2210-T230-K0M1-H231-25A Allicdata Electronics
Allicdata Part #:

2210-T230-K0M1-H231-25A-ND

Manufacturer Part#:

2210-T230-K0M1-H231-25A

Price: $ 66.92
Product Category:

Circuit Protection

Manufacturer: E-T-A
Short Description: CIR BRK THERM-M 25A 250VAC/65VDC
More Detail: N/A
DataSheet: 2210-T230-K0M1-H231-25A datasheet2210-T230-K0M1-H231-25A Datasheet/PDF
Quantity: 1000
1 +: $ 60.83280
Stock 1000Can Ship Immediately
$ 66.92
Specifications
Series: 2210-T2
Part Status: Active
Breaker Type: Thermal Magnetic
Current Rating: 25A
Voltage Rating - AC: 250V
Voltage Rating - DC: 65V
Number of Poles: 3
Actuator Type: Lever
Illumination: None
Illumination Voltage (Nominal): --
Mounting Type: DIN Rail
Description

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The 2210-T230-K0M1-H231-25A is an example of circuit breakers. This important device can execute a number of functions related to circuit protection, the most important of which is the prevention of potential overloads, both not only sustained but also those caused by transient currents. Broken down into smaller parts, the part code of this breaker helps to identify its rated current, trip type, and voltage.

Firstly, the numeric digits of 2210 refer to the rated current, with the breaker being rated up to 10A. Following this, T230 indicates the type of trip, which in this case is based on thermo-magnetic technology. K0M1 is the signal type and H231 is the breaker’s AC voltage rating. Lastly, the 25A denotes the breaking capacity, which is 25Ah in the case of this breaker.

Application Field

Circuit breakers are installed and used in a variety of electrical applications, from automobiles to simple household devices that require short-circuit protection. In industrial applications, the operation is often completed by an automatic trip connection, and this is normally the application of this breaker.

The 2210-T230-K0M1-H231-25A is mostly used in motor protection applications where a surge of power is common. Another application field is the industrial automation, which involves the protection of inputs, outputs and power supplies.

Working Principle

The working principle of a circuit breaker has to do with its ability to break the connection with the device running the circuit in order to protect it from harm that can come from an overload. The working principle relies on an electromechanical device that is connected to the circuit. When the electrical current exceeds a certain limit, the breaker automatically trips and stops allowing electricity to flow.

As already mentioned, the 2210-T230-K0M1-H231-25A is based on a thermo-magnetic technology. This means that the breaker combines a thermal or temperature sensitive element with a magnetic element. These two elements work together to detect any overload current. When the current reaches a certain level, the thermal element will be activated and the magnetic part will be deactivated.

This deactivation of the magnetic element will cause the breaker to open and stop the flow of current. After the overload is gone and the current levels back to normal, the thermal element will cool down and the magnetic element will be re-activated which will reset the breaker and allow electricity to flow again.

In addition to these two elements, the 2210-T230-K0M1-H231-25A also has an indicator that is used to easily identify the status of the breaker. When the breaker is in an open state, the indicator will light up and when it is in a closed state, it will stay off.

The fault protection is also ensured by the additional features that this breaker has, such as live monitoring and emergency power supply cut-out. This can be of great importance if there is a risk of electric shocks or fire.

In conclusion, the 2210-T230-K0M1-H231-25A is a circuit breaker based on a thermo-magnetic technology. It is used in a variety of applications such as motor protections or industrial automation as it provides reliable overcurrent protection combined with a status indicator, live monitoring and emergency power supply cut-out.

The specific data is subject to PDF, and the above content is for reference

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