Intel

Intel SR3B6 Xeon Gold 6148 20-Core CPU

Power Your Server with Reliable PerformanceThe Intel Xeon Gold 6148 Processor delivers exceptional performance for server applications. With 20 cores and a clock speed of 2.4GHz, this renewed CPU provides the power and reliability needed for demanding workloads. Specifications Brand: Intel ...

$52.16*
In Stock on Amazon.com
View on Amazon

*Price sourced from Amazon.com. Last updated:Jul 20, 2026.Price and availability are subject to change.

Affiliate Disclosure: Studio Supplies may earn a commission from qualifying purchases made through links on this page, at no additional cost to you. This helps support our editorial team.

Notice a mistake? Let Us Know

Overview

Power Your Server with Reliable Performance

The Intel Xeon Gold 6148 Processor delivers exceptional performance for server applications. With 20 cores and a clock speed of 2.4GHz, this renewed CPU provides the power and reliability needed for demanding workloads.

Specifications

  • Brand: Intel
  • Model: Xeon Gold 6148
  • Cores: 20
  • Clock Speed: 2.4GHz
  • Cache: 27.5MB
  • TDP: 150W
  • Socket: LGA 3647

Key Features

Intel Xeon Gold 6148 SR3B6

20-Core

27.5 MB L3 Cache

Max Turbo Frequency: 3.70 GHz

Specifications

Model
Xeon Gold 6148 SR3B6
Cores
20-Core
L3 Cache
27.5 MB
Max Turbo Frequency
3.70 GHz

Similar Products

Other products from the same family that visitors often consider:

Frequently Asked Questions

The Intel Xeon Gold 6148 CPU features 20 processing cores, designed for high-performance computing tasks.
This processor comes with a 27.5 MB L3 Cache, which helps to improve data access and overall system responsiveness.
The Intel Xeon Gold 6148 has a Max Turbo Frequency of 3.70 GHz, allowing for dynamic performance boosts when required.
Yes, the Intel Xeon Gold series processors, including the 6148, are specifically designed for demanding enterprise applications and server environments due to their high core count and features.
Applications that are highly multithreaded, such as virtualization, complex simulations, large database management, and intensive scientific computing, would benefit significantly from the 20 cores.