01Materials & process
Why Integrated Magnetics Have Failed (Until Now)
For decades, the idea of integrating magnetics into semiconductor processes has been explored - and repeatedly fallen short. The limitations have not been conceptual, but physical and manufacturing-driven.…
3 min read · The Materials and Process Constraints Behind the Problem
03Frequency
Designing Magnetics for the MHz Regime
In power electronics, size is inversely related to switching frequency. Moving from kHz to MHz operation allows inductors and transformers to shrink dramatically. However, this transition has historically been limited by…
3 min read · Why Frequency Is the Key to Integration
07Compute bottleneck
The Bottleneck No One Talks About
For decades, the semiconductor industry has focused on scaling compute - more transistors, higher performance, better architectures. But beneath this progress lies a growing constraint that is harder to see and harder to…
3 min read · Compute Is Scaling. Power Delivery Isn’t.
09AI infrastructure
The Missing Layer in AI Infrastructure
AI has transformed the trajectory of computing. But as models grow and infrastructure scales, a new limitation is emerging - not in algorithms, but in physics.…
3 min read · Why Power Delivery Will Define the Next Decade of Compute
10Unified systems
Building Toward One Integrated Chip
Modern electronic systems are still built as a collection of separate layers: compute, memory, power. Each is optimized independently, then stitched together.…
3 min read · The Future of Electronics Is Not Modular - It’s Unified