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The 193-ESM-VIG-60A-C55 is an E300 sensing module created by Allen Bradley with comprehensive monitoring capabilities. Designed to function within a current range of 6 to 60 amperes, it can detect voltage, current, and ground fault conditions.
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| Manufacturer | Allen Bradley |
|---|---|
| Product Type | E300 Sensing Module |
| Product Line | E1 Plus Relays |
| Part Number | 193-ESM-VIG-60A-C55 |
| Weight | 1.00 lbs (0.45 kg) |
| GTIN | 10885630009659 |
| Current Range | 6-60 Amperes |
| Sensing Type | Voltage, Current, Ground Fault |
| Mounting Style | Direct Contactor Mount |
| Voltage | 600 Volts AC |
| Ground Fault | Internal Zero Sequence |
| Power Monitoring | Yes |
| Terminal Type | Pass-through Screw |
| Reset Mode | Manual or Automatic |
| Protection Features | Overload, Phase-Loss, Ground Fault, Current Imbalance |
The Allen Bradley 193-ESM-VIG-60A-C55 is classified as an E300 sensing module, engineered for precision and reliability in electrical monitoring. Its core capability spans a current measurement range from 6 to 60 amperes, thus accommodating a wide variety of operational needs. This module is equipped to sense multiple parameters including voltage levels, current readings, and ground faults, ensuring comprehensive oversight for connected systems.
Designed for a direct contactor mount installation, the device seamlessly integrates with IEC contactors and can tolerate a maximum operating voltage of 600 volts AC. The internal zero-sequence ground fault detection enhances safety, ensuring any faults are promptly identified and addressed. Power monitoring is an integral feature, providing critical data to assist in the management of electrical systems.
The 193-ESM-VIG-60A-C55 utilizes pass-through screw terminal connections, promoting efficient wiring and facilitating maintenance activities. For resetting the unit after a fault condition, users can select between manual or automatic reset modes, offering flexibility to meet operational preferences. Protection features include overload, phase-loss detection, ground fault response, and monitoring for current imbalance, all contributing to the reliability and resilience of the device in demanding applications.