Cheapest Price Miniature circuit breaker-FTB2LE for Montpellier Manufacturers


Technical data

Product illustration

Tripping characteristic

Exterior and dimensions

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Product illustration:


 Technical Data

Model FTB2LE Miniature circuit-breaker
Number of poles IP+N,2P,3P,3P+N,4P
Rated frequency: AC 50/60Hz
Rated voltage (V) AC 230/400
Rated current (A) C


6, 10, 16, 20, 25, 32, 40, 50, 63


Rated residual operating current(mA) AC A 30


Rated residual non-operating current(mA) AC




Residual current breaking time 30mA≦0.1s  250mA≦0.04s
Max. breaking time(s) 0.1
Rated short-circuit breaking capacity(KA) 6.5
Rated residual current breaking capacity(KA) 4.5
Mechanical & electrical life: 20,000 operations
Protection rating IP20
Installation On DIN rail 35mm according to JB6525
Connection capacity: Cross-section of conductors up to 25mm², Cross-section of busbar from 0.8-2mm²,reversibility of connections
Tightening torque 2 Nm
Ambient temperature (°C) - 5°C ~ +40°C
Altitude (m) ≤2000m
Relative air humidity no more than 95%
Pollution degree
Installation condition Used in place without obvious shock and vibration
Weight (g) 340 420 530 630 710


Exterior and dimensions


Number of poles Width(mm) Modules
1 / 2 54 3
2 / 2 72 4
3 / 3 100 5.5
3 / 4 112.5 6.25
4 / 4 130.5 7.25




Inventor of miniature circuit breaker.
The miniature circuit breaker was invented by Stotz-Kontakt, a company established in Mannheim, Germany, in 1891
application, although his commercial power distribution system used fuses. Its purpose was to protect lighting circuit wiring from accidental short circuits and overloads. Inside the MCB and its construction.
MCB means is miniature circuit breaker. it is commonly use in low voltage electrical network system instead of fuse. miniature circuit breaker is best if compared to the fuse. Its automatically switches off the electrical appliances during abnormal condition like over load or short circuit condition.
Working Principle of Miniature Circuit Breaker.
In MCB there are two type arrangement of operation. First is due to thermal effect of over current and second is electromagnetic effect of over current.
The thermal operation of MCB is achieved with a bimetallic strip when continuous over current flows through MCB the bimetallic strip is heated and deflects by bending just like in electric iron. deflection of bimetallic strip releases mechanical latch and operate the MCB mechanism to open the miniature circuit breaker contacts.
In case of short circuit condition current rise suddenly. it causes electromechanical displacement of plunger associated with tripping coil or solenoid of MCB. The plunger strikes the trip lever causing immediate release of latch mechanism consequently open the circuit breaker contacts.
There are three type of MCB, one is Type B, second is Type C and third is Type D.
• Type B trips between 3 and 5 time full load current and is generally used for lighting and domestic applications.
• Type C trips between 5 and 10 times full load current and is generally used for industrial and commercial applications.
• Type D trips between 10 and 20 times full load current and is generally used for specialist industrial use with high inrush currents.

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