Schneider Electric
Schneider Electric reversing contactor LC2D09G7 120V AC coil 9A IEC 3-pole
A reversing contactor with a 120 V AC coil, 9 A inductive rating and screw-clamp terminals for DIN-rail or plate mounting
- Reverses motor direction with built-in reversing capability
- Handles 9 A inductive loads at three-phase 240 V
- Operates on standard 120 V AC control voltage
- Mounts on DIN rail or panel with screw clamp terminals
- Compact 3.03 × 3.54 in frame fits tight panels
Reversing Contactor 120V Coil 9A
The Schneider Electric LC2D09G7 is a TeSys Deca IEC reversing contactor with a 120V AC coil and 9A inductive full-load current. It provides motor reversing control in a three-pole configuration rated at 2hp for 240V AC three-phase supply.
Panel Builders DIN Rail Mounting
This unit suits control panel assemblies using DIN rail or plate mounting with screw clamp terminals. It is not intended for applications requiring an integrated protective enclosure or for single-phase motor circuits needing different pole arrangements.
9A Inductive Current Rating 120V Coil
The 9A inductive and 25A resistive ratings at 120V AC coil voltage determine whether this contactor matches the motor load and control circuit. Verify the full-load current of the motor against these figures before specifying.
Highlights
- Reverses motor direction with built-in reversing capability
- Handles 9 A inductive loads at three-phase 240 V
- Operates on standard 120 V AC control voltage
- Mounts on DIN rail or panel with screw clamp terminals
- Compact 3.03 × 3.54 in frame fits tight panels
Specifications
| Brand | Schneider Electric |
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Questions about this item
Should I choose the 9 A inductive or 25 A resistive rating for my load?
Use the 9 A inductive rating for motors, solenoids or transformers; the 25 A resistive figure applies only to heating elements or incandescent lamps.
What does the 9 A inductive current mean when the contactor is installed in a panel?
It is the maximum continuous motor load the three poles can switch at up to 240 V AC, delivering about 2 hp at 240 V three phase.
How does the 120 V AC coil voltage limit the control circuit?
The coil must be driven from a 120 V AC source; it cannot be operated from DC or other AC voltages without a separate transformer or power supply.
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