MO003200JWFWR HPE 3.2TB SAS 12GBPS 2.5inch Mixed Use SC Hot Swap Solid State Drive
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HPE 3.2TB SAS 12GBPS 2.5-Inch MU SSD
General Information
- Brand: Hewlett Packard Enterprise (HPE)
- Model Number: MO003200JWFWR
- Device Category: Solid State Drive
Technical Specifications
Storage and Interface Details
- Storage Capacity: 3.2 Terabytes
- Form Factor: 2.5-Inch Small Form Factor (SFF)
- Flash Memory Type: Multi-Level Cell (MLC)
- Interface Protocol: SAS 12Gbps
- Data Transfer Rate: 1.2 Gbps
- Drive Height: 0.6 inches
- Usage Type: Mixed-Use
- Swap Feature: Hot-Swap Enabled
- Security: Digitally Signed Firmware
Performance Metrics
- Endurance Rating: 3 DWPD (Drive Writes Per Day)
- Internal Read Speed: Up to 1075 Mbps
- Internal Write Speed: Up to 1025 Mbps
- Random Read IOPS (4KB): 125,000
- Random Write IOPS (4KB): 93,000
System Compatibility
Designed For HPE ProLiant Gen9 Servers
DL Series
- DL160 Gen9 (Base, Entry, Performance)
- DL360 Gen10 (Base, Entry, Performance, High Performance)
- DL560 Gen10 (Base, Entry, Performance)
- DL580 Gen9 (Base, Database, High Performance)
ML Series
- ML110 Gen9 (Base, Entry)
XL Series
- XL170r Gen9
Supported HPE Gen10 and Gen10+ Platforms
BL Series
- BL460c Gen10
DL Series
- DL20, DL60, DL80, DL160 Gen10
- DL325 Gen10/Gen10+
- DL360, DL380, DL385, DL388 Gen10
- DL560, DL580 Gen10
DX Series
- DX380 Gen10
ML Series
- ML30, ML110, ML350 Gen10
XL Series
- XL230k Gen10
Synergy Systems
- Synergy 480 Gen10
- Synergy 660 Gen10
- Synergy D3940
Apollo Series
- 4500, 4510, 4520, 4530 Gen10
- 6500 Gen10+
- K6000, D6500, R2200, R2600, R2800 Gen10
The HPE MO003200JWFWR 3.2TB SSD
- Optimized for mixed-use enterprise environments with high endurance
- Digitally signed firmware ensures secure and reliable operation
- Hot-swap capability simplifies upgrades and maintenance
- High-speed SAS 12Gbps interface delivers consistent performance
- Broad compatibility across HPE ProLiant, Synergy, and Apollo platforms
HPE MO003200JWFWR 3.2TB MU SSD Overview
The HPE MO003200JWFWR 3.2TB SAS 12GBPS 2.5inch Mixed Use SC Hot Swap Solid State Drive represents a significant advancement in enterprise storage solutions. Designed for modern data centers and high-performance computing environments, this drive combines speed, reliability, and scalability to meet the increasing demands of business-critical applications. With a capacity of 3.2TB, this SAS SSD enables organizations to efficiently manage large datasets while maintaining consistent performance under mixed workloads.
Advanced SAS 12GBPS Interface
The 12GBPS SAS interface of the HPE MO003200JWFWR SSD delivers superior data transfer rates compared to traditional SAS and SATA drives. This high-speed connectivity ensures rapid read and write operations, minimizing latency in demanding enterprise environments. The SAS interface is backward compatible with lower-speed SAS controllers, providing flexibility for existing infrastructure upgrades without compromising performance. The enhanced throughput makes it ideal for transactional databases, virtualization workloads, and large-scale analytics applications.
Performance and Mixed Workload Optimization
Optimized for mixed-use workloads, the HPE MO003200JWFWR SSD balances read-intensive and write-intensive operations effectively. Enterprise environments often encounter diverse workloads, and this drive is engineered to handle both transactional and sequential data patterns. Its high Input/Output Operations Per Second (IOPS) ensures consistent performance under heavy workloads, reducing bottlenecks in storage-intensive applications. The drive’s advanced firmware algorithms intelligently manage write amplification and data distribution to maintain long-term performance and endurance.
Hot Swap Functionality for Maximum Uptime
The hot swap capability of the HPE MO003200JWFWR 3.2TB SSD is essential for maintaining continuous system availability. IT administrators can replace or upgrade drives without shutting down servers, significantly reducing maintenance windows and avoiding disruptions in mission-critical applications. This feature is particularly valuable in data centers where uptime is paramount, enabling seamless scalability and maintenance without affecting operational efficiency.
Enterprise-Grade Endurance and Reliability
Reliability is a critical factor in enterprise storage, and the HPE MO003200JWFWR SSD is engineered to deliver high endurance for sustained heavy workloads. The solid-state design eliminates mechanical failures common in traditional spinning disks, resulting in increased mean time between failures (MTBF). Additionally, the drive incorporates advanced error correction, wear-leveling algorithms, and power loss protection to ensure data integrity. These features provide peace of mind to organizations that rely on continuous access to critical business data.
Data Center Integration and Compatibility
The HPE MO003200JWFWR SSD is fully compatible with HPE ProLiant servers, storage arrays, and other enterprise-grade infrastructure solutions. This seamless integration reduces deployment complexity and accelerates time-to-value for IT teams. The drive is also compliant with industry standards for SAS SSDs, allowing it to operate reliably in heterogeneous environments. This broad compatibility ensures that businesses can leverage existing investments while benefiting from modern storage performance.
Thermal Management and Power Efficiency
Efficient thermal management is crucial in high-density server environments. The HPE MO003200JWFWR 3.2TB SSD is designed to operate within optimal thermal parameters, minimizing heat generation during heavy workloads. The low power consumption contributes to energy efficiency, reducing operational costs and supporting sustainable data center practices. Proper thermal management ensures the drive maintains peak performance without thermal throttling, even under continuous high IOPS workloads.
Security and Data Protection Features
Data security is a top priority in enterprise storage, and the HPE MO003200JWFWR SSD incorporates advanced protection mechanisms. The drive supports secure erase functionality, enabling organizations to safely remove sensitive data when decommissioning or repurposing drives. Additionally, built-in encryption options help safeguard data against unauthorized access, while robust error correction ensures data integrity over the drive’s lifecycle. These security features align with industry compliance requirements, providing confidence in data governance and regulatory adherence.
Optimized for Virtualization and Cloud Workloads
Virtualized environments and cloud applications demand consistent low-latency storage solutions. The HPE MO003200JWFWR SSD is specifically designed to meet these requirements, offering high IOPS, low latency, and predictable performance under mixed workloads. The drive’s reliability and endurance make it suitable for hosting multiple virtual machines, database clusters, and containerized applications. Its performance characteristics reduce bottlenecks in storage-intensive cloud environments, supporting agile and scalable IT operations.
Advanced Firmware and Monitoring Tools
The HPE MO003200JWFWR SSD comes equipped with intelligent firmware that continuously monitors drive health, performance metrics, and endurance. Predictive analytics provided by integrated management software help IT administrators proactively address potential issues before they impact system availability. Regular firmware updates ensure ongoing optimization for performance and compatibility, extending the useful life of the SSD. The drive’s monitoring capabilities simplify management in large-scale deployments, enhancing overall operational efficiency.
Deployment in High-Performance Computing Systems
High-performance computing (HPC) systems demand storage solutions capable of handling massive datasets with minimal latency. The HPE MO003200JWFWR 3.2TB SSD is ideal for HPC workloads, including scientific simulations, financial modeling, and data analytics. Its high throughput and low latency improve application response times, while the robust SAS interface ensures compatibility with existing HPC architectures. By integrating this SSD, organizations can accelerate computational tasks and gain faster insights from their data.
