HPE Epyc 7h12 64-core 256mb 2.6ghz L3 Cache Server Processor - P27248-B21
- — Free Ground Shipping
- — Min. 6-month Replacement Warranty
- — Genuine/Authentic Products
- — Easy Return and Exchange
- — Different Payment Methods
- — Best Price
- — We Guarantee Price Matching
- — Tax-Exempt Facilities
- — 24/7 Live Chat, Phone Support
- — Visa, MasterCard, Discover, and Amex
- — JCB, Diners Club, UnionPay
- — PayPal, ACH/Wire Transfer
- — Apple Pay, Amazon Pay, Google Pay
- — Buy Now, Pay Later - Affirm, Afterpay
- — GOV/EDU/Institutions PO's Accepted
- — Invoices
- — Deliver Anywhere
- — Express Delivery in the USA and Worldwide
- — Ship to -APO -FPO
- — For USA - Free Ground Shipping
- — Worldwide - from $30
Overview of the Product HPE P27248-B21
Comprehensive Product Information
- Type: High-performance server processor, engineered for robust data handling
- Manufacturer: HPE
- Part Number: P27248-B21
- Model: EPYC 7H12, an advanced solution for demanding server needs
Technical Specifications
Processor Core Configuration
- Cores: 64-core setup to manage intensive workloads with ease
- Base Clock Speed: 2.6 GHz, enabling fast, stable operations
- Max Boost Clock: Reaches up to 3.3 GHz for accelerated performance during peak demands
Cache Memory and Architecture
- L3 Cache: An impressive 256 MB, providing ample data storage for smooth processing
- Lithography: Built on a 7 nm process, enhancing power efficiency and heat management
Thermal and Power Specifications
- Max TDP: Rated at 280W to handle extensive operations without compromising performance
- Socket Compatibility: SP3 processor socket, ensuring flexible integration into various server setups
Additional Highlights
- Designed specifically for data-intensive server environments, this HPE processor delivers unmatched power
- Ideal for virtualization, complex computations, and handling high-demand applications
HPE Epyc 7h12 64-core 256mb 2.6ghz L3 Cache Socket Sp3 7nm 280w Server Processor - P27248-B21
Core
The HPE Epyc 7h12 Server Processor is equipped with an impressive 64 cores. This feature sets it apart from other processors on the market, making it a top choice for users who require powerful and efficient performance.
Benefits of 64 Cores
The high number of cores in this processor brings numerous benefits for users:
1. Enhanced Multi-Tasking
With 64 cores, the HPE Epyc 7h12 Server Processor can handle multiple tasks simultaneously without compromising performance. This is particularly advantageous for users who work with resource-intensive applications or run virtualized environments.
2. Improved Parallel Processing
The large number of cores enables parallel processing, allowing for faster execution of complex computational tasks. It enables users to process large amounts of data more efficiently, reducing processing times and improving overall productivity.
3. Scalability
The 64 cores provide excellent scalability, allowing users to scale their workload as needed. Whether you're running a small business or a large enterprise, this processor can accommodate your growing demands without sacrificing performance.
Importance of 64 Cores
Having 64 cores in the HPE Epyc 7h12 Server Processor is crucial for various industries and use cases:
1. Data Centers
Data centers require high-performance processors to handle the heavy workload of multiple clients simultaneously. The 64 cores ensure smooth operations and enable data centers to offer reliable services to their customers.
2. Scientific Computing
In scientific computing, simulations and modeling often involve complex calculations that require significant processing power. The 64 cores enable researchers and scientists to perform these calculations efficiently, accelerating their work and facilitating breakthroughs in various fields.
3. Virtualization
Virtualization technology allows users to create multiple virtual machines on a single physical server. The 64 cores in this processor ensure that each virtual machine receives sufficient processing power, resulting in optimal performance and responsiveness.
Cache
The HPE Epyc 7h12 Server Processor boasts an impressive 256MB cache. This large cache size significantly enhances the processor's performance and efficiency, making it an ideal choice for demanding computing tasks.
Benefits of 256MB Cache
The substantial cache size offers several advantages for users:
1. Improved Data Access Speed
A larger cache allows for faster access to frequently used data. This reduces the time required to fetch data from the main memory, resulting in improved overall system performance. Users can experience faster load times and quicker responses from their applications.
2. Reduced Memory Latency
With a larger cache, the processor can store more data closer to the cores, reducing the need to access the main memory frequently. This greatly reduces memory latency, ensuring that data can be processed quickly and efficiently.
3. Enhanced Program Execution
The larger cache size enables the processor to store more instructions and data, allowing for smoother program execution. Complex applications can benefit from this feature as it minimizes the need for data transfers between the cache and memory, resulting in improved overall performance.
Importance of 256MB Cache
The 256MB cache size is particularly important for users in the following scenarios:
1. Big Data Analytics
Big data analytics involves processing massive amounts of data to extract meaningful insights. The large cache size in this processor enables faster data retrieval and processing, accelerating the analytics process and enabling businesses to make informed decisions more quickly.
2. Content Creation
Content creators often work with large files and resource-intensive applications. The 256MB cache ensures smooth rendering, editing, and exporting of high-resolution videos, images, or 3D models, enhancing productivity and reducing waiting times.
3. Database Management
In database management systems, quick access to frequently accessed data is crucial for optimal performance. The large cache size allows for efficient caching of frequently accessed data, reducing the time required for database operations and improving overall system responsiveness.
Clock Speed
The HPE Epyc 7h12 Server Processor operates at a clock speed of 2.6GHz. This clock speed ensures fast and efficient processing, making it suitable for a wide range of applications and workloads.
Benefits of 2.6GHz Clock Speed
The clock speed offers several benefits for users:
1. Faster Execution of Instructions
A higher clock speed allows the processor to execute instructions at a faster rate. With a clock speed of 2.6GHz, the HPE Epyc 7h12 Server Processor can handle demanding tasks swiftly, improving overall system responsiveness and reducing processing times.
2. Smooth Multitasking
The fast clock speed enables smooth multitasking by ensuring that each task receives sufficient processing power. Users can run multiple applications simultaneously without experiencing significant slowdowns or performance issues.
3. Real-Time Applications
Real-time applications, such as video conferencing or online gaming, require fast processing to maintain smooth and uninterrupted performance. The 2.6GHz clock speed ensures minimal latency, delivering a seamless real-time experience for users.
Importance of 2.6GHz Clock Speed
The 2.6GHz clock speed is particularly important in the following scenarios:
1. Gaming
Gaming enthusiasts demand high-performance processors to handle the demands of modern games. The 2.6GHz clock speed ensures smooth gameplay, allowing gamers to enjoy immersive experiences without worrying about lag or slowdowns.
2. Real-Time Rendering
Real-time rendering applications, such as architectural visualization or video editing, require significant processing power to handle complex calculations quickly. The 2.6GHz clock speed ensures that rendering tasks are completed swiftly, saving valuable time for professionals in these fields.
3. Financial Trading
In financial trading, split-second decisions can make a significant difference. The fast clock speed of 2.6GHz enables quick analysis of market data and execution of trades, ensuring that traders can respond rapidly to market fluctuations and capitalize on opportunities.
L3 Cache
The HPE Epyc 7h12 Server Processor features L3 cache support, providing an additional layer of cache for improved performance and efficiency.
Benefits of L3 Cache Support
L3 cache support offers several benefits for users:
1. Increased Cache Capacity
The addition of L3 cache expands the overall cache capacity of the processor. This means that more data can be stored closer to the cores, improving data access times and reducing memory latency.
2. Enhanced Data Sharing
L3 cache allows for efficient data sharing among the processor cores. This enables faster communication and coordination between cores, resulting in improved parallel processing and overall system performance.
3. Improved Power Efficiency
By utilizing L3 cache, the processor can reduce the need to access the main memory frequently. This reduces power consumption and improves energy efficiency, making the HPE Epyc 7h12 Server Processor an environmentally friendly choice.
Importance of L3 Cache Support
L3 cache support is particularly important for users in the following scenarios:
1. High-Performance Computing
In high-performance computing environments, where complex simulations and calculations are performed, L3 cache support is crucial. It helps to minimize memory latency and ensures efficient data sharing between cores, enabling faster execution of computational tasks.
2. Virtualization
In virtualized environments, L3 cache support improves the performance of virtual machines by reducing memory latency and improving data access times. This results in smoother operation and enhanced responsiveness for users running multiple virtual machines on a single server.
3. Enterprise Applications
Enterprise applications, such as customer relationship management (CRM) or enterprise resource planning (ERP) systems, often require fast and efficient data processing. L3 cache support ensures that these applications can access data quickly, enhancing productivity and user experience.
Part Number
The HPE Epyc 7h12 Server Processor has a part number of P27248-B21. This unique identifier is essential for users when sourcing or replacing processors for their systems.
Benefits of Part Number
The part number serves several benefits for users:
1. Compatibility
The part number ensures that users can easily identify and select the correct processor for their specific system. It eliminates the risk of purchasing an incompatible processor, saving time and preventing potential compatibility issues.
2. Replacement and Upgrades
When replacing or upgrading processors, having the correct part number is crucial. It allows users to find an exact match for their existing processor, ensuring seamless integration and maintaining system compatibility.
3. Technical Support
When seeking technical support or assistance, providing the part number enables support teams to quickly identify the specific processor model and offer accurate guidance. This facilitates efficient troubleshooting and resolution of any issues.
Importance of Part Number
The part number is particularly important in the following situations:
1. System Integration
When building a new system or integrating components into an existing one, having the correct part number is essential. It ensures that the processor is compatible with other hardware components, enabling a smooth and successful integration process.
2. Warranty and Service Agreements
Having the part number readily available is important when registering products for warranty or service agreements. It helps streamline administrative processes and ensures that users receive the appropriate support and coverage for their specific processor model.
3. Procurement and Inventory Management
For businesses managing large IT infrastructures, accurate tracking of processors is crucial for procurement and inventory management. The part number provides a standardized way to identify and manage processors across different systems, simplifying these processes.