Cisco Intel Xeon Gold (2nd Gen) 6254 Octadeca-core (18 Core) 3.10 GHz Processor Upgrade
Cisco Intel Xeon Gold (2nd Gen) 6254 Octadeca-core (18 Core) 3.10 GHz Processor Upgrade
This global transformation is rapidly scaling the demands for flexible compute, networking, and storage. Future workloads will necessitate infrastructures that can seamlessly scale to support immediate responsiveness and widely diverse performance requirements. The exponential growth of data generation and consumption, the rapid expansion of cloud-scale computing, emerging 5G networks, and the extension of high performance computing (HPC) and artificial intelligence (AI) into new usages require that today's data centers and networks urgently evolve-or be left behind in a highly competitive environment. These demands are driving the architecture of modernized, future-ready data centers and networks that can quickly flex and scale.
The Intel® Xeon® Scalable processor family provides the foundation for a powerful data center platform that creates an evolutionary leap in agility and scalability. Disruptive by design, this innovative processor sets a new level of platform convergence and capabilities across compute, storage, memory, network, and security. Enterprises and cloud and communications service providers can now drive forward their most ambitious digital initiatives with a feature-rich, highly versatile platform.
- Processor Upgrade provides dependable and fast execution of tasks with maximum efficiency
- Xeon Gold product line processor upgrade for your convenience and optimal usage
- 14 nm enables improved performance per watt and micro architecture makes it power-efficient
- Octadeca-core (18 Core) processor core allows multitasking with great reliability and fast processing speed
- 2nd Gen processor upgrade generation provides an improved power efficiency with maximum dependability and longevity
- 24.75 MB of L3 cache offers supreme performance for computation intensive apps
- Processor Upgrade with 3.10 GHz clock speed for faster, efficient execution of cycles per second to ensure maximum usability