Cisco UCS-CPU-6132 Xeon Gold 2.60GHz 14 Core Processor with 19.25MB Cache
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Comprehensive Specifications of Server Processors
- Type of Product: Server Processor
- Manufacturer: Cisco
- Part Number: UCS-CPU-6132
- Model Name: Gold 6132
Technical Details
Core and Performance Metrics
- Core Count: 14 cores
- Base Clock Speed: 2.60 GHz
- Maximum Turbo Boost Frequency: 3.70 GHz
- Ultra Path Interconnect (UPI) Speed: 10.4 GT/s
- Number of UPI Links: 3
- Instruction Set Architecture: 64-bit
- Supported Instruction Set Extensions:
- Intel® SSE4.2
- Intel® AVX
- Intel® AVX2
- Intel® AVX-512
Cache Memory Specifications
- L3 Cache Size: 19.25 MB
- Fabrication Process: 14nm
- Maximum Thermal Design Power (TDP): 140W
- Compatible Processor Socket: FCLGA3647
Memory Capabilities
Memory Specifications Overview
- Maximum Memory Capacity: 768 GB (dependent on memory type)
- Supported Memory Types: DDR4-2666
- Peak Memory Speed: 2.67 GHz
- Maximum Number of Memory Channels: 6
- ECC Memory Support: Yes
Cache
The Cisco UCS-CPU-6132 Xeon Gold 2.60GHz 14 Core Processor is equipped with an impressive 19.25MB cache, which plays a crucial role in enhancing the performance and efficiency of your server. The cache is a high-speed memory component built directly into the processor, designed to store frequently accessed data and instructions for quick retrieval.
Benefits of Cache
1. Faster Data Access
Cache memory is significantly faster than the main memory (RAM) of a server. As a result, when data or instructions are stored in the cache, the processor can access them more quickly, reducing the time it takes to retrieve information. This results in faster data processing and better overall system performance.
2. Improved Efficiency
By storing frequently accessed data in the cache, the processor reduces the need to retrieve information from slower memory sources such as RAM or storage drives. This reduces latency and increases efficiency by minimizing idle time. The larger the cache size, like the 19.25MB on this processor, the more data can be stored for quick access, resulting in improved efficiency and responsiveness.
Importance of Cache Size
1. Enhanced Multitasking
In today's demanding computing environments, multitasking has become a standard requirement. Whether you're running multiple applications simultaneously or virtualizing your server, a larger cache size plays a vital role in handling concurrent tasks efficiently. With a substantial 19.25MB cache, this processor can handle intensive workloads with ease, ensuring smooth and uninterrupted operation.
2. Complex Calculations
Certain applications and workloads involve complex calculations that require frequent access to large sets of data. The ample cache size on this processor enables it to store a significant amount of data, improving the speed at which calculations can be performed. This is particularly beneficial for tasks such as data analytics, scientific simulations, and financial modeling.
3. Gaming and Multimedia
For gamers and multimedia enthusiasts, cache size is crucial for delivering a seamless and immersive experience. The larger the cache, the faster game levels load, and media files are accessed. With the 19.25MB cache on this processor, you can enjoy smooth gameplay and seamless multimedia playback without any lag or delays.
Cache Hierarchy
1. L1 Cache
The cache hierarchy consists of multiple levels, starting with the L1 cache. L1 cache is the smallest but also the fastest cache level located closest to the processor cores. It stores frequently accessed instructions and data that the processor needs to execute tasks quickly.
Benefits of L1 Cache
- Ultra-fast access times for frequently used instructions
- Reduces latency and improves overall system responsiveness
- Enhances single-threaded performance
2. L2 Cache
The L2 cache is larger than the L1 cache but slightly slower in access times. It acts as a secondary storage for frequently accessed data and instructions that couldn't fit in the L1 cache.
Benefits of L2 Cache
- Expands the storage capacity for frequently used instructions and data
- Reduces memory access latency compared to main memory
- Improves performance for multi-threaded applications
3. L3 Cache
The last level in the cache hierarchy is the L3 cache, which is larger than both L1 and L2 caches but slower in access times. The L3 cache serves as a shared resource for all processor cores, allowing them to access commonly used data quickly.
Benefits of L3 Cache
- Increases the overall cache capacity for all processor cores
- Facilitates data sharing and communication between cores
- Improves performance for multi-threaded workloads and virtualization
In conclusion, the Cisco UCS-CPU-6132 Xeon Gold 2.60GHz 14 Core Processor with its substantial 19.25MB cache offers numerous benefits for users. The cache's ability to provide faster data access and improved efficiency results in enhanced multitasking capabilities, faster execution of complex calculations, and a seamless gaming and multimedia experience. Additionally, the cache hierarchy consisting of L1, L2, and L3 caches further optimizes performance by providing various levels of storage capacity and access speeds. With this processor, you can power your server with outstanding performance and responsiveness for a wide range of demanding applications.