
Circuit Breaker 1P | C | 50A | 230-400V | MC150A Hager
Code: MC150AThe circuit breaker is designed to protect electrical systems from short circuits and overloads. This breaker complies with international standards (IEC 60898-1, IEC 60947-2) and includes features that ensure safe and reliable operation of electrical equipment. The breaker responds to excessive currents and automatically disconnects when the system is at risk of a short circuit or overload.
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Technical Specifications:
Number of poles: 1 P (single pole)
Curve: C (supports normal operating conditions, responds to moderate currents)
Number of modules: 1
Rated short-circuit breaking capacity (Icn): 6 kA (according to IEC 60898-1)
Rated operational voltage (Ue): 230 / 400 V AC
Supply voltage: AC
Frequency: 50/60 Hz
Rated insulation voltage: 500 V
Rated impulse withstand voltage: 4000 V
Rated current: 50 A
Rated service breaking capacity (Ics): 6 kA (according to IEC 60898-1)
Thermal operation limit (AC): 1.13 / 1.45 In (rated current)
Magnetic setting current (AC): 5 / 10 In
Thermal operation limit (DC): 1.13 / 1.45 In
Magnetic operation limit (DC): 7 / 15 In
Short-circuit breaking capacity 1 pole IT 400V (NF 60947-2): 3 kA
Rated short-circuit breaking capacity according to IEC 60898-1: 6 kA (for 230 V AC)
Rated final short-circuit breaking capacity (Icu): 10 kA (according to IEC 60947-2, 415V AC)
RoHS compliance: Yes
Halogen-free: No
Operating temperature: -25...70 °C
Pollution degree according to IEC 60664 / IEC 60947-2: 2
Energy limiting class (I²t): 3
Storage/transport temperature: -25...80 °C
Usage:System protection: Circuit breakers are used to protect electrical systems from short circuits, overloads, and other potential damage. They automatically disconnect when an emergency situation occurs, protecting the equipment from damage.
Industrial and commercial systems: These breakers are used in both industrial and commercial electrical systems, where reliable and safe electrical supply is important.
Residential applications: Circuit breakers are also widely used in residential buildings to ensure electrical safety and protect against potential failures.
Automation systems: Due to their reliability and easy installation, these breakers are often used in automated systems where quick response to voltage fluctuations is important to ensure system safety.
Pros:High protection capacity: The breaker has a high short-circuit breaking capacity (6 kA according to IEC 60898-1), ensuring high safety in industrial and residential electrical systems.
High accuracy and reliability: The device ensures precise response to current fluctuations, both under low and high current, protecting the system from potential damage.
Easy installation: The 1-module breaker is easy to install in standard electrical installations and takes up minimal space in the electrical distribution box.
Suitable for various electrical systems: Suitable for both AC 230V and 400V systems, allowing it to be used in various sectors, from residential to industrial power supply systems.
Reliable protection according to international standards: Complies with high safety and quality standards (IEC 60898-1, IEC 60947-2, RoHS), allowing global use and meeting various requirements.
Cons:High price: These breakers may be more expensive than simple switches or fuses, but their cost is justified by their high reliability and longevity.
Potentially more complex installation: If the system is more complex or has more connections, installation may take a bit longer compared to simple breakers, but it is still not complicated.
Limited protection against very high voltage: While the breaker protects against voltage fluctuations and short circuits, it may be insufficient in cases of very high voltage or special conditions where specialized protection solutions are required.
The automatic circuit breaker is a high-quality protection component designed to ensure a safe and reliable power supply in both industrial and residential and commercial electrical systems. With its high short-circuit breaking capabilities, high accuracy, and simple installation, this breaker ensures system safety and efficiency. While its price may be higher than that of standard breakers, its longevity and reliability justify the investment.Illustrative image may have been created using AI. The appearance of the product may differ slightly from the image shown. Please refer to the technical specification.ManufacturerCircuit breakers, also known as protective breakers or circuit interrupters, are essential components of electrical protection systems. They automatically disconnect the electrical circuit when it becomes overloaded or when a short circuit occurs. They are used in electrical installations to protect equipment and people from electrical faults. Circuit breakers come in various types and have different characteristics depending on the installation location, circuit load, and other specifications.
Circuit Breaker Characteristics:
B, C, and D Characteristics:
B characteristic: Used in residential areas or low-load systems. They operate when the current exceeds the nominal current by 3 to 5 times.
C characteristic: Commonly used in both residential and commercial or industrial spaces. Their operating threshold is 5 to 10 times the nominal current, making them suitable for loads with high inrush currents (e.g., motors, lighting systems).
D characteristic: Used in industrial installations where loads have very high inrush currents (e.g., compressors, transformers). They operate when the current exceeds the nominal by 10 to 20 times.
Advantages (Pros) of Circuit Breakers:Safety: Circuit breakers ensure that the circuit is automatically disconnected in case of overload or short circuit, preventing wire burning, equipment damage, or even fires.
Reliability: They are highly reliable and can operate for long periods without maintenance, reacting automatically when electrical faults occur.
Ease of use: There is no need to replace the breaker after it trips. After an overload or short circuit, the circuit breaker can simply be reset to its operational position, avoiding the need to replace fuses.
Precision: Circuit breakers operate accurately according to the nominal current and circuit characteristics, ensuring minimal unnecessary power interruption.
Protection against short circuits and overloads: Breakers not only protect against short circuits but also against prolonged overloads, which can be harmful to electrical systems.
Versatility: There are various types of circuit breakers suitable for different systems, from small household installations to large industrial systems.
Easy reset: After a trip, the breaker can simply be reset without the need to replace it (unlike fuses that need to be replaced after a trip).
Disadvantages (Cons) of Circuit Breakers:High cost: Circuit breakers, especially those with more complex functions (e.g., adjustable protection limits), are more expensive than simple fuses.
Limited operating range: While breakers provide protection against overloads and short circuits, they cannot protect against all types of electrical faults, such as overvoltage. Additional protection devices are required for that.
Larger size: Circuit breakers are generally larger than fuses, meaning their installation may require more space in the distribution panel.
Limited protection against frequent overloads: If the electrical system experiences frequent overloads, circuit breakers may not fully protect equipment from long-term damage caused by continuous overload exposure.
More complex repair: Some complex circuit breakers may require more maintenance or repairs if they malfunction or trip incorrectly.
Applications of Circuit Breakers:Household Installations:
B characteristic breakers are most commonly used in residential installations to protect circuits from short circuits and overloads. They are suitable for lighting circuits, plugs, and other low-load devices.
C characteristic breakers are also used in homes but are better suited for areas with higher inrush currents, such as electric motors or heaters.
Commercial and Industrial Installations:C characteristic breakers are often used in commercial and industrial buildings. They are suitable for electrical equipment with medium inrush currents.
D characteristic breakers are used in industrial equipment where large inrush currents occur, such as for heavy motors, transformers, or high-power equipment protection.
Large Mechanisms and Industrial Equipment:D characteristic breakers are used where the inrush currents are very high. This includes electrical network distribution sections, industrial machinery, and transformers.
Protection of Electronics Equipment:Certain types of circuit breakers are used to protect electronic equipment, such as in server rooms or other sensitive systems where fast and precise protection is required.
Conclusion:
Circuit breakers are essential in modern electrical systems to ensure safe power supply and protection from faults. They have many advantages, such as reliability, safety, and easy resetting, but they also have some drawbacks, such as higher cost and larger size. Their selection depends on the intended use and required protection parameters.K – Trips when the current is 8-12 times higher than the nominal current, designed to protect circuits powering motors, capacitors, and transformers.
S – Trips when the current is 13-17 times higher than the nominal current, designed for the protection of control transformers.
Z – Trips when the current is 2-3 times higher than the nominal current, designed for the protection of computer equipment and other electronic components and devices.
This product is marked with the CE label, which confirms that it complies with all applicable European Union directives and regulations. CE marking is not just a formality – it is an important indicator of quality and safety, ensuring that the product has been properly assessed, tested, and can be safely used throughout the EU market.
CE certification means that the product has been evaluated according to the main criteria:
Safety requirements – ensures that the product does not pose a risk to the user or the environment
Electromagnetic compatibility (EMC) – the device does not interfere with other equipment and is resistant to external disturbances
Environmental standards – complies with current ecological and material usage requirements
Operational reliability – the product is suitable for long-term use according to its intended purposeCE marking allows this product to:
be legally supplied and used in all European Union countries
ensure a high level of quality and safety
be used in residential, commercial, and industrial environmentsThe CE mark is a declaration of the manufacturer’s responsibility, confirming that the product complies with all applicable standards and has been assessed according to EU legislation.
What does this mean for you as a buyer?
Safe use in everyday activities
Reliable performance and reduced risk of failure
Compliance with EU standards and requirements
Suitability for professional solutions
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