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Goldshell Mini-DOGE II MINI DOGE 2 Profitability
Calculate the value of your Mini-DOGE II MINI DOGE 2 with our easy to use ASIC miner calculator!
Information
Goldshell Mini-DOGE II, designed for LTC and DOGE mining, delivers 420Mh/s at 400W. Its balance between efficiency and a noise level of 35db makes it an attractive option for diverse mining environments.
Search for the Mini-DOGE II MINI DOGE 2 on millionminer (click here).
⛏️ Income ⛏️ |
||
DAY | MONTH | YEAR |
$1.56 | $46.71 | $568.27 |
⚡ Electricity Costs ⚡ |
||
DAY | MONTH | YEAR |
$0.77 | $23.04 | $280.32 |
💰 Profit 💰 |
||
DAY | MONTH | YEAR |
$0.79 | $23.67 | $287.95 |
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Information
The Goldshell Mini-DOGE II MINI DOGE 2 is currently mining $0.79 profit a day. The calculations is based on $1.56 income per day from which we deducted $0.77 electricity costs. This means the Mini-DOGE II MINI DOGE 2 is able to generate up to $46.71 income per month. After you would deduct the electricity price of $23.04 you will have an estimated profit of $23.67 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 $144980 you would earn estimated $1.57 per day.
More Information
The Goldshell Mini-DOGE II utilizes a custom-designed ASIC chip optimized specifically for Scrypt algorithm mining, drastically improving power efficiency compared to general-purpose GPUs. Unlike previous iterations, the Mini-DOGE II features advanced thermal management technology, including a refined heat sink and optimized airflow design to maintain optimal operating temperatures under extended workloads. The device also supports remote monitoring and control via the Goldshell Management Software, which offers real-time performance metrics, remote reboot capabilities, and integration with popular mining pools. Additionally, it has undergone rigorous factory testing to ensure stable performance across different geographic and environmental conditions, ensuring heightened reliability for long-term operation.
Algorithm Information: Scrypt
Scrypt is a password-based key derivation function that was originally designed to be computationally intensive and memory-hard, making it more resistant to brute-force attacks compared to other algorithms such as SHA-256. The algorithm was first used as the proof-of-work in the cryptocurrency Litecoin and later in several other altcoins. It is also used in some password storage systems to prevent hackers from using massive amounts of computing power to guess passwords by cracking hashes. The algorithm was first used as the proof-of-work in the cryptocurrency Litecoin, and later in several other altcoins. It is also used in some password storage systems to prevent hackers from using massive amounts of computing power to guess passwords by cracking hashes. Scrypt requires a larger amount of memory compared to other algorithms, which makes it more difficult to implement on specialized hardware (ASICs) specifically designed for cryptocurrency mining.