
By Peter Groothedde · 28 July 2026
Most welding helmet shopping starts with the shell and the graphics. The regulator starts somewhere else entirely, with a number printed on the filter.
That number is the shade, and it is not a preference. It is set against the process and the current you are running. Nothing else on the welding helmet changes it.
Get it wrong and the welding helmet fails at the only job that matters. Get it right and the rest of the choice is about comfort, weight and how fast the filter reacts.
This guide walks the shade tables first, then the hardware.
An arc or a flame throws off electromagnetic energy that injures the eye. The trade calls it radiant energy, or light radiation. A dark plastic visor does not deal with it, and a filter rated for the job does.
The damage is not always immediate.
That is exactly why the selection is written into regulation instead of left to the operator.
A shade number tells you how much light radiation the filter lets through to your eyes.
OSHA publishes a minimum protective shade number for each process and current band.
The welding industry bodies publish their own, usually higher, recommended numbers alongside them.
Both appear in the same OSHA fact sheet, and the gap between them is often wide. Gas tungsten arc welding at 50 to 150 amps carries a minimum of 8 against an industry recommendation of 12.
| Process | Arc current | OSHA minimum shade | Industry recommendation |
|---|---|---|---|
| Shielded metal arc, under 60 A | Fewer than 60 | 7 | — |
| Shielded metal arc | 60 to 160 | 8 | 10 |
| Shielded metal arc | 160 to 250 | 10 | 12 |
| Gas metal arc and flux cored | 60 to 160 | 10 | 11 |
| Gas metal arc and flux cored | 250 to 500 | 10 | 14 |
| Gas tungsten arc | 50 to 150 | 8 | 12 |
| Gas tungsten arc | 150 to 500 | 10 | 14 |
| Plasma arc cutting, medium | 300 to 400 | 9 | 12 |
Within one process, the shade climbs as the current does. That is the pattern behind every row above. It is also why one fixed shade cannot cover a shop running a wide range of jobs.
Two operations at the same amperage can call for different shades, because the arc itself differs.
A passive welding helmet holds one fixed dark shade all the time. You nod it down to strike and lift it to inspect, which is why the old habit of flicking the shell exists at all. Nothing about it can fail electrically.
An auto-darkening welding helmet sits at a light shade until sensors detect the arc, then switches to the dark shade you selected. You keep the hood down and both hands on the work. That alone removes the commonest way welders take an unprotected flash.
Auto-darkening filters carry a four-digit code marked on the filter itself. Each digit is a separate rated category. Each one is scored against the same scale, so the code reads left to right as four independent verdicts.
| Position | What it rates |
|---|---|
| First | Optical class |
| Second | Diffusion of light class |
| Third | Variations in luminous transmittance |
| Fourth | Angle dependence |
In every one of the four categories, 1 is the best available score. A filter marked 1/1/1/1 therefore offers the best optical clarity the standard recognises, and a lower digit anywhere tells you where the compromise was made.
The shade requirement covers the person welding and the people watching. A fire watch or an assistant standing by the job needs the same protection as the welder. Handing them a spare welding helmet is not generosity, it is the rule.
Filters deal with radiation, and they do not deal with things that fly. Slag chips, grinding fragments and wire bristles all reach the eye from the side.
Where filtered eyewear is worn under the hood, the welding helmet lens shade may be reduced. The combined shade numbers of the eyewear and the helmet have to equal the value the table asks for.
The heaviest welding helmet in the catalogue is the one that gets pushed up and left up. Balance and headgear adjustment matter more than raw specification once the shade is settled.
Cover lenses scratch and get spattered, and they are meant to. A scratched cover lens is the commonest reason a good welding helmet gets replaced early.
It depends on the process and the current, so read it off the table rather than guessing. Shielded metal arc at 60 to 160 amps takes a minimum of shade 8, while the same current on gas metal arc takes 10. No single welding helmet setting covers both.
Safer for radiation, but not always workable. Too dark and you cannot see the puddle, which is why the industry recommendations sit above the legal minimum rather than at the top of the scale.
For any shop running more than one process or current, usually yes. The variable shade range and the ability to keep the hood down both save time and reduce the chance of striking an arc unprotected.
Wherever objects may fly at the face, yes. A welding helmet filter handles radiant energy, and side protection handles slag, grinding fragments and bristles.
It is the EN 379 optical rating, covering optical class, diffusion of light, variations in transmittance and angle dependence. One is the best score in each category, so 1/1/1/1 is the top rating.
Yes, if they are watching the arc. The shade requirement extends to observers such as a fire watch or an assistant, not just to the welder.
Start from the process and the current, because those two decide the shade before any other feature gets a vote. Read the minimum, then look at the industry recommendation sitting above it, and choose with your eyes in mind rather than the rulebook alone.
Only then decide between a passive and an auto-darkening welding helmet, and read the four-digit code rather than the marketing.
Add safety glasses under the hood wherever anything can fly, and remember the fire watch needs protecting too. A welding helmet bought that way protects the person wearing it, which is the only specification that really counts.
Related categories on EYBY: