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  • Powering AI Systems
    from Edge to Server
    Powering AI Systems
    from Edge to Server
    Powering AI Systems from
    Edge to Server

    Samsung LPDDR6

Next-generation low-power memory
optimized for AI
Next-generation low-power memory optimized for AI
Next-generation low-power memory optimized for AI

Samsung LPDDR6 is designed to meet the evolving demands of AI computing as AI workloads expand from edge devices to servers. Combining intelligent power management with increased bandwidth for real-time, data-intensive processing, LPDDR6 delivers responsive and power-efficient AI computing across mobile, AI PCs, servers, and automotive platforms. Samsung LPDDR6 is designed to meet the evolving demands of AI computing as AI workloads expand from edge devices to servers. Combining intelligent power management with increased bandwidth for real-time, data-intensive processing, LPDDR6 delivers responsive and power-efficient AI computing across mobile, AI PCs, servers, and automotive platforms. Samsung LPDDR6 is designed to meet the evolving demands of AI computing as AI workloads expand from edge devices to servers. Combining intelligent power management with increased bandwidth for real-time, data-intensive processing, LPDDR6 delivers responsive and power-efficient AI computing across mobile, AI PCs, servers, and automotive platforms.

Smarter power management for AI workloads Smarter power management for
AI workloads
Smarter power management for AI workloads

LPDDR6 integrates Dynamic Voltage & Frequency Scaling (DVFS)1), which dynamically adjusts operating voltage and frequency based on workload demands, and Dynamic Efficiency Mode (DEM)2), which optimizes memory operation during low-load conditions. Together, these technologies improve power efficiency by up to 21% compared to the previous generation3) while maintatining the performance required for AI workloads. By reducing unnecessary power consumption, LPDDR6 lowers heat generation and helps reduce cooling requirements and total cost of ownership (TCO) across AI computing systems.


1) DVFS (Dynamic Voltage & Frequency Scaling): Dynamically adjusts voltage and frequency based on workload demands to deliver the required performance with optimal power efficiency.

2) DEM (Dynamic Efficiency Mode): Minimizes unnecessary power consumption during lighter workloads by intelligently optimizing memory activity.

3) Comparison with LPDDR5X

LPDDR6 integrates Dynamic Voltage & Frequency Scaling (DVFS)1), which dynamically adjusts operating voltage and frequency based on workload demands, and Dynamic Efficiency Mode (DEM)2), which optimizes memory operation during low-load conditions. Together, these technologies improve power efficiency by up to 21% compared to the previous generation3) while maintatining the performance required for AI workloads. By reducing unnecessary power consumption, LPDDR6 lowers heat generation and helps reduce cooling requirements and total cost of ownership (TCO) across AI computing systems.


1) DVFS (Dynamic Voltage & Frequency Scaling): Dynamically adjusts voltage and frequency based on workload demands to deliver the required performance with optimal power efficiency.

2) DEM (Dynamic Efficiency Mode): Minimizes unnecessary power consumption during lighter workloads by intelligently optimizing memory activity.

3) Comparison with LPDDR5X

LPDDR6 integrates Dynamic Voltage & Frequency Scaling (DVFS)1), which dynamically adjusts operating voltage and frequency based on workload demands, and Dynamic Efficiency Mode (DEM)2), which optimizes memory operation during low-load conditions. Together, these technologies improve power efficiency by up to 21% compared to the previous generation3) while maintatining the performance required for AI workloads. By reducing unnecessary power consumption, LPDDR6 lowers heat generation and helps reduce cooling requirements and total cost of ownership (TCO) across AI computing systems.


1) DVFS (Dynamic Voltage & Frequency Scaling): Dynamically adjusts voltage and frequency based on workload demands to deliver the required performance with optimal power efficiency.

2) DEM (Dynamic Efficiency Mode): Minimizes unnecessary power consumption during lighter workloads by intelligently optimizing memory activity.

3) Comparison with LPDDR5X

Illustration of Samsung LPDDR6 dynamically optimizing voltage and frequency for power-efficient AI computing
High-bandwidth performance
for real-time AI processing
High-bandwidth performance for
real-time AI processing
High-bandwidth performance for real-time AI processing

With enhanced per-pin I/O speeds and an expanded I/O architecture, LPDDR6 delivers up to 45% higher performance than the previous generation4), achieving bandwidth of up to 125 GB/s. This increase in bandwidth helps reduce data bottlenecks and supports responsive, real-time AI processing.


4) Comparison with LPDDR5X

With enhanced per-pin I/O speeds and an expanded I/O architecture, LPDDR6 delivers up to 45% higher performance than the previous generation4), achieving bandwidth of up to 125 GB/s. This increase in bandwidth helps reduce data bottlenecks and supports responsive, real-time AI processing.


4) Comparison with LPDDR5X

With enhanced per-pin I/O speeds and an expanded I/O architecture, LPDDR6 delivers up to 45% higher performance than the previous generation4), achieving bandwidth of up to 125 GB/s. This increase in bandwidth helps reduce data bottlenecks and supports responsive, real-time AI processing.


4) Comparison with LPDDR5X

Illustration of Samsung LPDDR6 increasing per-pin I/O speed from 11.7 Gbps to 14.4 Gbps
Enhanced reliability for diverse AI platforms Enhanced reliability for diverse
AI platforms
Enhanced reliability for diverse AI platforms

LPDDR6 incorporates enhanced reliability features designed to help reduce the likelihood of errors during high-speed data transfers, ensuring data integrity and long-term system stability. These capabilities enable LPDDR6 to extend beyond traditional mobile applications into AI PCs, servers, and automotive platforms while maintaining stable operation under continuous AI workloads.

LPDDR6 incorporates enhanced reliability features designed to help reduce the likelihood of errors during high-speed data transfers, ensuring data integrity and long-term system stability. These capabilities enable LPDDR6 to extend beyond traditional mobile applications into AI PCs, servers, and automotive platforms while maintaining stable operation under continuous AI workloads.

LPDDR6 incorporates enhanced reliability features designed to help reduce the likelihood of errors during high-speed data transfers, ensuring data integrity and long-term system stability. These capabilities enable LPDDR6 to extend beyond traditional mobile applications into AI PCs, servers, and automotive platforms while maintaining stable operation under continuous AI workloads.

Illustration of Samsung LPDDR6 ensuring stable and reliable data transfer during high-speed AI workloads

Applications for LPDDR6

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* Test results do not guarantee future performance under such test conditions, and the actual throughput or performance that any user will experience may vary depending upon many factors.
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