

Hashrate 49TH/s
Power 5400W
The Bitfily Snow Panther A1 delivers 49TH/s at 5400W, making it a powerful yet energy-intensive choice for SHA-256 mining. Designed for industrial-scale operations, it requires a stable power supply to ensure consistent performance. Its efficiency of 110J/TH ranks it among older but still viable miners for Bitcoin extraction. With our crypto miner profit calculator, you can accurately estimate daily, monthly, and yearly profits while factoring in electricity costs at different rates and currencies to determine the miner’s true profitability.
Information
Profit Information
The Bitfily Snow Panther A1 Snow Leopard A1 is currently mining $-7.56 profit a day. The calculations is based on $2.81 income per day from which we deducted $10.37 electricity costs. This means the Snow Panther A1 is able to generate up to $84.37 income per month. After you would deduct the electricity price of $311.04 you will have an estimated profit of $-226.67 per month.
Hint: With our Hosting Plans you will only pay around 0.08 USD per kWh.
If the BTC price reaches $158999 you would earn estimated $-6.15 per day.
Profit Information
The Bitfily Snow Panther A1 Snow Leopard A1 is currently mining $-7.56 profit a day. The calculations is based on $2.81 income per day from which we deducted $10.37 electricity costs. This means the Snow Panther A1 is able to generate up to $84.37 income per month. After you would deduct the electricity price of $311.04 you will have an estimated profit of $-226.67 per month.
Hint: With our Hosting Plans you will only pay around 0.08 USD per kWh.
If the BTC price reaches $158999 you would earn estimated $-6.15 per day.
Profit Widget
Use our profit widget on your website to showcase the real-time profitability data of this ASIC miner.
SHA256 Miner Generations
Mineable Coins
COIN | HASHRATE | POWER | EFFICIENCY | INCOME/DAY | PROFIT/DAY |
---|---|---|---|---|---|
Nicehash
SHA-256
|
49TH/s
|
5400W
|
110.20 J/TH
|
2.81
$
0.00002653
![]() |
-7.56
$
-0.00007128
![]() |
Bitcoin
SHA-256
|
49TH/s
|
5400W
|
110.20 J/TH
|
2.85
$
0.00002668
![]() |
-7.52
$
-0.00007043
![]() |
Bitcoin Cash
SHA-256
|
49TH/s
|
5400W
|
110.20 J/TH
|
2.92
$
0.00564925
![]() |
-7.45
$
-0.01442393
![]() |
Fractal Bitcoin
SHA-256
|
49TH/s
|
5400W
|
110.20 J/TH
|
2.64
$
5.71
![]() |
-7.72
$
-16.69005860
![]() |
Currency Converter

Rate is for reference only. Updated just now.
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More Information
The Bitfily Snow Panther A1 employs custom-designed ASIC chips to optimize SHA-256 computations, enhancing power efficiency despite its high energy consumption. Its cooling system consists of high-speed dual fans and an advanced heat dissipation structure, ensuring stable performance in industrial mining farms. The miner operates with an efficiency of approximately 110J/TH, placing it among power-hungry yet effective units of its time. Unlike mainstream competitors, Bitfily’s firmware focuses on stability over extensive overclocking options, reducing failure rates. Additionally, its PSU requirements demand robust electrical infrastructure, making it best suited for large-scale deployments rather than home or small-scale mining setups.
Algorithm Information: SHA-256
SHA256, part of the SHA-2 (Secure Hash Algorithm 2) family, is one of the most widely used cryptographic hash functions due to its strong security features. Its collision-resistance ensures that finding two different inputs that generate the same hash is computationally infeasible, making it an essential component for maintaining the integrity of data in cryptographic applications, particularly in blockchain technology. In Bitcoin mining, SHA256 serves as the proof-of-work (PoW) mechanism, where miners must solve complex cryptographic puzzles to validate new transactions and add blocks to the blockchain. This process involves miners repeatedly hashing block data with SHA256, modifying inputs until they find a hash that meets the required difficulty level, securing the network against attacks and preventing double-spending. The competitive nature of SHA256-based mining ensures that no single entity can easily control the network, contributing to Bitcoin's decentralized structure. Given its robust security and widespread adoption in the cryptocurrency space, SHA256 plays a crucial role in protecting the integrity of Bitcoin and other blockchain networks that employ it. Although SHA256 requires significant computational power, particularly with the rise of specialized ASIC miners, it remains an essential mechanism for ensuring the security and stability of cryptocurrencies. For miners, the use of SHA256 allows them to contribute to the network’s operation while being incentivized with block rewards. Miners can assess their profitability through our crypto miner profit calculator for SHA256, helping them optimize mining hardware and energy usage for maximum returns. Ultimately, SHA256’s reliability, security, and fundamental role in cryptocurrency mining make it a cornerstone of blockchain technology and a critical factor in digital currency systems.
Frequently Asked Questions



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