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Goldshell AE-BOX (37MH) Profitability
Calculate the value of your AE-BOX (37MH) with our easy to use ASIC miner calculator!
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The Goldshell AE-BOX combines power, efficiency, and low noise to create the ultimate mining solution. With a 37MH/s hashrate and only 360W of power consumption, it ensures your mining efforts are maximized while minimizing electricity usage. Running at just 35dB, it offers silent operation, making it perfect for home mining environments. The unit’s Ethernet and WiFi connectivity ensure that you stay connected with minimal disruption, while its compact size (198mm x 150mm x 95mm) makes installation a breeze. For efficient zkSNARK (ALEO) mining without excess energy consumption, the Goldshell AE-BOX is the ideal choice.
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⛏️ Income ⛏️ |
||
DAY | MONTH | YEAR |
$12.46 | $373.71 | $4,546.82 |
⚡ Electricity Costs ⚡ |
||
DAY | MONTH | YEAR |
$0.69 | $20.74 | $252.29 |
💰 Profit 💰 |
||
DAY | MONTH | YEAR |
$11.77 | $352.98 | $4,294.53 |
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The Goldshell AE-BOX (37MH) is currently mining $11.77 profit a day. The calculations is based on $12.46 income per day from which we deducted $0.69 electricity costs. This means the AE-BOX (37MH) is able to generate up to $373.71 income per month. After you would deduct the electricity price of $20.74 you will have an estimated profit of $352.98 per month.
Hint: With our Hosting Plans you will only pay around 0.08 USD per kWh.
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If the BTC price reaches $124985 you would earn estimated $17.99 per day.
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Selecting the right algorithm can be a difficult task. Learn more about all available mineable algos in our app, and we will help you choose the right hardware for your mining operation.
Algorithm Information: zkSNARK
zkSNARK (Zero-Knowledge Succinct Non-Interactive Argument of Knowledge) is an advanced cryptographic proof system that allows data verification without exposing underlying information. This makes it essential for privacy-focused blockchain applications like Aleo, ensuring secure, confidential transactions. The algorithm relies on complex elliptic curve computations, demanding high-performance mining setups optimized for cryptographic workloads. Miners employ GPU and ASIC acceleration to enhance proof generation efficiency, reducing the time needed to compute and verify transactions. FPGA-based implementations also improve energy efficiency, enabling scalable zkSNARK mining. As adoption grows, further optimizations focus on parallelizing proof generation while minimizing memory bottlenecks.