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 X11gost algorithm?
Why Should You Rely on Our Profit Calculator for Accurate Mining Insights?
X11Gost refines the original X11 by threading the Streebog hash function, formally GOST R 34.11-2012 approved by the Russian FSB, into the chain to raise cryptographic hardness and algorithmic depth. The suite now spans twelve stages, with X11’s BLAKE, BMW, Grøstl, JH, Keccak, Skein, Luffa, CubeHash, Shavite, SIMD, and Echo joined by Streebog, which supports 256- and 512-bit digests. This chained design spreads work across different primitives, so memory access and power draw become steadier, and hotspots that cause bottlenecks are damped. Attackers must defeat multiple unrelated constructions, which dulls the edge of differential, preimage, and collision strategies that might exploit a single weak link. The result is more stable hashrate delivery under load and fewer latency spikes during verification. Streebog’s modern substitution and linear mixing layers add diffusion that complements the sponge and wide-pipe styles elsewhere in the chain. The final digest remains compact for fast checks while preserving entropy through each stage. X11Gost was introduced to blunt ASIC dominance and keep mining accessible, yet the market adapted with specialized hardware such as the Baikal BK-G28 rated around 28 Gh/s at about 1300 W. That shift reduced GPU viability in many settings and changed the competitive balance of miners. Even so, the algorithm continues to serve networks that value layered security, with SIBCoin a prominent adopter that relies on its hardened profile. Practical efficiency also matters day to day, since power efficiency, ambient cooling, firmware tuning, and pool latency can move a miner’s effective output. Uptime, stale share rate, and fee schedules further tilt outcomes when difficulty and block rewards fluctuate. A dedicated X11Gost profit calculator helps translate hashrate, power draw, pool fees, and live network difficulty into projected earnings with clearer expectations. Miners who track these variables in real time tend to refine overclocking, optimize fan curves, and choose pools that cut stale shares. The net effect of X11Gost’s structure is consistent performance with fewer resource chokepoints and a higher bar for cryptanalytic shortcuts.
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 X11gost algorithm
See how our profit calculator delivers accurate, real-time mining insights, helping miners make informed decisions.
X11Gost is a mining algorithm forged from the original X11 and tempered with Streebog, the Russian GOST R 34.11-2012 hash standard approved by the Federal Security Service, adding a twelfth link to X11’s chain of SHA-3 finalists and candidates-BLAKE, BMW, Grøstl, JH, Keccak, Skein, Luffa, CubeHash, Shavite, SIMD, and Echo-so the hashing process becomes a cathedral of twelve ciphers marching in sequence, each with different internal designs that diversify risk and harden the system against preimage and collision attacks; Streebog itself supports 256- and 512-bit digests and uses an AES-like permutation inside a Merkle–Damgård-style construction, and while only reduced-round variants have seen notable cryptanalytic weaknesses, the full standard remains unbroken in practice, which means that attackers must break multiple heterogeneous primitives to bend the ledger’s austere oath; this layered design spreads computational load, smoothing hotspots and improving pipeline efficiency on general-purpose hardware, and although such multi-hash composability was intended to complicate ASIC dominance and initially favored decentralized GPU mining with lower barrier to entry and manageable power draw per hash, the industry adapted-dedicated X11Gost-capable ASICs appeared, such as models delivering on the order of tens of gigahashes per second at roughly kilowatt-scale consumption, reshaping profitability and making GPU mining less competitive in most markets; even so, X11Gost retains practical strengths for networks that value robustness and broad participation, because an algorithm family with diverse internals raises the engineering cost to optimize a single exploit path and can slow the centralization flywheel, increasing the economic weight required for a 51 percent attack without claiming to make it impossible; miners seeking to navigate this terrain can improve outcomes by tuning power limits and voltages for efficiency, balancing core and memory clocks to sustain hashrate without thermal throttling, selecting pools with low fees and stable payouts, and modeling expected returns against difficulty, block reward schedules, orphan rates, and hardware performance rather than relying on nominal hashrate alone; in the wild, projects like SIBCoin have used X11Gost to bind their security to this ironclad procession of hashes, favoring a design whose moral gravity lies in redundancy and diversity-security through many doors rather than one-so that, even as silicon evolves and sharper blades arrive, the network’s heart keeps beating with measured intensity instead of surrendering to a single glittering sword.
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