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iPollo V1 Mini SE Plus Profitability
Calculate the value of your V1 Mini SE Plus with our easy to use ASIC miner calculator!
Information
iPollo V1 Mini SE Plus, with 400Mh/s for EtHash at just 232W, stands out for its energy efficiency and low noise level of 45db, ideal for small-scale miners.
Search for the V1 Mini SE Plus on millionminer (click here).
⛏️ Income ⛏️ |
||
DAY | MONTH | YEAR |
$0.49 | $14.77 | $179.75 |
⚡ Electricity Costs ⚡ |
||
DAY | MONTH | YEAR |
$0.45 | $13.36 | $162.59 |
💰 Profit 💰 |
||
DAY | MONTH | YEAR |
$0.05 | $1.41 | $17.17 |
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Information
The iPollo V1 Mini SE Plus is currently mining $0.05 profit a day. The calculations is based on $0.49 income per day from which we deducted $0.45 electricity costs. This means the V1 Mini SE Plus is able to generate up to $14.77 income per month. After you would deduct the electricity price of $13.36 you will have an estimated profit of $1.41 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 $94211 you would earn estimated $0.29 per day.
More Information
The iPollo V1 Mini SE Plus is equipped with advanced cooling systems that maximize its performance while maintaining low noise levels, including fan optimizations and heat sinks designed for prolonged operation. Its firmware includes an auto-tuning feature that adjusts hashing rates to maintain optimal performance under varying conditions. Built with high-quality, durable components specifically for EtHash algorithms, it has a user-friendly interface accessible via both web-based and mobile apps. Furthermore, this model supports secure boot to prevent unauthorized firmware modifications and offers remote management capabilities, making it highly versatile for small-scale or at-home miners looking for secure, dependable operations.
Algorithm Information: etchash
Ethash, serving as a proof-of-work algorithm, is crucial in preserving the stability and credibility of many blockchains like ETC. Decentralized mining that can be carried out using standard computer hardware, as enabled by Ethash, ensures that the network is not controlled by a few huge mining entities. One of Ethash's defining design features is its memory-intensive nature, making it challenging for attackers to perform a 51% attack, where they attempt to manipulate transactions by dominating the majority of the network's computing power. Ethash's need for a substantial amount of memory to carry out mining operations makes it challenging for attackers to acquire the resources necessary to launch such an attack.