Description
Product Specification about the HPE 822567-B21 3.2TB Solid State Drive
In the world of technology, storage solutions play a crucial role in ensuring efficiency, reliability, and performance in various computing environments. Among these solutions, solid-state drives (SSDs) have gained significant popularity due to their faster data access speeds and enhanced durability compared to traditional hard disk drives (HDDs). Hewlett Packard Enterprise (HPE), a renowned name in the realm of IT infrastructure, offers a wide range of SSDs tailored to meet the diverse needs of businesses and organizations. One such offering is the HPE 822567-B21 3.2TB SAS 12Gbps SSD Mixed Use Smart Carrier. In this comprehensive guide, we delve into the intricacies of this SSD, exploring its features, benefits, applications, and how it can contribute to optimizing storage performance in various IT environments.
Understanding SSD Technology
Before delving into the specifics of the HPE 822567-B21 3.2TB SSD, it’s essential to understand the fundamental technology behind SSDs. Unlike traditional HDDs, which rely on spinning magnetic disks and mechanical read/write heads, SSDs utilize flash memory to store data. This absence of moving parts results in faster data access times, reduced latency, and improved reliability. SSDs are known for their ability to significantly enhance system performance, making them a preferred choice for modern computing environments, ranging from personal laptops to enterprise-grade servers.
The HPE 822567-B21 3.2TB SAS SSD
The HPE 822567-B21 is a solid-state drive designed to deliver high performance, reliability, and endurance for enterprise applications. It features a storage capacity of 3.2TB, making it suitable for storing large volumes of data in demanding environments. The drive utilizes a Serial Attached SCSI (SAS) interface with a data transfer rate of 12Gbps, ensuring rapid data transfer speeds and seamless integration with compatible storage systems.
Key Features of the HPE 822567-B21 SSD
- Mixed-Use Endurance: The HPE 822567-B21 SSD is classified as a mixed-use SSD, meaning it is optimized to handle both read-intensive and write-intensive workloads effectively. This versatility makes it suitable for a wide range of applications, including online transaction processing (OLTP), virtualization, and data analytics.
- Smart Carrier Design: The SSD comes equipped with a Smart Carrier design, which enhances ease of installation and maintenance. The Smart Carrier provides compatibility with HPE Gen9 and Gen10 servers, allowing for seamless integration into existing IT infrastructures.
- Enhanced Reliability: With no moving parts, SSDs inherently offer greater reliability than traditional HDDs. The HPE 822567-B21 SSD further enhances reliability through advanced error correction technologies and power-loss protection mechanisms, minimizing the risk of data loss and ensuring data integrity.
- High Performance: Leveraging the SAS interface and advanced flash memory technology, the SSD delivers exceptional performance, with high throughput and low latency. This makes it well-suited for demanding enterprise workloads that require rapid data access and processing.
- End-to-end Data Protection: The SSD implements end-to-end data protection mechanisms, including advanced encryption and data integrity checks, to safeguard data against unauthorized access and corruption. This ensures compliance with stringent data security requirements and regulations.
Applications
The HPE 822567-B21 SSD is designed to cater to a wide range of enterprise applications, thanks to its combination of high performance, reliability, and endurance. Some of the key applications include:
- Database Servers: The SSD is ideal for database servers hosting mission-critical databases, such as Oracle, SQL Server, and MySQL. Its high throughput and low latency enable faster query processing and improved overall database performance.
- Virtualized Environments: In virtualized environments, where multiple virtual machines (VMs) share underlying hardware resources, storage performance is crucial for ensuring smooth operation. The HPE 822567-B21 SSD accelerates VM provisioning, migration, and I/O operations, leading to enhanced VM density and performance.
- Enterprise Storage Arrays: When used in conjunction with enterprise storage arrays, the SSD can boost the overall performance and responsiveness of storage systems. Its mixed-use endurance makes it suitable for handling a diverse range of workloads, including both read and write-heavy operations.
- Data Analytics: For organizations engaged in data analytics and business intelligence initiatives, the SSD provides the necessary performance and scalability to process large volumes of data efficiently. Whether performing real-time analytics or batch processing tasks, the SSD ensures timely insights and decision-making.
- Content Delivery Networks (CDNs): Content Delivery Networks (CDNs) rely on fast and reliable storage solutions to deliver content to end-users with minimal latency. The HPE 822567-B21 SSD enhances the performance of CDNs by accelerating content delivery and improving overall user experience.
General Information about the HPE 822567-B21 SAS 12GBPS SSD
- Manufacturer: HPE
- Part Number or SKU# 822567-B21
- Product Type: Solid State Drive(SSD)
- Interface: SAS-12GBPS
- Spare Part Number: 822790-001
- Model Number: MO3200JFFCL
- Assembly Number: 822552-004
Technical Information
- Capacity: 3.2TB
- Interface: SAS 12Gbps
- Flash Type: Triple-Level Cell (TLC)
- Plug Type: Hot Pluggable
- Carrier Type: Smart Carrier (SC)
- Workload Type: Mixed-Use
- Features: Supports Power Loss Protection (PLP)
- Bundled with: HPE Smart Carrier (SC)
Drive Performance
- Drive Transfer Rate: 1.2 Gbps (External)
- Internal Data Rate: 950 MB/s (Read) / 950 MB/s (Write)
- 4kb Random Read: 93,000 IOPS
- 4kb Random Write: 53,000 IOPS
- MAX Seq. Reads Throughput (MiB/s): 950
- MAX Seq. Writes Throughput (MiB/s): 950
- Random Read Average Latency uSec (4KiB, Q1): 125
- Random Write Average Latency uSec (4KiB, Q1): 50
- Random Read IOPS (4KiB, Q=16): 93,000
- Random Write IOPS (4KiB, Q=16): 53,000
- MAX Random Write IOPS (4KiB): 150,000Q64
- MAX Random Write IOPS (4KiB): 53,000Q4
- 4KiB Random 70% Read / 30% Write, Queue 32 Performance (IOPS) VI-1: 70,000
- 4KiB Random 50% Read / 50% Write, Queue 32 Performance (IOPS) VI-2: 87,500
Power Consumption
- Idle Time: 3.48 Watts
- Random Read: 3.76 Watts
- Random Write: 3.76 Watts
- Sequential Read: 4.79 Watts
- Sequential Write: 4.56 Watts
- Random R/W: 3.76 Watts
Compatibility
- HPE ProLiant BL Series: BL420c Gen8 Gen9 (2.5 inch), BL460c Gen8 Gen9 (2.5 inch), BL465c Gen8 Gen9 (2.5 inch), BL660c Gen8 Gen9 (2.5 inch)
- HPE ProLiant DL Series: DL20 Gen9 (2.5 inch), DL120 Gen8 Gen9 (2.5 inch), DL160 Gen8 Gen9 (2.5 inch), DL180 Gen8 Gen9 (2.5 inch), DL320e Gen8 Gen9 (2.5 inch), DL360 Gen8 Gen9 Gen10 (2.5 inch), DL360e Gen8 Gen9 (2.5 inch), DL360p Gen8 Gen9 (2.5 inch), DL388 Gen9 (2.5 inch), DL380 Gen8 Gen9 Gen10 (2.5 inch), DL380e Gen8 Gen9 (2.5 inch), DL380p Gen8 Gen9 (2.5 inch), DL385 Gen10 (2.5 inch), DL560 Gen10 (2.5 inch), DL580 Gen10 (2.5 inch), DL385p Gen8 Gen9 (2.5 inch), DL560 Gen8 Gen9 (2.5 inch), DL580 Gen8 Gen9 (2.5 inch)
- HPE ProLiant ML Series: ML110 Gen8 Gen9 Gen10 (2.5 inch), ML150 Gen8 Gen9 (2.5 inch), ML310e Gen8 Gen9 (2.5 inch), ML350 Gen8 Gen9 Gen10 (2.5 inch), ML350e Gen8 Gen9 (2.5 inch), ML350p Gen8 Gen9 (2.5 inch)
- HPE ProLiant SL Series: SL230s Gen8 Gen9 (2.5 inch), SL250s Gen8 Gen9 (2.5 inch), SL270s Gen8 Gen9 (2.5 inch)
Finally, the HPE 822567-B21 3.2TB SAS 12Gbps SSD Mixed Use Smart Carrier stands out as a versatile and high-performance storage solution tailored to meet the demands of modern enterprise environments. With its robust features, including mixed-use endurance, smart carrier design, enhanced reliability, and high performance, the SSD is well-suited for a wide range of applications, spanning database servers, virtualized environments, enterprise storage arrays, data analytics, and content delivery networks. By leveraging the HPE 822567-B21 SSD, organizations can optimize their storage infrastructure, improve application performance, and achieve greater operational efficiency.