Gallium nitride
Chemical compound
Gallium nitride (GaN) is a binary III/V direct bandgap semiconductor commonly used in blue light-emitting diodes since the 1990s. The compound is a very hard material that has a Wurtzite crystal structure.
Nº Q411713 ★★★
Rare · Knowledge
Gallium nitride
Chemical compound
Gallium nitride (GaN) is a binary III/V direct bandgap semiconductor commonly used in blue light-emitting diodes since the 1990s. The compound is a very hard material that has a Wurtzite crystal structure.
Last price
—
Floor price
—
7-day median
—
30-day sales
0
30-day range
—
In circulation
0
Price history
median
low – high
sales
No sales in this period
Show table
| Date | median | Low | High | sales |
|---|
Sales history
- Last sale
- —
- 30-day average
- —
- 30-day low
- —
- 30-day high
- —
- Sales 7d
- 0
- Sales 30d
- 0
No sales yet.
Anonymous sales: no buyer or seller shown. Figures count player-to-player sales only.
From Wikipedia
Gallium nitride (GaN) is a binary III/V direct bandgap semiconductor commonly used in blue light-emitting diodes since the 1990s. The compound is a very hard material that has a Wurtzite crystal structure. Its wide band gap of 3.4 eV affords it special properties for applications in optoelectronics, high-power and high-frequency devices. For example, GaN is the substrate that makes violet (405 nm) laser diodes possible, without requiring nonlinear optical frequency doubling. Its sensitivity to ionizing radiation is low (like other group III nitrides), making it a suitable material for solar cell arrays for satellites. Military and space applications could also benefit as devices have shown stability in high-radiation environments. Because GaN transistors can operate at much higher temperatures and work at much higher voltages than gallium arsenide (GaAs) transistors, they make ideal power amplifiers at microwave frequencies. In addition, GaN offers promising characteristics for THz devices. Due to high power density and voltage breakdown limits GaN is also emerging as a promising candidate for 5G cellular base station applications. Since the early 2020s, GaN power transistors have come into increasing use in power supplies in electronic equipment, converting AC mains electricity to low-voltage DC, as well as higher-voltage applications such as electric vehicle traction inverters due to their small size, fast switching speed and high efficiency.
Text: Wikipédia, CC BY-SA 4.0. · Image: Materialscientist (talk) (CC BY-SA 3.0) ·
Related cards
Gallium arsenide
Chemical semiconductor compound
Nº Q422819 ★★
Boron nitride
Chemical compound
Nº Q410193 ★★★
Titanium nitride
A compound for coating metals
Nº Q415638 ★★
Nitrogen triiodide
Chemical compound
Nº Q407716 ★★
Aluminium oxynitride
Transparent polycrystalline ceramic
Nº Q421667 ★★
Sodium nitrate
Chemical compound
Nº Q184373 ★★★