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The 1492-CM1771-LA001 is a swing-arm conversion module from the Allen Bradley 1492 Wiring System. Designed specifically for compatibility with 1771 analog I/O modules, this unit operates at 30 V DC.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | Swing-Arm Conversion Module |
| Product Line | 1492 Wiring System |
| Part Number | 1492-CM1771-LA001 |
| Weight | 0.63 lbs (0.28 kg) |
| Compatible Modules | 1771 analog I/O modules |
| Shock (Non-Operating) | 50 G |
| Shock (Operating) | 30 G |
| Vibration (Operating) | 2 G |
| Operating Voltage | 30 V DC |
| Maximum Current per Point | 2.0 A |
| Maximum Current Per Module | 12.0 A |
| IP Rating | IP20 |
| Operating Humidity | 80% Max. (Non-Condensing) |
| Storage Humidity | 80% Max. (Non-Condensing) |
| Operating Altitude | 1000m above sea level without derating |
The Allen Bradley 1492-CM1771-LA001 module serves as a swing-arm conversion component within the 1492 Wiring System. It is engineered to work specifically with 1771 analog I/O modules, offering seamless integration in existing setups. This unit maintains an operating voltage of 30 V DC, allowing it to perform effectively in various applications. The highest current capacity is rated at 2.0 A per point and up to 12.0 A on a module basis, accommodating significant loads.
The 1492-CM1771-LA001 possesses an IP20 enclosure rating, providing adequate protection for indoor installation. In terms of physical resilience, the module can endure operating shocks of 30 G and non-operational shocks up to 50 G, along with a maximum vibration tolerance of 2 G during normal operations. It can be installed in conditions with a relative humidity of up to 80%, both in operation and in storage, without the risk of condensation affecting performance.
This module is designed for high-altitude use as well, functioning effectively at elevations of 1000 meters above sea level without a need for power derating. Overall, the 1492-CM1771-LA001 conversion module is suitable for a variety of industrial applications that require robust and reliable performance.