
Safe Checkout
Secure Payments
Fast Delivery
Order Today
Free Shipping
Across the US
Easy Returns
Hassle-Free
Micron MTFDKCB1T6TFS-1BC1ZA 1.6TB PCIe NVMe 4.0 2.5-In SSD
- Capacity: 1.6TB (1600GB)
- Interface: PCIe NVMe 4.0
- Form Factor: 2.5-Inch
- Connector Type: Not specified (likely U.2 or SATA with NVMe protocol)
- NAND Flash Type: Not specified
- Endurance (TBW): Not specified
- Target Application: Enterprise, Datacenter
- Performance: High IOPS and throughput
Free U.S. Ground Shipping
Typically 1-2 handling + 3-7 transit days
Purchase orders accepted
For government, enterprise, data center, and small business customers.
Bulk Purchase Inquiry
Volume pricing and availability
Product Overview
The Micron MTFDKCB1T6TFS-1BC1ZA is a 1.6TB solid-state drive featuring a PCIe NVMe 4.0 interface in a 2.5-inch form factor. This drive is designed for high-capacity storage with exceptional speed, suitable for enterprise servers and workstations.
Technical Information
| Capacity | 1.6TB |
| Interface | PCIe NVMe 4.0 |
Additional Specifications
| Form Factor | 2.5-Inch |
| Model Number | MTFDKCB1T6TFS-1BC1ZA |
Product Description
This 1.6TB SSD from Micron utilizes the high-speed PCIe NVMe 4.0 interface, delivering significantly improved performance over traditional SATA SSDs. The NVMe protocol is optimized for flash storage, reducing latency and increasing throughput, making it ideal for demanding enterprise workloads that require rapid data access and processing. The 2.5-inch form factor is a standard for many servers and storage arrays, allowing for easy integration into existing infrastructure. While the specific connector type (e.g., U.2, SFF-8639) is not detailed in the title, drives in this form factor typically use these enterprise-grade connectors to support the high bandwidth of PCIe 4.0. The MTFDKCB1T6TFS-1BC1ZA is built by Micron, a reputable manufacturer known for its reliable storage solutions. This drive is designed to meet the rigorous demands of datacenters and high-performance computing environments, offering a balance of capacity, speed, and endurance for mission-critical applications.



