if it's single-phase, 25,000 divided by 480.
Volts times amps equals watts, so the question is - what times 480 makes 10,000, and the answer is 10,000 divided by 480. That is 10,000 divided by 500 and then increased by 4% which is 20.8 amps.
To calculate the current, we can use the formula Power (watts) = Voltage (volts) * Current (amps). Plugging in the values given, we get 60 watts = 480 volts * Current. Solving for Current, we find Current = 60 watts / 480 volts = 0.125 amps.
To determine the amps for a 1 ton cooling unit at 480 Volts, you would need to know the power rating of the unit in Watts. Once you have the Watts, you can use the formula Amps = Watts/Volts to calculate the amperage.
Voltage itself does not consume power; rather, power consumption is determined by the combination of voltage and current. If the power demand remains the same, a higher voltage system like 480 volts will require less current to deliver the same amount of power compared to a 240-volt system. So, in general, a 480-volt system would be more efficient in terms of power transmission compared to a 240-volt system.
To find the current in amps for a given power in watts and voltage in volts, you can use the formula: Amps = Watts / Volts. For 3000 watts at 480 volts, the calculation would be 3000 watts / 480 volts, which equals approximately 6.25 amps.
Current in 200kw at 480 volts = 200,000/480 = 416.667 amps
if it's single-phase, 25,000 divided by 480.
Volts times amps equals watts, so the question is - what times 480 makes 10,000, and the answer is 10,000 divided by 480. That is 10,000 divided by 500 and then increased by 4% which is 20.8 amps.
To calculate the current, we can use the formula Power (watts) = Voltage (volts) * Current (amps). Plugging in the values given, we get 60 watts = 480 volts * Current. Solving for Current, we find Current = 60 watts / 480 volts = 0.125 amps.
I t depends. Watts = Amps times volts. 40 amps x 120 volts =4800 watts or 40 Amps x 12 volts = 480 watts.
Rephrase your question, as it doesn't make any sense. If the primary side of the transformer is 480 volts 3 phase, this transformer can be supplied from a breaker as big as 180 amps. If 480 volts 3 phase is your secondary then you can supply up to 180 amps to your loads.
To determine the amps for a 1 ton cooling unit at 480 Volts, you would need to know the power rating of the unit in Watts. Once you have the Watts, you can use the formula Amps = Watts/Volts to calculate the amperage.
The heater should have a wattage rating (very few list amps). Calculate the amps using the wattage and voltage. Amps = Watts/Volts(480).
108.25
480 volts is probably 3-phase (Line to line) voltage, so: 1500K / (480 x 1.732) = I = 1804Amps
Voltage itself does not consume power; rather, power consumption is determined by the combination of voltage and current. If the power demand remains the same, a higher voltage system like 480 volts will require less current to deliver the same amount of power compared to a 240-volt system. So, in general, a 480-volt system would be more efficient in terms of power transmission compared to a 240-volt system.