The IELBX1-1-51-2.50-G-M3-V is a hydraulic-magnetic circuit breaker from Sensata Technologies/Airpax. This series of circuit breakers is known for providing accurate and reliable circuit protection, offering stable performance across a wide range of operating temperatures. The hydraulic-magnetic technology ensures that the breaker's trip point remains consistent, unlike thermal breakers which can be affected by ambient temperature.
Applications
- Power Distribution Units (PDUs)
- Marine Applications
- Generator Sets
- Industrial Control Systems
- Telecommunications Equipment
Features
- Hydraulic-Magnetic Technology
- Temperature Stable
- Precise Trip Characteristics
- Trip-Free Design
- Various Mounting Options
- RoHS Compliant
Benefits
- Reliable Circuit Protection: The hydraulic-magnetic design provides accurate and repeatable tripping, safeguarding equipment from overcurrents and short circuits.
- Stable Performance: Unaffected by ambient temperature variations, ensuring consistent protection in diverse environments.
- Prevents Nuisance Tripping: The trip-free mechanism prevents the breaker from being manually held closed during an overcurrent, ensuring proper circuit interruption.
- Flexible Installation: Available with various mounting options to suit different application needs.
- Environmentally Friendly: RoHS compliance ensures the product meets environmental standards.
Technical Specifications
The IELBX1-1-51-2.50-G-M3-V is a single-pole circuit breaker with a current rating of 2.50 Amps. The “51” likely refers to a specific terminal style or internal configuration. The 'G' probably indicates the trip curve, and the 'M3' might denote a specific mounting configuration. The breaker is designed to provide reliable circuit protection in both AC and DC applications. The hydraulic-magnetic technology offers inherent short circuit and overload protection capabilities.
This Airpax circuit breaker is a robust and dependable choice for applications requiring precise and stable circuit protection. Its hydraulic-magnetic design ensures reliable performance in a wide range of conditions.