The maximum current that a 95mm cable can take would depend on the specific type or rating of the cable. Typically, a 95mm cable can handle currents ranging from 300 to 400 amps. It's important to consult the manufacturer's specifications or a qualified electrician to determine the exact ampacity rating for the specific cable in use.
6mm2 cable is rated at 40amps
Could be zero, could be 1000 amps. Amps are not the same thing as volts.
The ampacity of an electrical cable depends on several factors, including the cable's cross-sectional area (in mm²), insulation type, installation conditions, and ambient temperature. As a general rule of thumb, copper cables can carry approximately 10 amps per mm² for low-voltage applications. For example, a 1.5 mm² copper cable typically carries around 10-16 amps, while a 2.5 mm² cable can carry approximately 16-25 amps. Always consult local electrical codes and standards for specific applications.
To determine how many cables are needed, we need to know the maximum allowable amperage each T-9 cable can handle. Once we have this information, we can divide the total amperage needed (1600A) by the maximum allowable amperage of the T-9 cable to find out how many cables are required to supply the ship with 1600 amps.
The current carrying capacity of a cable can depend on factors such as the material, insulation, and installation method. For a rough estimate, a 125 mm2 cable can typically carry around 200-250 amps for standard copper conductors in common installation conditions. It is advisable to consult local electrical codes and standards, as well as a qualified electrician, for precise calculations.
5 amps
6mm2 cable is rated at 40amps
44.8AMPS
Could be zero, could be 1000 amps. Amps are not the same thing as volts.
3.74015748031 inches or to 2 decimal places; 3.74
124.3 amps. If you have one on a vehicle, for example a winch, use no less tha 00g cable. That is a LOT of power, and an ordinary alternator can't handle that.
10 mm = 1 cm so 95 mm = 95/10 = 9.5 cm. Simple!
A typical car stereo contains 4 amps. It is rare to find a car stereo without amps. Cars usually can contain up 8 amps, but you could always add more.
To determine how many cables are needed, we need to know the maximum allowable amperage each T-9 cable can handle. Once we have this information, we can divide the total amperage needed (1600A) by the maximum allowable amperage of the T-9 cable to find out how many cables are required to supply the ship with 1600 amps.
The current carrying capacity of a cable can depend on factors such as the material, insulation, and installation method. For a rough estimate, a 125 mm2 cable can typically carry around 200-250 amps for standard copper conductors in common installation conditions. It is advisable to consult local electrical codes and standards, as well as a qualified electrician, for precise calculations.
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.