Intel SL9XR Xeon Qc 1.6ghz 8MB L2 1066mhz 80w

Intel SL9XR Xeon Qc 1.6ghz 8MB L2 1066mhz 80w
Intel SL9XR Xeon Qc 1.6ghz 8MB L2 1066mhz 80w
The Intel Xeon Qc SL9XR is a high-performance server processor designed for demanding data center workloads and enterprise applications. With a base clock of 1.6GHz, robust 8MB L2 cache and an efficient thermal design power of 80W, this CPU delivers ... Read More
price
$14.95
  • In Stock: 2
  • Manufacturer: Intel
  • Model or Part: SL9XR
  • Condition: Refurbished
  • Weight: 3.00lb
United States Shipping
Orders over $200 qualify for Free Super-Saver Shipping! We ship at our discretion via the most cost-effective method using FedEx, UPS, or USPS.

To ensure your order is processed efficiently, all shipping charges must be pre-paid at checkout. We are unable to bill directly to third-party shipper accounts or use customer-provided labels for domestic shipments.
International Shipping
International orders begin processing as soon as payment is confirmed.

  • Pre-paid Shipping: For your convenience, you can select and pay for international shipping directly at checkout.
  • Carrier Accounts: Alternatively, we can bill transport costs directly to your FedEx account number. (Note: We cannot bill to DHL, TNT, or UPS accounts).
  • Customer Labels: We are also happy to ship internationally using pre-paid labels provided by you for any carrier.
Expedited and Rush Shipping
Need it faster? HardwareJet.com offers 1 or 2-day expedited shipping options during checkout for eligible items.

To get your order to the front of the line, expedited orders include a small rush fee in addition to the carrier's shipping charges. If an item is not available for expedited shipping, these options will not appear in your cart.

Item Condition

New - Sealed or Open Box Condition
Excellent - Almost-New, Missing Original Packaging
Refurbished - Seller Refurbished, Good Condition, Previously Used Item

To bring you an even wider selection, some of our items are shipped directly from our trusted partners. Delivery times may vary for these items.

Overview

The Intel Xeon Qc SL9XR is a high-performance server processor designed for demanding data center workloads and enterprise applications. With a base clock of 1.6GHz, robust 8MB L2 cache and an efficient thermal design power of 80W, this CPU delivers reliable processing power while maintaining manageable heat output. Ideal for virtualization, database management and compute intensive tasks, the Xeon Qc offers a balance of speed, scalability and energy efficiency.

Key Features

  • Base frequency of 1.6GHz with support for turbo boost up to 2.0GHz
  • 8MB shared L2 cache for fast data access
  • Integrated memory controller supporting DDR4-2666 at 1066MHz effective data rate
  • 80W TDP for optimized power consumption in dense server environments
  • Advanced Intel virtualization technology for efficient workload isolation
  • Enhanced security features including hardware based encryption and secure boot

Technical Specifications

  • Manufacturer: Intel
  • Model / Part Number: SL9XR
  • Product Name: Xeon Qc 1.6ghz 8MB L2 1066mhz 80w
  • Core Count: 4 cores / 8 threads
  • Base Clock Speed: 1.6GHz
  • Turbo Boost Frequency: up to 2.0GHz
  • L2 Cache Size: 8MB
  • Memory Support: DDR4-2666, dual channel, up to 128GB
  • Bus Speed: 1066MHz effective data rate
  • TDP: 80W
  • Socket Type: LGA 3647
  • Instruction Set: x86_64
  • Supported Technologies: Intel VT-x, VT-d, AES-NI, Hyper-Threading

Typical Applications

  • Virtualized server environments and cloud infrastructure
  • High-performance database servers and analytics platforms
  • Enterprise resource planning (ERP) and customer relationship management (CRM) systems
  • Scientific computing and simulation workloads
  • Content delivery networks and web hosting services
  • Edge computing nodes that require balanced performance and power efficiency

This Intel Xeon Qc processor provides the reliability and scalability needed for modern enterprise IT, making it a solid choice for organizations looking to enhance compute capacity without exceeding power budgets.