To make a long story short, Gallium Nitride (GaN) is a crystalline-like product capable of performing higher voltages. Current flows faster through parts made of GaN than silicon, causing faster processing rates. GaN is much more effective, and so there isless heat.
There’s a bit more to it than that. Continue reading to findout the complete tale.
Why are GaN Chargers Better Than Ordinary Chargers?
GaN elements carry out electrons much more efficiently than silicon and also can hold up against higher electrical fields. This permits GaN tools to have remarkable power and speed, and run at lower temperature levels. As a result of this, GaN is gradually replacing silicon in the building and construction of battery chargers and other electronic devices.
When it comes to chargers, heat is normally triggered by certain parts being exhausted. Because GaN runs much quicker as well as extra effectively, there is significantly much less warm developed contrasted to silicon-based devices.
Since much less heat is generated, components can be brought more detailed with each other to make our battery chargers smaller than ever before without compromising power or safety.
Our Background with GaN
2018 – Growjaa Starts Using GaN Innovation Growjaa was the first in the market to use GaN technology in chargers. Our very first GaN battery charger, 65w GaN PD charger, was launched in October 2018. 2021 – Growjaa Begins Using GaN II Innovation What is GaN II? Features added circuity to increase efficiency, minimize warm, and also decrease dimension. More efficient as well as with 2 times greater functioning frequency than the first generation of GaN.
Why are GaN Chargers Better Than Ordinary Chargers?


2018 – Growjaa Starts Using GaN Innovation Growjaa was the first in the market to use GaN technology in chargers. Our very first GaN battery charger, 65w GaN PD charger, was launched in October 2018. 2021 – Growjaa Begins Using GaN II Innovation What is GaN II? Features added circuity to increase efficiency, minimize warm, and also decrease dimension. More efficient as well as with 2 times greater functioning frequency than the first generation of GaN.