MTFDKCB1T6TFS-1BC15A Micron 7450 Max 1.6TB PCIe NVMe 2.5-In SSD
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Explore the Power of MICRON 7450 Max 1.6TB NVMe SSD
- The MICRON 7450 Max 1.60TB internal solid-state drive is engineered for data-driven enterprises seeking uncompromising performance and reliable storage solutions. Designed in a compact 2.5-inch U.3 form factor, this high-capacity SSD leverages the ultra-fast PCIe Gen4 x4 NVMe interface to deliver exceptional throughput and endurance.
Technical Summary
- Manufacturer: MICRON
- Part Number: MTFDKCB1T6TFS-1BC15A
- Product Model: 7450 Max
Key Features at a Glance
- Storage Capacity: Robust 1.60TB for demanding applications
- Interface: PCIe 4.0 x4 NVMe ensures rapid data transfer rates
- Form Factor: Space-efficient 2.5-inch U.3 configuration
- Product Series: MICRON 7450, a trusted enterprise-grade line
- Drive Type: Internal solid-state drive tailored for modern servers and storage arrays
Exceptional Performance Metrics
This drive outpaces conventional storage options with remarkable sequential and random performance figures:
- Sequential Read Speed: Up to 6,800 MB/s
- Sequential Write Speed: Reaches 2,700 MB/s
- Random Read IOPS: Delivers 800,000 IOPS for high-load environments
- Random Write IOPS: Sustains 250,000 IOPS for mixed workloads
- 70/30 Random Read/Write IOPS: Capable of achieving 290,000 IOPS
- Latency: 80μs (read) and an ultra-low 15μs (write) for responsive operations
Built for Enterprise Workloads
- The MICRON 7450 Max 1.6TB SSD is optimized for enterprise environments where consistent speed and data integrity are essential. It supports high endurance with a substantial 8,700 terabytes written (TBW), making it ideal for intensive data center applications such as virtualized infrastructures, cloud storage platforms, and transactional databases.
The MICRON 7450 Max Series
- Trusted Brand: Manufactured by MICRON Technology, a leader in memory and storage solutions
- Outstanding Reliability: Enterprise-grade durability and robust TBW rating
- Enhanced Compatibility: Seamlessly integrates with U.3 backplanes and PCIe Gen4 servers
- Future-Proof Performance: PCI Express 4.0 x4 interface supports next-gen workloads
Applications and Use Cases
The MICRON 7450 Max is an excellent choice for data centers and enterprise servers requiring consistent performance and high reliability. Typical use cases include:
- High-performance computing (HPC) workloads
- Cloud-native infrastructure
- AI and machine learning environments
- Database acceleration and analytics processing
Reliability You Can Count On
Engineered for mission-critical workloads, this SSD ensures consistent data delivery and minimal downtime, helping businesses maintain operational continuity even under demanding conditions. With enterprise-class endurance and impressive performance metrics, the MICRON 7450 Max stands out as a reliable storage solution for scalable IT infrastructures.
Micron MTFDKCB1T6TFS-1BC15A 1.60TB 7450 MAX U.3 PCIe Gen4 NVMe SSD Overview
The Micron MTFDKCB1T6TFS-1BC15A 1.60TB 7450 MAX represents a high-performance enterprise-grade SSD built for data centers requiring advanced storage technology. This 2.5-inch U.3 form factor internal SSD utilizes the cutting-edge PCIe 4.0 x4 interface and NVMe protocol, delivering unparalleled speed, reliability, and efficiency for modern enterprise workloads. Designed to handle mixed-use applications with high write endurance and consistent low latency, this Micron SSD stands out in its category as a premium option for mission-critical systems.
Key Features of the Micron 7450 MAX 1.60TB NVMe SSD
Advanced PCIe Gen4 x4 Interface
The PCIe Gen4 x4 interface embedded in the Micron MTFDKCB1T6TFS-1BC15A enables significantly higher data transfer rates compared to previous generations. With a theoretical bandwidth doubling that of PCIe Gen3, this SSD ensures seamless data movement and reduced bottlenecks, essential for enterprise applications including virtualization, real-time analytics, and intensive transactional databases.
NVMe Protocol for Low-Latency Performance
The Micron 7450 MAX utilizes the Non-Volatile Memory Express (NVMe) protocol, streamlining command processing by offering a direct link between storage and CPU. This allows reduced latency, higher Input/Output Operations Per Second (IOPS), and efficient queue management — making it ideal for multi-tenant cloud platforms, enterprise virtual desktop infrastructure (VDI), and online transaction processing (OLTP) environments.
1.60TB of Optimized Storage Capacity
With a capacity of 1.60TB, this SSD provides ample storage for enterprise databases, virtual machines, and high-volume transaction logs, while balancing capacity with performance and endurance. The 1.60TB size fits well within multi-drive configurations in servers and storage arrays that demand consistent throughput and reliability for mixed-use workloads.
Understanding the U.3 2.5-Inch Form Factor
The U.3 specification standardizes connector compatibility among NVMe, SAS, and SATA drives within the same backplane, offering unparalleled flexibility for enterprise storage environments. The Micron MTFDKCB1T6TFS-1BC15A’s 2.5-inch U.3 form factor is engineered for hot-swappable, scalable deployments in high-density data centers and cloud infrastructures, enabling streamlined upgrades and maintenance operations.
Compatibility and Integration
Engineered to be fully compatible with U.3 backplanes, the Micron 7450 MAX SSD can operate alongside other storage interfaces within the same infrastructure, reducing integration complexity and allowing enterprises to future-proof their hardware investments while transitioning towards full NVMe adoption.
Benefits of U.3 SSD Deployment
- Simplified drive management and interchangeability
- Support for hot-plug operations in enterprise servers and storage arrays
- Consolidation of NVMe, SAS, and SATA drives within shared enclosures
- Ease of serviceability and reduced downtime during upgrades
Performance Specifications and Technical Highlights
Sequential and Random Performance Metrics
The Micron 7450 MAX 1.60TB NVMe SSD excels in both sequential and random data operations. Sequential read and write speeds leverage the PCIe 4.0 interface’s bandwidth, making it capable of sustaining intensive data stream operations. Random read/write IOPS performance ensures rapid small-block data transactions essential for OLTP systems, metadata handling, and virtualization platforms.
Sample Performance Figures:
- Sequential Read: Up to 6,800 MB/s
- Sequential Write: Up to 5,000 MB/s
- Random Read IOPS (4K QD256): Up to 1,200,000 IOPS
- Random Write IOPS (4K QD256): Up to 250,000 IOPS
Endurance and Reliability
Designed for 3 Drive Writes Per Day (DWPD), the Micron 7450 MAX series offers high endurance suitable for mixed-use environments. The combination of a 1.60TB capacity and robust DWPD rating ensures that this SSD can handle intensive write-heavy operations without degradation, making it dependable for business-critical applications and enterprise IT workloads.
Data Security and Integrity Features
This drive integrates advanced security features, including TCG Enterprise encryption, secure erase, and end-to-end data path protection. Micron’s comprehensive data integrity framework ensures protection against silent data corruption and unauthorized access, supporting enterprise data governance and compliance protocols.
Enterprise Applications for the Micron 7450 MAX 1.60TB SSD
Virtualized Infrastructure
The Micron 7450 MAX excels in virtualized environments where low-latency and high IOPS are critical. It supports simultaneous workloads across multiple VMs, enabling dynamic resource allocation without performance degradation. This makes it ideal for enterprises operating on hyper-converged infrastructure (HCI) platforms and scalable virtual desktop infrastructure (VDI) solutions.
Cloud Data Centers
Cloud service providers demand reliable, high-capacity, and high-performance storage for diverse workloads. The Micron MTFDKCB1T6TFS-1BC15A delivers exceptional performance consistency, endurance, and operational reliability in hyperscale data centers, supporting everything from analytics to content delivery systems.
Database Acceleration
For transactional and analytical database workloads, this SSD provides rapid access to indexed data and transactional logs, reducing query response times and ensuring consistent database performance even under high concurrency loads. It is an excellent fit for relational and NoSQL databases handling large-scale enterprise data operations.
High-Performance Computing (HPC)
The combination of high sequential throughput and superior random performance makes this SSD well-suited for HPC workloads, including scientific simulations, big data analytics, and AI/ML model training pipelines. Its enterprise-grade endurance and secure data handling also provide necessary safeguards for sensitive computational data.
Micron 7450 MAX Series Technology Overview
3D NAND Flash Memory
The 7450 MAX leverages advanced 176-layer 3D NAND technology, delivering increased storage density, higher endurance, and improved performance over previous NAND generations. Micron’s proprietary 3D NAND architecture provides efficient data access paths, minimizing latency and power consumption while maximizing reliability.
Adaptive Thermal Management
Thermal management is critical for sustained SSD performance in enterprise environments. The Micron 7450 MAX integrates dynamic thermal monitoring and throttling mechanisms that ensure consistent operation within thermal thresholds, reducing the risk of performance throttling or component failure in dense server deployments.
Firmware Resiliency and Power Loss Protection
This SSD incorporates firmware resiliency features that safeguard against unexpected shutdowns and power loss scenarios. Capacitor-backed power-loss protection ensures in-flight data integrity and secure storage of critical metadata, maintaining consistent operational reliability for mission-critical systems.
Comparing Micron MTFDKCB1T6TFS-1BC15A to Other Enterprise NVMe SSDs
Versus Entry-Level NVMe SSDs
While entry-level NVMe SSDs offer benefits over legacy SATA or SAS drives, they typically lack the endurance, security features, and sustained performance of the 7450 MAX. The Micron 7450 MAX outpaces these models in read/write consistency, durability, and enterprise feature sets, making it a more suitable option for mixed-use data center environments.
Versus High-Capacity, Read-Intensive Drives
Some enterprise NVMe drives prioritize capacity over performance or write endurance, focusing on read-intensive workloads. In contrast, the Micron 7450 MAX balances high capacity with 3 DWPD endurance and superior mixed-use capabilities, positioning it as a versatile solution for enterprises requiring consistent performance across diverse workload types.
Versus Competing PCIe Gen4 U.3 SSDs
Within the Gen4 U.3 NVMe SSD market, the Micron 7450 MAX distinguishes itself through higher endurance ratings, advanced data protection features, and its integration of 176-layer NAND. Its consistent, low-latency performance and security credentials provide advantages over comparable SSDs from other enterprise storage vendors.
Deployment Scenarios for Micron 7450 MAX SSDs
Hyper-Converged Infrastructure (HCI)
The Micron 7450 MAX’s predictable performance and mixed-use endurance profile make it an excellent fit for HCI architectures. It supports a balanced workload of virtualized applications, storage, and networking within a unified hardware platform, maximizing resource efficiency and scalability for enterprises consolidating their infrastructure.
All-Flash Arrays (AFA)
When configured in all-flash storage arrays, the Micron MTFDKCB1T6TFS-1BC15A delivers accelerated storage performance for tier-0 and tier-1 applications. Its low latency and high IOPS enable responsive service for enterprise applications, including ERP systems, customer relationship management (CRM), and large-scale content delivery networks (CDNs).
Edge Computing
Edge environments demand reliable, compact, and high-performance storage solutions. The U.3 2.5-inch form factor and efficient power profile of the Micron 7450 MAX make it suitable for edge data centers handling AI inference, IoT telemetry aggregation, and real-time content caching.
