Micron MTFDKBG3T8TDZ-1AZ1ZABYY 7400 PRO 3.84 TB TLC PCI-E 4.0 x4 NVMe RI SSD
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Product Overview: Micron MTFDKBG3T8TDZ-1AZ1ZABYY 3.84TB PCIe NVMe SSD
Key Specifications
- Manufacturer: Micron
- Part Number: MTFDKBG3T8TDZ-1AZ1ZABYY
- Device Type: Solid State Drive (SSD)
- Interface: PCIe NVMe
- Capacity: 3.84TB
Physical Characteristics
- Form Factor: M.2 22x80mm
- Dimensions: Height: 0.6 inch, Width: 2.7 inch, Depth: 3.9 inch
- Weight: 0.35 lbs
Advanced Technical Features
- Supports up to 4000MB/s read and 530MB/s write speeds
- Exceptional endurance with 7008 TBW
- Includes Flex Capacity for versatile storage options
- Robust Power Loss Protection and Hardware Root of Trust
- 128 namespaces for efficient resource allocation
- Secure features such as Signed Firmware and Secure Erase
Performance Highlights
- Sequential Read Speed: 4400 MB/s
- Sequential Write Speed: 2200 MB/s
- 4KB Random Read: 650K IOPS
- 4KB Random Write: 105K IOPS
- Endurance (DWPD): 1
- Reliability backed by 2 million hours MTTF
Compatibility and Standards
- Compatible with server storage systems
- Designed for read-intensive applications
- Operating Temperature: 0°C to 70°C
- TAA Compliant: Yes
Enhanced Security Features
- Secure Boot: Protects firmware integrity
- Enterprise Data Path Protection: Ensures robust data integrity
- Firmware updates can be applied without a system reset
Micron 7400 PRO Series SSDs: Redefining High-Performance Storage
The Micron 7400 PRO series sets a new benchmark in the realm of enterprise-grade SSDs, designed for modern data centers, cloud computing, and high-performance applications. The model MTFDKBG3T8TDZ-1AZ1ZABYY is a standout, offering a robust 3.84 TB capacity with cutting-edge technologies such as TLC NAND, PCI-E 4.0 x4 interface, and advanced data security features like AES-256 encryption and PLP (Power Loss Protection).
Features of the Micron MTFDKBG3T8TDZ-1AZ1ZABYY
High-Capacity Storage
With a generous 3.84 TB capacity, this SSD is tailored for workloads that demand substantial storage space. It supports data-heavy applications such as database management, virtualization, and large-scale analytics. Its M.2 22110 form factor makes it an ideal solution for space-constrained systems while delivering enterprise-level performance.
PCI-E 4.0 x4 Interface for Superior Speed
The PCI-E 4.0 x4 interface doubles the bandwidth of its PCI-E 3.0 predecessor, offering blazing-fast read and write speeds. This enhanced throughput ensures low latency and quick response times, making it suitable for demanding environments, including high-performance computing (HPC) and real-time analytics.
TLC NAND Technology
The 7400 PRO leverages Triple-Level Cell (TLC) NAND technology to strike a balance between performance, endurance, and cost efficiency. TLC NAND provides faster data transfers and higher durability, ensuring reliable operation in enterprise settings. This makes it a preferred choice for businesses looking to optimize their total cost of ownership.
Advanced Data Security
Data protection is a critical feature of the Micron MTFDKBG3T8TDZ-1AZ1ZABYY. It incorporates AES-256 encryption to safeguard sensitive information from unauthorized access. The inclusion of PLP (Power Loss Protection) further ensures that data integrity is maintained during unexpected power outages, protecting businesses from potential data loss.
Benefits of NVMe Technology
Non-Volatile Memory Express (NVMe) is the backbone of the Micron 7400 PRO series. This protocol is designed specifically for flash-based storage devices, offering unparalleled performance and efficiency. NVMe significantly reduces latency, increases input/output operations per second (IOPS), and supports a streamlined command set for enhanced storage management.
Optimized for Multi-User Environments
The high IOPS and low latency of NVMe technology make the Micron MTFDKBG3T8TDZ-1AZ1ZABYY ideal for multi-user environments. It can handle multiple simultaneous requests without performance degradation, making it suitable for shared server systems, cloud computing, and collaborative workflows.
Improved Power Efficiency
NVMe drives like the Micron 7400 PRO are designed to deliver high performance without excessive power consumption. The drive's power-efficient design translates into lower operating costs, reduced heat output, and improved system reliability, particularly in data centers with high-density deployments.
Enterprise Applications of the Micron 7400 PRO
Data Center Optimization
The Micron 7400 PRO is engineered to meet the demands of modern data centers. Its high capacity, fast performance, and robust data protection features make it an excellent choice for enterprise storage solutions, supporting virtualization, containerization, and large-scale data processing with ease.
Cloud Computing
Cloud providers benefit from the scalability and reliability of the 7400 PRO series. Its NVMe protocol ensures quick access to data, while the PLP feature minimizes downtime risks. The drive's compact M.2 form factor also allows for high-density server configurations, optimizing rack space utilization.
Artificial Intelligence and Machine Learning
High-performance SSDs like the Micron 7400 PRO play a crucial role in AI and ML workloads. The drive's ability to handle large datasets with minimal latency makes it an asset for training models, performing real-time inferences, and managing data pipelines efficiently.
High-Performance Computing
The low latency and high throughput of the Micron 7400 PRO make it indispensable for HPC applications. Whether it's weather modeling, scientific simulations, or financial analytics, this SSD delivers the speed and reliability needed for complex computational tasks.
Durability and Reliability
The Micron MTFDKBG3T8TDZ-1AZ1ZABYY is built for longevity and dependability. Its endurance rating ensures it can handle extensive read/write cycles, making it suitable for continuous use in enterprise environments. The drive also undergoes rigorous testing to meet stringent quality standards, offering peace of mind for mission-critical operations.
Enhanced Endurance
TLC NAND technology, combined with advanced wear-leveling algorithms, ensures that the Micron 7400 PRO maintains consistent performance over its lifespan. This durability makes it a cost-effective solution for businesses looking to minimize replacement costs and maximize ROI.
Thermal Management
The drive's design includes thermal protection mechanisms to prevent overheating, ensuring optimal performance even under heavy workloads. This feature is particularly valuable in environments with limited cooling options, such as compact servers or edge computing devices.
Comprehensive Warranty
Micron backs the 7400 PRO series with a comprehensive warranty, reflecting its confidence in the product's quality and reliability. This warranty provides additional assurance to enterprises investing in the drive for long-term use.
Compatibility and Integration
The Micron MTFDKBG3T8TDZ-1AZ1ZABYY is designed for seamless integration into a wide range of systems. Its M.2 22110 form factor is compatible with many modern motherboards and server platforms, while its NVMe interface ensures compatibility with industry-standard protocols and software ecosystems.
Flexible Deployment
Whether it's a high-density server rack, a workstation, or an embedded system, the 7400 PRO series offers the flexibility to fit diverse use cases. Its compact size and high performance make it an excellent choice for both space-constrained and performance-critical deployments.
Industry Compliance
The Micron 7400 PRO adheres to industry standards for enterprise storage, including compliance with NVMe specifications and advanced encryption protocols. This ensures interoperability with existing infrastructure and simplifies the integration process for IT teams.
Future-Proofing Your Investment
As technology evolves, the PCI-E 4.0 x4 interface of the Micron 7400 PRO ensures that your storage solution remains relevant. This forward-looking approach allows businesses to stay ahead of the curve, reducing the need for frequent upgrades and ensuring long-term compatibility with emerging technologies.