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The 2364-SPE01A from Allen Bradley is a regenerative DC bus supply unit specifically designed for electrical current protection. Suitable for both regenerative and non-regenerative systems, it is compatible with M and N Frame RGU/NRU units.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Regenerative DC Bus Supply Unit |
| Product Line | 2364 RGU |
| Part Number | 2364-SPE01A |
| Weight | 3.63 lbs (1.64 kg) |
| Current Code | Code A |
| Primary Function | Electrical current protection for DC bus supply units |
| Compatibility | Used in M and N Frame RGU/NRU units |
| Application | Regenerative and Non-Regenerative DC Bus systems |
| Material | Ceramic/Fiberglass body with silver-plated or copper contacts |
| Minimum Operating Temperature | 0 °C |
| Maximum Operating Temperature | 55 °C |
| Minimum Storage Temperature | 0 °C |
| Maximum Storage Temperature | 40 °C |
| Operating Humidity | 80% (Non-Condensing) |
| Installation Altitude | 1000 MSL |
The 2364-SPE01A model is classified as a regenerative DC bus supply unit manufactured by Allen Bradley. This component serves the essential role of providing electrical current protection for DC bus supply systems. Its design is compatible with M and N Frame RGU/NRU configurations, which enhances its versatility across various applications.
Its construction utilizes ceramic and fiberglass materials, while the contacts are either silver-plated or copper, ensuring durability under operational demands. The unit operates effectively at temperatures starting from 0 °C and can withstand a maximum of 55 °C. Furthermore, the storage temperature can range between 0 °C and 40 °C, adding to its reliability in varying conditions.
Additionally, the 2364-SPE01A is capable of functioning within environments that maintain up to 80% relative humidity, as long as condensation is avoided. This capability allows it to operate in a wide range of industrial settings. For installations, the unit can be deployed at altitudes up to 1000 MSL, making it suitable for elevated locations without the need for derating.