Description
The Micron 7450 MAX SSD is a high-performance 400GB M.2 NVMe SSD optimized for data-intensive applications and enterprise-grade environments. Built with PCIe 4.0 technology and 3D TLC NAND flash, it provides fast data transfer rates, high endurance, and reliable performance for workloads such as AI, machine learning, and data analytics. Featuring end-to-end data path protection and AES 256-bit encryption, the Micron 7450 MAX SSD is designed to ensure data integrity and security, making it suitable for critical business applications.
Key Features:
- PCIe 4.0 Interface with NVMe Protocol: Offers high-speed data transfer, significantly boosting application responsiveness and reducing latency.
- 400GB Capacity: Perfect for caching and fast access storage in data-intensive environments.
- 3D TLC NAND Flash: Balances performance and endurance, supporting reliable performance over the drive’s lifespan.
- End-to-End Data Protection: Ensures data integrity from host to storage for mission-critical applications.
- AES 256-Bit Encryption: Provides security by encrypting data and protecting against unauthorized access.
- Optimized for Enterprise Workloads: Ideal for environments requiring high reliability and consistent performance under heavy use.
Technical Specifications:
- Model: Micron 7450 MAX
- Form Factor: M.2 2280
- Interface: PCI Express 4.0 x4, NVMe 1.3c
- Capacity: 400GB
- Sequential Read Speed: Up to 6,800 MB/s
- Sequential Write Speed: Up to 5,600 MB/s
- 3D NAND Flash Type: TLC (Triple-Level Cell)
- Endurance: 1,800 TBW (Terabytes Written)
- MTBF (Mean Time Between Failures): 2 million hours
What’s in the Box:
- Micron 7450 MAX SSD M.2 400GB
- Quick Installation Guide
The Micron 7450 MAX SSD M.2 400GB PCI Express 4.0 3D TLC NAND NVMe is designed for enterprise and professional users needing high-speed, reliable storage for demanding applications. With its robust data protection, high endurance, and security features, this SSD is ideal for enterprise workloads, ensuring stable performance and data integrity in mission-critical environments.