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The 800F-ALM is a resilient metal mounting latch designed by Allen Bradley, built to withstand rigorous use in industrial environments. Its die cast zinc alloy construction ensures durability during operation.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Metal Mounting Latch |
| Product Line | 800F Push Buttons |
| Part Number | 800F-ALM |
| Weight | 0.06 lbs (0.03 kg) |
| UPC | 662468122139 |
| Material Housing | Die Cast, Zinc Alloy, Painted Material |
| Mechanical Service Life | 10,000,000 Cycles |
| Shock Acceleration | 100 g |
| Shock Duration | 11 ms |
| Vibration Acceleration | 10 m/s² |
| Vibration Frequency | 2000 Hz |
| Vibration Duration | 180 min. |
| Minimum Operating Temperature | -25 °C |
| Maximum Operating Temperature | 70 °C |
| Minimum Storage Temperature | -40 °C |
| Maximum Storage Temperature | 85 °C |
The Allen Bradley 800F-ALM serves as a robust metal mounting latch tailored for demanding industrial applications. Constructed from a sturdy die cast zinc alloy, this latch is painted for added protection, ensuring longevity in various settings. With a mechanical service life boasting up to 10 million cycles, it demonstrates significant durability, making it a dependable component in any system requiring consistent performance.
The latch can handle substantial mechanical stress, featuring a shock acceleration rating of 100 g over a brief duration of 11 milliseconds. Additionally, it can endure vibration conditions, rated for accelerative forces of 10 m/s² at a frequency of 2000 Hz, sustaining this for up to 180 minutes. This attribute enhances its suitability for environments where equipment may experience continuous movement or jarring.
Temperature resilience is critical in industrial applications, and the 800F-ALM excels in this regard. It can operate within a temperature spectrum of -25 °C to a maximum of 70 °C, while allowing storage in conditions as extreme as -40 °C to 85 °C. These specifications affirm the versatility and reliability of the mounting latch in a range of operational contexts, making it an excellent choice for industrial durability.