2GH/s

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Aleo

3400W

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Electricity Cost



Realtime Data

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Last Update: 20:12
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IceRiver AE3 (2GH) Profitability

Calculate the value of your AE3 (2GH) with our easy to use ASIC miner calculator!

Information

The IceRiver AE3 brings next-generation mining to ALEO with 2GH/s of pure zkSNARK processing power. Consuming just 3400W, it achieves an impressive efficiency of 1.7J/MH, setting new standards in power-to-performance ratios. Crafted for professional operations, its stable build and optimized airflow design allow continuous performance under demanding conditions.

Search for the AE3 (2GH) on millionminer (click here).




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⛏️ Income ⛏️

DAY MONTH YEAR
$15.80 $474.00 $5,767.00

⚡ Electricity Costs ⚡

DAY MONTH YEAR
$6.53 $195.84 $2,382.72

💰 Profit 💰

DAY MONTH YEAR
$9.27 $278.16 $3,384.28


Information

The IceRiver AE3 (2GH) is currently mining $9.27 profit a day. The calculations is based on $15.80 income per day from which we deducted $6.53 electricity costs. This means the AE3 (2GH) is able to generate up to $474.00 income per month. After you would deduct the electricity price of $195.84 you will have an estimated profit of $278.16 per month.

Hint: With our Hosting Plans you will only pay around 0.08 USD per kWh.



If the BTC price reaches $138294 you would earn estimated $17.17 per day.



More Information

Ideal for large-scale mining or high-efficiency hosting, the AE3’s intelligent architecture ensures long-term durability and profitability. With a simple Ethernet setup and robust design, it’s ready for nonstop ALEO production. Built by IceRiver, the AE3 stands as a symbol of innovation, reliability, and competitive advantage in modern zkSNARK mining.



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.