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Micron MT16JTF1G64AZ-1G4D1 8GB DDR3 UDIMM 1333MT/s | Desktop RAM

MPN:MT16JTF1G64AZ-1G4D1 By:Micron Warranty:1 year
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General

Product TypeMemory Module
Compliance StandardsRoHS
Memory Capacity8 GB
Memory TechnologyDDR3
RAM Speed1333MHz
RAM StandardDDR3-1333/PC3-10600
Error IdentifyingNon-ECC
Signal TypeUnbuffered
Column Access Strobe (CAS)CL9
RankDual Rank x8
Quantity of Pins240-pin
RAM GenreUDIMM

Engineer's Note

This UDIMM DDR3-1333 module with Non-ECC, unbuffered signaling is a standard desktop memory kit, ideally suited for productivity rigs, content creation, and mainstream gaming builds where cost-effective capacity and compatibility are priorities. Its dual-rank x8 organization enhances memory interleaving efficiency on consumer chipsets, while the CL9 latency at 1333 MHz delivers responsive performance for typical multitasking and moderate workloads without the overhead of server-class error correction.

Technical Specs & Insights

1. UDIMM form factor ensures native plug-and-play compatibility across mainstream desktop motherboards, letting enthusiasts quickly drop in a memory upgrade without needing server-class infrastructure.
2. DDR3 technology provides stable, time-tested operation for budget gaming rigs and home office systems, keeping older platforms alive for smooth daily multitasking and legacy title play.
3. 1333MHz clock speed delivers consistent bandwidth that helps content creators scrub through high-resolution timelines and run layered productivity tools without perceptible lag.
4. CL9 low latency tightens the gap between data requests and frame render cues, giving competitive players snappier input response and fewer micro-stutters in fast esports matches.
5. Dual rank x8 organization enables memory interleaving that saturates the channel more efficiently, boosting overall throughput during heavy streaming, rendering, or dense multitasking sessions.

Why These Specs Matter

The Micron MT16JTF1G64AZ-1G4D1 is a desktop UDIMM, purpose-built for performance-focused platforms, and its four standout traits—unbuffered operation, dual-rank x8 organization, CL9 latency, and strict 240-pin compatibility—directly decide how smoothly your system handles real workloads. In AAA gaming, the unbuffered architecture removes register overhead, allowing the memory controller to issue commands with virtually no added delay; paired with a responsive CAS latency of 9, you experience crisp, stutter-free responsiveness during split-second engagements where a late frame means a lost duel. The dual-rank design simultaneously fuels the experience through rank interleaving: while one rank fulfills the current read, the other prepares the next burst, nearly doubling sustainable bandwidth and keeping frame rates steady when textures stream in from storage. Shift to a video rendering or 4K timeline scenario, and that same parallelism proves essential. Feeding heavily-threaded compositing engines with massive frame buffers becomes seamless, so your CPU rarely stalls waiting for data, cutting export times noticeably. The 240-pin UDIMM form factor and JEDEC-compliant non-ECC profile ensure effortless drop-in installation across mainstream Intel and AMD motherboards, eliminating compatibility guesswork during upgrades. For gamers and creators alike, this combination means less lag, faster project completion, and a fluid, reliable desktop experience.

Endurance & Reliability

Gaming Build
For a responsive gaming rig, deploy a dual‑channel kit with two identical 8 GB UDIMMs to unlock the full 128‑bit memory bus on modern platforms. A 16 GB (2×8 GB) configuration handles modern AAA titles comfortably, while stepping up to a 32 GB (4×8 GB or 2×16 GB) set provides headroom for streaming, background apps, and memory‑hungry mods. Always match speed, CAS latency, and rank across all modules to avoid stability issues.

Content Creation
Video editing, 3D rendering, and large photo composites thrive on raw capacity. Populate all four DIMM slots with identical 8 GB modules to reach 32 GB, or use higher‑density 16 GB UDIMMs for a seamless 64 GB setup, critical for 4K/8K timelines and complex scenes. Prioritize a matched quad‑channel or dual‑channel kit to maintain bandwidth under sustained rendering loads, and ensure your motherboard supports the total capacity.

General Productivity
For office suites, web browsing, and multitasking, a single 8 GB UDIMM is the most cost‑effective starting point. Adding a second identical 8 GB stick later creates a dual‑channel 16 GB configuration that noticeably improves integrated graphics performance and application responsiveness. This incremental approach keeps initial system cost low while leaving a clear, affordable upgrade path for mainstream users.

Verified Compatibility

Rigorously tested and verified for desktop compatibility: Dell OptiPlex 7010/9010, HP Compaq Elite 8300, Lenovo ThinkCentre M92p.

FAQ

Q: Can I mix this MT16JTF1G64AZ-1G4D1 with other memory modules of different brands or speeds?

A: Mixing is possible, but the system will default to the slowest module's speed and timings. For optimal stability, we strongly recommend using identical modules with the same part number.

Q: Is this memory compatible with my system?

A: This 240-pin DDR3 UDIMM fits desktop platforms supporting DDR3 memory, such as Intel 6/7-series or AMD 900-series chipsets. Verify your motherboard supports 8GB unbuffered non-ECC modules.

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

A: For dual-channel performance, populate identical modules in the same-colored slots first. Typically, install a pair into slots A2 and B2 on consumer desktop motherboards to enable dual-channel mode.

Q: Does this module support overclocking or XMP profiles?

A: No, this is a JEDEC-compliant DDR3-1333 standard module without XMP. It is not designed for overclocking and operates reliably at its native 1333MHz with CL9 timings.

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

A: This module includes a 1-year limited warranty. Its annualized failure rate is industry-standard and very low, typically below 0.5%, backed by rigorous manufacturing and component testing.

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