Media / Perspectives

Ideas Shaping the Next Power Stack

Long-form perspectives on materials science, manufacturing, system architecture, and the shift toward integrated power delivery in modern compute.

Ideas Shaping the Next Power Stack

Materials & 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

Manufacturing

Electroplating vs Sputtering: A Process-Level Breakthrough

Most discussions around integrated power focus on circuit topology or control techniques. In reality, the limiting factor has been manufacturing.…

3 min read · Why Manufacturing, Not Design, Has Been the Real Barrier

Frequency

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

Architecture

Device Architecture: From Discrete Inductors to Wafer-Level Structures

Traditional inductors and transformers are macroscopic components, assembled separately and connected to the system. Their design is constrained by manufacturing methods and packaging.…

3 min read · Reimagining Magnetic Components as Semiconductor Devices

System impact

System-Level Impact: What Happens When Power Moves to the Die

The most immediate benefit of EnaChip’s technology is improved efficiency. By reducing the distance between power conversion and load, parasitic losses decrease and system efficiency improves.…

3 min read · From Efficiency Gains to Architectural Change

Vision

Toward Vertical Power Integration

EnaChip’s technology enables a clear progression in power delivery architecture.…

3 min read · The Path to Fully Integrated Power Systems

Compute 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.

Semiconductor transition

From Discrete to Integrated: The Next Transition in Semiconductors

Every major transition in semiconductors has been driven by integration.…

3 min read · Why Power Delivery Is the Next Frontier

AI 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

Unified 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

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