44MH/s

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Aleo

460W

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Electricity Cost


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Goldshell AE-BOX Pro (44MH) Profitability

Calculate the value of your AE-BOX Pro (44MH) with our easy to use ASIC miner calculator!

Information

Maximize your mining potential with the Goldshell AE-BOX Pro—a 44MH/s hashrate miner designed for performance and efficiency. With just 460W of power consumption, it strikes the perfect balance between energy use and output. The 35dB noise level makes it a great option for residential mining environments where noise is a concern. Featuring Ethernet and WiFi connectivity, this miner offers the flexibility to connect in any environment, whether at home or in a data center. The Goldshell AE-BOX Pro delivers powerful zkSNARK (ALEO) mining while keeping your energy consumption low and noise levels to a minimum.

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⛏️ Income ⛏️

DAY MONTH YEAR
$15.22 $456.55 $5,554.66

⚡ Electricity Costs ⚡

DAY MONTH YEAR
$0.88 $26.50 $322.37

💰 Profit 💰

DAY MONTH YEAR
$14.34 $430.05 $5,232.30

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Information

The Goldshell AE-BOX Pro (44MH) is currently mining $14.34 profit a day. The calculations is based on $15.22 income per day from which we deducted $0.88 electricity costs. This means the AE-BOX Pro (44MH) is able to generate up to $456.55 income per month. After you would deduct the electricity price of $26.50 you will have an estimated profit of $430.05 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 $125021 you would earn estimated $21.94 per day.



More Information

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.