The dominant stem class sits comfortably inside a mid-size head's productive band. Occasional oversize stems taking longer is cheaper than carrying extra head weight through thousands of hours.
This is the most common and most expensive specification error in Australian forestry. Manufacturers publish three different numbers, and buyers routinely quote only the largest.
The three are: the optimum DBH range, the recommended maximum regular DBH, and the absolute maximum cutting capacity. They are not interchangeable.
Why this comparison recurs
This is not a comparison between two products. It is a comparison between two numbers on the same specification sheet, and confusing them is the most expensive specification error in Australian forestry.
Manufacturers publish three separate diameter figures: the optimum production range, the recommended maximum regular DBH, and the absolute maximum cutting capacity. Buyers routinely quote only the third, which is the least useful of the three.
The consequence is paying for weight, carrier class, boom payload and component cost that never converts into production — carried on every cycle, for the life of the machine.
The comparison
Which one, and when
How the two differ on cost, specifically
Capability comparisons are easy to find. This is where the commercial difference actually sits.
The variables that move this decision
Read across the row your own situation matches. Where most rows point the same way, the decision is straightforward; where they split, the comparison is genuinely close and the economics below should settle it.
What we would actually recommend
Not a balanced summary — a recommendation for each case, with the reasoning.
If the percentile figure genuinely sits near the larger head's optimum band, the step up is justified. If only the maximum does, it is not — the percentile is what tells you which.
Crooked and irregular stems are a grip and feed problem rather than a diameter one. A head with higher feed force at moderate capacity will out-process one rated larger but with less grip.
Published figures that mislead on this particular choice
Each of these is accurate. Each of them answers a different question from the one a buyer is asking when they compare these two.
Mistakes specific to this decision
The order to work through, for your own case
Each step narrows what the next has to establish. Worked in order, most buyers find the decision resolves before the last one.
Take the diameter distribution of your volume
Not the range of stem sizes present. A stand with a handful of very large stems and most volume mid-range is a mid-range job with exceptions.
Overlay the published optimum band
If most of the volume falls inside it, the head is well matched. If a substantial share sits above it, a heavier head is the honest answer — and if only a few stems do, handle them another way.
Price the exceptions separately
Occasional oversize stems can be felled conventionally, handled by a subcontractor, or left for a second pass. Specifying the whole head around them is paying for capacity on every cycle to use it on very few.
Confirm the carrier supports the head at reach
Weight, continuous flow, working pressure and cooling, plus the lift chart with the head fitted. A head inside its optimum band on a carrier that cannot run it is still the wrong purchase.