* ASIC profitability *

Asic Miner Profitability Calculator

Our ASIC profit calculator and mining profitability tool helps user

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Model
Profit

Our cutting-edge mining calculator offers comprehensive insights across all major cryptocurrency algorithms, helping users easily identify the most profitable options for their specific hardware. The algorithm data is continuously refreshed to keep pace with the dynamic crypto mining industry, providing accurate evaluations based on real-time profitability statistics and overall market activity. This empowers users to make well-informed choices that reflect the latest mining conditions and algorithm performance.

* Profitability factors

What Determines ASIC Miner Profitability

Six variables set the difference between a machine that pays for itself and one that runs at a loss. Our ASIC miner profitability calculator accounts for all of them simultaneously.

Electricity Cost

Power is the largest controllable expense in ASIC mining. A rate of $0.05/kWh versus $0.12/kWh can swing a miner from highly profitable to loss-making overnight. Enter your real rate to the third decimal for an accurate net profit figure.

Network Difficulty

As more hashrate joins a network, difficulty rises and each miner earns a smaller share of block rewards. Our ASIC miner profit calculator uses the live difficulty epoch — not a lagging average — so your results reflect what you would earn right now.

Coin Price

The market price of the mined coin converts raw block rewards into real revenue. Prices update continuously across Bitcoin, Litecoin, Kaspa, and every other mineable asset, so the profitability you see is always denominated in today's value.

Hashrate & Efficiency

A miner's rated hashrate determines its share of block rewards; its power draw determines the cost to earn them. The efficiency ratio — joules per terahash — is the single best metric for comparing hardware across generations and brands.

Block Reward Schedule

Bitcoin halves its block reward roughly every four years; other coins follow their own emission schedules. These scheduled reductions directly cut miner revenue independent of price. Our calculator applies the current block reward for each coin automatically.

Currency & Pool Fees

Profit means different things depending on where you operate. View results in USD, EUR, GBP, AED, CAD, AUD, BTC, or ETH. Pool fees reduce gross earnings — factor them in on each miner's dedicated page for a fully loaded profitability view.

* How it works

Tensority How This Mining Algorithm Works

Why should you rely on our ASIC Profit Calculator for accurate mining insights?

Choose Tensority and execute with precision, because this algorithm was built for Bytom and demands you match its purpose with disciplined hardware choices and clean power use. Exploit its ASIC focus to push efficiency, since dedicated rigs like the Antminer B7 reach about 96 kilohashes per second at roughly 528 watts, which lands near 5.5 joules per kilohash, and treat that figure as your north star because lower joules per kilohash means less waste heat and a smaller footprint. Keep FPGA options on the table for flexible deployments and rapid retuning, as Tensority’s hardware adaptability lets you balance throughput, uptime, and site constraints without surrendering efficiency. Do not guess your timing, because trend-aware tuning based on chain history can throttle or ease hashing intensity as difficulty and network activity shift, which helps you defend returns when volatility hits. Respect that Bytom’s proof of work and the broad device mix help resist centralization, so spread hash across rigs and pools to keep the network trustless. Strengthen your software stack and test on GPUs when needed, because miners have seen Bminer optimize Tensority on NVIDIA cards with version jumps delivering over 100 percent hashrate gains versus earlier builds, which is useful for benchmarking and for staging before ASIC scale-out. Calculate every watt and every share, and use our crypto miner profit calculator to project outcomes by entering hashrate, power draw, uptime, pool fee, and expected difficulty, then adjust clocks, power limits, and fan curves to hit the target joules per kilohash you require. Cut needless heat with efficient airflow, dust control, and high-efficiency power supplies, because wasted watts become noise and risk. Track block reward schedules, orphan and stale rates, and firmware updates, and roll changes during low-risk windows to protect revenue. Treat each metric like a checkpoint and do not drift, because Tensority rewards miners who measure, adapt, and reduce their impact while keeping the hash steady.

* Just added

Latest ASIC Miners

Check out the latest ASIC miners added to our site. These are the newest listings, featuring the most recent models.

* Mining algorithms

ASIC Mining Algorithms and Their Profitability

Each mining algorithm requires dedicated ASIC hardware. Understanding which algorithm a miner targets is the first step in any accurate ASIC miner profitability calculation.

SHA-256

Bitcoin, Bitcoin Cash, and more

SHA-256 is the algorithm that underpins Bitcoin, the largest proof-of-work network by market cap. ASIC miners built for SHA-256 — from manufacturers like Bitmain, MicroBT, and Canaan — are the most widely deployed and most competitively benchmarked hardware in existence. Profitability is heavily influenced by Bitcoin's network hashrate, which sets the difficulty every 2,016 blocks.

  • Largest ASIC hardware market by volume
  • Difficulty adjusts every ~2 weeks
  • Miners also earn transaction fees
  • Efficiency leaders below 15 J/TH available

Scrypt

Litecoin, Dogecoin, and more

Scrypt powers Litecoin and Dogecoin — two of the longest-running proof-of-work chains outside Bitcoin. Litecoin and Dogecoin are merge-mined, meaning a single Scrypt ASIC earns block rewards from both chains simultaneously, which substantially improves the profitability calculation compared to mining either coin alone.

  • Merge-mine LTC and DOGE simultaneously
  • Combined reward boosts net daily income
  • Mature hardware market with efficient options
  • Lower network hashrate than SHA-256

KHeavyHash

Kaspa (KAS)

KHeavyHash is the algorithm used by Kaspa, one of the fastest-growing proof-of-work networks. Kaspa's BLOCKDAG architecture enables high-throughput block production, and a new generation of dedicated ASIC miners now dominates its hashrate. The KAS ASIC miner profitability calculation is especially sensitive to network difficulty growth, which has accelerated as hardware availability has expanded.

  • Fastest-growing PoW network by hashrate
  • New ASIC hardware entering market regularly
  • High block frequency — multiple blocks per second
  • Profitability volatile; check live data often

Blake3 & Emerging Algorithms

Alephium, Ironfish, and newer networks

Newer proof-of-work networks like Alephium use modern hashing algorithms such as Blake3. ASIC hardware for these algorithms is newer and less commoditised, which can create short windows of higher profitability before the market catches up. Our ASIC miner profitability calculator covers all listed algorithms as they gain dedicated hardware support.

  • Newer algorithms, less saturated hashrate markets
  • Hardware efficiency improving rapidly
  • Profitability windows can open fast — and close fast
  • Compare across all algorithms in one table
* Step by step

How to Use the ASIC Miner Profit Calculator

From finding your hardware to modelling future scenarios — six steps to a complete ASIC mining profit calculation.

1

Open the ASIC Miners page

Go to the ASIC Miners page on MinerCompare.com — a free ASIC miner profitability calculator that covers 500+ miners across every major proof-of-work algorithm. No account, no sign-up, and no paywall. The full ranked table loads immediately with live profitability data already applied.

2

Set your electricity rate

Enter your real kWh cost in the electricity input above the table — the field accepts up to three decimal places because fractions of a cent matter at scale. Every net profit figure across all 500+ miners updates the moment you change it. The default is $0.08/kWh; replacing it with your actual rate is the single most important step for an accurate ASIC mining profit calculation.

3

Search or filter your miner

Type a model name into the search bar to jump straight to your hardware, or use the algorithm, brand, and coin filters to narrow the table. Filter by SHA-256 to see only Bitcoin miners, by Scrypt for Litecoin and Dogecoin hardware, or by KHeavyHash to compare Kaspa ASICs — each filter immediately removes irrelevant results so the table only shows miners relevant to your operation.

4

Sort the table by daily profit

Click the profit column header to rank all visible miners from highest to lowest net daily earnings after electricity costs. This is the fastest way to answer the question every buyer asks: which ASIC miner is most profitable right now at my power rate? Miners showing a negative profit at your entered kWh cost are currently loss-making — the table makes that immediately visible so you never have to calculate it manually.

5

Open a miner for the full breakdown

Click any row to open the dedicated ASIC miner page. There you will find a coin-by-coin profit breakdown showing what that hardware earns mining every coin its algorithm supports, a full specifications sheet with hashrate, power draw, and efficiency in J/TH, and historical profitability data. This is where a single-row summary in the table becomes a complete ASIC mining profit calculation.

6

Model future scenarios

On the individual miner page, manually override the difficulty projection, block reward, or coin price to simulate how ASIC miner profitability would shift after a halving, a difficulty spike, or a significant market move. Raise difficulty by an expected percentage and watch the net profit figure adjust in real time — this turns the ASIC miner profit calculator from a live snapshot into a forward-looking hardware investment tool.

An accurate ASIC mining profit calculation depends on getting the electricity rate right before anything else. Power cost is the only variable in the calculation that is entirely within your control — hashrate is fixed by your hardware, network difficulty is set by the market, and coin price moves independently of anything you do. Entering your real kWh cost to three decimal places is not pedantry. $0.005/kWh is enough to shift monthly net profit by hundreds of dollars on a farm running dozens of machines.

Once your rate is set, the table becomes a decision surface rather than just a list. Sort by profit to see which hardware earns the most at your power cost today. Sort by efficiency (J/TH) to find the most power-efficient miners regardless of absolute output — useful when comparing newer generation hardware against older machines you already own. Sort by hashrate when the network you are targeting rewards raw throughput. Each sorted view answers a different question about ASIC miner profitability, and none of them require you to calculate anything manually.

The individual miner pages are where planning happens. Seeing that a specific ASIC earns $12/day at today's difficulty is useful; knowing how that figure changes if difficulty rises 15% after the next adjustment epoch — or drops if a competing network launches a more profitable coin — is what separates a reactive miner from a prepared one. Use the scenario fields on the miner page to stress-test your purchase decision before committing capital.

* The calculation

How the ASIC Miner Profit Calculator Works

Four inputs. One live number. No guesswork.

Every figure in the ASIC miner profitability table is the output of a live calculation, not a cached estimate. When you load the page, the calculator fetches the current coin price, the live network difficulty, and the latest block reward for every mineable cryptocurrency. It then determines your expected daily earnings based on your miner's hashrate, converts that to gross revenue in your chosen currency, and subtracts your electricity cost based on the miner's rated power consumption and your entered electricity rate to produce a net daily profit figure.

The reason this ASIC miner profit calculator produces different results from simpler tools is precision at every step. Network difficulty is not averaged over a week — it reflects the current epoch. Coin prices update continuously rather than once per hour. Power consumption is taken from each miner's manufacturer specification, not a rounded estimate. And electricity cost accepts up to three decimal places, because at scale even a fraction of a cent per kilowatt-hour changes whether a machine is profitable or not.

The result is an ASIC mining profit calculation you can act on. Set your electricity rate once, sort the table by daily profit, and you immediately see which of the 500+ listed miners earns the most after power costs at your specific location — whether you're comparing a new Antminer S21 Pro against an older WhatsMiner M50 or evaluating entirely different algorithms like SHA-256 versus Scrypt.

* Background

Tensority More About This Algorithm

See how our profit calculator delivers accurate, real-time mining insights, helping miners make informed decisions.

Tensority marks a stark, forward-leaning chapter in cryptocurrency mining, binding tensor-centric computation with AI-guided optimization so miners can endure shifting markets where caution becomes craft and survival becomes an ethic: engineered specifically for the Bytom (BTM) network, Tensority is ASIC-friendly by design, enabling specialized hardware to reach high performance and energy efficiency, as exemplified by machines like the Antminer B7 delivering roughly 96 kilohashes per second at about 528 watts, or around 5.5 joules per kilohash; on the software side, miners have seen major gains from optimized GPU miners such as Bminer, with version 10.5.0 more than doubling Tensority hashrates on certain NVIDIA setups, illustrating how algorithm-focused engineering and tuned kernels can materially cut power per unit of work; around this core, AI-driven orchestration layers monitor network difficulty, latency, temperature, and real-time market signals to allocate resources dynamically, tune frequencies and voltages, balance fan curves, and even schedule jobs across rigs, trimming electricity draw and hardware stress while maintaining competitive hashrate, and predictive models can flag abnormal error rates or thermal drift on hashboards hours before failure to prevent downtime; deep learning–inspired control loops refine power targets and configuration parameters in response to difficulty swings and miner pool conditions to keep systems near their sweet spot, while immersion or high-efficiency airflow can further stabilize thermals and extend component life; unlike general-purpose algorithms such as Ethash or Equihash, Tensority is tailored to Bytom rather than to Bitcoin, Ethereum, or Litecoin, so multi-coin strategies arise at the farm-management level via parallel rigs, rapid switching, or distinct software stacks rather than from the Tensority algorithm itself, which underscores the importance of flexible infrastructure; at the security edge, mining pools and farm networks commonly deploy AI-powered intrusion detection to identify anomalous traffic and tampering in real time, and intelligent recovery playbooks can isolate compromised nodes, reimage firmware, and restore trusted configurations without halting the entire operation, reinforcing integrity at minimal operational cost; taken together-specialized silicon, optimized software, adaptive AI control, and layered security-Tensority offers a measured path to higher efficiency and resilience, a system that learns and adjusts under pressure so miners can stand their ground in a market that tests both hardware and resolve.

* ASIC vs GPU

Why ASIC Mining?

The Advantages of ASIC Mining Compared to Other Mining Types

ASIC (Application-Specific Integrated Circuit) mining involves specialized hardware designed exclusively for mining cryptocurrencies like Bitcoin, offering unmatched efficiency and performance. Unlike general-purpose GPUs, ASICs are optimized for specific algorithms, delivering significantly higher hashrates while consuming less power per hash. This makes them far superior for mining tasks, as they maximize profitability by reducing electricity costs and increasing mining output. ASIC miners are purpose-built, providing stability and reliability in high-demand mining environments, unlike GPUs which are prone to overheating and wear during prolonged use. Their compact design also allows for easier scalability in large mining operations. By focusing solely on mining, ASICs eliminate the overhead of multi-purpose computing, resulting in faster block-solving times. This efficiency translates to higher rewards, making ASICs the preferred choice for serious miners aiming to stay competitive in the cryptocurrency market. In contrast, GPU mining, while versatile, cannot match the raw power and cost-effectiveness of ASICs for dedicated mining tasks.

Optimized for Mining

Dedicated Hardware
Designed exclusively for cryptocurrency algorithms

Energy Efficient

Lower Power Usage
Consumes less electricity than GPUs per unit of work

Reliable & Stable

24/7 Operation
Built to handle continuous mining without failures

Scalable

Easy to Expand
Compact design allows large operations with minimal space
* Buyer's guide

How to Choose Your ASIC Miner

Not all ASIC miners are created equal. Before you spend thousands, here's what actually separates a smart purchase from an expensive mistake.

Hashrate

Higher hashrate means a larger share of block rewards. But raw speed is meaningless without context — a faster miner that also draws significantly more power may earn less net profit than a slower, leaner one.

Efficiency (J/TH)

Efficiency is the single most important number for long-term profitability. It tells you how much electricity the miner burns per unit of work. Lower is better — a more efficient miner costs less to run every day, every month, every year.

Noise & Cooling

Air-cooled ASICs can exceed 75 dB — loud enough to require a dedicated space. If you're mining at home or in a shared facility, cooling type determines where you can actually deploy the hardware. Hydro and immersion units run near-silent.

ROI & Payback Period

Hardware cost divided by daily net profit tells you roughly how long until the machine pays for itself. Always model this at current difficulty and price — then stress-test it with the halving simulator to see if it still makes sense after the next reward cut.

Real vendor offers on every miner page

Open any dedicated miner page and you'll find a live vendor section — real offers from verified hardware sellers, with pricing and availability updated by the vendors themselves. No affiliate redirects to random marketplaces. Just direct offers from the people who actually sell the hardware.

Selling ASIC hardware?

If you're a vendor or reseller, you can apply to list your offers directly on each miner's page. Buyers researching a specific model will see your pricing right there — no extra clicks needed on their end.

Apply to become a vendor
* Thermal management

ASIC Miner Cooling Types

How you cool your hardware determines where you can deploy it, how much it costs to run, and how long it lasts. There are three fundamentally different approaches.

Air Cooled

Standard

The most common type. High-speed fans draw cool air through the unit and exhaust hot air out the back. Setup is straightforward — plug in, connect, mine. The tradeoff is noise (typically 65–80 dB) and the need for adequate ambient airflow in your space.

Lowest upfront cost and simplest setup
Widest model availability across all manufacturers
Loud — requires dedicated space away from living areas
Fan wear is the most common failure point over time

Hydro Cooled

Advanced

Water blocks are mounted directly on the chips. Coolant absorbs heat and carries it to an external radiator or chiller. The fans are gone — so is most of the noise. Hydro units are popular in home setups and smaller operations where silence matters and space is limited.

Near-silent operation — viable in residential environments
Better sustained performance under continuous load
Requires a water cooling loop — more infrastructure to set up
Higher upfront cost; fewer models available than air-cooled

Immersion Cooled

Industrial

The entire miner is submerged in a dielectric fluid that draws heat away from the chips far more efficiently than air or water. Used in large-scale mining farms where density, uptime, and hardware longevity are the priority. Completely silent. No moving parts.

Maximum thermal efficiency — extends hardware lifespan significantly
Silent, high-density deployment in data centre environments
Very high infrastructure cost — tanks, fluid, heat exchangers
Practical only at scale — not suited for small home operations
Factor
Air
Hydro
Immersion
Setup cost
Low
Medium
High
Noise level
65–80 dB
~30 dB
Silent
Best suited for
Farms & sheds
Home & small ops
Industrial scale
Hardware life
Standard
Extended
Maximum
* Efficiency deep dive

Why Efficiency is the Number That Matters Most

Two miners can produce the same hashrate and earn the same revenue. The one with better efficiency keeps far more of it as profit.

What J/TH actually means

ASIC efficiency is measured in joules per terahash (J/TH). It tells you how much electrical energy the miner consumes to produce one terahash of work. A lower number means the machine does the same work while burning less electricity — which directly reduces your daily running cost.

Why it compounds over time

The difference between an efficient miner and an inefficient one isn't just cents per day — it's the difference between mining profitably and mining at a loss when prices dip or difficulty rises. Electricity is your only unavoidable ongoing cost. Lower J/TH means your operation stays profitable across a wider range of market conditions.

Newer doesn't always mean better

Newer generation ASICs are generally more efficient, but they also cost more upfront. The right choice depends on your electricity rate and how long you plan to run the hardware. A slightly older model at a low electricity cost can outperform a cutting-edge miner paying premium power rates.

Efficiency in practice — illustrative example

Miner A 21 J/TH
Hashrate200 TH/s
Power draw4,200 W
Daily electricity cost~$12.10
Miner B 38 J/TH
Hashrate200 TH/s
Power draw7,600 W
Daily electricity cost~$21.89

Same hashrate. Same revenue. Nearly $9/day difference in running cost. Over a year, that's over $3,200 in saved electricity — purely from choosing the more efficient miner.

Based on $0.12/kWh. For illustration only — open any miner page to run the full profitability calculator with your actual electricity rate.

Live network

Bitcoin Mining Difficulty

Monitor the latest Bitcoin network difficulty metrics in real time, including block times & estimated time until the next difficulty adjustment.

Progress

Current progress:

10.37 %

Remaining Block

Blocks Left:

1807

Remaining Time

Time Left:

~ 12 days 20 hours

Next Change

Upcoming change:

-2.2 %

Block Time

Current Block Time:

10.3 minutes

Network Difficulty

Current Difficulty:

125.81 T

Network Hashrate

Current Hashrate:

856.32 EH/s

These figures track two different things: the Bitcoin difficulty adjustment cycle, and the network's actual current state. Progress, Remaining Block, Remaining Time, and Next Change all describe the adjustment cycle itself. Right now the cycle is 10.37 % complete. 1807 blocks remain — roughly 12 days 20 hours. Estimated next difficulty adjustment: -2.2 %. Block Time is the current average time between mined blocks (10.3 minutes). Network Difficulty and Network Hashrate are different: they show the network's actual current values rather than progress toward a future recalculation. Bitcoin's network difficulty is currently 125.81 T, and the total network hashrate securing it is 856.32 EH/s. Higher difficulty and hashrate mean more competition for the same block reward, which directly lowers per-miner Bitcoin mining profit at any given hashrate. Our ASIC mining profit calculation factors all of this in automatically, so every profitability figure on this page already reflects current network conditions.

* Answers

Frequently Asked Questions

Everything you need to know about ASIC mining profit calculation

Choose Tensority and execute with precision, because this algorithm was built for Bytom and demands you match its purpose with disciplined hardware choices and clean power use. Exploit its ASIC focus to push efficiency, since dedicated rigs like the Antminer B7 reach about 96 kilohashes per second at roughly 528 watts, which lands near 5.5 joules per kilohash, and treat that figure as your north star because lower joules per kilohash means less waste heat and a smaller footprint. Keep FPGA options on the table for flexible deployments and rapid retuning, as Tensority’s hardware adaptability lets you balance throughput, uptime, and site constraints without surrendering efficiency. Do not guess your timing, because trend-aware tuning based on chain history can throttle or ease hashing intensity as difficulty and network activity shift, which helps you defend returns when volatility hits. Respect that Bytom’s proof of work and the broad device mix help resist centralization, so spread hash across rigs and pools to keep the network trustless. Strengthen your software stack and test on GPUs when needed, because miners have seen Bminer optimize Tensority on NVIDIA cards with version jumps delivering over 100 percent hashrate gains versus earlier builds, which is useful for benchmarking and for staging before ASIC scale-out. Calculate every watt and every share, and use our crypto miner profit calculator to project outcomes by entering hashrate, power draw, uptime, pool fee, and expected difficulty, then adjust clocks, power limits, and fan curves to hit the target joules per kilohash you require. Cut needless heat with efficient airflow, dust control, and high-efficiency power supplies, because wasted watts become noise and risk. Track block reward schedules, orphan and stale rates, and firmware updates, and roll changes during low-risk windows to protect revenue. Treat each metric like a checkpoint and do not drift, because Tensority rewards miners who measure, adapt, and reduce their impact while keeping the hash steady.

The Tensority algorithm is used by 1 cryptocurrency: Bytom. All 0 ASIC miners on this page are specifically designed to mine these Tensority coins. You can filter by specific coins to compare profitability across different Tensority cryptocurrencies. Each miner listing shows hashrate, power consumption, efficiency (J/Th or J/Gh), and daily profitability in USD for the selected coin.

Our profitability table ranks all 0 Tensority ASIC miners by daily net profit in USD. The most profitable Tensority miners balance high hashrates with low power consumption to maximize earnings from coins like Bytom after electricity costs ($0.080/kWh). Sort by profitability to see which Tensority miner generates the highest $/day return. Top performers from brands like Bitmain, Bitdeer, Canaan typically offer the best efficiency.

Efficiency for Tensority miners is measured in J/Th (joules per terahash) or J/Gh depending on hashrate scale. Lower values indicate better efficiency when mining Bytom. The most efficient Tensority ASIC miners consume less electricity per unit of hashrate, which is crucial at $0.080/kWh. Sort the 0 miners by efficiency to find models that minimize power costs while maximizing Tensority mining output. Newer generation Tensority miners typically offer 20-40% better efficiency than previous models.

We track 0 Tensority ASIC miners from 47 manufacturers including Bitmain, Bitdeer, Canaan and 44 other brands. Each brand offers different Tensority miner models optimized for mining Bytom with varying hashrates, power consumption, and efficiency ratings. Use the brand filter to compare specific manufacturers and their Tensority hardware lineup. Popular brands release updated Tensority miners annually with improved performance.

Earnings from mining Bytom depend on your miner's hashrate, power consumption, and electricity costs. At $0.080/kWh, our calculator shows daily profit in USD for all 0 Tensority miners after electricity expenses. The most profitable Tensority miners can earn $5-50/day depending on the model and current Bytom prices. Use the profitability sort to see top-earning miners. Consider network difficulty changes and coin price volatility when estimating long-term earnings.

Our Tensority profitability calculator uses real-time data for all 0 miners including current prices for Bytom, network hashrates, block rewards, and difficulty levels. Combined with your custom electricity rate ($0.080/kWh), this provides highly accurate Tensority mining profit estimates in USD. Data updates continuously to reflect market changes, network difficulty adjustments, and price fluctuations for all 1 Tensority coins.

All Tensority coins (Bytom) use the same algorithm, so any Tensority ASIC miner can switch between them. Choose which coin to mine based on current profitability in USD. Use our coin filter to compare daily earnings for each Tensority cryptocurrency at your electricity rate ($0.080/kWh). Most profitable coin can change daily based on price movements and network difficulty, so miners often switch between Bytom to maximize returns.

Tensority ASIC miner ROI depends on hardware cost, daily profit from mining Bytom, and electricity rates. Our calculator shows daily net earnings in USD for all 0 Tensority miners after power costs ($0.080/kWh). Divide hardware price by daily profit to estimate payback period. Top-performing Tensority miners from Bitmain, Bitdeer, Canaan typically achieve ROI in 6-18 months depending on Bytom prices and network difficulty changes.

Check our Latest ASIC Miners section for the newest Tensority hardware capable of mining Bytom. Recent additions feature updated specifications, improved efficiency (J/Th), higher hashrates, and profitability calculations in USD. New Tensority miners from manufacturers like Bitmain, Bitdeer, Canaan are added as soon as they're released. Latest models typically offer 20-40% better performance for mining Bytom compared to previous generation Tensority hardware. Each listing includes complete specs, power consumption, and real-time profit estimates at your electricity rate ($0.080/kWh). Tensority marks a stark, forward-leaning chapter in cryptocurrency mining, binding tensor-centric computation with AI-guided optimization so miners can endure shifting markets where caution becomes cr...

To calculate the profitability of your ASIC miner, select your hardware from our list of 0 tracked miners and enter your electricity cost per kWh (default rate shown is $0.08/kWh, adjustable to your actual rate). Our ASIC mining profit calculation automatically factors in live coin prices, network difficulty, and block rewards to show your daily, monthly, and yearly net profit in USD. This ASIC miner profit calculation updates in real time as network conditions change.

By default, our ASIC miner profit calculation assumes an electricity cost of $0.08/kWh as a common baseline rate. You can override this with your own electricity cost, accurate to 3 decimal places, and every profitability figure across all 0 miners on this page recalculates instantly to reflect your true ASIC mining profit at your actual rate.

A healthy ASIC mining profit margin depends on hardware cost, electricity rate, and coin price volatility, but miners generally look for a payback period under 12-18 months. Use our profitability table, sorted by daily net profit in USD, to compare margins across 0 ASIC miners at your electricity cost.

Yes. Filter the table by coin to see how the same ASIC miner's profit calculation changes depending on which cryptocurrency it mines. This is especially useful for multi-algorithm hardware, letting you directly compare ASIC mining profit across 1 supported coins at your electricity rate.

Our ASIC mining profit calculation multiplies your miner's hashrate by current network reward rates for each supported coin, converts that to USD using live prices, then subtracts your electricity cost (power consumption in watts x your rate per kWh x 24 hours). The result is your true daily ASIC miner profit calculation, which we also project into monthly and yearly estimates across all 0 tracked miners.
BTC $78,216.09 ↗1.04%
ALPH $0.033350 ↘6.08%
KAS $0.028900 ↘0.79%
ETC $7.82 ↘1.03%
LTC $52.90 ↗0.16%
DOGE $0.092050 ↘1.27%
RXD $0.000032 ↘8.33%
BCH $273.12 ↘0.54%
CKB $0.000986 ↘0.7%
HNS $0.002535 ↗0.45%
KDA $0.004838 ↘0.8%
SC $0.000663 ↘2.28%
ALEO $0.038140 ↗1.02%
FB $0.335300 ↘0.44%
XMR $422.93 ↘0.69%
SCP $0.025420 ↘2.2%
BELLS $0.115700 ↘0.97%
XTM $0.000340 ↘5.8%
ZEC $843.15 ↘1.47%
BTC $78,216.09 ↗1.04%
ALPH $0.033350 ↘6.08%
KAS $0.028900 ↘0.79%
ETC $7.82 ↘1.03%
LTC $52.90 ↗0.16%
DOGE $0.092050 ↘1.27%
RXD $0.000032 ↘8.33%
BCH $273.12 ↘0.54%
CKB $0.000986 ↘0.7%
HNS $0.002535 ↗0.45%
KDA $0.004838 ↘0.8%
SC $0.000663 ↘2.28%
ALEO $0.038140 ↗1.02%
FB $0.335300 ↘0.44%
XMR $422.93 ↘0.69%
SCP $0.025420 ↘2.2%
BELLS $0.115700 ↘0.97%
XTM $0.000340 ↘5.8%
ZEC $843.15 ↘1.47%
BTC $78,216.09 ↗1.04%
ALPH $0.033350 ↘6.08%
KAS $0.028900 ↘0.79%
ETC $7.82 ↘1.03%
LTC $52.90 ↗0.16%
DOGE $0.092050 ↘1.27%
RXD $0.000032 ↘8.33%
BCH $273.12 ↘0.54%
CKB $0.000986 ↘0.7%
HNS $0.002535 ↗0.45%
KDA $0.004838 ↘0.8%
SC $0.000663 ↘2.28%
ALEO $0.038140 ↗1.02%
FB $0.335300 ↘0.44%
XMR $422.93 ↘0.69%
SCP $0.025420 ↘2.2%
BELLS $0.115700 ↘0.97%
XTM $0.000340 ↘5.8%
ZEC $843.15 ↘1.47%