Other recommendations for your business

Micron MTA4ATF25664HZ-2G3 2GB DDR4 SoDIMM 2400MT/s | Low-Power SODIMM

MPN:MTA4ATF25664HZ-2G3 By:Micron Warranty:1 year
Condition:
Secure payments
Every payment you make on SysPartsDirect.com is secured with strict SSL encryption and PCI DSS data protection protocols
Standard refund policy
Claim a refund if your order doesn't ship, is missing, or arrives with product issues
SysPartsDirect.com protects all your orders placed and paid on the platform with Trade Assurance

General

Product TypeMemory Module
Memory Capacity2 GB
Memory TechnologyDDR4
RAM Speed2400
RAM StandardDDR4-2400/PC4-19200
Error IdentifyingNon-ECC
Signal TypeUnbuffered
Column Access Strobe (CAS)CL17
RankSingle Rank x16
Quantity of Pins260-pin
RAM GenreSoDIMM

Engineer's Note

Designed specifically for notebook and mobile workstation upgrades, this unbuffered, non-ECC DDR4 SODIMM delivers 2400 MT/s throughput with a tight CL17 latency for responsive everyday computing and light multitasking. Its single-rank x16 configuration enhances compatibility across a wide range of platforms while minimizing power consumption, making it a reliable plug-and-play choice for extending battery life in portable systems.

Technical Specs & Insights

1. DDR4 memory technology significantly lowers voltage requirements, directly contributing to longer battery life and cooler operation in slim notebook designs.
2. The swift data transfer rate ensures applications and files open promptly, keeping everyday mobile computing free from frustrating lag.
3. A carefully tuned timing profile delivers responsive system behavior during web browsing and office multitasking, all while respecting thermal limits.
4. Single Rank x16 organization draws minimal power to preserve precious battery and reduces heat buildup in tightly packed laptop chassis.
5. The compact SoDIMM form factor offers effortless physical installation, enabling instant plug-and-play upgrades for popular ultrathin notebooks.

Why These Specs Matter

Designed specifically for the notebook platform, this DDR4 SODIMM module addresses the real demands of mobile computing. The 260-pin small form factor and unbuffered, non-ECC architecture eliminate unnecessary power-hungry logic, running natively at 1.2V to significantly extend battery life. For the frequent traveler editing documents on a laptop, that lower voltage directly translates into fewer interruptions searching for an outlet during a cross-country flight. When upgrading an aging laptop, the single-rank x16 configuration guarantees broad compatibility with a vast range of notebooks, while the 2400 MT/s speed and CL17 latency ensure snappy application launches and fluid multitasking across browser tabs or office suites. Installation is instant—simply pop off the chassis panel and insert the module; no complex configuration is needed. For a mobile workstation user juggling multiple virtual meetings and datasets, this precise combination of efficiency and responsiveness means better work continuity away from the desk, keeping the system cool and stable without sacrificing the nimble, on-the-go experience that defines modern portable computing.

Endurance & Reliability

Laptop Upgrade
For notebooks still relying on a single 2 GB DDR4-2400 SO-DIMM, the most impactful upgrade is replacing it with a higher‑capacity module or adding a second identical stick. A dual‑channel pair of 8 GB (2×4 GB) or 16 GB (2×8 GB) dramatically improves multitasking and ensures modern operating systems and browsers run smoothly. Always check the system’s maximum supported capacity per slot before purchasing.

Mobile Workstation
Professional workloads such as CAD, 3D rendering, and large dataset analysis demand generous memory headroom. Populate both SO-DIMM slots with the largest supported non‑ECC modules—often 32 GB or 64 GB total—to keep complex projects in active memory and avoid paging to slower storage. Choose JEDEC-compliant DDR4-2400 CL17 parts from the manufacturer’s qualified vendor list to maintain rock‑solid stability under sustained load.

Ultrabook Power Saving
Although many ultrabooks feature soldered memory, upgradeable models benefit from low‑voltage DDR4 modules running at the standard 1.2 V. A single 8 GB or 16 GB SO-DIMM draws less power than a dual‑module configuration while still providing ample capacity for office suites, video streaming, and light photo editing. This approach helps extend battery life and keeps the system cool during travel.

Verified Compatibility

Strictly tested, compatible with Dell Latitude 5490, HP EliteBook 840 G5, Lenovo ThinkPad T480.

FAQ

Q: Can I mix this MTA4ATF25664HZ-2G3 with other memory modules of different brands or speeds?

A: Mixing with other brands or speeds is not recommended. Inconsistent timings, voltage, or density can cause instability, especially in notebooks. For reliable dual-channel operation, use identical modules with matching capacity, rank, and frequency.

Q: Is this memory compatible with my system?

A: This DDR4-2400 SoDIMM fits notebooks supporting standard 260-pin DDR4 SODIMM slots. Verify your laptop supports 2GB single-rank x16 modules at 1.2V. Consult your system vendor's compatibility list, as some ultra-thin models may have soldered memory or restricted maximum capacity.

Q: What is the recommended DIMM population order for optimal performance?

A: Most notebooks have only one or two SODIMM slots; install a single module in any available slot. For dual-channel performance, populate both slots with identical modules. No specific slot order is required, but matching pairs ensure symmetric channel operation.

Q: Does this module support overclocking or XMP profiles?

A: No. This is a JEDEC-compliant DDR4-2400 SODIMM running at CL17 without XMP support. It delivers stable, power-efficient operation at standard timings and is not designed for overclocking, which is typical for laptop memory to maintain thermal and battery constraints.

Q: What warranty and typical failure rate can I expect?

A: This Micron module includes a 1-year warranty. DRAM failure rates are exceptionally low under normal operating conditions, typically below 0.5% AFR (annualized failure rate), backed by rigorous component qualification and burn-in testing.

Related Products