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GENERAL ELECTRIC
TJJ426150 **Older Style** - 150 Amp Circuit Breaker
TJJ426150 **Older Style** - 150 Amp Circuit Breaker
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TJJ426150 **Older Style** - 150 Amp Circuit Breaker
Introducing the General Electric TJJ426150, a robust 2-pole, 150-amp molded case circuit breaker engineered for superior protection in demanding electrical environments. Designed for versatility, it operates efficiently across various voltage levels, including 240V, 480V, and 600V AC systems, making it an ideal choice for both commercial and industrial applications.
Key Features and Benefits
- Thermal Magnetic Trip Unit: Combines thermal and magnetic protection to effectively guard against overloads and short circuits.
- Bolt-On Design: Facilitates straightforward installation and secure connections, enhancing system integrity.
- HACR Rated: Suitable for heating, air conditioning, and refrigeration applications, providing broad utility across various systems.
- Non-Interchangeable, Internal Common Trip: Ensures simultaneous disconnection of all poles during fault conditions, enhancing safety.
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Load-Side Lugs Included: Equipped with load-side lugs for convenient wiring and installation.
Technical Specifications
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Amperage: 150A
- Poles: 2
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Interrupting Capacity (AIC):
- 22kA at 600VAC
- 30kA at 480VAC
- 42kA at 240VAC
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Frame Type: TJJ
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Dimensions:
- Width: 8.25 inches
- Length: 10.13 inches
- Depth: 3.81 inches
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Ship Weight: 24 lbs
Material Compliance and Certifications
- UL Listed: Complies with Underwriters Laboratories standards for safety and performance.
- CSA Certified: Meets Canadian Standards Association requirements, ensuring suitability for use in Canada.
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RoHS Compliant: Manufactured in accordance with the Restriction of Hazardous Substances directive, promoting environmental responsibility.
Suitability
- The TJJ426150 is ideal for a wide range of applications, including industrial facilities, commercial buildings, and critical infrastructure projects. Its robust design and high interrupting capacity make it suitable for protecting electrical systems from damage due to overloads and short circuits, ensuring operational continuity and safety.
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