CRTs emit gamma ray at high power(>5kV is usually the quoted figure), and the standard solution was a bandaid fix of attaching leaded gamma ray blocking glass onto the screen. This high lead glass cannot be recycled, and the EU(rightfully) don't like any of that. I don't know if manufacturing of CRTs are banned or legally infeasible, but it's clearly not encouraged.
There are still some types of CRT-related vacuum tubes in production for applications digital equivalents are objectively less performant in.
> There are still some types of CRT-related vacuum tubes in production for applications digital equivalents are objectively less performant in.
Like what? The only significant applications I'm aware of for vacuum tubes nowadays are high-power RF amplifiers (including household microwave magnetrons) and intentional X-ray emitters.
Night vision goggles. The photodiode + CsO + lead coated charged glass capillary amp thing is apparently still superior to solid state image sensors with amplifiers in metrics like SNR, minimum luminosity, and longer wave IR response. The performance gap is wide enough that there's a Chinese Norinco subsidiary that entered the market during 2010s by licensing technology from an EU company.
xyzzy_plugh · · focus · HN ↗
numpad0 · · focus · HN ↗
There are still some types of CRT-related vacuum tubes in production for applications digital equivalents are objectively less performant in.
duskwuff · · focus · HN ↗
Like what? The only significant applications I'm aware of for vacuum tubes nowadays are high-power RF amplifiers (including household microwave magnetrons) and intentional X-ray emitters.
numpad0 · · focus · HN ↗
protocolture · · focus · HN ↗