CALCULATOR CATEGORY
Heat, cooling & power calculators
Translate running watts into thermal load, airflow and electrical demand estimates before speaking with qualified professionals.
Why separate heat, airflow and electrical demand?
Heat conversion quantifies load; airflow depends on intake and exhaust temperature; electrical demand depends on voltage, phase and power factor. None selects equipment or certifies an installation. Hydro systems need separate coolant-loop design.
7 purpose-specific tools in this view. Models cover 11 sourced reference variants; unknown data stays unknown.
| Quantity | Value | Interpretation |
|---|---|---|
| Daily energy | 84 kWh | Independent of BTC price |
| Daily electricity at $0.08/kWh | $6.72 | Excludes fixed charges |
| Thermal load | 11,942.5 BTU/h | Simultaneous running power |
Mining heat output ↗
Convert ASIC electrical load into thermal output for room and facility planning.
Mining cooling ↗
Estimate the thermal load, cooling tons and ideal ventilation airflow for a group of miners.
Mining farm cooling ↗
Estimate simultaneous thermal load and ideal airflow for a mixed fleet, separating ASIC load from additional facility power.
Watts to BTU/hour ↗
Convert a measured electrical heat load from watts to BTU/hour without choosing an ASIC model.
BTU/hour to cooling tons ↗
Convert thermal capacity in BTU/hour to refrigeration tons and equivalent thermal kilowatts.
Mining power requirements ↗
Estimate apparent power and running current from electrical load, voltage and power factor for professional planning.
Mining circuit budget ↗
Compare one ASIC load with a user-supplied current budget and utilization allowance, without prescribing electrical installation.
Use one consistent scenario
Carry measured power, tariff and uptime between tools. Capacity and airflow are based on running load, while energy costs follow runtime. Read the formulas before mixing units or assumptions.
Common starting points
An editorial selection by task, not a ranking based on usage statistics.