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Hashrate gain with AsicBoost custom firmware

Firmware documentation

How much hashrate the firmware really adds

The first reason people put on custom firmware. No sales talk below: how the hashrate actually grows, how much of a gain we see in practice, and when there will be none at all.

Bitmain stock firmware holds the chips at one frequency and one voltage, with a margin sized for the worst unit in the batch. That margin is generous, because the maker needs every ASIC to run, not just the lucky ones. Custom firmware takes that margin for itself.

Where the extra hashrate comes from

There are two mechanisms, and they work together.

First: raising the chip clock. SHA-256 hashrate scales linearly with frequency, so 715 MHz instead of 705 MHz is an immediate plus in terahashes. The power supply and the cooling pay for it.

Second, and this one matters more: autotuning picks frequency and voltage separately for every chip on the hash board. Chips from one batch differ, a spread in silicon quality is normal. Stock drives them all the same, so the weak chips throw hardware errors and the strong ones stay underused. Autotuning splits them into their own modes: the weak ones get lowered, the strong ones get raised. That is the second half of the gain, and the drop in HW errors as well. How to set this by hand is covered in the section on performance.

Per chip hashrate table for a hash board in the firmware interface
Hashrate for each chip. Even values are normal, a lagging chip shows up at once

What you get in practice

The +50% figure turns up in custom firmware ads everywhere. It is the ceiling for rare lucky cases, usually on old hardware with a heavily held back stock and a modified power supply. Do not plan around it.

A realistic target at normal temperatures and with the standard power supply: 15 to 20%. That is the range the developer documentation confirms, and it matches what we see in the workshop.

ModelStockAfter tuningPower draw
Antminer S19 Pro110 TH/sabout 127 TH/sroughly 3800 W
Antminer S19 Pro, aggressive profile110 TH/sup to 140 TH/sroughly 4500 W
Antminer L78800 MH/sabout 9300 MH/sa few hundred watts more

Look at the second row. A gain of 27% looks good right up to the moment you check the power draw: 700 extra watts per ASIC means a separate line, a separate breaker and noticeably more heat in the room. That profile makes sense with cheap electricity and good cooling, in every other case the moderate one pays better. What you pay for the top profiles we covered separately, in the section on wear from overclocking.

What eats the gain

  • Dev fee. On the S and T series it is 2.8% of hashrate, on the L series (L7 and L9) 1.8%. Count the gain after the fee, otherwise the economics are just drawn on paper. More in the section on the dev fee.
  • Power supply. The standard APW12 on an S19 runs into its limit and goes into protection. Overclocking above stock needs power headroom, otherwise you get dropped chip chains instead of terahashes.
  • Temperature. Above 75 °C the firmware starts lowering the profile itself, and at 85 to 90 °C chips degrade fast. In summer, in an unprepared room, the gain melts away.
  • Chip quality. An ASIC with a repair history and partly degraded chips overclocks worse than a new one. You can see it in the autotuning results already.
How to work out the benefit before you buy Take your current hashrate, add 15%, subtract the fee, multiply by your own revenue rate and subtract the difference in the electricity bill. Numbers for your model are easy to take from the profitability calculator. If the result does not suit you, you do not need overclocking, and it is worth looking at lower power draw instead of more speed.

Who gets the gain easily and who does not

Easy: S19 Pro, S19j Pro, S19 XP and S21 in a room with proper extraction, on a healthy power supply, with inlet air up to 30 °C. After autotuning these ASICs settle on a stable profile in one night and then run for months.

Hard: ASICs in a closed garage with no air coming in, units with chips that are already falling apart, builds with no name Chinese power supplies. Here the firmware will show the problem rather than add speed. Still, that is useful too.

Quick answers

Is the gain counted before or after the dev fee?
In the interface you see the device hashrate. The fee is taken by redirecting part of the work to the developer pool, so on your own pool you will see roughly 2.8% less (1.8% on the L series). Do your economics on the number at the pool.
Why did my neighbor's S19 overclock further than mine?
A spread in silicon quality between units is normal, plus the difference in air temperature and in the power supply. A difference of up to 5% between two identical ASICs is normal.
Can hashrate be raised without raising power draw?
A little, by cutting hardware errors and picking voltage per chip more precisely. But a serious gain always costs watts, nobody has cancelled physics.
Written by , ASIC repair and tuning engineer at asic.es.