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InnoSwitch3-TN - Product Highlights

The versatile InnoSwitch3-TN switcher ICs can be used in a wide range of power conversion topologies to increase efficiency and reduce component count. Roland Saint Pierre, director of new product...

BridgeSwitch - Applications and Environment

BridgeSwitch half-bridge driver ICs are perfect for single phase BLDC motor inverter designs, which bring many performance advantages of 3-phase BLDC at the system cost comparable to single-phase AC. Senior...

BridgeSwitch - Architecture

The unique architecture of BridgeSwitch half-bridge motor driver ICs reduces component count and increases system efficiency, reaching up to 98% efficient. Senior Product Marketing Manager Cristian IonescuCatrina explains.

ClampZero - Active Clamping

ClampZero active clamp ICs, paired with zero-voltage switching InnoSwitch4-CZ solutions, usher in a new class of ultra-compact, ultra-efficient mobile charging devices. Director of New Product Definition Roland Saint Pierre explains.

Introduction to InnoSwitch3-PD

InnoSwitch3-PD is our first flyback switcher IC with USB PD controller built in. This fully integrated solution combines USB PD, PPS, PowiGaN and FluxLink technologies to maximize efficiency and slash...

MinE-CAP Operational Details

In this full-length video, PI Vice President of Product Development Mike Matthews explains how MinE-CAP can reduce AC-DC converter size by 40% and work in conjunction with InnoSwitch3 switcher ICs...

Introduction to MinE-CAP

Our VP of Product Development Mike Matthews explains how MinE-CAP can reduce AC-DC converter size by 40% while improving efficiency.

No Neutral Smart Wall-Switch with LinkSwitch-TN2

DER-622 illustrates a Bluetooth® Low Energy (LE) wall switch compatible with no-neutral wiring. The design is based on Power Integrations’ LinkSwitch™-TN2 offline switcher ICs which incorporate a 725 V rated...

HiperPFS-4 Highly Efficient Across Load Range
Power Integrations’ proprietary CCM variable frequency control algorithm insures that switching losses are minimized under all load conditions, leading to flat constant high efficiency across load.