Bitmain: the company, its chips and Antminer miners
ASIC manufacturers · Bitmain
What Bitmain is and what stands behind the Antminer name
58 Antminer models in our catalog, 11 algorithms, efficiency spread from 12 to 136 J/TH. We go through the company, the chips, the series, cooling, firmware, spare parts and repair.
A short profile of Bitmain
Bitmain is a Chinese company that designs and sells ASIC miners under the Antminer brand. It was founded in 2013 in Beijing by two people with very different backgrounds: chip engineer Zhan Ketuan (Micree Zhan) took care of the hardware, financier Wu Jihan (Jihan Wu) took care of the money and the sales. The first product was the Antminer S1 at 180 GH/s and 360 W. After it, mining bitcoin on a home graphics card stopped making sense.
The company is known above all for two things. First: its own chips, which Bitmain designs in house and has fabricated at TSMC. Second: a market share nobody else comes close to. Estimates vary, from half to eighty percent of global bitcoin hardware shipments. There is no exact figure: the company is private and publishes no accounts. But even the low end of that range, half the market, leaves Bitmain the largest supplier in the industry.
The headquarters and the legal center of operations sit in Beijing. The holding company is registered in the Cayman Islands, and the design units work in Beijing, Shanghai, Shenzhen and Singapore. The chips are made by TSMC in Taiwan, assembly runs mostly in Malaysia, and since December 2024 the first production line in the United States has been operating. This geography came together out of necessity: the 2021 mining ban in China, American tariffs and the customs inspections of recent years all played their part.
Bitmain does more than bitcoin. Our catalog holds 58 Antminer models across eleven algorithms: SHA-256, Scrypt, kHeavyHash, Equihash, Eaglesong, Etchash, X11, Blake2s, Blake2B+SHA3, RandomX and Blake3. Some of these lines the company has effectively closed, others it still develops. Below we go through what is worth buying today and what only makes sense on a very low electricity tariff.
Company fact sheet
| Parameter | Value |
|---|---|
| Name | Bitmain Technologies Ltd. |
| Miner brand | Antminer |
| Country | China |
| Founded | 2013 |
| Founders | Zhan Ketuan (Micree Zhan), Wu Jihan (Jihan Wu) |
| Who controls it now | Zhan Ketuan, Wu Jihan left the company in January 2021 |
| Headquarters | Beijing, China |
| Holding registration | Cayman Islands |
| Development | Beijing, Shanghai, Shenzhen, Singapore |
| Chip manufacturing | TSMC, Taiwan |
| Assembly | Malaysia, since December 2024 also the United States |
| Specialization | ASIC miners, mining chips, previously AI accelerators |
| In house chips | From BM1380 (2013) to BM1373 (2026), plus BM1485 for Scrypt |
| Main algorithms | SHA-256, Scrypt, kHeavyHash, Blake3, Equihash and others |
| Related entities | Antpool, previously BTC.com and Bitdeer |
| Models in the asic.es catalog | 58 |
| Official website | bitmain.com |
| Support and specifications | support.bitmain.com |
History: from the first Antminer to petahash scale
From the S1 to the S23 the draw has fallen from about 2000 J/TH to 9.5. Each chip generation cut the energy spent per unit of work, and each such cut sent the previous generation of hardware either to scrap or to places where a kilowatt costs almost nothing. These dates are a handy way to work out the age of an ASIC when you buy used.
- 2013The company is founded in Beijing. The Antminer S1 arrives: 180 GH/s at 360 W, 55 nm process, around 2000 J/TH.
- 2014Antminer S5, 1.15 TH/s at 590 W. A 28 nm process, energy use falls to roughly 513 J/TH.
- 2015Antminer S7 on the BM1385 chip, 4.73 TH/s at 1293 W. By the middle of the decade the company becomes the largest supplier of miners.
- 2016Antminer S9 on the BM1387 chip, 16 nm, around 98 J/TH. The most widespread model in mining history, part of the fleet is still running.
- 2017A step beyond bitcoin: the L3+ on Scrypt with its own BM1485 chip and the D3 on X11. Diversification across algorithms begins.
- 2018Antminer S9 Hydro with industrial water cooling. In September an IPO application is filed in Hong Kong.
- 2019Antminer S17 and S17 Pro on 7 nm, around 40 J/TH. The IPO application expires in March without a listing. In the fall the conflict between the founders begins.
- 2020Antminer S19 and S19 Pro: 95 and 110 TH/s, 34.5 and 29.5 J/TH. This series is still the backbone of the used market.
- 2021Wu Jihan leaves the company in January, control stays with Zhan Ketuan. BTC.com and Bitdeer are spun off into a separate business. In June China bans mining, shipments are rebuilt around foreign markets. The L7 on Scrypt arrives.
- 2022Antminer S19 XP on the BM1366 chip, 5 nm, 140 TH/s at 3010 W, 21.5 J/TH. The efficiency bar moves below 22 J/TH.
- 2023S19k Pro, then the announcement of the S21 series. In the fall an industry summit shows the ASICs that will define the next two years.
- 2024The S21 series: S21 at 200 TH/s, S21 Pro at 234 TH/s, S21 Hydro at 335 TH/s. At the end of the year the S21 XP Hydro arrives, 473 TH/s at 5676 W, 12 J/TH, and the first assembly line in the United States starts up.
- 2025KS7 on Kaspa (40 TH/s), L11 on Scrypt (0.184 J/MH) and L11 Pro (0.172 J/MH), S21 XP+ Hydro at 500 TH/s. In May the S23 series is shown at the summit in Las Vegas. Regulatory pressure in the United States grows.
- 2026S23 shipments have begun: the air version at 318 TH/s and 11 J/TH, hydro at 580 TH/s and 9.5 J/TH, a 3U version at 1.16 PH/s. For the first time a Bitmain bitcoin miner goes below 10 J/TH. A batch of Antminer X9 on RandomX has been announced.
Bitmain miner lines
The letter in an Antminer name tells you the algorithm and the job of the miner. Over its history the company has run twelve lines. Some of them closed together with the coin they were built for, and that is a normal life cycle for narrowly specialized hardware.
The company's main line and the main source of its revenue. From the S1 at 180 GH/s in 2013 to the S23 Hyd 3U at 1.16 PH/s in 2026. Inside the series there are air miners, hydro versions carrying the Hydro or Hyd index, and immersion models. The Pro, XP and XP+ indexes mean a better chip and better efficiency in the same enclosure.
Who for: everyone who takes bitcoin seriously.
The same chips as in the S series of the matching generation, but with worse efficiency. T9+, T15, T17, T19, T21. The logic is simple: the ASIC takes more energy per unit of work, yet costs less per terahash to buy.
Who for: sites with very cheap electricity.
The only line besides the S series that Bitmain develops without a break: L3+, L3++, L7, L9, L11. It mines two coins at once through merged mining, so the same hashrate brings in both LTC and DOGE. Efficiency is measured in J/MH and cannot be compared with the J/TH of bitcoin miners.
Who for: those who want diversification away from bitcoin without changing supplier.
KS3, KS5, KS5 Pro, KS7. A young line for the Kaspa network, released in 2023, the latest addition is the KS7 at 40 TH/s. We have not come across any public custom firmware for this line.
Who for: those who believe in Kaspa and find single coin risk acceptable.
AL1, AL1 Pro, AL3. All the hardware in this line came out in 2024 and 2025, there are no new models. The Alephium network is deliberately friendly to ASICs, so no algorithm change is expected, but the coin price sits well below its peaks.
Who for: only on a very low electricity tariff.
One model, the KA3 at 166 TH/s. The line is effectively closed together with the project: the Kadena organization announced it was ceasing operations in October 2025, while the network itself keeps running on community effort.
Who for: today, nobody.
K5 and K7. The algorithm was written for one network and is used nowhere else. The gap inside the line is enormous: the K7 spends almost thirty times less energy on the same work than the K5.
Who for: a niche story, only the K7 and only on cheap power.
Z9, Z11, Z15, Z15 Pro. The unit here is not hashes but solutions per second, so efficiency is counted in J/kSol. The algorithm parameters differ between coins: an ASIC built for Zcash will not mine Bitcoin Gold.
Who for: those already inside the Zcash ecosystem.
E3, E7, E9, E9 Pro. These miners have a shelf life, and it is set by the amount of memory soldered on board: the DAG file grows, and once it no longer fits, the miner simply stops hashing. The E9 has about six gigabytes of memory, a figure the manufacturer has never confirmed. That much should last until roughly the early thirties.
Who for: there is almost no point in buying today.
D3, D5, D7, D9. No new models since 2022. Since December 2023 a miner on the Dash network receives only twenty percent of the block reward, and many calculators still compute on the canceled scheme.
Who for: only after checking the real block reward.
X3, then the X5 and the X9 announced for 2026. Except this is not a classic hashing ASIC. Monero developers took an X5 apart and found general purpose server processors on the RISC-V architecture and ordinary memory inside, so the familiar hundredfold lead over universal hardware is not there.
Who for: Monero enthusiasts who understand what they are paying for.
HS3 at 9 TH/s, around 231 J/TH against 756 for the closest competitor. But the Handshake network is in a hard place: pools are shutting down, and the second halving of 2026 cut the reward from 1000 to 500 HNS.
Who for: for experimenters, not as an investment.
Bitmain model catalog on asic.es
Below are all the Antminer models that have their own page with a profitability calculator on asic.es. Every row leads to that page, where you can enter your own electricity tariff and see what the miner would earn in your case. The AsicBoost label means a custom firmware of ours exists for that model.
The first table is bitcoin, sorted by efficiency from best to worst. At the top, the ASICs worth buying new. At the bottom, the ones that only survive on very cheap power. The second table is grouped by algorithm, because their units of measurement differ and they cannot be compared with each other directly.
SHA-256, models: 38
| Model | Hashrate | Power draw | Efficiency |
|---|---|---|---|
| Antminer S21 XP Hydro AsicBoost | 473 TH/s | 5676 W | 12 J/TH |
| Antminer S21 XP Immersion AsicBoost | 300 TH/s | 4050 W | 13.5 J/TH |
| Antminer S21 XP AsicBoost | 270 TH/s | 3645 W | 13.5 J/TH |
| Antminer S21 Pro AsicBoost | 234 TH/s | 3510 W | 15 J/TH |
| Antminer S21+ Hydro AsicBoost | 319 TH/s | 4785 W | 15 J/TH |
| Antminer S21 Hydro AsicBoost | 335 TH/s | 5360 W | 16 J/TH |
| Antminer S21+ AsicBoost | 216 TH/s | 3564 W | 16.5 J/TH |
| Antminer S21 Immersion AsicBoost | 301 TH/s | 4967 W | 16.5 J/TH |
| Antminer S21 AsicBoost | 200 TH/s | 3500 W | 17.5 J/TH |
| Antminer T21 AsicBoost | 190 TH/s | 3610 W | 19 J/TH |
| Antminer S19 XP+ Hydro AsicBoost | 279 TH/s | 5301 W | 19 J/TH |
| Antminer S19 XP Hydro AsicBoost | 255 TH/s | 5304 W | 20.8 J/TH |
| Antminer S19j XP AsicBoost | 151 TH/s | 3247 W | 21.5 J/TH |
| Antminer S19 XP AsicBoost | 141 TH/s | 3032 W | 21.5 J/TH |
| Antminer S19k Pro AsicBoost | 120 TH/s | 2760 W | 23 J/TH |
| Antminer S19 Pro+ Hydro AsicBoost | 198 TH/s | 5445 W | 27.5 J/TH |
| Antminer S19j Pro+ AsicBoost | 122 TH/s | 3355 W | 27.5 J/TH |
| Antminer S19 Pro Hydro AsicBoost | 184 TH/s | 5428 W | 29.5 J/TH |
| Antminer S19a Pro AsicBoost | 110 TH/s | 3245 W | 29.5 J/TH |
| Antminer S19j Pro AsicBoost | 104 TH/s | 3068 W | 29.5 J/TH |
| Antminer S19 Pro AsicBoost | 110 TH/s | 3250 W | 29.55 J/TH |
| Antminer S19 AsicBoost | 95 TH/s | 3250 W | 34.21 J/TH |
| Antminer S19a AsicBoost | 96 TH/s | 3312 W | 34.5 J/TH |
| Antminer T19 Hydro AsicBoost | 145 TH/s | 5438 W | 37.5 J/TH |
| Antminer T19 AsicBoost | 84 TH/s | 3150 W | 37.5 J/TH |
| Antminer S17 Pro | 53 TH/s | 2094 W | 39.51 J/TH |
| Antminer S17+ | 73 TH/s | 2920 W | 40 J/TH |
| Antminer S17e | 64 TH/s | 2880 W | 45 J/TH |
| Antminer S17 | 56 TH/s | 2520 W | 45 J/TH |
| Antminer T17+ | 58 TH/s | 2900 W | 50 J/TH |
| Antminer T17e | 53 TH/s | 2915 W | 55 J/TH |
| Antminer T17 | 40 TH/s | 2200 W | 55 J/TH |
| Antminer S15 | 28 TH/s | 1596 W | 57 J/TH |
| Antminer T15 | 23 TH/s | 1541 W | 67 J/TH |
| Antminer S9j | 14.5 TH/s | 1350 W | 93.1 J/TH |
| Antminer S9i | 14 TH/s | 1320 W | 94.29 J/TH |
| Antminer S9 | 13.5 TH/s | 1323 W | 98 J/TH |
| Antminer T9+ AsicBoost | 10.5 TH/s | 1432 W | 136.38 J/TH |
Other algorithms, models: 20
| Model | Algorithm | Hashrate | Power draw | Efficiency |
|---|---|---|---|---|
| Antminer L9 (16 GH/s) AsicBoost | Scrypt | 16000 MH/s | 3360 W | 0.21 J/MH |
| Antminer L7 (9.5 GH/s) AsicBoost | Scrypt | 9500 MH/s | 3425 W | 0.36 J/MH |
| Antminer L3+ | Scrypt | 504 MH/s | 800 W | 1.59 J/MH |
| Antminer L3++ | Scrypt | 580 MH/s | 942 W | 1.62 J/MH |
| Antminer KS5 Pro | kHeavyHash | 21 TH/s | 3150 W | 150 J/TH |
| Antminer KS5 | kHeavyHash | 20 TH/s | 3000 W | 150 J/TH |
| Antminer KS3 | kHeavyHash | 9.4 TH/s | 3500 W | 372.34 J/TH |
| Antminer Z15 Pro | Equihash | 840 kSol/s | 2650 W | 3.15 J/kSol |
| Antminer Z15 | Equihash | 420 kSol/s | 1510 W | 3.6 J/kSol |
| Antminer Z11 | Equihash | 135 kSol/s | 1418 W | 10.5 J/kSol |
| Antminer K7 | Eaglesong | 63.5 TH/s | 3080 W | 48.5 J/TH |
| Antminer K5 | Eaglesong | 1.13 TH/s | 1580 W | 1398.23 J/TH |
| Antminer E9 Pro | Etchash | 3680 MH/s | 2200 W | 0.6 J/MH |
| Antminer E9 | Etchash | 2400 MH/s | 1920 W | 0.8 J/MH |
| Antminer D9 | X11 | 1770 GH/s | 2839 W | 1.6 J/GH |
| Antminer D7 | X11 | 1286 GH/s | 3148 W | 2.45 J/GH |
| Antminer KA3 | Blake2s | 166 TH/s | 3154 W | 19 J/TH |
| Antminer HS3 | Blake2B+SHA3 | 9 TH/s | 2079 W | 231 J/TH |
| Antminer X5 | RandomX | 212 kH/s | 1350 W | 6.37 J/kH |
| Antminer AL1 | Blake3 | 15.6 TH/s | 3510 W | 225 J/TH |
Which algorithms Bitmain supports
Behind each of the eleven algorithms there is a separate bet the company placed on one particular network. Every algorithm means a separate chip, a separate board and a separate market. The link in the first column leads to a detailed breakdown of the algorithm: how it works, which coins use it, what hardware exists and what the economics look like.
| Algorithm | Main coins | Models in catalog | Notes |
|---|---|---|---|
| SHA-256 | BTC, BCH, BSV | 38 | The core of the business. Best miner in the catalog 12 J/TH, worst 136.38 J/TH |
| Scrypt | LTC, DOGE | 4 | Merged mining of two coins on one hashrate, unit J/MH |
| kHeavyHash | KAS | 3 | One coin, Kaspa. No public custom firmware exists |
| Equihash | ZEC | 3 | Counted in solutions per second, unit J/kSol |
| Eaglesong | CKB | 2 | Written for the single Nervos network, used nowhere else |
| Etchash | ETC | 2 | ASIC lifespan is limited by the memory available for the DAG file |
| X11 | DASH | 2 | Eleven hash functions in a row, unit J/GH |
| Blake2s | KDA | 1 | The Kadena project ceased operations in October 2025 |
| Blake2B+SHA3 | HNS | 1 | Three hash calls per attempt, the network is in poor shape |
| RandomX | XMR | 1 | Inside the X5 are general purpose processors, not a hash chip |
| Blake3 | ALPH | 1 | The Alephium network is deliberately ASIC friendly |
What you can mine on this hardware
A list of the coins that Bitmain hardware can physically mine. Roughly half the coins on this list do not cover the electricity at European tariffs on any of these ASICs today, and the algorithm pages break that down in figures.
| Coin | Ticker | Algorithm | Antminer models |
|---|---|---|---|
| Bitcoin | BTC | SHA-256 | The whole S and T series |
| Bitcoin Cash | BCH | SHA-256 | The whole S and T series |
| Bitcoin SV | BSV | SHA-256 | The whole S and T series |
| Litecoin | LTC | Scrypt | L3+, L3++, L7, L9, L11 |
| Dogecoin | DOGE | Scrypt | The same miners, merged mining with LTC |
| Kaspa | KAS | kHeavyHash | KS3, KS5, KS5 Pro, KS7 |
| Zcash | ZEC | Equihash | Z11, Z15, Z15 Pro |
| Nervos | CKB | Eaglesong | K5, K7 |
| Ethereum Classic | ETC | Etchash | E9, E9 Pro |
| Dash | DASH | X11 | D7, D9 |
| Kadena | KDA | Blake2s | KA3 |
| Handshake | HNS | Blake2B+SHA3 | HS3 |
| Monero | XMR | RandomX | X5, X9 announced |
| Alephium | ALPH | Blake3 | AL1, AL1 Pro, AL3 |
Technology: chips, boards, power
The main technical difference between Bitmain and most of its competitors is that the company designs the chip itself and has TSMC fabricate it. Hence the pace: roughly every eighteen months a new generation appears, and each generation cuts the energy spent per terahash.
The age and class of an ASIC are easiest to read off the chip generation. If the seller does not name the chip, the type can almost always be derived from the model.
| Chip | Year | Process node | Where it is used |
|---|---|---|---|
BM1380 | 2013 | 55 nm | Antminer S1 |
BM1385 | 2015 | 28 nm | Antminer S7 |
BM1387 | 2016 | 16 nm | Antminer S9, S9i, S9j |
BM1485 | 2017 | 28 nm | Antminer L3+, L3++, Scrypt |
BM1397 | 2019 | 7 nm | Antminer S17, S17 Pro, T17 |
BM1398 | 2020 | 7 nm | Antminer S19, S19 Pro, S19j, T19 |
BM1366 | 2022 | 5 nm | Antminer S19 XP, S19j XP |
BM1368 | 2024 | 5 nm | Antminer S21, T21 |
BM1370 | 2024 | 5 nm | Antminer S21 Pro, S21+, S21 XP |
BM1373 | 2026 | not confirmed | S23 series |
Control boards
| Board type | Where it is used | Notes |
|---|---|---|
| Xilinx Zynq | S17, early batches of the S19 and S19 Pro, T19 | The SD card slot is reachable without opening the case, so these miners are the easiest ones to revive |
| BeagleBone Black | S19j and S19j Pro from late 2021 on | TI AM335x processor. There is an SD slot, but you can only get to it by removing the cover |
| Amlogic | Late batches of the S19j and S19j Pro | No SD slot at all, only microUSB. Rolling firmware back requires unlocking over UART |
| CVITEK | KS3, KS5, T21, S21 and newer | The board is not third party, it was developed inside the Bitmain ecosystem. The most closed of the four, rollback options are limited |
Power supplies. Bitmain has its own APW line, from the APW3 of the S9 era to the APW12 on the S19 series and the APW17 on the S19j XP, KS5, L9 and S21. The rule is simple: the unit is matched to a specific model and revision, because the voltage, the number of connectors and the startup sequence all differ. On modern hydro miners and 3U chassis the power supply is built in and cannot be replaced separately.
Management and monitoring. Every miner has its own web interface, reachable over the network through the RJ45 port. For a fleet, batch utilities are more practical: they scan the subnet and show every ASIC at once, and Bitmain recommends its own. Custom firmware adds autotuning, power profiles and telemetry for each hash board on top of that.
Diagnostics. The firmware keeps a log, and almost every fault shows up there first: a dropped chip chain, an EEPROM read error, overheating, a lost fan. A breakdown of real log messages is collected in a separate reference of ours, link at the end of the page.
Cooling types
Three cooling schemes. The choice between them pulls the whole site along with it: the wiring, the ventilation, the noise, the servicing and the cost of entry. Changing the decision later is expensive, so think it through before you buy the first batch.
Two fans blow through the case end to end. Upsides: simplicity, repairs on site, minimal demands on the room. Downsides: noise around 75 dB, dust inside and a hard dependence on the inlet temperature. For home use it only works with a separate room and an extraction system.
Water takes the heat off the board directly and there are no fans in the case. The miner is quieter, denser in power per rack and holds higher frequencies. It needs a loop, a dry cooler, pumps and treated water. Typical requirements: inlet water temperature from 20 to 50 degrees, flow from 8 to 10 liters per minute, pressure up to 3.5 bar.
The whole ASIC is submerged in a dielectric fluid. No dust, almost no noise, longer life for the electronics. Downsides: expensive fluid, awkward servicing, complications with the warranty and with reselling the hardware later.
Firmware for Antminer
Two classes of firmware live on an Antminer. The first is the factory one: it does exactly what the manufacturer promised, holds the rated frequencies and does not let you go any deeper. For miners under warranty that is the right choice, and all the stock firmware and SD images for 116 models are published separately on our site, together with checksums.
The second class is custom builds. Ours is called AsicBoost, it is installed through HashCore Toolkit and it supports 28 Antminer models from the catalog: the whole S19 series, the S21 series, T9+, T19 and T21, and on Scrypt the L7 and L9. The developer fee is 2.8 percent, and it is taken in hashrate, not in money: a 100 TH/s miner sends 97.2 TH/s to your pool and the remaining 2.8 TH/s go to the developer. There is no way to put a euro figure on that in advance, it depends on the algorithm, the coin, network difficulty and the exchange rate on the day. What the fee gives you in practice: autotuning per hash board, power profiles from economy to overclock, precise fan control based on chip temperature, and telemetry that the factory firmware simply does not have.
The main practical gain is not in overclocking but in the opposite: on an older ASIC such as the S19j Pro an economy profile lets you take off part of the power and come back into profit where the factory firmware already leaves it in the red. Overclocking makes sense with cheap energy and good cooling, and it always shortens the hardware life.
Whether installation is possible depends on the model and on the type of control board: Xilinx, BeagleBone, Amlogic or CVITEK. Amlogic boards need unlocking over UART first, otherwise firmware rollback is blocked. Installing custom firmware voids the manufacturer warranty, and that applies to any third party build without exception.
On third party firmware in general: there are several on the market, the quality varies, and the main risk is not the fee but the closed code and the fact that some builds leave the miner without a bootloader after a failed update. Check whether a build has a proper rollback to stock and a clear recovery procedure from an SD card, before you flash it across the whole fleet.
Since we ask this of others, we will answer for ourselves too. Rolling back to factory firmware on AsicBoost is done from the miner's own web interface: the address http://miner-ip/system/maintenance, or in the left menu the System item, Maintenance tab, Firmware Reset block. There are two buttons there and they should not be mixed up: Rollback to stock puts the miner back on the factory version, while Reset only resets the firmware itself and does not return it to stock. The same page has Backup settings with a Create archive button: save the configuration before the rollback, and after the return you will not have to type in pools and profiles again.
Spare parts and components
Spare parts for an Antminer are easier to find than for other brands: more miners were produced, so the secondary market for parts is wider. Individual ASIC chips, including the recent BM1370 and BM1373, are sold one at a time. That has a direct effect on the economics: a repair is almost always cheaper than a replacement.
| Component | When it is replaced | Notes |
|---|---|---|
| Hash boards | A chip chain drops out, part of the hashrate is lost | The most expensive assembly, usually three per miner. Replaced as a whole or repaired at the level of individual chips and DC-DC converters |
| Power supply | The ASIC does not start, or reboots under load | The APW series. Matched strictly to the model and revision, the wrong unit may fail to start the board |
| Control board | Does not boot, no network, EEPROM cannot be read | Xilinx, BeagleBone, Amlogic or CVITEK. You need to know the type in advance, they are not interchangeable across generations |
| Fans | Droning, vibration, a lost fan error | A consumable. Replaced every one or two years on a dusty site, and they are cheap |
| Heatsinks | Detached from the chip, local overheating | They come unstuck as the thermal interface ages. Fixed by re-gluing |
| Cables and ribbon connectors | The board is detected only intermittently, data bus errors | A cheap part, and the place to start diagnostics before replacing a board |
| Temperature sensors | Wrong readings, the miner throttles the frequency by itself | Often the cause of phantom overheating on a perfectly healthy ASIC |
Repair: what fails and what to do about it
An Antminer is repairable, and that is one of the reasons fleets of these miners are kept beyond their nominal service life. Almost all diagnostics start with the log: the error codes in it tell you which assembly is at fault before the ASIC is opened. How to avoid reaching the repair stage at all is covered in a separate section below.
| Fault | How it shows up | What to do |
|---|---|---|
| Fan | Droning, then a lost fan error and a stop | The cheapest fault with the most expensive consequences: without airflow a hash board dies within hours. Replace immediately, keep spares on site |
| Power supply | Does not start, reboots under load, voltage sags | Check the socket, the cable and the mains voltage first, then replace the whole unit. Component level repair of a PSU is rarely worth it |
| Hash board | A third or two thirds of the hashrate is gone, the log shows a dropped chain | Repaired at chip and converter level in a service shop. Needs a soldering station and experience, not a home job |
| Hash board EEPROM | The board is not recognized, a memory read error | Reflashing or replacing the chip. It often saves a board that had already been written off |
| PIC controller | The board does not raise the voltage, does not respond to commands | Reflashing the PIC. A well known procedure, but it depends on the board generation |
| Control board | No boot, no network, does not see the hash boards | Replaced with the same type. Check the power and the ribbon cables first, they fail more often than the board itself |
| Overheating | Frequency throttling, emergency shutdown, temperature errors | Cleaning, sensor check, inlet temperature. Often it is the room at fault, not the miner |
Reliability, service life and warranty
An Antminer lasts about five years under normal conditions, and that is an estimate from practice. The real spread is wide: a clean, cool room and stable power can extend the life noticeably, while dust and heat cut it several times over. ASICs from 2016 are still running in places.
The weak points are predictable: fans first, then the power supply, then the hash boards. The control board and the electronics themselves usually outlive everything else. So the main running cost of a fleet is fans and filters.
Reliability also takes a hit from the quality of the mains. Voltage sags, phase imbalance and frequent outages hit power supplies harder than years of operation do. A stabilizer and proper wiring pay for themselves faster than you would think.
Bitmain's warranty is standard for the industry, but the paperwork requirements are strict. The key rule: the claim has to be opened before the warranty period ends, not after. And if the faulty part is not shipped within seven days of opening the claim, the claim is closed.
| Parameter | Value |
|---|---|
| Miners of the S19 series and newer | 365 days |
| APW power supplies | 365 days |
| Control boards | 180 days |
| Spare parts and consumables | No warranty |
| Start of the period | From the date of official shipment, not the date of purchase from a dealer |
| Models withdrawn from support (EOS) | No warranty |
| Opening the device | May be grounds for refusal |
| Custom firmware | Voids the manufacturer warranty |
Energy efficiency by series
Efficiency is measured in joules per terahash, J/TH: how much energy an ASIC spends per unit of useful work. Lower is better. This is the key number when buying, because it directly determines the tariff at which the miner still turns a profit. Hashrate tells you the size of the revenue, efficiency tells you the size of the power bill.
Below is how the SHA-256 series evolved. Between the S9 and the best miner of 2026 the gap is roughly tenfold: where the old one burns a kilowatt-hour, the new one does the same work on a hundred watt-hours.
| Series | Years | Efficiency | Notes |
|---|---|---|---|
| S9, S9i, S9j | 2016 to 2018 | 93 to 98 J/TH | A historic miner. Today it is a space heater or a training bench |
| T9+ | 2017 | 136.38 J/TH | The worst efficiency in the catalog |
| S15, T15 | 2018 to 2019 | 57 to 67 J/TH | A transitional generation, rarely seen |
| S17, S17 Pro, T17 | 2019 | 39.5 to 55 J/TH | The first 7 nm generation, known for reliability problems |
| S19, S19 Pro, S19j Pro | 2020 to 2021 | 29.5 to 34.5 J/TH | The backbone of the used market. With AsicBoost firmware it noticeably comes back to life |
| S19k Pro, S19j Pro+ | 2022 to 2023 | 23 to 27.5 J/TH | A sensible balance of price and power draw on the used market |
| S19 XP, S19j XP | 2022 | 21.5 J/TH | The first 5 nm generation |
| S19 XP Hydro, S19 XP+ Hydro | 2022 to 2023 | 19 to 20.8 J/TH | Hydro versions of the XP, they require a water loop |
| S21, T21 | 2024 | 17.5 to 19 J/TH | Today's mainstream air cooled ASIC |
| S21 Pro, S21+, S21 Hydro | 2024 | 15 to 16.5 J/TH | The mid range of the S21 series |
| S21 XP Hydro | 2024 | 12 J/TH | The best miner in the catalog, hydro |
| S21 XP | 2025 | 13.5 J/TH | The best air cooled efficiency in the catalog |
| S21 XP Immersion | 2025 | 13.5 J/TH | The immersion version of the XP |
| S23, S23 Immersion | 2026 | 11 to 12 J/TH | Not in the catalog yet |
| S23 Hydro, S23 Hyd 3U | 2026 | 9.5 J/TH | The first Bitmain bitcoin miners below 10 J/TH, not in the catalog yet |
Other algorithms use their own units, and those units cannot be compared with each other. Scrypt is counted in J/MH: the L3+ is about 1.59 J/MH, the L7 about 0.36, the L9 about 0.21, the L11 about 0.184, the L11 Pro about 0.172. Equihash uses J/kSol, X11 uses J/GH, RandomX uses J/kH. Even the same unit on different algorithms is no reason to compare directly: a terahash of SHA-256 and a terahash of kHeavyHash are different amounts of work.
How to turn efficiency into money. Multiply the draw in watts by 24 and divide by 1000, and you get kilowatt-hours per day. Multiply by your tariff and you get the daily bill. For an S21 at 3500 W that is 84 kWh per day, and at a Spanish tariff of about 0.155 euros per kilowatt-hour it works out to roughly 13 euros a day, that is about 390 euros a month for electricity alone.
Comparison with competitors
Bitmain has two direct competitors in bitcoin: MicroBT with the Whatsminer brand and Canaan with the Avalon brand. We compare by the criteria that actually shape a buying decision.
| Criterion | Bitmain (Antminer) | MicroBT (Whatsminer) | Canaan (Avalon) |
|---|---|---|---|
| Efficiency of the top ASICs | As of early 2026, 9.5 J/TH on the S23 hydro version | Trails by roughly one generation | Comparable on paper, updates come out less often |
| Product range | 58 models in our catalog, 11 algorithms | The most SHA-256 positions, but effectively a single algorithm | SHA-256 only, though the lineup is dense |
| Price per terahash | Usually more expensive than competitors at equal specs | Average for the market | In our experience most often the lowest |
| Power supply durability | Average, APW units are replaced regularly | A strength of the brand: the miners tolerate dirty power | Average |
| Tolerance to heat and dust | Demanding, it wants clean and cool air | Handles hot climates and swings better | Average |
| Noise | Around 75 dB on air cooled units, hydro is noticeably quieter | Comparable | Comparable, lower on the desktop models |
| Spare parts | The widest secondary market, chips are sold individually | Worse, but acceptable | Noticeably worse in Europe |
| Custom firmware | A mature ecosystem, our AsicBoost covers 28 models | Available, but the choice is thinner | Practically none |
| Service in Europe | A developed network of independent workshops | Average availability | Weak, most of the time you will be repairing it yourself |
| Warranty | 365 days on the miner, 180 on the control board | Comparable | Comparable, but claims take longer |
Over the past couple of years a third notable player joined those two: Bitdeer with the SealMiner line. The company itself once spun off from Bitmain, and in April 2026 it announced the SealMiner A4 Ultra Hydro at 9.45 J/TH, formally better than the S23 hydro version. With one caveat: that is a figure claimed at announcement, not verified volume shipments.
The short conclusion. If peak efficiency, parts availability and the option of custom firmware matter, people buy Antminer. If the site sits in a hot climate with an unstable grid, Whatsminer often turns out to be more practical. If entry price decides and you have your own hands for repairs, look at Avalon. And if you are unsure, put your own tariff into the profitability calculator and compare specific models in money.
Who Bitmain hardware is right for
One or two miners at home is above all a question of noise and heat. An air cooled S21 puts out around 75 dB and 3.5 kilowatts of heat, which is impossible in a living room. You need a garage, a basement or a separate room with extraction and proper wiring.
What to buy: one mid range air cooled ASIC, or do not start at all.
From ten to a hundred miners. At this point the cost of upkeep gets added to the tariff: fans, filters, power supply replacements. Air cooled models remain a sensible choice, because they do not require building a water loop.
What to buy: S21 and S21 Pro, and at a tariff below five cents also used S19 XP units.
From a thousand ASICs. Power density per rack and the cost of heat removal decide it. Hydro versions win: quieter, more compact, they hold their frequencies. But the loop, the cooling towers and the water treatment are a separate project with a budget of their own.
What to buy: hydro miners of the S21 XP and S23 series.
A mobile format next to the energy source, often on flare gas or on surplus renewable generation. The ASIC has to put up with dust, heat and unstable power, and hydro versions are not used here: the inlet water has to stay between 20 and 50 degrees at a flow of 8 to 10 liters per minute, and a container will not hold that.
What to buy: air cooled S19 XP and S21, with a filter on the intake and headroom on airflow.
Other people's miners on your site. Here predictability and remote management are what count: telemetry per board, power profiles, the ability to shed load quickly at peak tariff. Uniformity matters more than the model: the four types of Antminer control board mean four different flashing and recovery procedures, and on somebody else's fleet that is a headache of its own.
What to buy: a uniform fleet of one series on a single type of control board.
Submersion in a dielectric gives silence, no dust and longer service life. In exchange it demands expensive fluid, tanks and well planned maintenance logistics.
What to buy: models with the Immersion index, ready for submersion from the factory.
Common problems and how to prevent them
Overheating. The most common cause of lost hashrate. The ASIC throttles its frequency itself, and if that does not help, it stops. Usually the problem is not the ASIC but the room: hot air comes back to the intake, extraction cannot keep up, the inlet is clogged. The rule: cold and hot flows must be physically separated.
Dust. It kills miners more quietly than any other cause. A layer of dust on the heatsink works like a blanket, temperature climbs, service life drops. On construction sites and next to a dirt road cleaning is needed once a quarter, and intake filters are cheaper than any repair.
EEPROM errors. The board stops being detected, and the log shows a memory read error. Often a consequence of a voltage spike or a failed firmware update. Prevention is simple: stable power and updates in batches rather than the whole fleet at once.
Fan failure. The easiest of all to head off: keep a stock of fans on site and react to a change in sound, it always comes before the error in the log.
Power supply failure. It shows up as reboots under load or a failure to start. Before swapping the unit, check the socket, the cable and the mains voltage: quite often the unit is not at fault.
Problems after a firmware update. The miner does not come up after flashing. There are two causes: incompatibility with the control board type and an interrupted process due to power or network. Always keep the factory SD image for your model at hand.
Voltage spikes. They hit power supplies and board memory. A stabilizer, proper breakers and sound wiring pay for themselves on the very first incident.
Overly aggressive overclocking. The extra percent of hashrate is paid for with service life. At a high intake temperature overclocking turns into accelerated wear, and the hashboard is the first to go.
Operating tips
A sequence of steps that saves more over time than tuning frequencies. Nothing exotic, but some of these steps get skipped regularly.
- Prepare the room before buyingSeparate cold and hot air flows, extraction with headroom, a filter on the intake. One miner is 3.5 kilowatts of heat, and ten are already a ventilation project.
- Check the electricsA dedicated line, a breaker with headroom, proper earthing, and size it by rated power plus twenty percent, not by the average.
- Start on factory firmware and record baseline readingsHashrate, board temperatures, fan speeds over the first day. This is your reference point, the one you compare any deviation against later.
- Update firmware deliberatelyFirst one miner, then a batch, then the fleet. The factory image for rollback must be sitting next to you before you press the button.
- Set up monitoringAlerts on a hashrate drop and on rising temperature.
- Clean by the calendar, not by the symptomOnce every three months on a dusty site, once every six months in a clean room. Compressed air, the ASIC powered down, careful around the heatsinks.
- Replace fans earlyOnce every one or two years, without waiting for a failure. They cost next to nothing and they save the hashboard.
- Store it properlyA dry room, the miner in its original box, the power supply separately. The main risk in storage is condensation when temperature swings.
- Ship it as fragileOriginal packaging, upright, no stacking above three boxes. The first things to suffer are the connectors and the heatsinks.
- Keep a fleet logSerial number, start date, history of repairs and replacements. From twenty miners up there is no other way to work out the real cost of ownership.
Frequently asked questions about Bitmain
What year was Bitmain founded?
In 2013, in Beijing. The founders were chip engineer Micree Zhan and financier Jihan Wu. The first product was the Antminer S1 at 180 GH/s.
Who owns Bitmain today?
Control sits with co-founder Micree Zhan. Jihan Wu left the company in January 2021 after a corporate conflict and sold his stake. The company is private and does not disclose its current ownership structure.
Where is the headquarters and where are the miners assembled?
The legal and operational center is in Beijing, while the holding company is registered in the Cayman Islands. TSMC prints the chips in Taiwan, assembly happens mostly in Malaysia, and since December 2024 a line has been running in the United States.
Which algorithms does Bitmain hardware support?
Our catalog covers 58 Antminer models on eleven algorithms: SHA-256, Scrypt, kHeavyHash, Equihash, Eaglesong, Etchash, X11, Blake2s, Blake2B+SHA3, RandomX and Blake3. The largest one by sales volume is SHA-256, meaning bitcoin.
Which Antminer model is the most efficient?
In the catalog it is the S21 XP Hydro: 473 TH/s at 5676 W, which works out to 12 J/TH. More efficient ASICs from the S23 series are already on the market, with the hydro version rated at 9.5 J/TH, but they do not have their own page on the site yet.
What do the letters in an Antminer name mean?
They point to the algorithm and the purpose. S and T are bitcoin, S being the flagships and T the budget line. L is Scrypt, meaning Litecoin and Dogecoin. Then come the rest of the algorithms: KS Kaspa, AL Alephium, Z Zcash, E Ethereum Classic, D Dash, X Monero.
How does Pro differ from XP, and what does Hydro mean?
Pro and XP mean a better chip and better efficiency in the same chassis, and XP is usually newer than Pro. Hydro and Hyd stand for water cooling, Immersion means the unit is ready to be submerged in dielectric fluid.
What warranty does Bitmain give?
365 days on S19 series miners and newer, 365 days on APW power supplies, 180 days on control boards. Spare parts and consumables come with no warranty. The clock starts on the official shipping date, and the claim has to be filed before the term runs out.
How long does an Antminer last?
Around five years under normal conditions. The spread is wide: a clean, cool room and stable power noticeably extend the service life, while dust and heat cut it several times over. Miners from 2016 are still running in places.
What fails most often?
By frequency: fans, then the power supply, then the hash boards. The control board and the rest of the electronics usually outlive everything else. The main running costs for a fleet are fans and filters.
Can I put custom firmware on an Antminer?
On some models, yes. Our AsicBoost firmware supports 28 models from the catalog: the S19 series, the S21 series, T9+, T19 and T21, plus L7 and L9 on Scrypt. It installs through HashCore Toolkit. The developer fee is 2.8 percent and it is counted in hashrate: out of 100 TH/s your pool gets 97.2 and the rest goes to the developer.
What does custom firmware actually give you?
Autotuning for each hash board, power profiles ranging from low draw to overclocking, fan control based on chip temperature and detailed telemetry. On older miners the main gain is usually the drop in power consumption at an acceptable hashrate, not the overclock.
Does installing custom firmware void the warranty?
Yes. That applies to any third-party build, no exceptions. If the ASIC is under warranty and that matters to you, stay on the factory firmware until it expires.
Where do I get the factory firmware and the SD image?
We keep a separate catalog of stock firmware and recovery images for 116 Antminer models, with checksums. The link is in the firmware section and at the bottom of the page.
What is a control board and why does its type matter?
It is the computer that runs the hash boards. Antminer uses four types: Xilinx, BeagleBone, Amlogic and CVITEK. The type determines how firmware is installed, whether there is an SD card slot and whether a rollback is possible. Amlogic boards have to be unlocked over UART first.
Which Bitmain models are the most popular?
On the secondary market it is the S19 series, above all the S19j Pro and the S19 XP: more of them were built than of any other current miner, and with custom firmware they still pay off on cheap power. Among the new ones it is the S21 and S21 Pro on air, and the S21 XP hydro versions at industrial sites.
Antminer or Whatsminer, which is better?
It depends on the site. Antminer wins on peak efficiency, spare part availability and custom firmware support. Whatsminer usually copes better with heat and an unstable grid. There is no universal answer.
How loud is an Antminer and can I keep one at home?
An air cooled miner puts out around 75 dB, the level of a vacuum cleaner running around the clock. In a living room that is unacceptable. You need a garage, a basement or a separate room, and it is better to look at a hydro version or hosting right away.
What is J/TH and why does it matter more than hashrate?
It is joules per terahash, the energy spent per unit of work. Hashrate sets your revenue, efficiency sets your electricity bill. When the kilowatt is expensive, efficiency is what decides whether an ASIC runs at a profit or a loss.
Is it true that S23 chips are built on a 3 nm process?
Bitmain has never officially confirmed the process node. Secondary sources write about 3 nm with confidence, but there is no primary confirmation, so this figure should not be treated as proven.
Do the S23 Pro and S23 XP models exist?
There is no confirmation. The officially announced models are the S23, S23 Hydro, S23 Hyd 3U, S23 Immersion and S23e Hyd 2U. The names S23 Pro and S23 XP show up only in the materials of individual resellers.
Is a used Antminer worth buying?
It is, if your electricity rate is low and you are ready to do repairs. Three things need checking: the real hashrate on each of the boards, temperatures under load and the history of the miner. A rate benchmark: at European prices of about 0.15 euro per kilowatt hour, ASICs worse than 25 J/TH are usually loss making even with custom firmware, while below five cents even the S19 series stays in the black.
Technical statistics of the brand
A summary of the brand in figures, calculated from our catalog and from the manufacturer's official specifications. The catalog numbers count only the models that have a page on the site.
| Parameter | Value |
|---|---|
| Year founded | 2013 |
| Years on the market | 13 |
| Models in the asic.es catalog | 58 |
| Supported algorithms | 11 |
| Coins available to mine | 14 |
| Product series | S, T, L, KS, KA, K, AL, Z, E, D, X, HS |
| Air cooled models in the catalog | 48 |
| Hydro models in the catalog | 8 |
| Immersion models in the catalog | 2 |
| Models with AsicBoost firmware | 28 |
| Power range across the catalog | From 800 to 5676 W |
| Efficiency range on SHA-256 | From 12 to 136.38 J/TH |
| Gap between the best and the worst miner | Roughly 11 times |
| Best ASIC in the catalog | Antminer S21 XP Hydro, 473 TH/s at 12 J/TH |
| Best miner of the brand for 2026 | Antminer S23 Hydro, 580 TH/s at 9.5 J/TH |
| Generations of in house chips | Ten in the table, from 2013 to 2026 |
| Types of control board | Four: Xilinx, BeagleBone, Amlogic, CVITEK |
| Estimated share of the world market | From 50 to 80 percent, estimates differ |
Company milestones and what they gave the buyer
- 2013The Antminer S1 and the entry into the market: bitcoin mining moves away from graphics cards to dedicated hardware for good.
- 2015The company becomes the largest supplier of bitcoin miners. A side effect for the buyer that still matters today: the widest parts and service market of any brand.
- 2016The Antminer S9 on 16 nm sets the standard for years ahead. Some of these ASICs are in their tenth year of work.
- 2018The S9 Hydro takes water cooling out of the homebrew world and into production. For the owner that means roughly 20 dB quieter and noticeably denser power per rack.
- 2019The move to 7 nm in the S17 series. The power bill per terahash falls by almost half in a single generation.
- 2022The S19 XP on 5 nm. The 21.5 J/TH mark makes a fleet upgrade worthwhile even where the old miners are still running.
- 2024The S21 XP Hydro at 12 J/TH. Hydro stops being exotic and becomes the default format for industrial sites.
- 2026The S23 Hydro at 9.5 J/TH and the 3U version at 1.16 PH/s in one chassis, the first production miner above a petahash. The break even tariff shifts, and that puts pressure on the whole used market.