The current (amps) drawn by a 48-ton chiller can vary based on its efficiency, design, and specific operating conditions. Typically, a chiller of this size may draw between 30 to 80 amps during operation, depending on its power requirements and whether it's a variable speed or fixed speed unit. For precise specifications, it's essential to refer to the manufacturer's documentation or nameplate data.
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.
Each 32-watt bulb in a 48-inch fluorescent light typically draws around 0.27 amps. Therefore, a two-bulb setup would draw approximately 0.54 amps in total.
A deep freezer can draw between 6 to 8 times its running amps on start-up, depending on the model and size of the freezer. For example, if a freezer runs at 6 amps, it could draw between 36 to 48 amps when starting up.
To calculate the wattage produced by a 48-volt battery, you need to know the current (in amperes) it can supply. Once you have the current value, you can use the formula P = V x I, where P is power in watts, V is voltage in volts (48V in this case), and I is current in amperes. So, without knowing the current, we cannot determine the wattage produced by a 48-volt battery.
In normal simple circuits WATTS = VOLTS x AMPS So if you use a 12V car battery 4 amps is 48 Watts American 110V mains 4 amps = 440 Watts English 240V mains 4 amps = 960 Watts
Each 32-watt bulb in a 48-inch fluorescent light typically draws around 0.27 amps. Therefore, a two-bulb setup would draw approximately 0.54 amps in total.
No.
48 hours depending on how much taken
The cool box can be powered by a cigarette lighter adapter. These adapters are capable of 10 amps and the car is protected with a 10 amp fuse. A 48 watt cool box draws 4 amps. 48 watts / 12 volts = 4 amps. If the device drew more than 10 amps it would have to be connected to the car battery directly.
The formula you are looking for is Watts = Amps x Volts. Amps = Watts/Volts. This comes to 4 amps load. Minimum size fuse would be 5 amps.
A deep freezer can draw between 6 to 8 times its running amps on start-up, depending on the model and size of the freezer. For example, if a freezer runs at 6 amps, it could draw between 36 to 48 amps when starting up.
There were several models of Fender Tweed Pro amps made in the late 50's and early 60's. They weigh about 55 pounds.
When 20% of 60 is taken away from it, you get 48.
48
48 centimeters = 1.574 feet.
48 millimeters is 1.89 inches.
two twice 48 + 48 = 96 96/48 = 2