A High-Density Lighting Solution With a Small Footprint
If the size of LED drivers has held you back from adding aesthetics, ergonomics, and integrations to your lighting designs, Gallium Nitride (GaN) technology solves that challenge.
GaN is a wide-bandgap semiconductor material ideal for modern, compact LED systems. It delivers higher efficiency, faster switching speed, lower resistance, and smaller form factors compared to silicon-based chips.
Discrete by Design

Smaller form factors leave less room for discrete components, but GaN technology removes the need for discrete parts in LED drivers by assembling multiple integrated circuits and power components onto a single chip. Traditional silicon-based systems incorporate these components as separate parts, resulting in a clunkier design.
Our GaN-Enabled Products
GaN Delivers Value at Every Level of the Lighting Ecosystem
- Smaller drivers free up space for lighting designers to integrate innovative fixture aesthetics.
- Consolidated platforms reduce SKUs, complexity, and costs in the manufacturing process.
- Snap-on extrusion drivers simplify wiring and speed up installations.
- Higher lumens-per-watt translate to lower operating costs and better performance across end users.

PRH Series
5–50 W High Density Constant Current Programmable Class 2 LED Driver with 0–10 V and Tri-Mode Dimming™ (TRIAC, ELV & 0–10 V) and with Optional Auxiliary Output

PLH Series
20–65 W High Density Programmable Constant Current Class 2 LED Driver with 0–10 V Dimming, and with Optional Auxiliary Output
More on GaN Technology
May . 19 . 2026
Using GaN for Sustainability Gains
Decrease Material Waste and Expand the Lifespan and Efficiency of Your LEDs LEDs have allowed lighting professionals and consumers alike to enjoy drastically reduced energy consumption, maintenance, and cost compared to incandescent or fluorescent lighting.
Feb . 4 . 2026
Gallium Nitride (GaN): Transforming Lighting Technology
How ERP Power is leading the industry into the next era of efficiency, density, and design freedom.



