000000136

AMD EPYC 7532 Server Processor: 32-Core Performance with 256MB L3 Cache

The AMD EPYC 7532 server processor delivers exceptional performance with its 32-core architecture and 2.4GHz base clock speed. Part of the acclaimed 7002 Series, this 2nd Generation EPYC processor features an impressive 256MB L3 cache and supports up to 64 threads for demanding server workloads.

Advanced Server Processing Capabilities

  • 32-core Dotriaconta-core architecture for superior multi-threaded performance
  • Base clock speed of 2.4GHz with boost capability up to 3.3GHz
  • Massive 256MB L3 cache for enhanced data access
  • 64 processing threads for intensive parallel workloads
  • Socket SP3 compatibility for enterprise server platforms

Performance and Thermal Specifications

Specification Detail
Base Clock Speed 2.4GHz
Maximum Boost Speed 3.3GHz
Total Cores/Threads 32/64
L3 Cache 256MB
TDP 200W

Enterprise-Grade Technology

Built on AMD's innovative Infinity Architecture, the EPYC 7532 processor represents a significant advancement in server processing technology. This OEM solution is designed for enterprise-level applications requiring high-performance computing capabilities while maintaining efficient power consumption at 200W TDP.

EPYC 7002 시리즈 프로세서 및 플랫폼 구입처

AMD EPYC 2세대 프로세서와 플랫폼을 제공하는 협력사를 찾아보세요.

AMD Infinity 아키텍처

아키텍처, 성능 및 보안 분야에서 리더십을 보유한 AMD의 프로세서 디자인 방식은 데이터 센터의 침체상태를 깨고 혁신의 속도를 가속화합니다.

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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.

Close-up view of AMD EPYC server processor heat spreader with embossed EPYC branding

32 Cores of Raw Data Center Performance

The AMD EPYC 7532 processor represents the pinnacle of server processing power, featuring a robust 32-core architecture that delivers exceptional computational capabilities. The sleek, industrial-grade heat spreader ensures optimal thermal management while handling intensive workloads at 2.4GHz base clock speeds, with the ability to boost up to 3.3GHz when needed. With 256MB of L3 cache, this processor excels at handling large datasets and complex calculations simultaneously.

Technical Specifications

  • 32 cores and 64 threads for parallel processing excellence
  • 256MB L3 cache for superior data handling
  • Socket SP3 compatibility for enterprise-grade systems

Applications

  • High-performance computing and scientific simulations
  • Enterprise-level database management and virtualization
  • Cloud computing infrastructure deployment
AMD EPYC processor mounted on server motherboard showing installation context

Enterprise-Grade Integration Ready

The EPYC 7532 seamlessly integrates into modern server architectures, showcasing AMD's commitment to enterprise computing solutions. The processor's design emphasizes both performance and reliability, featuring premium components and precise engineering that ensures consistent operation under demanding enterprise workloads. The 200W TDP delivers the perfect balance of power and efficiency needed for today's data centers.

Technical Specifications

  • 200W TDP for optimal performance-to-power ratio
  • Server-grade mounting solution for reliable operation
  • PCIe Gen 4 support for enhanced connectivity

Applications

  • Data center infrastructure deployment
  • Large-scale virtualization environments
  • Mission-critical enterprise applications
FAQ
The AMD EPYC 7532 is a high-performance server processor featuring 32 cores (Dotriaconta-core) with 64 threads, operating at a base clock speed of 2.4GHz and capable of boosting up to 3.3GHz. It comes with a massive 256MB L3 cache and is designed for Socket SP3. This 2nd Generation EPYC processor has a thermal design power (TDP) of 200W, making it suitable for enterprise-grade server applications.
The AMD EPYC 7532 features a substantial 256MB L3 cache, which is crucial for server performance. This large cache size helps reduce memory latency, improves data access times, and enhances overall system performance, especially in data-intensive applications. The generous cache size is particularly beneficial for database operations, virtualization, and enterprise workloads where quick access to frequently used data is essential.
The AMD EPYC 7532 uses Socket SP3 (also known as Socket AMD SP3 or LGA 4094). This socket type is specifically designed for AMD's EPYC server processors and provides the necessary pin configuration for power delivery and data transfer. Socket SP3 ensures compatibility with appropriate server motherboards and platforms designed for enterprise-grade computing solutions.
The AMD EPYC 7532 operates at a base clock speed of 2.4GHz and can reach up to 3.3GHz through its boost clock capability. This clock speed range provides a good balance between consistent baseline performance and additional processing power when needed, making it suitable for varying workload demands in server environments.
The AMD EPYC 7532 features 32 cores (Dotriaconta-core) and supports 64 threads through simultaneous multithreading (SMT) technology. This high core and thread count makes it excellent for heavily parallelized workloads, virtualization, and multi-tasking server environments where multiple processes need to be handled simultaneously.
The AMD EPYC 7532 has a Thermal Design Power (TDP) of 200W. This TDP rating indicates the maximum amount of heat generated by the processor that the cooling system needs to dissipate under full load. This power consumption level is optimized for data center environments, balancing high performance with energy efficiency.
The AMD EPYC 7532 belongs to the 2nd Generation of EPYC processors, also known as the EPYC 7002 series. This generation features AMD's advanced architecture improvements, offering enhanced performance, security features, and efficiency compared to the previous generation. It's built on AMD's Infinity Architecture, which helps accelerate data center innovation.
The AMD EPYC 7532 is designed for high-performance server applications, including enterprise-grade computing, data centers, and cloud computing environments. Its 32 cores, 64 threads, and 256MB L3 cache make it particularly suitable for virtualization, database management, high-performance computing (HPC), and other compute-intensive workloads that benefit from high core counts and substantial cache capacity.

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