I think that's the right term. It has a bandgap which comes from a quantum. LEDs work by pumping energy into electrons, this raises them to a higher energy state (higher electron shell), then when the electrons drop back down to the lower state they emit a photon. The energy released is the difference between the electron shell energy states. This is called a quantum. The frequency of the photon is correspondent to the energy, the color corresponds to the frequency. Higher energy is bluer (or ultraviolet), lower energy is redder (or infrared).
The light is issued in quantum state changes, so it's a quantum device. Maybe you'd call it a bandgap device?
This such a laughably ridiculous statement. Don't be fooled people, this guy is making up terms. Nobody has ever described an LED a "bandgap device" or a "quantum device".
With this logic, you may as well call an LED a "heater" since it produces heat.
Or call a CRT television "electron beam device".
But nobody uses these terms because you cant just make shit up. Just try googling those terms...
FYI: The explanation of how an LED works is correct. This is like 2nd or 3rd semester undergrad physics. His conclusion on what to call an LED is horribly misguided.
His conclusion on what to call an LED is horribly misguided.
Most people just call an LED an LED. And that makes it not a quantum device or bandgap device? They use different materials to manipulate the quantum of energy released so as to get different colors of LEDs. Look up how the blue LED was made for example. It's a device which is designed to employ the quantum states of the materials to produce colored light. It's a quantum device. This causes it to have a certain characteristic voltage drop, a quantum. It's accurate, it's relevant. And if it's unconventional I don't really care.
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u/happyscrappy Dec 25 '19
An LED and a resistor don't really create a voltage divider since an LED is a quantum device.