1OOOV at 1 Amp
For an 11kW 3 phase motor, you would typically need a isolator with a current rating of at least 18-20 amps per phase. It's important to also consider the starting current of the motor and select an isolator that can handle the motor's inrush current. Make sure to consult with a qualified electrician to determine the appropriate isolator size for your specific application.
11 kW is approximately 14.8 horsepower (HP) at 50 Hz frequency.
1.3 amps
3000 milliamps is equal to 3 amps. To convert milliamps to amps, you divide by 1000.
5.8 amps
For an 11kW 3 phase motor, you would typically need a isolator with a current rating of at least 18-20 amps per phase. It's important to also consider the starting current of the motor and select an isolator that can handle the motor's inrush current. Make sure to consult with a qualified electrician to determine the appropriate isolator size for your specific application.
It is not so much a question of amps that a solar panel produces for the consumer, as it is a question of watts, or in many cases, kilowatts. Generally, you can buy different sizes and kinds of solar panels for a range of somewhere between 3kW to 8kW, and sometimes even greater amounts such as 10kW or 11kW systems. As the wattage grows greater, the price does also, and so does the money you save from your electric company. As your question wasn't the amount of money they will save you, I will leave you to ask that question of someone else.
11 kW is approximately 14.8 horsepower (HP) at 50 Hz frequency.
Multiply the vots by the amps to find the volt-amps. Or divide the volt-amps by the voltage to find the amps.
.1 amps will give you .1 amps.
500 KVA how many amps? almost 650 Amps according to formula.
10-2 Amps
1.3 amps
10 amps
it is either 110 amps or 135 amps
A three wire home distribution service rated at 100 amps has a wattage capacity of;From L1 to L2 at 240 volts x 100 amps = 24000 watts or 24 kilowatts. From L1 to neutral at 120 volts x 100 amps = 12000 watts or 12 kilowatts. From L2 to neutral at 120 volts x 100 amps = 12000 watts or 12 kilowatts.
830 milliamps is equal to 0.83 amps.