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Eaton Cutler-Hammer Series C Circuit Breakers SNT2P04K

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SNT2P04K

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The Eaton Cutler-Hammer SNT2P04K serves as a shunt trip accessory for the series C circuit breakers. It operates within a control voltage range of 12-24 V AC/DC and is designed for easy installation in various orientations, including left, right, or neutral-pole positions.

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Technical specifications for SNT2P04K

ManufacturerEaton Cutler-Hammer
Product TypeShunt Trip Accessory
Product LineSeries C Circuit Breakers
Part NumberSNT2P04K
UPC786679808627
Control Voltage Rating12-24 V AC/DC
Electrical Connection TypePigtail Leads
Number of Poles3 Poles
Mounting ConfigurationLeft, Right, or Neutral-Pole
Compatible Breaker FrameJ-Frame HMCP Breaker
Compatible Breaker SeriesJDB, JD, HJD, HJDDC, JDC, JG, E2J, E2JM
Trip MechanismElectromechanical Actuation
Connection InterfaceInternal Integration
Status IndicationNo Auxiliary Contacts
Installation TypeField-Installable

The SNT2P04K shunt trip accessory by Eaton Cutler-Hammer is an integral component for enhancing circuit breaker functionality. It is specifically designed to work with series C circuit breakers and is suitable for configurations requiring three poles. This accessory can be mounted on the left, right, or neutral-pole, providing flexibility in various setups.

Operating within a control voltage range of 12-24 V AC/DC, the shunt trip accessory connects using pigtail leads, ensuring straightforward electrical connection. This model is compatible with J-Frame HMCP breakers and supports a variety of breaker series, including JDB, JD, HJD, HJDDC, JDC, JG, E2J, and E2JM.

The trip mechanism of this unit employs electromechanical actuation, which aids in delivering reliable performance even in dynamic operational conditions. Moreover, the SNT2P04K features internal integration for connection, thereby making it a streamlined option for system enhancement. However, it is important to note that this accessory does not offer auxiliary contacts for status monitoring. Field installation capability allows for seamless integration into existing systems, ensuring minimal downtime.