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The C&S Electric Miniature Circuit Breaker (MCB) with 1 Pole and C Curve Type is an essential component in electrical distribution systems, providing reliable protection against overloads and short circuits. Engineered with a C curve characteristic and a single-pole configuration, this MCB offers versatile and effective protection for various residential, commercial, and industrial applications.
The "C" curve characteristic signifies that the MCB is designed to trip when subjected to a current between 5 to 10 times its rated current (In), offering enhanced protection against moderate to high overloads and short circuits. This feature makes it suitable for safeguarding circuits powering motors, pumps, and other equipment with higher inrush currents during operation.
With its single-pole configuration, the MCB provides protection for one phase within a circuit. While it doesn't include neutral protection, it is typically used in circuits where neutral protection is not required or in single-phase applications where only one phase needs to be protected.
Equipped with reliable trip mechanisms, such as thermal and magnetic trip units, the MCB responds promptly to overcurrents, interrupting the circuit to prevent damage. This enhances the safety of personnel and property by reducing the risk of electrical hazards such as overheating, fires, and equipment damage.
The compact design of the MCB allows for easy installation and integration into electrical distribution panels and enclosures. Its sturdy construction and durable components make it suitable for use in various environments, including residential, commercial, and industrial settings.
In summary, the C&S Electric Miniature Circuit Breaker (MCB) with 1 Pole and C Curve Type offers dependable and effective circuit protection, ensuring the safety and reliability of electrical installations in diverse applications. Its C curve characteristic, single-pole configuration, and reliable trip mechanisms make it an essential component for safeguarding electrical systems against overloads and short circuits.
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