HPE 868843-001 32GB Memory PC4-21300 CL19 ECC Registered DDR4 SDRAM
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SKU/MPN | Warranty | Price | Condition | You save |
---|---|---|---|---|
868843-001 | Six-Month (180 Days) | $43.00 | New (System) Pull | You save: $32.60 (43%) |
868843-001 | Six-Month (180 Days) | Contact us for a price | Factory-Sealed New in Original Box (FSB) |
Product Overview: HPE 868843-001
General Information
- Manufacturer: HPE
- Part Number: 868843-001
- Product Name: 32GB DDR4 SDRAM Memory Module
Technical Specifications
Memory Details
- Storage Capacity: 32GB
- Memory Technology: DDR4 SDRAM
- Number of Modules: 1 x 32GB
- Bus Speed: 2666MHz DDR4-21300 / PC4-21300
- Data Integrity Check: ECC
- Signal Processing: Registered
- CAS Latency: CL19
- Rank: 2RX4
Physical Characteristics
- Form Factor: 288-pin RDIMM
- Shipping Dimensions: 1.00 inches (Height) x 6.75 inches (Depth)
- Shipping Weight: 0.20 lbs
Compatibility
Compatible Systems
- HPE Converged System: 500
- HPE ProLiant:
- BL460c Gen10
- DL360 Gen10
- DL380 Gen10
- DL560 Gen10
- ML350 Gen10
- XL230k Gen10
- HPE Synergy: 480 Gen10
- HPE Synergy: 660 Gen10
Capacity: 32GB
The HPE 868843-001 DDR4 SDRAM is a high-performance memory module with a capacity of 32GB. This impressive capacity allows users to handle demanding tasks and run resource-intensive applications with ease. Whether you are a professional working with large datasets, a gamer looking for an immersive experience, or a content creator working with high-resolution media, having a high-capacity memory module like the HPE 868843-001 DDR4 SDRAM is essential.
Enhanced Multitasking
With 32GB of capacity, this memory module enables seamless multitasking. You can have multiple applications and processes running simultaneously without experiencing any lag or slowdowns. This is especially important for professionals who rely on their computers to handle complex tasks such as video editing, 3D rendering, or data analysis. The ample capacity ensures that your system can handle these tasks efficiently, allowing you to work faster and more efficiently.
Improved Gaming Performance
Gamers will also benefit greatly from the 32GB capacity of the HPE 868843-001 DDR4 SDRAM. Modern games require significant amounts of memory to run smoothly and deliver immersive experiences. With 32GB at your disposal, you can expect faster loading times, smoother gameplay, and improved overall performance. You can also run other applications in the background without affecting your gaming experience, such as streaming software or voice chat programs.
Efficient Content Creation
Content creators often work with large files and resource-intensive software. Whether you are editing videos, creating animations, or designing complex graphics, having sufficient memory is crucial. The 32GB capacity of this memory module allows content creators to work seamlessly with high-resolution media and large project files. You can edit videos in real-time, apply complex effects and transitions without any lag, and render your projects faster. This capacity ensures that you can focus on your creativity without being hindered by memory limitations.
Future-Proofing
Investing in a memory module with a high capacity like the HPE 868843-001 DDR4 SDRAM is also a future-proofing strategy. As software and applications become more demanding, the need for greater memory capacity will only increase. By choosing a module with 32GB, you are ensuring that your system will be able to handle future updates and advancements without the need for immediate upgrades. This can save you time and money in the long run.
Efficient Virtualization
Virtualization technology allows users to run multiple operating systems or environments simultaneously on a single machine. This is particularly useful for businesses that require different software setups or developers who need to test their applications in various environments. The 32GB capacity of the HPE 868843-001 DDR4 SDRAM ensures that you can allocate sufficient memory to each virtual machine without compromising performance. This enables efficient virtualization and enhances productivity.
Seamless Database Management
Database management systems require a significant amount of memory to handle large datasets efficiently. The 32GB capacity of this memory module allows for seamless database management, ensuring quick access to information and smooth query execution. Whether you are running a business database or working with complex analytics, having sufficient memory capacity is essential for optimal performance.
Conclusion
The 32GB capacity of the HPE 868843-001 DDR4 SDRAM provides users with enhanced multitasking capabilities, improved gaming performance, efficient content creation, future-proofing, efficient virtualization, and seamless database management. With this high-capacity memory module, you can handle demanding tasks with ease, work faster and more efficiently, and ensure that your system is ready for future advancements. Whether you are a professional, gamer, content creator, or business user, the 32GB capacity of this memory module will undoubtedly enhance your computing experience.
Speed: PC4-21300
The HPE 868843-001 DDR4 SDRAM features a speed rating of PC4-21300. This high-speed memory module delivers exceptional performance and responsiveness, allowing users to experience a significant boost in their system's overall speed and efficiency. The speed specification is an essential factor to consider when choosing a memory module, as it directly impacts the performance of your computer.
Enhanced System Responsiveness
The PC4-21300 speed rating ensures that your system responds quickly to your commands and executes tasks with minimal delay. Whether you are opening applications, launching files, or switching between tasks, the increased speed provided by this memory module allows for a smooth and seamless user experience. You can work faster and more efficiently, saving valuable time and boosting productivity.
Faster Data Transfer
One of the significant benefits of the PC4-21300 speed rating is its ability to facilitate faster data transfer rates. This is particularly important for professionals working with large files or transferring data between devices. The high-speed memory module ensures that data can be read from and written to the memory at a rapid pace, resulting in shorter file transfer times and improved workflow efficiency.
Optimized Gaming Performance
Gamers will appreciate the PC4-21300 speed rating of the HPE 868843-001 DDR4 SDRAM. This high-speed memory module can significantly improve gaming performance by reducing loading times and increasing the overall responsiveness of the system. Games will run smoother, and you can enjoy a more immersive and fluid gaming experience. Additionally, the high-speed memory module allows for faster rendering of in-game graphics and textures, enhancing visual quality.
Seamless Multimedia Editing
For content creators working with multimedia files, the PC4-21300 speed rating is a crucial feature. Video editing, image rendering, and audio processing require rapid data access and transfer to ensure smooth playback and real-time editing capabilities. The high-speed memory module enables seamless multimedia editing by providing quick access to large files and reducing latency during rendering and exporting processes.
Efficient Virtualization
Virtualization technology relies heavily on memory speed to ensure efficient performance. The PC4-21300 speed rating of the HPE 868843-001 DDR4 SDRAM allows for faster data retrieval and execution within virtual environments. This results in improved responsiveness when running multiple operating systems or software setups simultaneously. Whether you are a developer or a business user, the high-speed memory module ensures that your virtualization experience is smooth and efficient.
Enhanced Database Operations
Database management systems require fast memory access to handle complex queries and process large volumes of data efficiently. With the PC4-21300 speed rating, the HPE 868843-001 DDR4 SDRAM ensures that database operations are executed quickly and accurately. This leads to faster data retrieval, reduced query execution times, and improved overall database performance.
Conclusion
The PC4-21300 speed rating of the HPE 868843-001 DDR4 SDRAM offers enhanced system responsiveness, faster data transfer rates, optimized gaming performance, seamless multimedia editing, efficient virtualization, and enhanced database operations. By choosing a high-speed memory module like this one, you can experience a significant boost in your system's overall speed and efficiency, leading to improved productivity and a more enjoyable computing experience.
Cas Latency: CL19
The Cas Latency of the HPE 868843-001 DDR4 SDRAM is CL19. Cas Latency, also known as CL, is a measure of the delay between the memory controller requesting data and the data being available to be read. A lower Cas Latency indicates faster memory response time, resulting in improved system performance and overall efficiency.
Reduced Memory Latency
The CL19 Cas Latency of this memory module ensures reduced memory latency, allowing for faster data access and retrieval. This results in improved system responsiveness, reduced delays when opening applications or files, and overall smoother performance. Whether you are multitasking, gaming, or working with resource-intensive applications, the low Cas Latency ensures that your system can keep up with your demands.
Enhanced Gaming Experience
Gamers will particularly benefit from the CL19 Cas Latency of the HPE 868843-001 DDR4 SDRAM. The low latency ensures that game data can be accessed quickly, reducing input lag and providing a smoother gaming experience. Faster memory response time allows for quicker loading of game assets, seamless rendering of in-game graphics, and improved overall performance. You can enjoy fast-paced games without experiencing stuttering or delays.
Seamless Content Creation
Content creation tasks such as video editing, 3D rendering, and graphic design require quick access to large files and smooth real-time editing capabilities. The CL19 Cas Latency of this memory module ensures that data can be retrieved efficiently from the memory, allowing for seamless content creation workflows. You can edit videos in real-time, apply complex effects, and render projects faster without being hindered by memory latency.
Efficient Multitasking
The low Cas Latency of the HPE 868843-001 DDR4 SDRAM enables efficient multitasking. When switching between applications or running multiple processes simultaneously, the reduced memory latency ensures that your system can keep up with the demands, minimizing delays and slowdowns. This is particularly important for professionals who rely on their computers to handle complex tasks efficiently.
Improved Virtualization Performance
Virtualization environments require fast memory responsiveness to ensure smooth operation and efficient performance. The CL19 Cas Latency of this memory module allows for quick data retrieval within virtual machines, reducing lag and latency. Whether you are running multiple operating systems or software setups simultaneously, the low Cas Latency ensures that your virtualization experience is seamless and efficient.
Optimized Database Operations
Database management systems often involve complex queries and large datasets. The low Cas Latency of the HPE 868843-001 DDR4 SDRAM ensures that database operations are executed quickly, resulting in faster data retrieval and reduced query execution times. This improves overall database performance and enhances productivity for businesses that rely on efficient database management.
Conclusion
The CL19 Cas Latency of the HPE 868843-001 DDR4 SDRAM offers reduced memory latency, an enhanced gaming experience, seamless content creation, efficient multitasking, improved virtualization performance, and optimized database operations. By choosing a memory module with low Cas Latency, you can ensure that your system responds quickly to your commands, delivers smooth performance in resource-intensive tasks, and provides an overall enhanced computing experience.
Ecc: 1
The HPE 868843-001 DDR4 SDRAM features Error Correcting Code (ECC) technology with a value of 1. ECC is a memory subsystem feature that detects and corrects single-bit errors that can occur during data storage or transmission. This technology provides an additional layer of reliability and safeguards against data corruption, making it particularly important for critical applications and systems.
Data Integrity and Reliability
ECC technology ensures the integrity and reliability of data stored in memory. Single-bit errors, which can occur naturally or due to external factors such as cosmic rays or electromagnetic interference, can lead to data corruption. The ECC feature with a value of 1 in the HPE 868843-001 DDR4 SDRAM detects and corrects these errors automatically, preventing data loss or corruption. This is especially crucial for critical applications or systems where data accuracy is paramount.
Enhanced System Stability
The ECC technology in this memory module enhances system stability by preventing crashes or system failures caused by memory errors. By detecting and correcting errors in real-time, the ECC feature ensures that the system operates reliably and continuously. This is particularly important for servers, workstations, or any mission-critical systems where downtime can result in significant losses or disruptions.
Improved System Performance
While ECC technology primarily focuses on error detection and correction, it can also indirectly contribute to improved system performance. By preventing data corruption, the ECC feature eliminates the need for time-consuming error recovery processes or re-running failed computations. This results in more efficient use of system resources and optimized performance, allowing users to complete tasks faster and more reliably.
Secure Data Storage
The ECC feature with a value of 1 in the HPE 868843-001 DDR4 SDRAM provides secure data storage by ensuring the accuracy and integrity of stored information. This is particularly important for businesses or individuals handling sensitive data, such as financial records, customer information, or intellectual property. The ECC technology safeguards against data corruption, reducing the risk of unauthorized access or compromised data.
Reliable Server Operations
Servers play a critical role in delivering services and processing requests in various industries. The ECC technology in the HPE 868843-001 DDR4 SDRAM ensures reliable server operations by detecting and correcting memory errors. This is essential for maintaining uptime, preventing data loss, and ensuring uninterrupted service delivery. Businesses can rely on the ECC feature to keep their servers running smoothly and avoid costly disruptions.
Protection against Silent Data Corruption
Silent data corruption refers to errors that occur during storage or transmission without being detected by traditional error-checking mechanisms. These errors can result in undetected data corruption, leading to potentially catastrophic consequences in critical applications or systems. The ECC feature with a value of 1 provides an additional layer of protection against silent data corruption, ensuring that data integrity is maintained even in the presence of undetectable errors.
Conclusion
The ECC technology with a value of 1 in the HPE 868843-001 DDR4 SDRAM ensures data integrity and reliability, enhances system stability, improves system performance, provides secure data storage, ensures reliable server operations, and protects against silent data corruption. By choosing a memory module with ECC technology, users can have peace of mind knowing that their data is protected and their systems are operating reliably. This feature is particularly important for critical applications, mission-critical systems, and businesses that rely on accurate and secure data storage.
Registered: 1
The HPE 868843-001 DDR4 SDRAM features Registered Memory (also known as Registered DIMM or RDIMM) with a value of 1. Registered memory modules provide enhanced stability and reliability, making them ideal for high-performance computing systems or servers that require maximum uptime and data integrity.
Improved Signal Integrity
Registered memory modules, such as the HPE 868843-001 DDR4 SDRAM, use a register or buffer to isolate the memory chips from the memory controller. This isolation improves signal integrity by reducing electrical load and noise on the memory bus. The result is a more stable and reliable memory subsystem that can operate at higher speeds without sacrificing data integrity. This is particularly important in high-performance computing systems where data accuracy is critical.
Increased Memory Capacity
Registered memory modules allow for increased memory capacity compared to unbuffered modules. The register or buffer used in Registered DIMMs allows for the expansion of the memory bus, enabling larger memory configurations. With a value of 1, the HPE 868843-001 DDR4 SDRAM supports enhanced memory capacity, providing users with the flexibility to meet their specific needs. This is especially important for servers or workstations that require large amounts of memory to handle demanding applications or virtualization environments.
Enhanced System Stability
The use of Registered Memory contributes to enhanced system stability by reducing electrical load and noise on the memory bus. By isolating the memory chips from the memory controller, potential signal integrity issues are minimized, resulting in a more reliable system. This is particularly crucial for servers or high-performance computing systems that operate continuously and require maximum uptime. The Registered DIMM ensures that data transfer between the memory and processor occurs reliably and without errors.
Optimized Server Performance
Servers often handle heavy workloads and require maximum performance to deliver services efficiently. The use of Registered Memory, such as the HPE 868843-001 DDR4 SDRAM, ensures optimized server performance by providing a more stable and reliable memory subsystem. The increased memory capacity and improved signal integrity allow servers to handle more simultaneous requests, process