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Litecoin (LTC): a complete guide to the coin and its mining

Coin encyclopedia

Litecoin (LTC): Scrypt, merged mining and the 2027 halving

A cap of 84 million coins, 6.25 LTC per block every 2.5 minutes and a Scrypt ASIC fleet from 0.149 to 1.6 joules per megahash. Here is why most of such a machine revenue now comes from Dogecoin.

ScryptProof-of-Work6.25 LTC per blockMerged mining with DOGE

About the coin

Litecoin is one of the oldest proof-of-work networks still running. The client was released on 7 October 2011 by Charlie Lee, at the time an engineer at Google and later director of engineering at Coinbase. The code came from Bitcoin, but the algorithm was swapped for Scrypt and the block time was cut four times over, down to 2.5 minutes.

The idea was practical: a network for fast, cheap payments where a confirmation arrives within minutes and the fee is measured in fractions of a cent. Over fourteen years Litecoin also became a testing ground for protocol work: SegWit was activated here before Bitcoin got it, and the confidential extension blocks known as MWEB went live in 2022, well ahead of comparable attempts on other large networks.

For a hardware owner the picture in 2026 is unusual. The Litecoin network and the Dogecoin network are secured by the same work through merged mining, and at current prices it is Dogecoin that brings in roughly four fifths of a Scrypt miner revenue. That inverts the usual logic: planning income from the LTC price alone means being wrong by a wide margin.

This page is built as a reference: network parameters, the history of protocol decisions, a ranking of Scrypt ASICs from our catalogue, pools, wallets, mining economics, a breakdown of the MWEB incident in the spring of 2026 and a separate list of figures that the big aggregators still publish in an outdated form.

Coin card

ParameterValue
NameLitecoin
TickerLTC
Network launch2011, client published on 7 October
CreatorCharlie Lee, publicly known, development by the Litecoin Foundation and Core
AlgorithmScrypt, a memory-hard function
ConsensusProof-of-Work
Maximum supply84,000,000 LTC
Block reward6.25 LTC, in force since 2 August 2023
Target block time2.5 minutes, that is 150 seconds
Difficulty retargetEvery 2,016 blocks, roughly 3.5 days
Next halvingBlock 3,360,000, expected in late July 2027
Smallest unit1 litoshi, one hundred millionth of an LTC
Merged miningDogecoin under AuxPoW since September 2014
HardwareScrypt ASIC only, graphics cards pushed out since 2014
PrivacyOptional, through MWEB extension blocks since 2022
Network statusRunning, block 3,000,000 passed on 9 November 2025

Project history

  • 2011Charlie Lee publishes the client on 7 October. It is based on Bitcoin code, the algorithm is replaced by Scrypt taken from the Tenebrix project, the block time is cut to 2.5 minutes and the supply cap is raised to 84 million coins.
  • 2013The November rally: the price doubles in a day and the coin reaches the top of the market for the first time. Mining still runs on graphics cards.
  • 2014The first Scrypt ASICs appear and graphics cards leave the network. In September Dogecoin switches to AuxPoW and starts being mined together with Litecoin, an initiative that came out of the LTC community.
  • 2015First halving on 25 August: the reward drops from 50 to 25 LTC.
  • 2017SegWit is activated on 10 May, three months before Bitcoin. The signature moves out of the main part of the transaction. The same month brings the first Lightning payment on the Litecoin network.
  • 2017In December Charlie Lee sells and donates his entire LTC holding, explaining it as a conflict of interest between developing the project and holding the coin.
  • 2019Second halving on 5 August: 25 LTC becomes 12.5 LTC.
  • 2021May brings the all-time price high of around 410 dollars. In September a fake press release about a partnership with a large retail chain pushes the quote up by roughly 30 percent within minutes, followed by a sharp retracement.
  • 2022MWEB is activated on 19 May: extension blocks with hidden amounts and addresses. In June the five largest exchanges in South Korea delist LTC, classifying the coin as privacy enhanced.
  • 2023Third halving on 2 August: the reward falls from 12.5 to 6.25 LTC. The LTC part of a Scrypt miner revenue is cut in half from one block to the next.
  • 2025The year of the institutional turn. On 18 July a public treasury company starts up holding more than 929,000 LTC. On 28 October the first spot exchange traded fund on Litecoin begins trading on Nasdaq. On 9 November the network passes block 3,000,000. On 6 December the all-time hashrate high is recorded at around 3.94 PH/s.
  • 2026In the spring the network goes through the most serious technical incident in its history. On 19 March an exploit of an MWEB vulnerability is found and confirmed, with the attacker creating a fictitious withdrawal of 85,034.47 LTC. On 25 April a second attempt causes a chain reorganisation of 13 blocks. The full fix ships on 7 May in Litecoin Core 0.21.5.5.
  • 2026In July the settlement depository of the Deutsche Boerse group adds LTC to institutional custody. At the same time inflows into the spot fund stay below 10 million dollars over its first eight months, so access through a regulated wrapper has not created demand by itself.

How the network works

The accounting model is the same as in Bitcoin: the network stores no account balances, only a set of unspent outputs. A transaction points at earlier outputs, spends them and creates new ones, and the right to spend is proven by a signature. The sum of all unspent outputs is the coin supply.

A block is limited to 4,000,000 weight units, with the base part up to one megabyte. Since blocks are found four times more often than in Bitcoin, daily capacity is roughly four times higher at the same block size. The network is far from full: the transfer fee sits at fractions of a cent and there is almost always room in a block.

Alongside the main chain runs MWEB, an extension block. Coins enter it with a peg-in operation and leave with a peg-out, and inside it amounts and addresses are hidden. It is neither a separate chain nor a second layer: extension blocks are secured by the same miner work, and older nodes see them as valid but opaque data.

Every node checks a found block independently: signatures, the absence of double spends, the size of the reward and the fact that the hash is below the current target. The incident in the spring of 2026 showed the cost of a gap in that check: a logic hole in the validation of an MWEB withdrawal briefly allowed coins to be created out of thin air, and closing it took emergency releases and coordination with the pools.

  1. The wallet signs a transactionThe key owner builds a transfer and signs it. Only the signature and public data go out to the network, the private key is never published.
  2. The transaction spreads across nodesEach node checks it against its own rules and puts it in its own waiting pool. With the network lightly loaded, that queue is almost always empty.
  3. The pool assembles two templates at onceThe mining pool prepares a Litecoin block and at the same time embeds a reference to a Dogecoin block in it. That is the basis of merged mining.
  4. The ASIC grinds through Scrypt hashesThe hardware changes service fields in the header and computes Scrypt until the result falls below the target. The same work counts for both networks.
  5. The share credits whichever chain target it beatIf the hash clears the Litecoin target, an LTC block is found. If it only clears the easier Dogecoin target, a DOGE block is found. Often both happen at once.
  6. Nodes accept the blockEach node validates the block on its own. The first transaction creates the reward: the 6.25 LTC subsidy plus the fees of the transfers included.
  7. Difficulty is recalculatedEvery 2,016 blocks the network compares the actual elapsed time with the expected 3.5 days and adjusts the target so that a block is again found in 150 seconds.

Mining algorithm

Scrypt is a key derivation function proposed by Colin Percival in 2009 to protect passwords. Unlike SHA-256 it deliberately demands memory: to compute a result you have to build and hold a large array of pseudorandom data in working memory. Litecoin uses it with parameters that put roughly 128 kilobytes behind a single computation.

The intent was to put an ordinary computer and a purpose-built chip on the same footing: memory is expensive in silicon, so an ASIC advantage would stay small. In practice the intent failed. Scrypt ASICs arrived as early as 2014, and 128 kilobytes turned out to be far too little to act as an obstacle. Today the gap against a graphics card is measured in thousands of times.

Mining Litecoin on a graphics card or a processor makes no sense in 2026 at any electricity rate. A modern machine puts out tens of gigahashes at an efficiency near 0.15 joules per megahash, while a graphics card works at the level of single megahashes. Any service promising otherwise is selling either a cloud contract or arithmetic built on numbers that do not exist.

The main practical difference between Scrypt and SHA-256 is not the function itself but the economics around it. One stream of work serves several networks at once: Litecoin, Dogecoin and a set of smaller chains such as Bellscoin, Junkcoin and Luckycoin. That costs no extra energy, so income is counted as the sum across every chain credited, not from a single coin.

Strong points: real competition between vendors, three independent makers in the top segment and extra income from auxiliary chains. Weak points: the model line-up is an order of magnitude smaller than on SHA-256, the second-hand market is thinner, and income depends on the price of two coins at once, one of which is a meme coin and unpredictable.

Full description of the Scrypt algorithm →

Economics and issuance

The supply cap is 84,000,000 LTC, exactly four times that of Bitcoin, because blocks are found four times as often. At the end of July 2026 around 77.4 million coins were in circulation, roughly 92 percent of the cap. The arithmetic is simple and easy to check: 840,000 blocks at 50 LTC, the same number at 25, the same at 12.5 and the current stretch at 6.25.

The reward halves every 840,000 blocks. The steps already passed: 50 LTC from 2011, 25 LTC from 25 August 2015, 12.5 LTC from 5 August 2019 and 6.25 LTC from 2 August 2023. The next halving is tied to block 3,360,000. As of late July 2026 some 208,000 blocks were left to it, with an expected date in late July 2027. Nobody knows the exact day: it depends on how fast blocks are actually found, and right now a block takes 2 minutes 26 seconds, faster than the target of 150 seconds.

Annual issuance at the current reward is roughly 1.31 million coins, so supply inflation sits near 1.7 percent a year. After the 2027 halving that figure drops to about 0.84 percent. The protocol has no coin burning and no other supply reduction mechanism.

Fees play almost no part in block economics. The average transfer fee stays around 0.00005 LTC, that is fractions of a cent, and against a subsidy of 6.25 LTC its contribution is negligible. That is convenient for users and inconvenient for miners: income from the Litecoin network is effectively the subsidy alone.

The point that changes the whole calculation: the larger half of the income comes from Dogecoin. The Litecoin network issues around 3,600 LTC a day, the Dogecoin network around 14,400,000 DOGE. At late July 2026 prices, on the order of 45 dollars per LTC and 0.07 dollars per DOGE, that is about 162 thousand dollars against about 1 million. The Litecoin share of daily revenue across the whole Scrypt industry works out near 14 percent, with Dogecoin supplying the rest.

Network parameters

ParameterValue
AlgorithmScrypt, memory parameter around 128 kilobytes per computation
ConsensusProof-of-Work, most accumulated work wins
Target block time2.5 minutes, 150 seconds
Actual block timeAround 2 minutes 26 seconds at the end of July 2026
Retarget period2,016 blocks, roughly 3.5 days
Blocks per dayAround 576 at the target time, around 590 in practice
Block limit4,000,000 weight units, base part up to 1 MB
ThroughputTheoretical ceiling near 50 transactions per second, actual load around 2
Address formatsLegacy L..., P2SH M..., SegWit ltc1..., MWEB ltcmweb1...
Confirmations6 at most exchanges, an MWEB withdrawal needs 6 since version 0.21.5.5
Blockchain sizeAround 91 GB at the end of July 2026
Reachable nodesAround 2,000 according to network crawlers
Current clientLitecoin Core 0.21.5.5, released on 7 May 2026
Merged miningDogecoin under AuxPoW, plus Bellscoin, Junkcoin, Luckycoin

Which ASICs work

The full table of Scrypt models from our catalogue, sorted by efficiency: the lower the joules per megahash, the longer a machine stays profitable as difficulty grows and after the 2027 halving.

ModelHashratePower drawEfficiency
SealMiner DL1 Hydro 52500 MH/s7823 W0.149 J/MH
SealMiner DL1 Air 25000 MH/s3725 W0.149 J/MH
ElphaPex DG2+ 20500 MH/s3900 W0.19 J/MH
Antminer L9 (16 GH/s) AsicBoost16000 MH/s3360 W0.21 J/MH
ElphaPex DG2 16000 MH/s3520 W0.22 J/MH
ElphaPex DG 1+ 14000 MH/s3950 W0.282 J/MH
ElphaPex DG Hydro 1 20000 MH/s6200 W0.31 J/MH
ElphaPex DG 1 Lite 11000 MH/s3410 W0.31 J/MH
ElphaPex DG 1S 10000 MH/s3100 W0.31 J/MH
ElphaPex DG Home 1 2000 MH/s620 W0.31 J/MH
ElphaPex DG 1 11000 MH/s3420 W0.311 J/MH
Antminer L7 (9.5 GH/s) AsicBoost9500 MH/s3425 W0.361 J/MH
All Scrypt models, 21 in total
ModelHashratePower drawEfficiency
SealMiner DL1 Hydro 52500 MH/s7823 W0.149 J/MH
SealMiner DL1 Air 25000 MH/s3725 W0.149 J/MH
ElphaPex DG2+ 20500 MH/s3900 W0.19 J/MH
Antminer L9 (16 GH/s) AsicBoost16000 MH/s3360 W0.21 J/MH
ElphaPex DG2 16000 MH/s3520 W0.22 J/MH
ElphaPex DG 1+ 14000 MH/s3950 W0.282 J/MH
ElphaPex DG Hydro 1 20000 MH/s6200 W0.31 J/MH
ElphaPex DG 1 Lite 11000 MH/s3410 W0.31 J/MH
ElphaPex DG 1S 10000 MH/s3100 W0.31 J/MH
ElphaPex DG Home 1 2000 MH/s620 W0.31 J/MH
ElphaPex DG 1 11000 MH/s3420 W0.311 J/MH
Antminer L7 (9.5 GH/s) AsicBoost9500 MH/s3425 W0.361 J/MH
Goldshell E-DG1M 3400 MH/s1800 W0.529 J/MH
Goldshell Mini-DOGE II 420 MH/s400 W0.952 J/MH
Goldshell Mini-DOGE Pro 205 MH/s220 W1.073 J/MH
Goldshell Mini-DOGE 185 MH/s233 W1.259 J/MH
Goldshell LT Lite 1000 MH/s1450 W1.45 J/MH
Goldshell LT5 Pro 2000 MH/s3100 W1.55 J/MH
Antminer L3+ 504 MH/s800 W1.587 J/MH
Antminer L3++ 580 MH/s942 W1.624 J/MH
Innosilicon A4 Dominator 280 MH/s1050 W3.75 J/MH

Browse miners in the catalogue →

Best machines for this coin

The ranking is built on real efficiency figures from the catalogue, not on how popular a model is. The break-even thresholds are calculated from total network revenue on the order of 0.45 to 0.50 dollars per gigahash a day, taken at the end of July 2026, and they include the DOGE payout.

Pros. Best efficiency in the catalogue: 52,500 MH/s at 7,823 W, which is 0.149 J/MH. The only class of machine with a real margin left after the 2027 halving.

Cons. Needs a ready water loop, a heat exchanger and three-phase power. It cannot be deployed outside an industrial site.

Best suited for. Industrial sites with a built heat removal system.

Payback. The electricity break-even sits around 0.13 to 0.14 dollars per kilowatt hour. That is the best figure in the catalogue, yet on a household tariff in Spain the machine still runs at a loss.

Cooling. Hydro cooling, an external loop is mandatory

Pros. 25,000 MH/s at 3,725 W, the same 0.149 J/MH but without a water loop. The best air-cooled machine in the catalogue by a wide margin.

Cons. Industrial grade noise and heat flow, so a living space is ruled out. The model is new and there is practically no second-hand market.

Best suited for. Small sites and containers with no hydro infrastructure.

Payback. The electricity threshold is around 0.13 to 0.14 dollars per kilowatt hour. Above that rate the machine does not even cover its own power draw, let alone its price.

Cooling. Air cooling, organised intake and exhaust required

Pros. 20,500 MH/s at 3,900 W, 0.19 J/MH. The vendor works on Scrypt only and has the widest line-up in the catalogue.

Cons. Trails the 2026 generation by roughly a quarter on efficiency.

Best suited for. Sites building hashrate with air-cooled machines up to 4 kW.

Payback. The electricity threshold is around 0.11 dollars per kilowatt hour. After the 2027 halving that threshold shifts down by roughly seven percent if prices hold.

Cooling. Air

Pros. 16,000 MH/s at 3,360 W, 0.21 J/MH. The only current catalogue model with support for third-party firmware builds.

Cons. A 2024 machine that trails the leaders by almost half again on efficiency. Its margin against rising difficulty is thin.

Best suited for. Operators who value fine tuning of frequencies and voltages per board.

Payback. The electricity threshold is around 0.10 dollars per kilowatt hour. At 0.15 euro the machine runs at a loss, and reflashing does not fix that, it only softens it.

Cooling. Air

Pros. 16,000 MH/s at 3,520 W, 0.22 J/MH. A direct competitor to the L9 in its class.

Cons. Our catalogue records no third-party firmware for this machine.

Best suited for. Sites that deliberately spread their fleet across vendors.

Payback. The electricity threshold is around 0.095 dollars per kilowatt hour. A home scenario on Spanish tariffs loses money.

Cooling. Air

Pros. 14,000 MH/s at 3,950 W, 0.282 J/MH. Frequently seen on the second-hand market.

Cons. A 2024 generation with almost a twofold gap to the leaders.

Best suited for. Buyers of used hardware with very cheap electricity.

Payback. The electricity threshold is around 0.07 dollars per kilowatt hour. Tariffs below that level are practically unheard of in the EU.

Cooling. Air

Pros. 20,000 MH/s at 6,200 W. High hashrate density per rack.

Cons. 0.31 J/MH while depending entirely on a loop: efficiency is worse than the air-cooled machines from the same vendor.

Best suited for. Data centres where the loop already exists and volume per unit matters.

Payback. The electricity threshold is around 0.065 dollars per kilowatt hour. On European tariffs there is no economic case.

Cooling. Hydro cooling

Pros. 2,000 MH/s at 620 W. The only machine in the catalogue you can realistically plug in at home: it draws about as much as a space heater.

Cons. 0.31 J/MH, twice as bad as industrial models. The income is symbolic.

Best suited for. Learning, reusing heat in winter, getting familiar with pool setup.

Payback. Not to be treated as a source of income. The electricity threshold is around 0.065 dollars per kilowatt hour, so on a Spanish household tariff the device loses money even counting the heat it provides.

Cooling. Air, quieter than industrial models

Pros. 9,500 MH/s at 3,425 W. The most widespread Scrypt machine on the second-hand market, and it supports third-party firmware builds.

Cons. 0.361 J/MH, a 2.4 times gap to the catalogue leaders. The machine dates from 2021.

Best suited for. Only sites on an industrial tariff below five cents.

Payback. The electricity threshold is around 0.06 dollars per kilowatt hour. On any European tariff the machine loses money, and the 2027 halving will make its position worse.

Cooling. Air

Hardware manufacturers

Bitdeer SealMinerDL1 series, air and hydro, 0.149 J/MH

The top line of the catalogue on efficiency. The DL1 Air delivers 25,000 MH/s at 3,725 W, the DL1 Hydro 52,500 MH/s at 7,823 W. The maker also quotes an economy mode near 20,500 MH/s with efficiency below 0.14 J/MH. The devices support several Scrypt chains besides LTC and DOGE.

ElphaPexDG 1, DG2, DG Hydro and DG Home series, up to 20,500 MH/s

The widest line-up in the catalogue with ten entries. The vendor appeared in 2024 and works on Scrypt only. The range runs from the home DG Home 1 at 620 W to a hydro model at 6,200 W. Our catalogue records no third-party firmware for these machines.

BitmainAntminer L3, L7 and L9 series, up to 16,000 MH/s

The historical leader of Scrypt mining and the only vendor in the catalogue whose machines are marked as supporting third-party firmware builds. On efficiency the L9 line already trails its competitors. The new L11 generation, shipped in batches in early 2026, is not in the calculator catalogue yet.

GoldshellMini-DOGE, LT and E-DG1M series, from 185 to 3,400 MH/s

The only vendor with a proper home line-up: the Mini-DOGE Pro draws 220 W and the Mini-DOGE II 400 W. These are devices for learning and for reusing heat rather than for income: efficiency runs from 0.95 to 1.3 J/MH, that is six to nine times worse than industrial machines.

InnosiliconA4 Dominator, 280 MH/s at 1,050 W

A historical entry in the catalogue from the mid 2010s generation. An efficiency of 3.75 J/MH makes the machine unusable for mining at any tariff, it is interesting only as a museum piece.

Firmware and overclocking

Third-party firmware on Scrypt is a much narrower story than on SHA-256. In our catalogue support is marked only on Bitmain machines, namely the Antminer L7 and L9. For the ElphaPex, SealMiner and Goldshell lines the catalogue records no third-party builds: those vendors entered the market recently and there are noticeably fewer open builds for their boards.

Bitmain factory firmware lets you start a machine and pick one of the preset modes, but it does not give you control of voltage and frequency on individual hash boards. That makes it impossible to bring a specific unit to its own optimum: chips differ from one another even within a single batch.

Third-party builds exist precisely for that job. Through HashCore Toolkit a supported Antminer receives firmware with manual tuning of frequencies and voltages per chain, automatic mode selection and telemetry for every board. The developer fee is 2.8 percent. In the catalogue this support is marked on the L7 and L9, as well as on the S19 and S21 series on another algorithm.

It helps to understand the limits. The AsicBoost mode belongs to SHA-256 and does not apply to Scrypt: it exploits a property of the header structure under double hashing that Scrypt simply does not have. Everything reflashing gives you on Scrypt is undervolting, precise frequency selection and stability, not a new algorithmic advantage. Promises of multiplying hashrate on Scrypt should be read as advertising.

The economic sense is direct: at a fixed tariff, cutting the energy spent per megahash pushes back the point where a machine goes into the red. For the L9 that is the difference between breaking even and a small profit on an industrial tariff. The limits are just as direct: reflashing voids the warranty, and a wrong voltage degrades the boards. Work with a backup of the factory build and raise the tuning gradually, watching temperature and the share of rejected shares.

How to start mining

You can only start mining Litecoin with a Scrypt ASIC. The minimum kit is the machine itself, its stock power supply, a dedicated power line, wired internet and a pool account. There is no need to run a node, the block template comes from the pool. There is no separate setup for Dogecoin either: the pool attaches the auxiliary chain itself.

Electrical supply is the first constraint. Industrial Scrypt machines draw from 3.1 to 7.8 kW, so they need a dedicated line and a breaker rated at 16 to 32 amps. A household socket will not carry that load. The DL1 Hydro at 7,823 W also needs a ready loop with a heat exchanger.

The second constraint is noise and heat. Air-cooled industrial models run at around 75 decibels and above around the clock, comparable to a vacuum cleaner that never stops. You cannot put such a machine in a living space. The catalogue has one exception: the ElphaPex DG Home 1 at 620 W and the Goldshell Mini-DOGE line, which are designed for a room.

Home mining of Litecoin in 2026 makes sense in two scenarios: learning, and reusing heat in winter when the machine partly replaces heating. As a source of income on a household tariff in Spain it does not work: the break-even point even for the best machines in the catalogue lies around 0.13 to 0.14 dollars per kilowatt hour, while home machines only work below 0.065.

One practical setup tip: connect to a pool that pays out DOGE, and check that both payouts show up in your account. If the pool pays LTC only, you lose the larger part of the revenue while saving nothing on electricity. A backup pool in the machine configuration is a must: a few hours of downtime costs more than any difference in fees.

Profitability and what drives it

Revenue from a Scrypt machine has three parts: the Litecoin subsidy, the Dogecoin payout from merged mining and small change from auxiliary chains. At the end of July 2026 that came to roughly 0.45 to 0.50 dollars per gigahash a day in total. The order of magnitude is easy to verify: the networks issue around 3,600 LTC and 14,400,000 DOGE a day at a combined hashrate of around 2.46 PH/s.

The split between those parts is unusual today. At prices near 45 dollars per LTC and 0.07 dollars per DOGE, Litecoin accounts for roughly 14 percent of revenue and Dogecoin for roughly 86. Per coin mined that works out at about 4,000 DOGE for every 1 LTC. The practical conclusion follows: income is more sensitive to the price of the meme coin than to the price of Litecoin itself, and that is the main risk in the model.

Network fees can be left out of the calculation. The average transfer fee is around 0.00005 LTC, and across 590 blocks a day their contribution to the reward is measured in hundredths of a percent. Plan strictly from the subsidy and the DOGE payout.

Two risk factors over the coming year. The first is difficulty: it retargets every 3.5 days and during a market rally it eats income faster than the price rises. The second is the halving in late July 2027. It will cut in half the part of revenue that comes from Litecoin. At current price ratios that is a loss of around seven percent of total income rather than half of it, but if DOGE falls against LTC the blow grows in proportion. A machine bought in the second half of 2026 is best assessed on a payback horizon no longer than a year, so that the exit point does not sit beyond the halving.

Open the profitability calculator →

Mining pools

PoolPayout schemeFeeNote
F2PoolPPS+ or PPLNSCheck in your accountThe largest pool on the network: around 36.9 percent of blocks found over a week at the end of July 2026. Pays out DOGE from merged mining.
ViaBTCPPS+ or PPLNS4 percent on PPS+, 2 on PPLNSAround 23.6 percent of blocks. Merged mining of DOGE, daily payouts, public analytics on LTC and DOGE difficulty.
AntPoolPPS+ or PPLNSCheck in your accountAround 17.5 percent of blocks. The Bitmain pool, pays DOGE together with LTC.
Hash700Check with the poolCheck with the poolAround 5.0 percent of blocks. A visible second tier player that appeared near the top of the statistics recently.
EMCDPPS+Check in your accountAround 3.2 percent of blocks. Russian language support, merged mining of DOGE.
Litecoinpool.orgPPSStated as zeroAround 3.1 percent of blocks. The oldest pool on the network, running since 2011, with merged mining of auxiliary chains, eight servers and an encrypted connection.
NiceHashHashrate rentalDepends on the contractAround 2.1 percent of blocks. Formally not a pool but a hashrate marketplace, payouts go in BTC at the market price of hashrate.
ProHashingPPSAround 5 percentA small pool that pays out in a coin of your choice or in fiat. The fee is above market, but it saves you from converting DOGE by hand.
The shares are based on blocks found over 7 days as of 31 July 2026 and change daily. Check fees and payout schemes on the pool site before you connect: some operators do not publish their rate outside the account area, so writing check is more honest than filling the table with a stale number. The structural fact matters more than the shares: the three largest pools find around 78 percent of the blocks, noticeably more concentrated than Bitcoin. Check separately that your chosen pool really pays DOGE: without it you lose the larger part of the revenue.

Wallets

CategoryWallets
HardwareLedger, Trezor, Keystone. MWEB is not supported on them
DesktopLitecoin Core 0.21.5.5 and newer, Electrum-LTC, Exodus
MobileLitewallet, Nexus Wallet, Trust Wallet, the Telegram wallet outside the US
With MWEB supportLitecoin Core, Nexus Wallet, Litewallet
For minersKeep the pool payout address on a hardware wallet rather than on an exchange
Not recommendedHolding your main balance on an exchange or in a wallet where the private key is not yours

For a miner the rule is simple: the address the pool sends payouts to must be fully yours. An exchange address is convenient, but if the account is frozen your mined coins go with it. A hardware wallet plus a seed phrase written down offline closes that risk for sensible money. Remember that payouts arrive in two coins: the DOGE address has to be yours as well.

On address formats: the modern ltc1 takes less block weight than the old L... style, so spending from it is cheaper. MWEB addresses in the ltcmweb1 form are not supported everywhere, and hardware wallets do not handle them at all. After the incident in the spring of 2026, withdrawals from MWEB require six confirmations, a rule built into the client from version 0.21.5.5 onward.

Where to buy and how to store

Litecoin trades on every major venue and remains one of the most liquid coins outside the top twenty. As of 31 July 2026 daily trading volume was around 260 to 280 million dollars against a capitalisation near 3.5 billion, so roughly eight percent of the market turns over in a day. Among venues available in the EU, Kraken, Bitvavo, Bit2Me and Coinbase are the common choices, and Binance, OKX and Bybit among the global ones.

Regulated access arrived recently and works less well than expected. The spot exchange traded fund on LTC launched on Nasdaq on 28 October 2025, but over its first eight months it gathered less than 10 million dollars of inflows, an order of magnitude below comparable Bitcoin and Ethereum products in their first quarter. In July 2026 the settlement depository of the Deutsche Boerse group added LTC to institutional custody.

Keep regional restrictions in mind separately. Since June 2022 the largest South Korean exchanges have not traded LTC because of MWEB, and as of late July 2026 that delisting still stands. It does not affect mining, but it does affect where you can sell and how deep the order book is during the Asian session.

We sell hardware, not the coin. This page is a reference: pick a venue yourself based on its licence in your jurisdiction and its fiat withdrawal terms. Check the withdrawal address character by character, especially when you handle two coins at once: sending DOGE to an LTC address cannot be undone.

Strengths and weaknesses

Pros
  • Double income: the same work is paid for by Litecoin and Dogecoin at once, and merged mining needs no extra energy.
  • The entry price of a machine is lower than on SHA-256: a top air-cooled model costs several times less than a flagship Bitcoin miner.
  • Real competition between vendors: three independent makers refreshed their lines in 2025 and 2026, which pushes prices down.
  • There is a home segment: the ElphaPex DG Home 1 at 620 W and the Goldshell line genuinely work in a living space.
  • Network fees are close to zero, so selling what you mine is not eaten up by transfer costs even with frequent withdrawals.
  • Hashrate is down by roughly a third from the December 2025 peak, difficulty followed it, and the economics improved for those who stayed.
  • Supported Bitmain models can run third-party firmware builds with undervolting and per-board telemetry.
Cons
  • The larger part of revenue depends on the price of Dogecoin, a meme coin with no fundamental anchor, and no choice of hardware can hedge that risk.
  • The model line-up is an order of magnitude smaller than on SHA-256: 21 entries in the catalogue against 136, the second-hand market is thinner and spare parts cost more.
  • Third-party firmware is available only for Bitmain machines, and the catalogue records none for ElphaPex or SealMiner.
  • Pool concentration is higher than in Bitcoin: three operators find around 78 percent of the blocks.
  • The halving in late July 2027 will cut in half the part of income that comes from Litecoin and will finish off machines worse than 0.3 J/MH.
  • In the spring of 2026 the network went through an exploited MWEB vulnerability with a reorganisation of 13 blocks, and some services suspended LTC operations.
  • On household tariffs in Spain not a single industrial machine in the catalogue turns a profit, while noise and heat make it impossible to run one at home.

What the coin is used for

The main use case is a fast, cheap transfer. Confirmation arrives within minutes, the fee stays around one five-hundredth of a cent and there is almost always room in a block. Payment processor reports put Litecoin consistently among the top three coins by transaction count, and in some months of 2025 it accounted for 20 to 30 percent of payments excluding stablecoins.

The second use case is optional privacy. MWEB lets you hide amounts and addresses while staying on the same chain. The scale is still small: at the end of July 2026 the extension blocks held around 473 thousand LTC, less than one percent of supply, with roughly 313 operations a day. Using it is voluntary and ordinary transfers stay fully transparent.

The third use case is as a technical proving ground. Litecoin has historically adopted upgrades ahead of Bitcoin: SegWit was activated here on 10 May 2017, three months before the main network, and the first Lightning payment also went through in May 2017. The other side of that role is visible in MWEB: the network is first to catch both other people mistakes and its own.

A fourth use case appeared in 2025, the coin as a reserve asset. A public treasury company holding more than 929,000 LTC started work on 18 July 2025, and a spot exchange traded fund has traded on Nasdaq since 28 October of the same year. For a miner this matters indirectly, through demand: the more reasons there are to hold the coin, the steadier the price his revenue is measured in.

Network statistics

ParameterValue
PriceAround 43 to 45 dollars
Market capitalisationAround 3.5 billion dollars, ranked 25th to 27th
Daily trading volumeAround 260 to 280 million dollars
In circulationAround 77.4 million LTC, roughly 92 percent of the cap
Network hashrateAround 2.46 PH/s, source estimates diverge up to 2.8 PH/s
Hashrate recordAround 3.94 PH/s on 6 December 2025
DifficultyAround 86.8 million
Block heightAround 3,151,800
Transactions per dayAround 175,100 with 234,400 active addresses
Average feeAround 0.000047 LTC, roughly 0.002 dollars
Held inside MWEBAround 473,000 LTC with some 313 operations a day
Dogecoin hashrateAround 2.57 PH/s, so the chains run on almost the same fleet
Data taken on 31 July 2026. Hashrate estimates from different sources that day ranged from 2.46 to 2.80 PH/s because of different averaging windows, hence the range. Aggregator prices ranged from 42.5 to 45.2 dollars. Note that some aggregators publish a circulating supply of around 78.8 million LTC, which does not match the issuance formula: a calculation from block height gives around 77.4 million. All of these values change daily and difficulty retargets every 3.5 days, so check them in the calculator before you run any numbers.

Network security

Network security rests on the cost of an attack, and here Litecoin has a structural quirk. A hashrate of around 2.46 PH/s is smaller than Bitcoin on its own, but it does not protect one chain: the same work also holds up Dogecoin. A 51 percent attack does not let anyone steal other people coins or issue extra ones, at most it reverses the attacker own recent transactions, which is exactly why exchanges wait for confirmations.

The weak spot is not the hardware but how it is organised. Three pools find around 78 percent of blocks over a weekly window, above the concentration level in Bitcoin. Each individual machine still belongs to its owner and switching to another pool takes minutes, which is what limits the practical risk. The number of independent nodes is small: crawlers show on the order of 2,000 reachable, an order of magnitude fewer than on the Bitcoin network.

In the spring of 2026 the network went through the most serious incident in its history, and it is worth reading from the official developer report. On 19 March an exploit of a flaw in MWEB withdrawal validation was confirmed at block 3,073,882: the attacker produced a fictitious peg-out of 85,034.47 LTC. Developers working with the pools blocked the attempt to spend those coins, ran a recovery transaction on 24 March and finished rebalancing on 25 March. The finder was awarded a bounty of 850 LTC.

On 25 April 2026 a second attempt followed. It used a different flaw, a denial of service on modified blocks, which let an invalid branch grow to 13 blocks, from 3,095,930 to 3,095,943, rolling back roughly 32 minutes of transactions. The valid chain was restored through miner coordination and version 0.21.5.4 shipped the same day. The cause was named as a logic error in the MWEB protocol itself, not a capture of hashpower. The full fix went into version 0.21.5.5 of 7 May 2026. Third parties were hit: a cross-chain service lost around 11,000 LTC in equivalent value and suspended operations with the coin. The minimum safe node version today is 0.21.5.4, the recommended one 0.21.5.5.

Compatibility and requirements

ParameterValue
HardwareScrypt ASIC only, graphics cards and processors are unusable
FirmwareVendor factory build, third-party builds only for the Antminer L7 and L9
Power supplyThe stock PSU of the model, 220 V, from 620 W on the home machine to 7,823 W on the hydro model
Power lineA dedicated line and a 16 to 32 A breaker per industrial machine
CoolingAir or hydro, the catalogue has no immersion Scrypt models
NoiseIndustrial models around 75 decibels and above, home models much quieter
RoomNon-residential with intake and exhaust, the exceptions are the DG Home 1 and the Goldshell Mini-DOGE line
NetworkWired Ethernet, a static IP, access to the machine web interface
PoolMandatory, and it must pay DOGE, otherwise most of the income is lost
Merged miningDogecoin is enabled on the pool side, no changes are needed on the machine

Comparison with similar coins

ModelHashratePower drawEfficiencyCoolingThird-party firmware
SealMiner DL1 Hydro52,500 MH/s7,823 W0.149 J/MHHydroNo
SealMiner DL1 Air25,000 MH/s3,725 W0.149 J/MHAirNo
ElphaPex DG2+20,500 MH/s3,900 W0.19 J/MHAirNo
Antminer L9 (16 GH/s)16,000 MH/s3,360 W0.21 J/MHAirYes
Antminer L7 (9.5 GH/s)9,500 MH/s3,425 W0.361 J/MHAirYes
Hashrate and power figures come from the calculator catalogue. The efficiency gap between the top and bottom rows is two and a half fold: at the same tariff the L7 spends 2.4 times more energy per megahash than a 2026 machine. The Antminer L11 generation, shipped in batches in early 2026, is not in the catalogue yet, so it is not included in the ranking.

Outdated data and common errors

The block reward is quoted as 12.5 LTC. That value applied until 2 August 2023. From block 2,520,000 the subsidy is 6.25 LTC. The error shows up even in calculators and overstates the Litecoin part of calculated income exactly twofold.

The halving is dated to August 2027. The halving is tied to block 3,360,000, not to the calendar. The actual block time at the end of July 2026 is around 2 minutes 26 seconds instead of the 150 second target, so the estimated date moved to late July 2027. Some 208,000 blocks were left.

The 2027 halving is presented as cutting miner income in half. Only the part of revenue that comes from Litecoin will halve. At late July 2026 prices that is around 14 percent of the income of a Scrypt machine, with Dogecoin supplying the rest, and Dogecoin has a fixed reward and no halvings. If prices hold, the total blow is around seven percent, but it grows if DOGE falls against LTC.

The merged mining ratio is given as 800 DOGE per 1 LTC. That number comes from the era of a high Litecoin reward. At the current 6.25 LTC per block and 10,000 DOGE per block the arithmetic runs like this: 576 LTC blocks a day against 1,440 DOGE blocks, so roughly 4,000 DOGE for every LTC mined.

The Antminer L7 is called the current Scrypt flagship. A 2021 machine at 0.361 J/MH trails the catalogue leaders by 2.4 times and loses money on European tariffs. The top rows in 2026 belong to the SealMiner DL1 and the ElphaPex DG2+, and Bitmain has already released the next L11 generation.

The Antminer L9 is presented as a new release. The model came out in May 2024. At 0.10 dollars per kilowatt hour it runs near zero, and on household European tariffs at a loss. Selling it as a new release is not honest.

The network hashrate is rounded to 1 PH/s or 2 PH/s. Those are outdated values. The all-time high of around 3.94 PH/s was recorded on 6 December 2025, and on 31 July 2026 the network ran in the 2.46 to 2.80 PH/s range depending on the source. The trend since December has been downward.

Circulating supply is taken as around 78.8 million LTC. Some aggregators publish that figure, but it does not match the issuance formula. From a block height of around 3,151,800 the calculation gives roughly 77.4 million LTC, and both the specialised halving counters and the large aggregators agree with that.

MWEB is described as mandatory privacy across the whole network. MWEB is optional. At the end of July 2026 the extension blocks held around 473 thousand LTC, less than one percent of supply, with roughly 313 operations a day. Ordinary Litecoin transactions are fully transparent.

Sources write that the network has run for 14 years without a single incident. The claim of uninterrupted operation was true until the end of 2025. In the spring of 2026 the network went through an exploited MWEB vulnerability with a fictitious withdrawal of 85,034.47 LTC on 19 March and a chain reorganisation of 13 blocks on 25 April. A reference without that section is out of date.

Sources claim merged mining needs separate hardware or reduces LTC income. Not true. AuxPoW credits the same work to two chains, no extra energy and no second machine are needed, and Litecoin income is not reduced by it. Merged mining is switched on at the pool.

Sources claim Korean exchanges have relisted LTC. There is no confirmation of that. The delisting by the five largest South Korean venues, carried out in June 2022 because of MWEB, was still in force at the end of July 2026. Campaigns for a return continue, but no decision has been taken.

Questions and answers

What is Litecoin in simple terms

It is a proof-of-work payment network and its coin, with a supply cap of 84 million units. It is built like Bitcoin, but a block is found in 2.5 minutes instead of ten and the algorithm is Scrypt instead of SHA-256.

Who created Litecoin and when

Charlie Lee, at the time an engineer at Google. The client was published on 7 October 2011. In December 2017 Lee sold and gave away his entire holding, explaining it as a conflict of interest, but stayed with the project.

What algorithm does Litecoin use

Scrypt, a memory-hard function with a parameter of around 128 kilobytes per computation. The intent was resistance to purpose-built chips, but Scrypt ASICs arrived as early as 2014 and pushed graphics cards out completely.

Can you mine Litecoin at home

Technically yes, economically no on household tariffs in Spain. An industrial machine draws from 3.1 kW and runs at around 75 decibels. For home use the catalogue has the ElphaPex DG Home 1 at 620 W and the Goldshell Mini-DOGE line, but those are devices for learning and heating rather than for income.

Which ASIC is best for Litecoin in 2026

On efficiency our catalogue is led by the SealMiner DL1 Hydro and DL1 Air, both at 0.149 J/MH. Among air-cooled machines with no water loop the next in order is the ElphaPex DG2+ at 0.19 J/MH. If reflashing matters to you, the choice is the Antminer L9.

Which pool should you choose for Litecoin

The main criterion is a DOGE payout from merged mining, without it you lose most of the income. By blocks found over a week at the end of July 2026 the leaders are F2Pool, ViaBTC and AntPool, and among independent operators Litecoinpool.org has run since 2011.

How does PPS+ differ from PPLNS

Under PPS+ the pool pays a fixed amount for every accepted share and carries the luck risk itself, adding a share of the fees. Under PPLNS the reward is split only after a block is actually found, so payouts swing harder while the fee is usually lower, for example 2 percent against 4 at the same pool.

When is the next Litecoin halving and what will it change

The halving is tied to block 3,360,000 and is expected in late July 2027, with some 208,000 blocks left to it at the end of July 2026. The subsidy will drop from 6.25 to 3.125 LTC. It is important to understand that this halves only the part of revenue that Litecoin provides.

How hard will the halving hit hardware payback

At the price ratio of late July 2026 Litecoin accounts for around 14 percent of the income of a Scrypt machine, so the total blow will be on the order of seven percent. If DOGE falls against LTC, the Litecoin share grows and the blow gets harder. A machine bought in the second half of 2026 is best assessed on a payback horizon no longer than a year.

Why does mining difficulty change

Every 2,016 blocks the network compares the actual mining time with the expected 3.5 days and adjusts the target so that a block is again found in 150 seconds. The retarget happens roughly once every three and a half days, four times more often than in Bitcoin.

How much LTC is left to mine

At the end of July 2026 around 77.4 million coins out of 84 million had been mined, roughly 92 percent of the cap. That leaves some 6.6 million LTC, and they will be issued until around 2142.

What is the inflation rate of Litecoin

Annual issuance at a reward of 6.25 LTC is roughly 1.31 million coins, that is around 1.7 percent a year. After the 2027 halving the figure drops to about 0.84 percent.

How should you store LTC

Keep the main balance on a hardware wallet such as Ledger, Trezor or Keystone, and write the seed phrase down offline. Note that MWEB is not supported on hardware wallets: private operations need Litecoin Core, Nexus Wallet or Litewallet.

Where can you buy mining hardware

Our miner catalogue lists Scrypt models from five manufacturers. When buying, look at the warranty period, service availability in the EU and whether the machine still runs factory firmware: used ASICs often arrive already reflashed.

Can you install third-party firmware on a Scrypt ASIC

On the supported Antminer L7 and L9 yes, through HashCore Toolkit. It gives manual tuning of frequencies and voltages per board and detailed telemetry. The developer fee is 2.8 percent and the manufacturer warranty is void. For ElphaPex and SealMiner machines our catalogue records no third-party builds.

Does AsicBoost work on Scrypt

No. AsicBoost exploits a property of the header structure under double SHA-256 hashing, and Scrypt has no such property. Everything reflashing gives you on Scrypt is undervolting, precise frequency selection and stability, not a new algorithmic advantage.

How do you cut the power draw of a Scrypt ASIC

The main method is undervolting: you lower voltage and frequency to the point where the hashrate loss is smaller than the power saving. Some machines have a stock economy mode, for example on the SealMiner DL1 it cuts both hashrate and energy per megahash. Clean heatsinks and a supply of cold air help too.

How loud is a Scrypt ASIC

Air-cooled industrial models run at around 75 decibels and above around the clock. A hydro model is quieter but needs an external loop. Home devices such as the ElphaPex DG Home 1 and the Goldshell Mini-DOGE are much quieter and are designed for a room.

What power supply do you need

The stock PSU of the specific model. Power draw across the catalogue runs from 620 W on the home DG Home 1 to 7,823 W on the SealMiner DL1 Hydro. Every industrial machine needs a dedicated line and a breaker rated at 16 to 32 amps.

Does Litecoin mining pay off

Only on a cheap industrial tariff. With total revenue on the order of 0.45 to 0.50 dollars per gigahash a day, taken at the end of July 2026, the electricity break-even is around 0.13 to 0.14 dollars per kilowatt hour for DL1 class machines and around 0.10 for the Antminer L9. Household tariffs in Spain are above those levels.

What happens to mining if the price falls

Revenue falls with the price, the least efficient machines get switched off, hashrate drops and difficulty follows at the next retarget. That is exactly what happened from December 2025: hashrate fell by roughly a third from the high of around 3.94 PH/s. For Litecoin what matters is not only its own price but the price of Dogecoin.

Can you mine Litecoin with a graphics card

No, that stopped making sense back in 2014 when Scrypt ASICs appeared. The gap in energy efficiency is measured in thousands of times: the income would be indistinguishable from zero while the electricity bill is very real.

Does Litecoin have merged mining

Yes, and it is its key feature. Since September 2014 Dogecoin has accepted Litecoin work under AuxPoW: the same work counts for both chains with no extra energy spent. A number of pools additionally attach small chains such as Bellscoin, Junkcoin and Luckycoin.

How many confirmations does an LTC transfer need

Most exchanges credit funds after six confirmations, that is roughly 15 minutes. For withdrawals from MWEB the client rules from version 0.21.5.5 onward require six confirmations instead of one, a consequence of the incident in the spring of 2026.

What is the network fee on Litecoin

The average transfer fee stays around 0.000047 LTC, that is roughly two tenths of a cent. It is counted in litoshi per virtual byte rather than as a percentage of the amount, and ltc1 format addresses cost less than the old ones.