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The Sia ASICs Nobody Wanted Now Mine a Bitcoin Fork

The Sia ASICs Nobody Wanted Now Mine a Bitcoin Fork

8 Aug 2026
Chain split
at block 961,632
30 Aug 2026
BLAKE2b activates
at block 961,640
~5.1 PH/s
Reported network
hashrate, early Sept
+30.4%
Network growth
in a single week

Proof-of-work mining is a cyclical business, and most of its surprises arrive from the edges rather than the centre. While the industry watched the hashrate race in Bitcoin and Kaspa, a peripheral corner of the market produced the year's most consequential hardware story: a chain split that carried Bitcoin’s ledger onto BLAKE2b, and in doing so turned a shelf of obsolete Siacoin ASICs into the only machines capable of securing it.

The detail that matters is not that BTCB2 resembles Bitcoin. It is that BTCB2 is Bitcoin’s ledger — split away on 8 August 2026 at block 961,632, carrying the same balances and the same supply schedule, and then, three weeks later at block 961,640, replacing SHA‑256d proof-of-work with BLAKE2b. Block reward stayed at 3.125. Target block time stayed at roughly ten minutes. Only the hash function changed.

That single substitution did something no amount of market commentary could: it made the world’s entire installed base of Bitcoin mining hardware useless on the new chain, and it handed the work to an orphaned hardware family instead.

A chain does not care how much hashrate exists. It cares how much hashrate speaks its language — and on 30 August, the language changed.

Related reading
This article is the market story — why the hardware landscape moved and what holds it in place. For the mechanics of the fork itself, read What Is BTCB2? If you already know you want BLAKE2b hardware and are deciding which machine to buy, our buyer’s guide ranks all six on value, and the economics piece works through payback.
The technical fork in the road

Why an S21 cannot follow the ledger it helped build

Two hash functions, one incompatible silicon boundary

An ASIC is not a computer. It is a hash function cast into silicon. An Antminer S19 or S21 contains circuits that compute SHA‑256d and nothing else — there is no firmware update, no efficiency penalty, no partial compatibility. When the proof-of-work target changes, that silicon does not slow down. It stops being relevant.

Locked out
SHA‑256 fleet
Antminer S19 / S21 · Whatsminer M-series
Cannot compute BLAKE2b at any hashrate
No firmware path to the new chain
Continues mining Bitcoin unaffected
Roughly 9.5 J/TH at the modern hydro tier — but on a different hash function, so the number is not comparable
Eligible
BLAKE2b fleet
Goldshell SC series · iBeLink BM‑S series
Native BLAKE2b silicon, unchanged chips
Built for Siacoin; no hardware modification needed
Now securing a Bitcoin-scale reward schedule
163–263 J/TH across the current six-model lineup

How it unfolded

8 August 2026 · Block 961,632
The chain splits from Bitcoin, retaining the ledger and the 21 million supply cap. Roughly 20.07M coins already exist at the split.
30 August 2026 · Block 961,640
BLAKE2b proof-of-work activates. SHA‑256d hardware is permanently excluded from the chain.
Early September 2026
Reported network hashrate sits near 5.1 PH/s, with wider estimates of 8–10 PH/s once rented capacity is counted — a rounding error against Bitcoin, and the entire point.
Mid-September 2026
Network hashrate grows 30.4% in a single week as idle Sia-era inventory is located, tested and powered back on.
The supply constraint

Nobody has been building these chips

A fixed hardware pool meets a Bitcoin-scale reward

The reason this market moved so violently is not demand. It is supply. Bitcoin’s hashrate can respond to a price signal because a global supply chain is already producing SHA‑256 ASICs at volume. BLAKE2b has no such supply chain. Goldshell and iBeLink built these machines for Siacoin, a network whose economics had long since stopped justifying new production.

So the eligible hardware pool is effectively fixed at whatever already exists — much of it depreciated, much of it switched off in a garage or a warehouse. When a fixed pool of machines is pointed at a Bitcoin-scale reward schedule, the per-machine share of that reward is unlike anything in mainstream mining. A single 19 TH/s unit represents roughly a third of one percent of a 5.1 PH/s network. A flagship Bitcoin miner is about two hundred-thousandths of one percent of Bitcoin.

That asymmetry is the whole story, and it is also the whole risk: it exists precisely because the network is small, young and thinly traded. Both halves of that sentence are true at the same time.

The hardware

The six machines that can mine BTCB2

Verified live from oneminers.com, 21 September 2026

OneMiners lists six BLAKE2b units in its BTCB2 collection, from a compact entry machine to a flagship industrial unit. Together they represent roughly 77 TH/s of the lineup’s combined capability. Specifications below are manufacturer figures; prices were read live from oneminers.com on the date of publication. This is the eligible fleet, not a buying recommendation — for a ranked verdict on value, noise and payback, see the buyer’s guide.

01Goldshell SC Lite BLAKE2b ASIC miner
Goldshell
SC Lite
Hashrate
4.4 TH/s
Power
950 W

The entry point. Low draw and a small footprint make it the practical option for a single-unit deployment or a home-lab test of the chain before committing capital.

$2,999
List price
215.9
J / TH
Learn more →
02Goldshell SC5 Pro BLAKE2b ASIC miner
Shared SC5 / SC6 chassis — manufacturer photo
Goldshell
SC5 Pro
Hashrate
11 TH/s
Power
2,820 W

The balanced middle of the range. Enough hashrate to matter on a small network, at a capital cost per terahash that sits comfortably below the flagship tier.

$4,599
List price
256.4
J / TH
Learn more →
03iBeLink BM-S1 Max BLAKE2b ASIC miner
iBeLink
BM‑S1 Max
Hashrate
12 TH/s
Power
3,150 W

The lowest capital cost per terahash in the lineup at $383/TH. The least efficient unit on paper — which matters far less here than it would on Bitcoin, because power is a small share of gross on this chain.

$4,599
List price
262.5
J / TH
Learn more →
04Goldshell SC5 Pro II BLAKE2b ASIC miner
Shared SC5 / SC6 chassis — manufacturer photo
Goldshell
SC5 Pro II
Hashrate
14 TH/s
Power
3,300 W

A worked revision of the SC5 platform, adding three terahash over the Pro while holding efficiency below 240 J/TH. The strongest performance-to-reliability position in the Goldshell range.

$5,599
List price
235.7
J / TH
Learn more →
05Goldshell SC6 SE BLAKE2b ASIC miner
Shared SC5 / SC6 chassis — manufacturer photo
Goldshell
SC6 SE
Hashrate
17 TH/s
Power
3,330 W

Semi-industrial. Seventeen terahash from a 3.3 kW envelope puts it second only to the BM‑S3 on efficiency, and it is the highest-hashrate Goldshell unit currently listed.

$6,999
List price
195.9
J / TH
Learn more →
06Most efficientiBeLink BM-S3 BLAKE2b ASIC miner
iBeLink
BM‑S3
Hashrate
19 TH/s
Power
3,100 W

The flagship, and the only unit in the lineup under 200 J/TH — 163.2 J/TH, a 38% efficiency advantage over the BM‑S1 Max. It is both the fastest and the most efficient machine that can mine this chain.

$7,999
List price
163.2
J / TH
Learn more →
The numbers

Efficiency, and what a terahash costs to buy

Derived from manufacturer specs and live list prices

Two comparisons do most of the work when choosing between these machines. The first is thermal efficiency — joules consumed per terahash produced, where lower is better. The second is capital efficiency — what you pay, up front, for each terahash of capability.

Energy efficiency — joules per terahash
Lower is better. Bars are scaled against the least efficient unit in the lineup.
iBeLink BM‑S3
163.2
Goldshell SC6 SE
195.9
Goldshell SC Lite
215.9
Goldshell SC5 Pro II
235.7
Goldshell SC5 Pro
256.4
iBeLink BM‑S1 Max
262.5
Calculated as rated wattage ÷ rated hashrate. BLAKE2b J/TH figures are not comparable to SHA‑256 J/TH figures — the two numbers describe different hash functions doing different work.
Capital cost per terahash — USD
List price divided by rated hashrate. Lower is better.
iBeLink BM‑S1 Max
$383
Goldshell SC5 Pro II
$400
Goldshell SC6 SE
$412
Goldshell SC5 Pro
$418
iBeLink BM‑S3
$421
Goldshell SC Lite
$682
List prices read live from oneminers.com on 21 September 2026. Excludes shipping, duties and setup. The SC Lite’s premium per terahash is the cost of the smallest available entry point.
The trade-off, plotted
Hashrate against efficiency. The best position is bottom-right: more terahash, fewer joules to make each one.
BETTER 270243216189162 48121620 HASHRATE — TH/s J / TH SC Lite SC5 Pro BM-S1 Max SC5 Pro II SC6 SE BM-S3
Manufacturer-rated figures. Marker position reflects rated hashrate and calculated J/TH only; it is not a profitability ranking.

What the plot actually says

The BM‑S3 occupies the strongest engineering position in the lineup by a clear margin — it is simultaneously the fastest machine and the only one under 200 J/TH. But capital cost tells a different story: at $421 per terahash it is the most expensive way to buy hashrate in the group, while the least efficient machine, the BM‑S1 Max, is the cheapest at $383.

That inversion is characteristic of a young network. On Bitcoin, where electricity routinely consumes most of gross revenue, efficiency dominates every purchasing decision. On a chain where the reward per unit of hashrate is currently this high, power is a much smaller share of the equation, and price per terahash carries more weight than joules per terahash. That relationship will not hold permanently — it inverts the moment enough hashrate arrives. The buyer’s guide carries that argument down to a per-machine verdict.

Reference

Full specification table

All six BLAKE2b units, side by side
Model Hashrate Power J / TH List price $ / TH Daily revenue*
Goldshell SC Lite 4.4 TH/s 950 W 215.9 $2,999 $682 $19.68
Goldshell SC5 Pro 11 TH/s 2,820 W 256.4 $4,599 $418 $48.50
iBeLink BM‑S1 Max 12 TH/s 3,150 W 262.5 $4,599 $383 $53.51
Goldshell SC5 Pro II 14 TH/s 3,300 W 235.7 $5,599 $400 $61.77
Goldshell SC6 SE 17 TH/s 3,330 W 195.9 $6,999 $412 $74.93
iBeLink BM‑S3 19 TH/s 3,100 W 163.2 $7,999 $421 $107.44
Hashrate and power are manufacturer-rated. J/TH and $/TH are calculated from those figures. List prices read live from oneminers.com on 21 September 2026. *Daily revenue figures are gross, before electricity, and were published by OneMiners on 16 September 2026 — they move with coin price and network difficulty and should be re-checked before any purchasing decision.
Rows of stacked ASIC miners filling a wall inside a OneMiners hosting facility
Stacked rows of ASIC miners inside a OneMiners hosting facility. The units pictured are SHA‑256 machines; BLAKE2b hardware racks the same way, drawing between 950 W and 3,330 W each — modest by industrial standards, but with acoustics and heat output that make residential deployment impractical at any real scale.
Deployment

Where this hardware actually runs

Power, cooling and continuity

A BLAKE2b unit is smaller than a modern Bitcoin miner, but it is still a 3 kW industrial appliance that runs continuously and is loud enough to require hearing protection at close range. The constraint on this hardware has never been the chips — it is stable power, adequate cooling and someone on site when a fan fails at 3 a.m.

OneMiners operates a hosting network across 20 sites. The relevant number for an operator is not a fleet hashrate figure — as a hosting operator we do not claim one — but contracted capacity, electricity cost and uptime.

20
Hosting sites
Across North America, Europe, the Middle East, Africa and South America.
~2,163 MW
Contracted capacity
Across the network, including capacity under construction.
$0.0480
Average rate / kWh
Network average. Per-site rates vary; verify the current rate for your site.
98%+
Average uptime
With on-site repair centres and automated restart monitoring.
Outlook

What resolves this, and when

A supply story with a built-in expiry date

BTCB2 solved a specific problem for a specific group of people: owners of BLAKE2b ASICs who had watched the economics of Siacoin erode beneath them. Demand for both used and new Goldshell and iBeLink hardware has risen sharply as a result, and a hardware category that was effectively written off is being sourced, tested and redeployed.

The honest framing is that this is a supply anomaly, not a permanent state. The current per-machine share of network reward exists because only a few petahash of eligible hardware exist in the world. That gap closes in one of two ways: inventory comes off shelves and out of storage — which is already happening at over 30% a week — or manufacturers restart BLAKE2b production. Either path compresses the advantage.

What stays true through the compression is the underlying arithmetic: price per terahash determines how quickly hardware pays for itself, efficiency determines how long it stays viable afterwards, and electricity cost determines the floor under both. Those three variables outlive any individual chain.

BTCB2 is a young network with thin liquidity, limited exchange and wallet support, and an unproven security budget. That is not a footnote to the opportunity — it is the same fact, described from the other side.

Hosting for BLAKE2b hardware

Industrial power, cooling and monitoring for Goldshell SC and iBeLink BM‑S units — with on-site repair and dead-on-arrival protection.

See the BTCB2 miners →Explore hosting
Sources & disclosure

Informational only. Not financial advice. Mining outcomes depend on coin price, network difficulty, electricity cost and regulation, all of which change. BTCB2 is a young chain with thin liquidity and limited exchange support, so figures can move very quickly in either direction. Do your own due diligence.

Disclosure: OneMiners sells and hosts the hardware described in this article.

Sources: Chain-split and activation data, network hashrate and daily revenue figures — OneMiners, “What Is BTCB2 (Bitcoin BLAKE2b)?” and “BTCB2 Mining Profitability 2026” (16 September 2026). Hardware specifications and list prices read live from oneminers.com product pages, 21 September 2026. J/TH and $/TH calculated by the OneMiners research desk from those figures.

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