Earlier quoted context omitted.
We're not that far off. JET previously achieved Q=0.67, ie. two-thirds as much energy output as input. (The new result has higher output but lower Q.) For a practical reactor we need Q around 30, which might seem far away but tokamak output scales with the square of reactor volume and the fourth power of magnetic field strength. Double the field, 16X the output, and we can generate much more powerful magnetic fields…
So they just need to build the same thing, but make it gigantic in size? Why is it not yet done?
HTS was known but not practical when ITER was planned, but it's almost done. ITER is almost large enough to be an LTS-based power plant.
ITER will still produce a lot of useful science, but there is a now a potential class of mid-scale HTS machines that would help develop plasma models.
These iterations seem frustrating and time consuming, but their results are lowering the cost of a hypothetical power plant until one day maybe society will decide they're worth making for power generation.