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The Allen Bradley 40440-461-51 is a lug designed specifically for connections in electrical systems. This part, constructed from high-conductivity copper alloy, is intended for use with 520E Series multi-speed NEMA starters, facilitating reliable connectivity and performance under varying conditions.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Lug |
| Product Line | Miscellaneous Allen Bradley |
| Part Number | 40440-461-51 |
| Weight | 0.25 lbs (0.11 kg) |
| UPC | 662074207510 |
| Lug Size | Size 4 |
| Compatibility | 520E Series Multi-Speed NEMA Starters |
| Minimum Operating Temperature | -20 °C |
| Maximum Operating Temperature | 65 °C |
| Minimum Storage Temperature | -40 °C |
| Maximum Storage Temperature | 85 °C |
| Minimum Humidity | 5% RH (non-condensing) |
| Maximum Humidity | 95% RH (non-condensing) |
| Maximum Installation Altitude | 1000 m |
| Material | High-conductivity copper alloy |
The 40440-461-51 lug from Allen Bradley is an essential component used for establishing robust electrical connections. Designed with a size 4 specification, this lug ensures compatibility with the 520E Series multi-speed NEMA starters. Made from a high-conductivity copper alloy, it provides efficient conductivity while maintaining durability in various conditions.
Operationally, this lug is rated for temperatures spanning from a minimum of -20 °C to a maximum of 65 °C, which allows it to function effectively in both cool and warm environments. When considering storage, the lug can withstand extreme temperatures, with a range from -40 °C to 85 °C, ensuring reliability even in harsh conditions.
Humidity factors are also accounted for, with a non-condensing operational range from 5% to 95% RH, making it adaptable for different climates. Additionally, the lug has been tested for use at altitudes up to 1000 meters, which broadens its usability in various applications. Overall, this lug facilitates dependable connections in electrical systems where robustness and performance under different environmental conditions are crucial.