MTFDHAL3T8TCT-1AR1ZABYY Micron 3.84TB PCI-E 9200 Pro NVME Enterprise SSD
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Micron 9200 Pro 3.84TB PCI-E NVMe Enterprise SSD Overview
The Micron MTFDHAL3T8TCT-1AR1ZABYY is a high-performance enterprise-grade internal solid-state drive designed to deliver exceptional speed, reliability, and durability. With a massive 3.84TB capacity and PCIe 3.0 x4 NVMe interface, this SSD is optimized for data-intensive applications, ensuring seamless operation in demanding enterprise environments.
Key Specifications of Micron 9200 Pro SSD
- Manufacturer: Micron
- Model Number: MTFDHAL3T8TCT-1AR1ZABYY
- Device Type: Internal Solid State Drive
- Form Factor: 2.5-inch
- Interface: U.2 PCI Express 3.0 x4 (NVMe)
- NAND Flash Memory: 3D Triple-Level Cell (TLC)
- Bytes Per Sector: 512
Physical Dimensions
- Width: 2.7 inches
- Depth: 4 inches
- Height: 0.6 inches
Performance and Endurance
The Micron 9200 Pro SSD is engineered for outstanding speed and long-lasting endurance, making it ideal for enterprise storage workloads.
Read and Write Speeds
- Sequential Read Speed: Up to 3.35 Gbps
- Sequential Write Speed: Up to 2.4 Gbps
- 4KB Random Read IOPS: 800,000
- 4KB Random Write IOPS: 130,000
Drive Endurance
- SSD Endurance: 7 Petabytes Written (PBW)
- Read Unrecoverable Bit Error Rate (UBER): 10-17
Advanced Features
- 3D NAND technology for improved density and reliability
- FlexCapacity for optimized storage allocation
- S.M.A.R.T. monitoring for proactive health management
- Enterprise-grade data protection and integrity
Compatibility and Expansion
This Micron SSD is designed for broad compatibility and easy integration into enterprise storage systems.
Expansion Options
- Compatible with standard 2.5-inch drive bays
- Supports PCIe NVMe interface for high-speed connectivity
Environmental Specifications
Built for durability, the Micron 9200 Pro operates reliably under a wide range of conditions, ensuring stable performance in data centers.
Operating Conditions
- Minimum Operating Temperature: 32 °F (0 °C)
- Maximum Operating Temperature: 158 °F (70 °C)
- Operating Humidity Range: 25% - 95%
Storage Conditions
- Minimum Storage Temperature: -40 °F (-40 °C)
- Maximum Storage Temperature: 185 °F (85 °C)
Micron MTFDHAL3T8TCT-1AR1ZABYY Overview
The Micron MTFDHAL3T8TCT-1AR1ZABYY is a high-performance enterprise-grade solid-state drive designed to meet the demanding storage requirements of modern data centers and mission-critical applications. This 3.84TB NVMe SSD utilizes PCIe Gen4 technology to deliver exceptional throughput and low latency, making it ideal for workloads that require rapid data access and consistent performance. With enterprise-grade endurance and reliability, the 9200 Pro series ensures long-term operational stability for high-intensity computing environments.
Advanced NVMe Technology
The Micron 9200 Pro SSD series leverages the latest NVMe 1.4 specification, offering a significant improvement over traditional SATA and SAS-based drives. The NVMe protocol optimizes command queues, reduces I/O overhead, and provides scalable performance for high-speed storage solutions. By utilizing PCIe Gen4 lanes, the drive achieves read and write speeds far surpassing conventional storage options, which translates into faster data processing and reduced latency for critical workloads.
PCIe Gen4 Interface Benefits
PCIe Gen4 technology doubles the bandwidth of previous PCIe generations, allowing the Micron MTFDHAL3T8TCT-1AR1ZABYY to achieve sequential read speeds up to 7,000 MB/s and sequential write speeds up to 4,500 MB/s. This high throughput supports large-scale database operations, real-time analytics, and virtualization environments that demand rapid access to massive datasets. Enterprises can leverage these performance gains to accelerate mission-critical applications, reduce data bottlenecks, and enhance overall system efficiency.
Enterprise-Grade Reliability
Micron’s 9200 Pro SSDs are engineered for the highest reliability standards, with end-to-end data protection and advanced error correction capabilities. The drive features Micron’s proprietary NAND flash technology, which ensures consistent performance and high endurance across the entire 3.84TB capacity. Endurance ratings and robust wear-leveling algorithms guarantee that even under continuous heavy workloads, the drive maintains optimal functionality and prevents premature wear.
High Capacity and Scalability
With a storage capacity of 3.84TB, the Micron MTFDHAL3T8TCT-1AR1ZABYY is suitable for large-scale enterprise deployments that require extensive data storage and high-speed access. Multiple drives can be deployed in RAID configurations to provide additional redundancy and enhanced storage performance. The scalability of NVMe infrastructure ensures that as enterprise storage needs grow, organizations can easily expand capacity without compromising on speed or reliability.
Endurance and Data Integrity
The endurance of the 9200 Pro series is tailored for data-intensive applications, offering high total bytes written (TBW) ratings suitable for heavy-duty write operations. Advanced error correction code (ECC) mechanisms detect and correct errors in real time, while power-loss protection safeguards critical data in the event of unexpected power outages. This ensures continuous uptime and protects enterprises from costly data loss or downtime.
Optimized for Mixed Workloads
The drive excels in mixed workload environments, efficiently handling a combination of read-intensive and write-intensive tasks. Whether deployed in OLTP databases, virtualized servers, or high-performance computing clusters, the Micron MTFDHAL3T8TCT-1AR1ZABYY delivers consistent IOPS performance across varying workloads. Enterprises benefit from predictable response times, reduced latency, and improved application performance, all critical factors for maintaining operational efficiency.
Power Efficiency and Thermal Management
Micron’s 9200 Pro series incorporates advanced power management features to optimize energy consumption without compromising performance. Efficient thermal dissipation mechanisms, including heat spreaders and firmware-based thermal throttling, prevent overheating during sustained operations. This combination of power efficiency and thermal management contributes to lower operational costs and a more sustainable enterprise storage infrastructure.
Seamless Integration
The MTFDHAL3T8TCT-1AR1ZABYY is designed for compatibility with a wide range of enterprise server and storage platforms. The NVMe interface ensures straightforward integration into modern data center architectures, supporting standard form factors and software-defined storage solutions. IT administrators can deploy the drive with minimal configuration, enabling rapid scaling of storage capacity while maintaining system stability and performance consistency.
Firmware and Security Features
Micron’s enterprise SSDs come equipped with firmware-level security features, including secure erase, cryptographic protection, and compliance with industry standards for data confidentiality. These security measures protect sensitive enterprise data from unauthorized access and provide robust safeguards for compliance with regulatory requirements. Regular firmware updates ensure the drive remains secure and optimized for emerging workload demands.
Use Cases and Applications
The Micron 3.84TB 9200 Pro NVMe SSD is suitable for a variety of enterprise applications. In data centers, it supports high-speed transaction processing, virtualization, and cloud storage infrastructure. Analytical workloads, such as AI and machine learning model training, benefit from the drive’s high IOPS and low latency. Additionally, the drive is ideal for content delivery networks, database servers, and high-performance computing clusters where performance and reliability are paramount.
High-Performance Computing (HPC)
For HPC environments, the 9200 Pro SSD provides a significant advantage by reducing data access latency and accelerating computational workflows. The drive’s ability to handle massive parallel I/O operations ensures that HPC clusters operate at maximum efficiency. Researchers and enterprises can rely on this SSD to maintain consistent throughput during simulation runs, large-scale data analysis, and other compute-intensive tasks.
Enterprise Cloud Storage
Cloud infrastructure benefits from the Micron 9200 Pro series through faster data retrieval and enhanced storage efficiency. Multi-tenant environments require drives that can consistently deliver performance to multiple virtual instances, and this SSD meets those demands with high IOPS and low latency. The scalable nature of NVMe storage simplifies infrastructure growth, allowing cloud providers to expand capacity while maintaining service-level agreements.
Comparisons with Other Enterprise SSDs
Compared to SATA and SAS-based enterprise SSDs, the Micron MTFDHAL3T8TCT-1AR1ZABYY provides superior throughput, lower latency, and higher endurance. When compared to competing NVMe drives, the 9200 Pro series stands out for its combination of high capacity, enterprise-grade reliability, and comprehensive data protection features. IT decision-makers benefit from the drive’s balanced performance across mixed workloads, making it a versatile solution for diverse enterprise storage needs.
Deployment Strategies
Enterprises can implement this SSD in various deployment scenarios, including all-flash arrays, hybrid storage configurations, and software-defined storage solutions. The drive’s PCIe Gen4 interface ensures that even in high-density storage environments, bandwidth bottlenecks are minimized. Administrators can leverage RAID configurations, tiered storage, and virtualization to maximize performance and resilience, ensuring optimal utilization of the 3.84TB capacity.
Future-Proof Enterprise Storage
Investing in Micron’s 9200 Pro SSD series ensures that enterprises remain prepared for future data growth and evolving performance demands. The combination of NVMe technology, PCIe Gen4 throughput, high endurance, and security features positions the MTFDHAL3T8TCT-1AR1ZABYY as a future-proof solution. Organizations can confidently scale their storage infrastructure, knowing that the drive can accommodate increasing workloads without compromising reliability or performance.
