Gallium nitride electronics could drastically cut energy usage in data centers, consumer devices.
"...GaN transistors have at least one-tenth the resistance of such silicon-based transistors, according to the company. This allows for much higher energy-efficiency, and orders-of-magnitude faster switching frequency — meaning power-electronics systems with these components can be made much smaller. CEI is using its transistors to enable power electronics that will make data centers less energy-intensive, electric cars cheaper and more powerful, and laptop power adapters one- third the size — or even small enough to fit inside the computer itself..."
news.mit.edu
compoundsemiconductor.net
I would have thought GaN would be all over this forum, with people modding current chargers and controllers etc for a start and much talk on new ctlrs and chargers etc..
But this 'Game Changer' it's only mentioned in passing and infrequently.
So what's up with that!?
Is it patented up the wazoo and expensive as hell, or in everything already and I've just now crept out from under my rock!??
"...GaN transistors have at least one-tenth the resistance of such silicon-based transistors, according to the company. This allows for much higher energy-efficiency, and orders-of-magnitude faster switching frequency — meaning power-electronics systems with these components can be made much smaller. CEI is using its transistors to enable power electronics that will make data centers less energy-intensive, electric cars cheaper and more powerful, and laptop power adapters one- third the size — or even small enough to fit inside the computer itself..."
Making the new silicon
MIT spinout Cambridge Electronics is making gallium nitride (GaN) transistors and power electronic circuits, which could replace silicon and cut energy use in data centers, electric cars, and consumer devices worldwide by 10 to 20 percent.
Embedded GaN charger with E-bike battery
"...announced the new GaN charger for e-bikes embedded with the battery...GaN devices provides power electronics designers with new levels of power density, performance, and cost-effectiveness. Gallium nitride (GaN) is a wide-bandgap, next-generation semiconductor technology that has become key for development of advanced power electronics. It operates up to 20x faster than silicon and provides up to 3x the power or 3x the charge in half the size and weight of silicon devices..."
Embedded GaN charger with E-bike battery - News
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- Creation of 2DEG: By growing a thin layer of aluminum gallium nitride (AlGaN) on top of a GaN crystal, a strain is created at the interface that induces a compensating two-dimensional electron gas (2DEG). This 2DEG is used to efficiently conduct electrons when an electric field is applied across it.
- Efficient Conduction: This 2DEG is highly conductive, in part due to the confinement of the electrons to a very small region at the interface. This confinement increases the mobility of electrons from about 1000 cm2/V·s in unstrained GaN to between 1500 and 2000 cm2/V·s in the 2DEG region.
- Superior Performance: Gallium Nitride’s high conductivity produces transistors and integrated circuits that feature higher breakdown strength, faster switching speed, higher thermal conductivity and lower on-resistance than comparable silicon solutions.
I would have thought GaN would be all over this forum, with people modding current chargers and controllers etc for a start and much talk on new ctlrs and chargers etc..
But this 'Game Changer' it's only mentioned in passing and infrequently.
So what's up with that!?
Is it patented up the wazoo and expensive as hell, or in everything already and I've just now crept out from under my rock!??