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Crypto Mining Specifications
Physically, crypto mining farms are rooms with a large number of computers and servers that take on tasks for mining for crypto coins. There are also home-crypto mining farms. They differ from ordinary PCs, by being specially assembled and designed for mining. Home farms can bring profitability, but users often face the problem of excessive electricity consumption and overheating of the computer at home which makes mining unprofitable. One of the main resources into which a miner has to invest is electricity. It is also a risk factor, since the mining farm requires a permanent 24/7 power source. In addition, a large number of processors require an appropriate cooling and ventilation system.
Blockchain is a cryptographically secured, time-stamped, public and distributed database of every bitcoin transaction that has ever occurred on the network. "Distributed" here means that the information in the blockchain is broadcast to and recorded by every node in the network. There is no one central database. Any user can refer to this list of transactions and check exactly what how many bitcoins have ever belonged to any specific address at any point in time. This way the system is transparent, double-spending is prevented, and there is no need for a trusted central authority.
Note: The hashtag (#) symbol on a cell title indicates additional information is available, access it by clicking on the hashtag.
Farm Parameters
# of Generators | # of Antboxs/Gen | # of Aux Tfr/Gen | # of StpDn Tfr/Gen | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Parameters Summary
# of Generators | # of Antboxs/Gen | # of Aux Transfs/Gen | # of StepDown Transfs/Gen | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Farm Table Summary
Generator Set Summary | |||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Mechanical HP | Output Voltage | Running Output Power (kW) | Peak Output Power (kW) | Power Factor | Eff.% | kVARS | kVA | Running Amps | Peak Amps | Peak kVA | Main Breaker |
Aux Transformer | |||||||||
---|---|---|---|---|---|---|---|---|---|
Input Voltage | Output Voltage | Output Power per Antbox(kW) | Power Factor | Eff.% | kWatts per Antbox | kVARS | kVA | Running Amps | Main Breaker |
Antbox Summary | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|
Input Voltage | # of Miners per Antbox | Power per Miner (kw) | Power Factor | Single Ph. Aux. Power (kw) | 3 Ph. Aux. Power (kw) | Total kW per Antbox | kVARS | kVA | Running Amps | Main Breaker |
416 |
Step Down Transformer | ||||||||
---|---|---|---|---|---|---|---|---|
Input Voltage | Output Voltage | Output Power (kW) | Power Factor | Eff.% | kVARS | kVA | Running Amps | Main Breaker |
Generator Specifications
Physically, Crypto Mining Farms are rooms with a large number of computers and servers that take on tasks for mining.There are also home-crypto mining farms. They differ from ordinary PCs, by being specially assempled and designed for mining. Home farms can bring profitability, but users often face the problem of excessive electricity consumption and overheating of the computer at home which makes mining unprofitable. One of the main resources into which a miner has to invest is electricity. It is also a risk factor, since the mining farm requires a permanent 24/7 power source. In addition, a large number of processors require an appropriate cooling and ventilation system.
Blockchain is a cryptographically secured, time-stamped, public and distributed database of every bitcoin transaction that has ever occurred on the network. "Distributed" here means that the information in the blockchain is broadcast to and recorded by every node in the network. There is no one central database. Any user can refer to this list of transactions and check exactly what how many bitcoins have ever belonged to any specific address at any point in time. This way the system is transparent, double-spending is prevented, and there is no need for a trusted central authority.
Note: The hashtag (#) symbol on a cell title indicates additional information is available, access it by clicking on the hashtag.
Generator Selection Table
Input Type | Input Unit | Output |
---|---|---|
Mechanical HP (#) | ||
Output Voltage (#) | ||
Running Output Power (kW) (#) | ||
Peak Output Power (kW) (#) | ||
Power Factor (#) | ||
Efficiency (#) |
Generator Calculation Table
Input Unit | Output |
---|---|
kVARS (#) | |
kVA (#) | |
Running Amps (#) | |
Peak Amps (#) | |
Peak kVA (#) |
Generator Circuit Protection
Circuit Breaker | Size | Main Breaker |
---|
Auxiliary Transformers Specifications
Auxiliary Transformer is nothing but a step down transformer, which is connected parallel to the generator before the generator circuit breaker. Unit Auxiliary Transformer Is used to deliver the power to the motor, fans, pumps, lightings etc.
Note: The hashtag (#) symbol on a cell title indicates additional information is available, access it by clicking on the hashtag.
Aux Transformer Table
Input Type | Input Unit | Output |
---|---|---|
Input Voltage (#) | ||
Output Voltage (#) | ||
Output Power per AntBox (kW) (#) | ||
Power Factor (#) | ||
Efficiency (#) |
Aux Tfr Calculation Table
Input Unit | Output |
---|---|
kWatts per Antbox (#) | |
kVARS (#) | |
kVA (#) | |
Running Amps (#) |
Aux Tfr Circuit Protection
Circuit Breaker | Size | Main Breaker |
---|
Antbox Specifications
An Antbox is an independent mining farm that reduces the lengthy cycle of constructing data facilities. It is easily deployable and can be moved at any time to any place, making it advantageous for large scale deployment.
The AntBox assembly design structure supports stacking three stackable layers and six arrays, which optimizes mining operations. It features an eco-friendly and energy-saving design structure, heat dissipation technology, and advanced safety measure protocols.
Note: The hashtag (#) symbol on a cell title indicates additional information is available, access it by clicking on the hashtag.
Antbox Selection Table
Input Type | Input Unit | Output |
---|---|---|
Voltage (#) | 416 | |
# of Mines per Antbox (#) | ||
Power per Miner (kw) (#) | ||
Power Factor (#) | ||
Single Phase Aux. Power (kw) (#) | ||
Three Phase Aux. Power (#) |
Antbox Calculation Table
Input Unit | Output |
---|---|
Total Power per Antbox (kw) (#) | |
kVARS (#) | |
kVA (#) | |
Running Amps (#) |
Generator Circuit Protection
Circuit Breaker | Size | Main Breaker |
---|
Step Down Transformers Specifications
Auxiliary Transformer is nothing but a step down transformer, which is connected parallel to the generator before the generator circuit breaker. Unit Auxiliary Transformer Is used to deliver the power to the motor, fans, pumps, lightings etc.
Note: The hashtag (#) symbol on a cell title indicates additional information is available, access it by clicking on the hashtag.
Stepdown Tfr Selection Table
Input Type | Input Unit | Output |
---|---|---|
Input Voltage (#) | ||
Output Voltage (#) | ||
Output Power (kW) (#) | ||
Power Factor (#) | ||
Efficiency (#) |
Stepdown Tfr Calculation Table
Input Unit | Output |
---|---|
kVARS (#) | |
kVA (#) | |
Running Amps (#) |
Stepdowm Tfr Circuit Protection
Circuit Breaker | Size | Main Breaker |
---|
Generator Power Cables
Cable Type | Cable Size | FLA | Voltage | Cable Length |
---|
Cable Schedule
Input Type | Input Unit | Output | Wire Material |
---|---|---|
Cable Type | ||
Factor | ||
Cable Voltage Rating | ||
Insulation Rating | ||
Cable Length |
Cable Calc. Tables
Input Unit | Output |
---|---|
Runs Per | Phase |
Ohms/Ft | |
Circular Mils | |
Full Load Amps | |
Length (Ft) | |
Voltage Drop (#) | |
End of Run Volts | |
% of Drop | |
Allowable Volt Drop | |
Ambient Temperature | 30 |
Calculated Cable Size
Input Unit | Output |
---|---|
Cable Size | |
Cable Description |
Manual Choose Cable
Input Unit | Output |
---|---|
Cable Insulation
Input Type | Input Unit | Output |
---|---|---|
Cable Insulation Type (CEC Table 19) (#) | ||
Cable Insulation Materials (#) | ||
Cable Jacket (#) |
Aux. Transformer Power Cables
Primary Cable Information
From Generator Power Cable Calculator
Input Type | Input Unit | Output |
---|
Cable Schedule
Input Type | Input Unit | Output | Wire Material |
---|---|---|
Cable Type | ||
Derating Factor (#) | ||
Cable Voltage Rating | ||
Insulation Rating | ||
Cable Length |
Cable Calc. Tables
Input Unit | Output |
---|---|
Runs Per | |
Ohms/Ft | |
Circular Mils | |
Full Load Amps | |
Length (Ft) | |
Voltage Drop (#) | |
End of Run Volts | |
% of Drop | |
Allowable Volt Drop | |
Ambient Temperature | 30 |
Calculated Cable Size
Input Unit | Output |
---|---|
Cable Size | |
Cable Description |
Equipment/Cable Selection
Cable Application (#) | Cable Designation (#) | Cable Insulation (#) | Cable Jacket (#) |
---|---|---|---|
Power Cable ID
Prefix - Project ID | Equipment - ID | Cable Number | |||
---|---|---|---|---|---|
Prefix # | Transformer ID # | Cable # |
Manual Choose Cable
Input Unit | Output |
---|---|
Antbox Power Cables
Primary Cable Information
From Aux. Transformer Cable Calculator
Input Type | Input Unit | Output |
---|
Step-Down Transformer Power Cables
Primary Cable Information
From Aux. Transformer Cable Calculator
Input Type | Input Unit | Output |
---|
Cable Schedule
Input Type | Input Unit | Output | Wire Material |
---|---|---|
Cable Type | ||
Factor (#) | ||
Cable Voltage Rating | ||
Insulation Rating | ||
Cable Length |
Cable Calc. Tables
Input Unit | Output |
---|---|
Runs Per | |
Ohms/Ft | |
Circular Mils | |
Full Load Amps | |
Length (Ft) | |
Voltage Drop (#) | |
End of Run Volts | |
% of Drop | |
Allowable Volt Drop | |
Ambient Temperature | 30 |
Calculated Cable Size
Input Unit | Output |
---|---|
Cable Size | |
Cable Description |
Equipment/Cable Selection
Cable Application (#) | Cable Designation (#) | Cable Insulation (#) | Cable Jacket (#) |
---|---|---|---|
Power Cable ID
Prefix - Project ID | Equipment - ID | Cable Number | |||
---|---|---|---|---|---|
Prefix # | Transformer ID # | Cable # |
Manual Choose Cable
Input Unit | Output |
---|---|
Crypto Mining CAD/Export Generator
All drawings, from Motor Single Lines, AC and DC Schematics, to Wiring Diagrams, can be accessed from here!
Associated Drawings
Crypto Mining Reference Library
Electrical Utility Specifications
Physically, Crypto Mining Farms are rooms with a large number of computers and servers that take on tasks for mining.There are also home-crypto mining farms. They differ from ordinary PCs, by being specially assempled and designed for mining. Home farms can bring profitability, but users often face the problem of excessive electricity consumption and overheating of the computer at home which makes mining unprofitable. One of the main resources into which a miner has to invest is electricity. It is also a risk factor, since the mining farm requires a permanent 24/7 power source. In addition, a large number of processors require an appropriate cooling and ventilation system.
Blockchain is a cryptographically secured, time-stamped, public and distributed database of every bitcoin transaction that has ever occurred on the network. "Distributed" here means that the information in the blockchain is broadcast to and recorded by every node in the network. There is no one central database. Any user can refer to this list of transactions and check exactly what how many bitcoins have ever belonged to any specific address at any point in time. This way the system is transparent, double-spending is prevented, and there is no need for a trusted central authority.
Note: The hashtag (#) symbol on a cell title indicates additional information is available, access it by clicking on the hashtag.
Utility Selection Table
Input Type | Input Unit | Output |
---|---|---|
Mechanical HP (#) | ||
Output Voltage (#) | ||
Running Output Power (kW) (#) | ||
Peak Output Power (kW) (#) | ||
Power Factor (#) | ||
Efficiency (#) |
Generator Calculation Table
Input Unit | Output |
---|---|
kVARS (#) | |
kVA (#) | |
Running Amps (#) | |
Peak Amps (#) | |
Peak kVA (#) |
Generator Circuit Protection
Circuit Breaker | Size | Main Breaker |
---|