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The 1394SR36AFFUSEB is a crucial component for maintaining the reliability of the 1394-SR36AF shunt module. Designed as a replacement fuse, it ensures proper protection for the shunt module under variable operational conditions.
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| Manufacturer | Allen Bradley |
|---|---|
| Category | Drives |
| Product Line | Bulletin 1394 |
| Part Number | 1394SR36AFFUSEB |
| Weight | 3.00 lbs (1.36 kg) |
| Product | Replacement Fuse |
| Compatible Device | 1394-SR36AF Shunt Module |
| Function | Protecting Shunt Module |
| Installation | In fuse holder behind door |
| Operating Temperature | 0 to 50 degrees Celsius |
| Shock | 15 g at 11 ms (half-sine) |
| Vibration | 2 g at 10 to 2000 Hz |
| Humidity, Non-Condensing | 5-95% |
| Altitude | 5000 feet |
| Shunt Module Drive Voltage Ratings | 200V AC, 400V AC |
| Shunt Module Continuous Power | 3600 W |
The Allen Bradley 1394SR36AFFUSEB serves as a specific replacement fuse within the Bulletin 1394 product line. Intended for the protection of the 1394-SR36AF shunt module, this fuse is a key safety component in motor control applications.
Its design allows for installation in a designated fuse holder located behind a protective door, ensuring ease of replacement while maintaining safety standards. This fuse operates efficiently within a temperature range of 0 to 50 degrees Celsius and can function at altitudes up to 5,000 feet, making it adaptable to various environmental conditions.
In addition to ambient temperature considerations, the 1394SR36AFFUSEB must also comply with operational resilience criteria, such as enduring shocks of up to 15 g at 11 milliseconds (half-sine wave) and vibrations rated at 2 g between 10 to 2000 Hz. The operational environment can maintain humidity levels from 5% to 95% without condensation.
The shunt module itself supports drive voltage ratings of both 200V AC and 400V AC, while the continuous power capacity it accommodates reaches 3600 watts. All these characteristics highlight the suitability of this replacement fuse for protecting vital components in electrical systems.