SOCAMM2: Bringing LPDDR5X Benefits To AI Servers


The rapid scaling of artificial intelligence is reshaping nearly every dimension of data center design. While much of the focus has been on GPUs, accelerators and advanced packaging, another constraint is emerging as equally critical: power. As AI models grow larger and more complex, power consumption, not raw compute, is increasingly the limiting factor in system scalability. Modern AI work... » read more

Scale AI: Engineering the Next Leap in LPDDR6 Low-Power Memory


Scaling AI is often described as adding more GPUs and building bigger clusters, but real progress comes from system balance. As compute and throughput rise, pressure shifts to bandwidth, latency, power delivery, and thermal headroom. Memory becomes one of the earliest constraints because it sits on the critical path for feeding accelerators efficiently and consistently. In that context, JEDEC L... » read more

Power Supply Noise Effects On Jitter In Clock Synchronous Systems With Emphasis On Memory Interfaces


In today's fast-paced digital world, the performance and capacity of high-speed memory has become crucial for a wide range of applications, from personal computing devices to data centers and high-performance computing systems. Designers face challenges in optimizing their designs for speed, power efficiency, and reliability — all while ensuring robustness in the face of power supply noise. T... » read more

Power Supply Noise Effects On Jitter In Clock Synchronous Systems With Emphasis On Memory Interfaces


Power Supply Noise Effects on Jitter in Clock Synchronous Systems with Emphasis on LPDDR5X, DDR5 and HBM3 In today's fast-paced digital world, the performance and capacity of high-speed memory has become crucial for a wide range of applications, from personal computing devices to data centers and high-performance computing systems. Designers face challenges in optimizing their designs ... » read more