


Micron Technology
MT4KTF25664HZ-1G6E1
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MT4KTF25664HZ-1G6E1 Description
MT4KTF25664HZ-1G6E1 Description
The MT4KTF25664HZ-1G6E1 is a 2GB DDR3L SDRAM module from Micron Technology Inc., designed for high-performance computing applications. This 204-pin SODIMM module operates at a 1600 MT/s (MHz) transfer rate, delivering efficient data throughput while maintaining low power consumption. Although marked as Obsolete, it remains a reliable choice for legacy systems requiring DDR3L compatibility. The module adheres to ROHS3 and REACH environmental standards, ensuring compliance with global regulations. Packaged in a tray format with a Moisture Sensitivity Level (MSL) of 3, it is suited for controlled manufacturing environments.
MT4KTF25664HZ-1G6E1 Features
- Memory Type: DDR3L SDRAM (1.35V low-voltage operation).
- Capacity: 2GB, ideal for mid-range computing tasks.
- Speed: 1600 MT/s for balanced performance and power efficiency.
- Form Factor: 204-pin SODIMM, compatible with space-constrained devices.
- Compliance: ROHS3, REACH Unaffected, and ECCN EAR99 certified.
- Reliability: MSL 3-rated for extended shelf life in humid conditions.
MT4KTF25664HZ-1G6E1 Applications
This module excels in embedded systems, industrial PCs, and legacy laptops where DDR3L support is critical. Its low-voltage operation reduces power consumption, making it suitable for energy-efficient devices like thin clients and networking equipment. The 1600 MT/s speed ensures smooth multitasking in point-of-sale (POS) systems, medical devices, and automotive infotainment. While newer DDR4/5 modules dominate modern designs, the MT4KTF25664HZ-1G6E1 remains a cost-effective solution for upgrades or repairs of older hardware.
Conclusion of MT4KTF25664HZ-1G6E1
The MT4KTF25664HZ-1G6E1 offers a blend of performance, efficiency, and compliance, tailored for legacy and specialized applications. Its DDR3L technology and 2GB capacity strike a balance between speed and power savings, while its industry-standard certifications ensure broad compatibility. Though obsolete, it serves as a dependable option for maintaining or retrofitting systems where newer memory standards are not feasible.



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