More About 4Pole 63Amp AC Breaker:
A 4Pole 63Amp AC Breaker is a specific type of circuit breaker that has four conducting poles. And it is design to handle a maximum current load of 63 amps. This kind of breaker is typically use to protect motors or large electrical equipment that need a lot of power. A four-pole breaker delivers a higher voltage to the appliance or device being power because the four poles are connect to different phases of the electrical circuit. This breaker’s 63Amp rating indicates how much current it can safely handle without tripping or harming the electrical system.
Moreover, 4Pole 63Amp AC Breakers can be used in other applications where a higher level of power is require. Such as in commercial or industrial lighting systems. In addition, to protecting motors and large electrical equipment. With a high breaking capacity and a dependable mechanism for tripping in the event of overload or short circuit. These breakers are also built to last.
Features of 4Pole 63Amp AC Breaker:
- Voltage rating: The rated voltage for a four-pole, 63Amp AC breaker is typically 400 volts.
- Current rating: This breaker has a current rating of 63 amps, which indicates that it can withstand a maximum current of 63 amps without tripping.
- Four poles: Because it has four poles, this breaker can simultaneously stop the flow of current through four conductors.
- AC operation: The breaker is intend to function with AC power.
- Thermal-magnetic protection: The breaker can trip as a result of either an overload or a short circuit because it provides both thermal and magnetic protection.
- DIN rail mountable: It is simple to mount the breaker on a DIN rail, which is a common rail for industrial control equipment.
- Compact size: The breaker is intend to be conservative and occupies negligible room in an electrical board.
- Easy to install: The breaker has clearly label terminals and easy-to-follow installation instructions to make it simple to install.
- High breaking capacity: The four-pole, 63-amp AC breaker has a high breaking capacity, allowing it to safely disrupt high current levels.
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