219-2-31979-1 Allicdata Electronics

219-2-31979-1 Circuit Protection

Allicdata Part #:

219-2-31979-1-ND

Manufacturer Part#:

219-2-31979-1

Price: $ 115.68
Product Category:

Circuit Protection

Manufacturer: Sensata-Airpax
Short Description: CIRCUIT BREAKER MAG-HYDR LEVER
More Detail: N/A
DataSheet: 219-2-31979-1 datasheet219-2-31979-1 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
4 +: $ 105.16600
Stock 1000Can Ship Immediately
$ 115.68
Specifications
Series: *
Part Status: Active
Lead Free Status / RoHS Status: --
Moisture Sensitivity Level (MSL): --
Description

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218-2-31979-1 circuit breakers are specialized electronic devices that are specifically designed to interrupt an electrical circuit due to an overcurrent or short circuit situation. Overcurrent is defined as a current that is flowing through a circuit greater than its maximum rated current for its rated voltage, while short circuits occur when a voltage is applied to a circuit and there is no current flow due to the inability of the impedance of the circuit to be less than the applied voltage. Circuit breakers are a type of protective device used in electrical systems to prevent damage due to excessive current.

These circuit breakers have a variety of uses in both residential and industrial settings. In industrial settings, circuit breakers are used to protect valuable equipment from damage or destruction due to overcurrents, short circuits, and faults. In residential settings, circuit breakers are used to provide protection from over-currents, short circuits, and faults. Circuit breakers can also be used to control large loads or to provide protection in the event of a power outage.

Circuit breakers are typically rated according to their voltage, current, and interruptability ratings. The circuit breaker needs to be able to continuously interrupt current rated at the voltage that it is rated for. The interruptability rating indicates the ability of the circuit breaker to interrupt current at its rated voltage. The current rating indicates the maximum rated current that the circuit breaker can safely interrupt. All circuit breakers are required to be tested at their rated voltage and current rating, as well as exceed their interruptability rating.

In order to be effective, circuit breakers must be capable of responding quickly and reliably under a given fault condition. In addition, they must be able to determine the appropriate action to take to protect a system from an overload or fault. Many circuit breakers are equipped with built-in overcurrent and short circuit protection capabilities, which allow them to act as a system protector. They are also used to detect faults, such as a break in the wiring, and to trip the circuit in order to prevent the fault from resulting in a fire or other damage.

Modern circuit breakers are equipped with advanced features that increase their effectiveness and safety. For example, some circuit breakers are equipped with self-clearing capabilities that allow them to automatically clear the fault and reset the circuit. Other circuit breakers are equipped with protection from destructive transients, which allow them to reject short-duration, high-energy pulses without tripping the circuit.

In addition to the protective features, many circuit breakers offer overload protection. This feature ensures that the breaker will only allow a certain level of current to pass through, even if a larger current is present. This prevents overcurrents and short circuits from damaging circuits and components. Some circuit breakers also feature distinguishing characteristics for their application in various industries or areas of expertise.

Overall, 218-2-31979-1 circuit breakers are essential components within many electrical systems. They are designed to protect valuable equipment from damage or destruction due to overcurrents, short circuits, and faults. The advanced features of modern circuit breakers also allow them to reject short-duration, high-energy pulses without tripping the circuit and provide overload protection. In addition, they can also be used to detect faults and protect a system from an overload or fault.

The specific data is subject to PDF, and the above content is for reference

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