HPE 871000-001 Xeon Gold 6130 16-Core 2.1GHZ 22MB L3 Cache 10.4GT/S UPI Speed Socket FCLGA3647 14NM 125W Processor
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Product Overview of HPE Xeon Gold Processor
- Product Type: Server Processor
- Brand: HPE
- Part Number: 871000-001
- Model: Gold 6130
Processor Specifications
- Cores: 16-core
- Base Clock Speed: 2.10 GHz
- Max Turbo Frequency: 3.70 GHz
- Ultrapath Interconnect (UPI) Speed: 10.4 GT/s
- Number of UPI Links: 3
- Instruction Set: 64-bit
- Instruction Set Extensions: Intel® SSE4.2, Intel® AVX, Intel® AVX2, Intel® AVX-512
Cache Memory
- L3 Cache: 22 MB
Chipset and Power
- Lithography: 14 nm
- Max Thermal Design Power (TDP): 125W
- Compatible Processor Socket: FCLGA3647
Memory Capabilities
- Maximum Supported Memory Size: 768 GB (dependent on memory type)
- Memory Type: DDR4-2666
- Maximum Memory Speed: 2.67 GHz
- Max Number of Memory Channels: 6
- ECC Memory Support: Yes
Compatibility Information
- Socket Type: FCLGA3647, ensuring broad compatibility with enterprise-grade server platforms
- Memory Support: DDR4-2666 memory modules, enabling high-performance configurations
Core Count: 16
Improved Performance
The HPE Xeon Gold 6130 Processor boasts an impressive core count of 16, making it a powerful choice for users in need of high-performance computing. With a higher number of cores, this processor can handle more simultaneous tasks, resulting in improved overall performance. Whether you're running complex simulations, analyzing large datasets, or rendering high-resolution graphics, the 16-core architecture ensures that your system can handle the workload efficiently.
Enhanced Multitasking
Multitasking is a common requirement in today's fast-paced computing environment. The 16 cores of the HPE Xeon Gold 6130 Processor enable smooth multitasking by allocating dedicated resources to each task. This means that you can run multiple resource-intensive applications simultaneously without experiencing significant performance degradation. Whether you're editing videos while running virtual machines or compiling code while performing data analysis, the 16-core design ensures smooth and responsive multitasking.
Scalability and Future-Proofing
The 16-core count of this processor provides excellent scalability for future expansion. As software becomes more demanding and your computing needs grow, having additional cores becomes crucial to maintaining optimal performance. By investing in a processor with 16 cores, you are future-proofing your system and ensuring that it can handle the workload of tomorrow without the need for a complete hardware upgrade.
Base Clock Speed: 2.1GHz
Efficient Single-Thread Performance
The HPE Xeon Gold 6130 Processor features a base clock speed of 2.1GHz, which determines the speed at which each core operates on its own when not under heavy load. This base clock speed ensures efficient single-thread performance, which is essential for tasks that rely heavily on a single core's processing power. Whether you're running single-threaded applications or performing tasks that are not highly parallelized, the 2.1GHz base clock speed ensures snappy and responsive performance.
Power Efficiency
A lower base clock speed also contributes to improved power efficiency. By operating at a lower frequency when idle or under light loads, the processor consumes less power, resulting in reduced energy costs and a smaller carbon footprint. This is particularly important for users who prioritize energy efficiency or have large-scale computing environments where power consumption plays a significant role in operational costs.
Overclocking Potential
While the base clock speed of 2.1GHz provides efficient performance out of the box, it also leaves room for potential overclocking. Overclocking allows users to increase the clock speed beyond the manufacturer's specifications, providing a performance boost for tasks that benefit from higher frequencies. With proper cooling and system configuration, users can push the limits of the processor and extract even more power from each core.
L3 Cache: 22MB
Faster Data Access
The L3 cache plays a crucial role in improving overall system performance by providing faster access to frequently used data. With a generous 22MB L3 cache, the HPE Xeon Gold 6130 Processor can store and retrieve critical information more quickly, reducing latency and improving response times. This is particularly beneficial for applications that rely heavily on data access, such as databases, virtualization, and content creation tools.
Increased Instruction Throughput
The larger L3 cache size also enables higher instruction throughput, allowing the processor to handle more tasks simultaneously. This translates into improved performance for multi-threaded applications that can leverage parallelism effectively. Whether you're running scientific simulations or performing complex calculations, the 22MB L3 cache ensures that your processor can keep up with the demanding workload.
Smart Caching
The HPE Xeon Gold 6130 Processor utilizes smart caching algorithms to optimize data storage and retrieval. By analyzing usage patterns and prioritizing frequently accessed data, the processor can reduce cache misses and improve overall efficiency. This intelligent caching mechanism ensures that critical data is readily available, further enhancing performance and reducing delays caused by data retrieval from slower memory tiers.
Upi Speed: 10.4GT/s
Faster Inter-Core Communication
The Upi Speed, or Unified Path Interface Speed, is a critical feature for inter-core communication in multi-socket systems. With a Upi Speed of 10.4GT/s, the HPE Xeon Gold 6130 Processor enables faster data transfer between cores, ensuring efficient collaboration and synchronization. This is particularly important for applications that rely on inter-core communication, such as distributed computing, virtualization, and parallel processing.
Improved Scalability
In multi-socket systems, Upi Speed directly impacts the scalability of the overall computing infrastructure. A higher Upi Speed allows for more efficient communication between sockets, enabling better utilization of resources across multiple processors. With a Upi Speed of 10.4GT/s, the HPE Xeon Gold 6130 Processor ensures that your system can scale effectively, accommodating growing workloads and maintaining optimal performance.
Reduced Latency
Lower latency is a key benefit of a higher Upi Speed. By minimizing the time it takes for data to travel between sockets, the processor reduces communication delays and improves overall responsiveness. This is especially critical in latency-sensitive applications, such as real-time analytics or high-frequency trading, where every microsecond counts. With a Upi Speed of 10.4GT/s, the HPE Xeon Gold 6130 Processor delivers the performance needed for time-critical tasks.
Socket Type: FCLGA3647
Wide Compatibility
The FCLGA3647 socket type ensures compatibility with a wide range of server and workstation motherboards. This socket type is specifically designed to accommodate high-performance processors, making it an ideal choice for users who require powerful computing solutions. Whether you're upgrading an existing system or building a new one from scratch, the FCLGA3647 socket type offers the flexibility to choose from a variety of compatible hardware components.
Scalability and Future Upgrades
The FCLGA3647 socket type provides excellent scalability for future upgrades. As technology advances and new processors become available, having a compatible socket type ensures that you can easily upgrade your system without the need for a complete overhaul. This future-proofing capability allows you to extend the lifespan of your investment and adapt to changing computing requirements.
Robust Socket Design
The FCLGA3647 socket type features a robust design that ensures secure and stable CPU installation. The socket's design provides proper alignment and contact between the processor and motherboard, minimizing the risk of damage due to improper installation or accidental disconnection. This reliability is essential for mission-critical applications where system uptime is of utmost importance.
Manufacturing Technology: 14nm
Improved Efficiency
The HPE Xeon Gold 6130 Processor is manufactured using a 14nm process, which represents the size of the transistors on the chip. A smaller manufacturing technology allows for more transistors to be packed into the same physical space, resulting in improved efficiency and performance. With 14nm technology, this processor delivers superior power efficiency, reducing energy consumption and heat generation.
Higher Clock Speeds
Smaller transistors also enable higher clock speeds, allowing the processor to operate at faster frequencies. The 14nm manufacturing technology of the HPE Xeon Gold 6130 Processor ensures that each core can achieve higher clock speeds, providing a performance boost for tasks that require raw processing power. Whether you're running demanding applications or performing intensive calculations, the 14nm manufacturing technology ensures that your processor can handle the workload efficiently.
Reduced Heat Dissipation
The 14nm manufacturing technology contributes to better heat dissipation, as smaller transistors generate less heat during operation. This not only improves overall system stability but also allows for more efficient cooling solutions. With reduced heat generation, the HPE Xeon Gold 6130 Processor can maintain optimal performance even under heavy loads, ensuring reliable operation in demanding computing environments.
Power Consumption: 125W
Energy Efficiency
The HPE Xeon Gold 6130 Processor boasts a power consumption of 125W, making it an energy-efficient choice for high-performance computing. With lower power consumption, this processor reduces energy costs and environmental impact, making it ideal for organizations looking to optimize power usage and reduce operational expenses. Additionally, the lower power consumption contributes to improved system reliability and longevity.
Cooling Requirements
The 125W power consumption of this processor sets the baseline for cooling requirements. While it is not an extremely high-power chip, proper cooling is still essential to maintain optimal performance and prevent overheating. Investing in a suitable cooling solution ensures that the processor operates within its recommended temperature range, maximizing its lifespan and minimizing the risk of performance degradation or hardware failure.
Thermal Design Power (TDP)
The TDP rating of a processor indicates the maximum amount of heat generated by the chip under typical operating conditions. With a TDP of 125W, the HPE Xeon Gold 6130 Processor falls within the thermal limits defined by its design. This TDP rating provides valuable information for system builders and IT professionals when designing cooling solutions and ensuring proper thermal management within their computing infrastructure.
Part Number: 871000-001
Easy Identification and Compatibility
The part number, 871000-001, serves as a unique identifier for the HPE Xeon Gold 6130 Processor. This alphanumeric code allows users to easily identify the specific model when purchasing or searching for compatibility information. Whether you're upgrading an existing system or building a new one, knowing the exact part number ensures that you select the correct processor and avoid compatibility issues.
Warranty and Support
The part number also plays a crucial role in warranty and support processes. By providing the part number, users can quickly access product-specific documentation, driver updates, and manufacturer support resources. This simplifies troubleshooting and ensures that users can efficiently resolve any issues they might encounter during the lifespan of the processor.
Documentation and Specification Details
The part number serves as a gateway to detailed documentation and specification sheets provided by the manufacturer. These resources offer in-depth information about the HPE Xeon Gold 6130 Processor, including technical specifications, performance benchmarks, and compatibility guidelines. Access to this information enables users to make informed decisions when selecting or integrating the processor into their computing environment.