Would be nice if they included the average current power consumption, per chip and total. It's a hell of a reduction in any case, but if the total is a drop compared to other power consumption then it's just taking a few drops out of the bucket.
I think it’s more than we expect - these chips get pretty hot when under load, and we know performance then throttles when hot. Power = heat, so less power means less heat which should mean more optimum performance for longer
But yeah I’m no expert so I don’t actually know. Does a 96% drop in power mean similar drop in heat ??
It'll be a 96% reduction in heat. Basically all the power consumed by computers is converted to heat. Some small amounts are converted to light and sound, but they're a rounding error.
4 Comments
Alexstarfire@lemmy.world · 11 pts · 272d
Would be nice if they included the average current power consumption, per chip and total. It's a hell of a reduction in any case, but if the total is a drop compared to other power consumption then it's just taking a few drops out of the bucket.
Stuart_Munto@lemmy.world · 3 pts · 272d
I think it’s more than we expect - these chips get pretty hot when under load, and we know performance then throttles when hot. Power = heat, so less power means less heat which should mean more optimum performance for longer
But yeah I’m no expert so I don’t actually know. Does a 96% drop in power mean similar drop in heat ??
Alphane_Moon@lemmy.world · 3 pts · 272d
I don't know the exact formula, but there will be a significant drop in heat when your components power consumption goes down by 96%.
YodaDaCoda@aussie.zone · 3 pts · 271d
It'll be a 96% reduction in heat. Basically all the power consumed by computers is converted to heat. Some small amounts are converted to light and sound, but they're a rounding error.