Asic Miner Profitability
Our mining profitability calculator helps users quickly pinpoint the most lucrative mining options by delivering real-time data in multiple fiat and cryptocurrency currencies, including USD, EUR, GBP, AED, CAD, AUD, THB, ETH, and BTC. It allows precise electricity cost inputs up to three decimal places for highly accurate profit estimations. Users can access a clear overview of top-performing miners, algorithm-specific performance tables, and visually organized listings of mineable coins with recognizable cryptocurrency icons, simplifying decisions for maximum returns.
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Profitability
Profit
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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.
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:
61.51 %
Remaining Block
Blocks Left:
776
Remaining Time
Time Left:
~ 5 days 1 hours
Next Change
Upcoming change:
6.9 %
Block Time
Current Block Time:
9.4 minutes
What is X13 algorithm?
Why Should You Rely on Our Profit Calculator for Accurate Mining Insights?
X13 steadies a network’s pulse by using a calibrated difficulty retarget that responds smoothly to hash rate swings, which keeps block times closer to target and helps preserve fair reward distribution across epochs; the algorithm chains 13 distinct hash functions in a fixed order-BLAKE, BMW, Groestl, JH, Keccak, Skein, Luffa, CubeHash, SHAvite, SIMD, Echo, HAMSI, and FUGUE-so a weakness in one stage meets twelve further gates that constrain propagation and reduce exploit impact; this diversity increases the engineering cost of single‑purpose chips and keeps GPU miners competitive, which pushes the system toward broader participation and lowers the risk of hash power capture by a few actors; coins such as Bitcoin Diamond, early NavCoin phases, and DeepOnion have deployed X13 to leverage this balance of security and accessibility, while related families like X15 and X17 show how the design can expand by adding new functions when threat models change; the difficulty logic dampens pool‑hopping effects and sudden hardware influxes, which narrows confirmation time variance and improves transaction predictability under normal load; the ordered multi‑stage pipeline spreads work across different arithmetic patterns, which reduces single‑function bottlenecks and helps nodes validate blocks consistently; Earth’s power grids hum and the cadence holds as blocks arrive in a more regular rhythm, which strengthens network liveness and keeps participants aligned; in practice this scheme does not claim absolute ASIC immunity, yet it raises the threshold for profitable specialization and buys time for governance to react; the result is an integrity layer that resists single points of failure, supports decentralized mining, and remains adaptable as cryptography and hardware evolve.
Latest ASIC Miners
Check out the latest ASIC miners added to our site. These are the newest listings, featuring the most recent models.
V3
Nerdminer
AE3
IceRiver
Antminer L11 Hyd 2U
Bitmain
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
Energy Efficient
Reliable & Stable
Scalable
More about the X13 algorithm
See how our profit calculator delivers accurate, real-time mining insights, helping miners make informed decisions.
X13 is a proof-of-work algorithm that arranges 13 cryptographic hash functions-BLAKE, BMW (Blue Midnight Wish), Groestl, JH, Keccak (standardized as SHA-3), Skein, Luffa, CubeHash, SHAvite (often SHAvite-3), SIMD, ECHO, HAMSI, and FUGUE-into a sequential pipeline, creating a layered defense in which the output of one function becomes the input of the next, so even if a single primitive is weakened the overall chain retains strong preimage and collision resistance; this methodical composition, like a mirror held up to adversarial ingenuity, distributes the computational load across diverse algorithmic structures and instruction paths, minimizing bottlenecks and enabling GPUs to achieve favorable throughput per watt via parallel execution and a modest memory footprint compared with memory-hard schemes, while its increased complexity relative to X11 was designed to hinder specialization and slow ASIC dominance, supporting a more decentralized hashpower distribution that raises the economic threshold for majority-control attacks by dispersing mining capability among general-purpose hardware; by employing candidates and finalists from the SHA-3 competition, X13 draws on independently scrutinized primitives whose differing internal designs reduce correlated failure modes, and its modularity makes it adaptable-developers can expand or replace stages (as seen in successors like X15 and X17) through software and consensus updates without wholesale changes to mining infrastructure, enabling agile responses to cryptanalytic advances or hardware shifts; in practice this translates to resilient network security and improved mining efficiency, with the pipeline’s balanced workload helping avoid single-function chokepoints and its deterministic sequencing simplifying verification for full nodes, while its decentralization properties mitigate, though never fully eliminate, the risk of 51% attacks by broadening participation across commodity GPUs; cryptocurrencies such as Bitcoin Diamond, NavCoin, and DeepOnion have leveraged these traits, and miners evaluating X13 commonly consider variables like hashrate, power draw, thermal headroom, pool fees, network difficulty, block rewards, and market volatility to tune profitability, noting that X13’s efficiency can reduce hardware barriers for individual miners even as large-scale operators benefit from stable, predictable pipelines; overall, by combining cryptographic diversity, performance balance, and evolutionary headroom, X13 establishes a durable foundation for decentralized networks that can adapt to emerging threats while maintaining high integrity and practical accessibility.
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