Eaton C30CNM101A02A0 Mechanically Held Lighting Contactor

Technical Specification

Features:
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Additional info:

Two-wire mechanically held lighting contactor 30 A power pole rating Low magnetic noise results in quiet operation Low input VA permits long wire runs An ideal solution for controlling tungsten (incandescent filament), ballast (fluorescent and mercury arc), high intensity discharge (HID), non-motor AC resistive and single- & three phase motor ratings load Provides effective control in applications such as office buildings, industrial plants, hospitals, stadiums, airports, and so on

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Make Eaton
Manufacturer Eaton
Category Motors and Electrical Equipment>Contactors
Model code C30CNM101A02A0
Series C30CN mechanically held lighting contactors
No. of Poles 11
Rated Voltage 115 ~ 120 V 60 Hz / 110 V 50 Hz
Rated Current 30 A
Enclosure Open
Standards UL
Width 4.18 inch
Height 3.86 inch
Depth 7.39 inch

Product description

Eaton C30CNM101A02A0 Lighting Contactor

The Eaton C30CNM101A02A0 is a robust lighting contactor designed for industrial and commercial applications. This mechanically held contactor is optimized for efficient lighting control in environments such as office buildings, industrial plants, and stadiums. Its innovative design ensures versatility, simplicity, and outstanding performance in controlling various types of loads.

Key Features

  • Operates with tungsten, fluorescent, mercury arc, and non-motor AC resistive loads.
  • 30A power pole rating and supports 11 poles for 20 and 30A devices.
  • Smooth operation owing to low magnetic noise.
  • Coil voltages range from 12V DC to 277V AC for flexibility in various installations.
  • Mechanically held operation ensures reliable operation even during power failures.
  • Intuitive configuration simplifies maintenance and reduces downtime.

Ideal Use Cases

The C30CNM101A02A0 is perfectly suited for energy-efficient lighting management in high-demand environments such as stadiums, hospitals, and airports. It offers noise-free operation and ensures contact reliability even during unstable power conditions, making it an excellent choice for critical infrastructure.

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