594884-001 HPE Intel Xeon X5650 6 Core Processor 2.66GHz 12MB 6.40GT/s QPI L3 Cache
- — Free Ground Shipping
- — Min. 6-month Replacement Warranty
- — Genuine/Authentic Products
- — Easy Return and Exchange
- — Different Payment Methods
- — Best Price
- — We Guarantee Price Matching
- — Tax-Exempt Facilities
- — 24/7 Live Chat, Phone Support
- — Visa, MasterCard, Discover, and Amex
- — JCB, Diners Club, UnionPay
- — PayPal, ACH/Wire Transfer
- — Apple Pay, Amazon Pay, Google Pay
- — Buy Now, Pay Later - Affirm, Afterpay
- — GOV/EDU/Institutions PO's Accepted
- — Invoices
- — Deliver Anywhere
- — Express Delivery in the USA and Worldwide
- — Ship to -APO -FPO
- — For USA - Free Ground Shipping
- — Worldwide - from $30
Core Count: 6
The Power of Six Cores
The HPE X5650 Processor is equipped with an impressive core count of 6, making it a powerhouse for handling demanding tasks and applications. With each core capable of executing multiple instructions simultaneously, the processor offers exceptional processing power and efficiency.
HP 594884-001 Processor Specifications
General Information
- Manufacturer: HP
- Part Number: 594884-001
- Product Type: Processor
- SKU: 594884-001
- Processor Category: Server
Technical Details
- Processor Series: Xeon
- Model Number: X5650
- Processor Code Name: Westmere EP
- Core Stepping: A0
- Manufacturing Process: 32 nm
- CPU ID String: 206C0
- Number of Cores: 6
- Number of Threads: 12
- Base Clock Speed: 2.66 GHz
- L3 Cache Size: 12 MB
- Front Side Bus / QuickPath Interconnect: 6.40 GT/s QPI
- Thermal Design Power (TDP): 95 Watts
- VID Voltage Range: 0.750V - 1.350V
- Socket Type: LGA 1366
Increased Performance and Speed
Having 6 cores allows the HPE X5650 Processor to handle multiple threads simultaneously, resulting in faster and more efficient processing. This is particularly beneficial for users who engage in resource-intensive activities such as video editing, 3D rendering, and running virtual machines. The additional cores ensure that tasks are completed in a shorter amount of time, improving overall productivity.
Smooth Multitasking Experience
The increased core count also enables smooth multitasking capabilities. Users can effortlessly run multiple applications simultaneously without experiencing lag or slowdowns. Whether it's running complex software suites or handling numerous browser tabs, the HPE X5650 Processor ensures seamless multitasking performance.
Enhanced Gaming Experience
Gamers can also benefit greatly from the 6-core architecture of the HPE X5650 Processor. With modern games becoming increasingly demanding, having more cores means better performance and smoother gameplay. The processor can handle complex physics calculations, AI algorithms, and background processes without affecting the gaming experience.
Future-Proof Investment
Investing in a processor with a higher core count like the HPE X5650 ensures that your system remains relevant and capable of handling future software advancements. As multi-threaded applications become more prevalent, having additional cores will become even more crucial for optimal performance.
Base Clock Speed: 2.66GHz
Efficiency Meets Speed
The HPE X5650 Processor features a base clock speed of 2.66GHz, providing a solid foundation for efficient and speedy computing. The base clock speed determines the processor's ability to execute instructions per second, making it a vital specification for users seeking optimal performance.
Swift Execution of Instructions
The higher the base clock speed, the faster the processor can execute instructions. With a base clock speed of 2.66GHz, the HPE X5650 Processor ensures swift execution, resulting in reduced latency and improved responsiveness. Users can enjoy snappy system performance, quick application launches, and seamless execution of tasks.
Smooth Multimedia Playback
The base clock speed also plays a significant role in multimedia playback. Whether you're streaming high-definition videos, editing multimedia content, or engaging in graphics-intensive tasks, the HPE X5650 Processor's 2.66GHz base clock speed ensures smooth playback without stuttering or buffering delays.
Efficient Power Consumption
While high clock speeds are desirable for performance, they often come at the cost of increased power consumption. The HPE X5650 strikes a balance with its 2.66GHz base clock speed, offering excellent performance while remaining energy efficient. This ensures that your system operates optimally without putting unnecessary strain on your power supply.
Optimized Performance for Everyday Tasks
From web browsing and document editing to email management and multimedia consumption, the HPE X5650 Processor's 2.66GHz base clock speed ensures smooth and efficient performance for everyday computing tasks. Users can rely on the processor to handle their day-to-day activities with ease and speed.
Cache: 12MB
Boosting Processing Efficiency
The HPE X5650 Processor boasts an impressive cache size of 12MB, enhancing its processing efficiency and overall performance. The cache acts as a temporary storage space for frequently accessed data, allowing the processor to quickly retrieve information without relying on slower main memory.
Reduced Memory Latency
With a larger cache size, the HPE X5650 Processor can store more data closer to the processor, reducing the time it takes to retrieve information from main memory. This results in significantly lower memory latency and faster data access speeds. Users will experience snappier system responsiveness, reduced loading times, and improved overall performance.
Enhanced Multitasking Capabilities
The larger cache size also enhances the processor's multitasking capabilities. When running multiple applications simultaneously, each with their own data requirements, having ample cache allows for seamless switching between tasks. The HPE X5650 Processor can efficiently store and retrieve data for various applications, ensuring smooth multitasking without performance degradation.
Improved Gaming Performance
Gamers will benefit from the HPE X5650 Processor's 12MB cache size as well. In gaming, where quick access to game assets and textures is crucial, a larger cache can significantly reduce loading times and improve overall gaming performance. Users can enjoy smoother gameplay with reduced stuttering and faster level load times.
Efficient Data Handling for Demanding Workloads
For professionals working with resource-intensive applications such as video editing, 3D modeling, and data analysis, the HPE X5650 Processor's 12MB cache ensures efficient data handling. It allows for faster access to large datasets, accelerating processing times and improving productivity.
Qpi Speed: 6.40GT/s
High-Speed Data Transfers
The HPE X5650 Processor features a QPI (QuickPath Interconnect) speed of 6.40GT/s, facilitating high-speed data transfers between the processor and other system components. The QPI speed plays a vital role in overall system performance, particularly in scenarios where data needs to be rapidly exchanged.
Rapid Communication Between Cores
The high QPI speed of 6.40GT/s enables efficient communication between the processor's cores, ensuring seamless coordination and synchronization. This is especially beneficial for multi-threaded applications that heavily rely on inter-core communication. Users can expect smoother execution of parallel tasks and improved overall system responsiveness.
Optimized Performance for Memory-Intensive Applications
The HPE X5650 Processor's high QPI speed facilitates faster data transfers between the processor and memory, optimizing performance for memory-intensive applications. Whether you're working with large datasets or running virtual machines, the efficient data exchange enables faster access to critical information, resulting in improved processing times.
Accelerated Data Exchange with Peripheral Devices
In addition to inter-core communication and memory transfers, the high QPI speed also benefits data exchange with peripheral devices such as storage drives and network interfaces. Users can experience faster file transfers, reduced backup times, and improved network performance.
Seamless Connectivity and Efficient Data Flow
With its QPI speed of 6.40GT/s, the HPE X5650 Processor ensures seamless connectivity and efficient data flow within your system. Whether you're engaging in complex computational tasks or transferring large amounts of data, the high-speed interconnectivity guarantees optimal performance.
L3 Cache: 594884-001
Optimal Data Storage and Access
The HPE X5650 Processor features an L3 cache size of 594884-001, providing a significant amount of storage space for frequently accessed data. The L3 cache acts as a bridge between the processor cores and main memory, ensuring fast and efficient data storage and retrieval.
Improved System Responsiveness
With a larger L3 cache, the HPE X5650 Processor can store more data closer to the processor cores, reducing the time it takes to access information. This results in improved system responsiveness, faster application launches, and reduced latency. Users will experience a snappier computing experience across various tasks and applications.
Efficient Data Sharing Between Cores
The larger L3 cache also facilitates efficient data sharing between the processor's cores. When multiple cores need to access the same data, having a larger cache ensures that the information is readily available, reducing the need for data transfers between cores and improving overall processing efficiency.
Enhanced Virtualization Performance
For users running virtual machines or engaging in virtualization tasks, the HPE X5650 Processor's 594884-001 L3 cache offers enhanced performance. Virtualized environments often require frequent data access and sharing, and a larger cache size ensures smooth operation without performance bottlenecks.
Efficient Data Management for High-Performance Computing
The HPE X5650 Processor's L3 cache of 594884-001 is ideal for high-performance computing scenarios. Whether you're involved in scientific research, financial modeling, or engineering simulations, the processor's ample cache size guarantees efficient data management and accelerated processing times.