Divide the 1600 w by the 120 v and the answer is 13.33 amps. If you don't know the power factor for the equipment, increase the result by 20% to 16 amps.
To calculate the amperage draw, you need to know the voltage of the circuit where the 2500 watts appliance will be used. You can use the formula: Amps = Watts / Volts. For example, if it is a 120V circuit, the amperage draw would be 2500 watts / 120 volts = 20.83 amps.
To find amps if watts and volts are known, use the formula; watts / volts = amps or 5000 / 240 = 20.83 amps
The formula you are looking for is I = W/E. Amps = Watts divided by Volts.
To calculate the current draw in amps for a 48-watt LED light at 12 volts, you can use the formula: Amps = Watts / Volts. So, 48 watts / 12 volts equals 4 amps. Therefore, a 48-watt LED light at 12 volts draws 4 amps.
To find the amp draw, use the formula: Amps = Watts / Volts. In this case, 590 watts divided by 120 volts equals approximately 4.92 amps. Therefore, the unit draws around 4.92 amps when operating at its maximum power of 590 watts.
To calculate the amperage draw, you need to know the voltage of the circuit where the 2500 watts appliance will be used. You can use the formula: Amps = Watts / Volts. For example, if it is a 120V circuit, the amperage draw would be 2500 watts / 120 volts = 20.83 amps.
To find amps if watts and volts are known, use the formula; watts / volts = amps or 5000 / 240 = 20.83 amps
The formula you are looking for is I = W/E. Amps = Watts divided by Volts.
Watts = Amps x volts. What is the current draw and voltage of the calculator.
To calculate the current draw in amps for a 48-watt LED light at 12 volts, you can use the formula: Amps = Watts / Volts. So, 48 watts / 12 volts equals 4 amps. Therefore, a 48-watt LED light at 12 volts draws 4 amps.
To find the amp draw, use the formula: Amps = Watts / Volts. In this case, 590 watts divided by 120 volts equals approximately 4.92 amps. Therefore, the unit draws around 4.92 amps when operating at its maximum power of 590 watts.
To determine the amperage drawn by a 250-watt metal halide bulb, you can use the formula: Amps = Watts / Volts. Assuming the bulb operates on a standard voltage of 120 volts, it would draw approximately 2.08 amps (250 watts / 120 volts). If it operates at 240 volts, it would draw about 1.04 amps (250 watts / 240 volts). Always check the specific voltage rating for accurate calculations.
Amps * Volts = Watts So, Watts / Volts = Amps 2000 / 240 = 8.333 Amps You should run the circuit on a two pole 15 Amp breaker, using 14 AWG, 2 conductor (plus ground) wire, just so you have a little safety factor in the circuit size.
Watts = Amps x Volts for a resistive load like a water heater.
To calculate the amp draw for a 3800-watt water heater at 240 volts, use the formula: Amps = Watts / Volts. Thus, the amp draw would be 3800 watts / 240 volts, which equals approximately 15.83 amps. Therefore, the water heater draws about 16 amps.
To answer this you have to know how many volts will be used. If you know the voltage then you can calculate the current by dividing voltage into wattage. For example; an electric heater rated at 700 watts when plugged into a 115 v outlet will draw 700/115 = 6.08 amps of current.
To determine the number of amps in a 110V circuit, you need to know the wattage (power) being used. The formula to calculate amps is: Amps = Watts / Volts. For example, if you have a device that uses 1100 watts, it would draw 10 amps (1100 watts / 110 volts = 10 amps).