Description
Processor architecture: Overview of the Intel Xeon Platinum 8160M and its Features
The Intel Xeon Platinum 8160M processor is a high-end server processor based on the Skylake architecture. It is designed to provide exceptional performance and reliability for data center applications. Here are some of its key features:
- Architecture: The Intel Xeon Platinum 8160M is based on the Skylake architecture, which is designed to provide high performance and energy efficiency.
- Core count: It features 24 cores, allowing it to handle high workloads and support multiple virtual machines.
- Thread count: With Intel Hyper-Threading technology, the processor supports 48 threads, allowing it to perform multiple tasks simultaneously.
- Clock speed: The processor has a base clock speed of 2.1 GHz and can turbo boost up to 3.7 GHz, allowing it to handle high-performance workloads.
- Cache memory: The processor has 33 MB L3 cache, which is shared across all cores, allowing for faster data access and improved performance.
- Manufacturing process: The processor is manufactured using a 14nm process, which provides excellent power efficiency and performance.
- Socket type: The processor uses the FCLGA3647 socket type, which is compatible with various server motherboards.
- Memory support: It supports DDR4 memory, with six memory channels, allowing for a maximum memory capacity of up to 1.5TB.
- Virtualization support: The processor supports Intel Virtualization Technology (VT), which provides better performance and security for virtualized workloads.
- Advanced security features: The processor supports advanced security features such as Intel AES New Instructions and Intel Trusted Execution Technology, which helps to protect sensitive data.
- Enhanced workload acceleration: The processor features Intel Turbo Boost Technology 2.0 and Intel Advanced Vector Extensions 512 (AVX-512), which helps to accelerate performance in heavy workloads.
Manufacturing Process: 14nm Manufacturing Process and its Advantages
The 14nm manufacturing process used in the Intel Xeon Platinum 8160M processor is one of the most advanced and efficient manufacturing processes available today. Here are some of the key advantages of this process:
- Improved performance: The smaller transistor size in the 14nm process allows for more transistors to be packed into a smaller space, resulting in improved performance and energy efficiency.
- Reduced power consumption: The 14nm process requires less power to operate, which reduces power consumption and heat generation. This can lead to significant cost savings over time for data centers.
- Higher density: The 14nm process allows for a higher density of transistors on the processor die, resulting in a more powerful and efficient processor.
- Lower cost: The 14nm process is more cost-effective than previous manufacturing processes, as it allows for greater yields and higher production volumes.
- Improved security: The 14nm process allows for more security features to be included on the processor, which can help to protect against threats such as malware and hacking.
Cores and Threads: 24 cores and 48 threads, including details of Intel
The Intel Xeon Platinum 8160M processor features 24 physical cores, which allow it to handle a large number of concurrent processing tasks. In addition to the physical cores, the processor also supports Intel Hyper-Threading technology, which allows each physical core to support two software threads. This doubles the number of threads that can be handled by the processor, resulting in a total of 48 threads.
Hyper-Threading technology works by allowing each core to perform two tasks simultaneously. This is achieved by duplicating certain parts of the processor’s architecture, such as the program counter, the registers, and the execution units. This enables the processor to switch between tasks quickly and efficiently, resulting in improved performance and responsiveness.
Hyper-Threading technology can be particularly beneficial in applications that require a large number of threads, such as virtualization or database workloads. It can also be useful in multi-tasking environments, where many software applications are running simultaneously.
It’s worth noting that while Hyper-Threading technology can provide a significant performance boost, the actual improvement in performance depends on the specific workload and application being run. In some cases, the performance improvement may be small or negligible. However, in workloads that can take advantage of the additional threads, the performance improvement can be significant.
General Information
- Product Type : Server Processor
- Product Manufacturer : Intel Corporation
- Product Model : Platinum 8160M
Technical Information
- Processor Core : 24-core
- Clock Speed : 2.1GHz
- Max Turbo Frequency : 3.70GHz
- Ultrapath Interconnect(Upi) Speed : 10.4 Gt/S UPI
- no. of UPI links : 3
- instruction set : 64-bit
- instruction set extensions : intel® sse4.2, intel® avx, intel® avx2, intel® avx-512
- l3 cache : 33MB
- Lithography : 14NM
- Max Thermal Design Power (TDP) : 160W
- Compatible Processor Socket : FCLGA3647.





