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The Eaton Cutler-Hammer SNT4RP26K functions as a shunt trip mechanism designed for circuit breakers. It operates effectively within a DC voltage range from 110 V to 125 V and is compatible with specific molded case circuit breakers from the HCMP, L, F, and M frame series. This device supports right-hand mounting and features a pigtail leads connection type.
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| Manufacturer | Eaton Cutler-Hammer |
|---|---|
| Product Type | Shunt Trip for Circuit Breaker |
| Product Line | Series C Circuit Breakers |
| Part Number | SNT4RP26K |
| Weight | 10.00 lbs (4.54 kg) |
| UPC | 786679006894 |
| Mounting Method | Right Hand Mounting |
| Minimum DC Voltage | 110 VDC |
| Maximum DC Voltage | 125 VDC |
| Frame Size | L and F |
| Suitable For Use With | HCMP, L, F, M Frame Molded Case Circuit Breaker |
| Unit Type | SNT Fixed |
| Number of Poles | 3 Poles |
| Voltage Type | DC |
| Connection Type | Pigtail Leads |
| Rated Current | 800 A |
| Frame Type | MD |
The SNT4RP26K model by Eaton Cutler-Hammer serves as a shunt trip solution for circuit breakers. Designed for reliable performance, this unit is suitable for installation with various molded case circuit breakers, including the HCMP, L, F, and M frame types. The shunt trip operates within a minimum DC voltage of 110 V and a maximum of 125 V, making it versatile for different applications.
This unit features right-hand mounting, facilitating its integration into existing systems. With three poles, it offers significant control options. The SNT Fixed configuration enhances stability and ensures that it functions as intended under electrical load. Rated for a continuous current of 800 A, the SNT4RP26K provides durable and reliable performance.
Utilizing pigtail leads for connections, the installation process is straightforward, allowing for secure and efficient setups. The frame type is designated as MD, adding to its robust construction and reliability for demanding environments. In summary, this shunt trip device from Eaton Cutler-Hammer is essential for enhanced circuit protection and reliability.