Description
The Allen-Bradley 140G-G6C3-C60 is a 3-pole molded case circuit breaker designed for reliable protection in industrial power distribution systems. With a fixed thermal trip of 60 A and a magnetic trip set at 600 A, it ensures fast and accurate response to overloads and short circuits.
Technical Specifications
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Condition
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New/Never Used Surplus
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| Brand |
Allen-Bradley
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Category
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Part Number
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140G-G6C3-C60
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| Subcatecory |
Molded Case Circuit Breaker
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| Frame |
G |
| Amps |
125 |
| Interrupting Rating |
65 kA |
| Protection Type |
Fixed Thermal/ Fixed Magnetic |
| Current Range |
60 A |
| Rated Insulation Voltage |
800 V |
| Rated Impulse Withstand Voltage |
8 kV |
| Weight |
2.42 lb |
| Thermal Trip |
60 A |
| Magnetic Trip |
600 A |
Information About 140G-G6C3-C60
The 140G-G6C3-C60 is part of the Allen-Bradley Bulletin 140G molded case circuit breaker series. It features a G-frame with a maximum current rating of 125 A, and this specific model is configured for 60 A fixed thermal trip and 600 A fixed magnetic trip protection. The circuit breaker is rated for a high interrupting capacity of 65 kA, making it suitable for demanding environments with high fault current levels.
Key Features:
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Fixed Thermal/Magnetic Protection: 60 A thermal trip and 600 A magnetic trip provide robust, preset circuit protection.
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High Interrupting Rating (65 kA): Handles high fault currents reliably to safeguard equipment and personnel.
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3-Pole Configuration: Supports three-phase systems common in industrial and commercial applications.
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Rated Insulation Voltage: 800V: Suitable for a wide range of low-voltage systems.
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Impulse Withstand Voltage: 8 kV: Withstands surges in industrial environments.
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Versatile Mounting: DIN rail compatible and position-independent for flexible installation.
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Pre-installed Accessories: Comes with end cap terminals, backplates, and phase barriers for faster setup.
The 140G-G6C3-C60 offers safe, compact, and reliable circuit protection for power distribution systems in manufacturing, infrastructure, and energy applications.