PRODUCTS / LIGHTNING DDR5 DIMM
OVERCLOCK UDIMM
Introduction
Netlist’s DDR5 UDIMM Overclock memory modules are designed to deliver exceptional performance for high-demand applications. Whether for enterprise, cloud, or high-performance computing, Netlist’s DDR5 UDIMM Overclock memory provides a robust solution for modern computing needs.
Features
- Data Rate (Mbps) : 6600~7600
- Voltage (VDDQ) : Upto 1.4
- UDIMM Clock Driver : @8000 Mbps
- Power Supply : PMIC on DIMM
- Temp sensor device : 2 or 3 per DIMM
- Side bus protocol : Legacy SMBus, I2C, I3C
- Sideband bus access : IxC Hub in SPD
- PCB Mechanical Outline : JEDEC (Height 31.25mm)
- Environmental : 0⁰C – 95⁰C, RoHS Compliant and Halogen-Free
Benefits
- Compatibility and Stability
- Boosted Performance on many demanding workloads
- Cost Optimized OEM Solution
Lightning DDR5 OverClock UDIMM Capacity & Latency Timing Profiles with Ordering Information
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 1Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
(Non-ECC, 2Rank)
SPR, EMR, GNR and
AMD Genoa, Turin
• Intel XMP and
AMD EXPO Profile
Applications

Gaming
Low Latency is ideal for competitive gaming, where nanoseconds can make the difference between winning and losing. Lightning DDR5 memory solutions can enhance gaming performance by increasing the speed of the CPU and GPU, reducing lag and improving frame rates.

Virtual Reality (VR) & Augmented Reality (AR)
Both VR and AR applications require low latency to provide a seamless and immersive experience. Lightning DDR5 memory solutions can help ensure that the hardware can handle the demanding processing requirements of these technologies.

Video Editing
Video editing requires handling large files and performing complex rendering tasks. Lightning DDR5 memory solutions can significantly enhance video editing performance by providing faster data access and higher memory bandwidth. This results in smoother playback, quicker rendering times, and the ability to work with higher-resolution footage without lag.

Game Development
Game development involves compiling code, rendering graphics, and running simulations, all of which demand substantial computational resources. Lightning DDR5 memory solutions can improve game development workflows by offering faster data processing and reduced latency. This allows developers to test and iterate more efficiently, leading to quicker development cycles and higher-quality games.

AI Inference (e.g., ChatGPT)
Running AI inference models like ChatGPT on a desktop requires substantial memory and processing power to handle complex computations and large datasets. Lightning DDR5 memory solutions can enhance AI inference performance by providing faster data access and higher memory bandwidth. This results in quicker response times and more efficient processing, enabling smoother and more responsive interactions with AI applications.
