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Schneider Electric Circuit Breakers (Low Capacity)(Mounting Method:DIN rail mount)

Schneider Electric offers products Circuit Breakers (Low Capacity) specified by Mounting Method DIN rail mount from Electrical & Controls product category. There are a total of 1 items. Parts and equipment for controlling machines and electrical systems. Controllers and power supplies. Schneider Electric products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.
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    DC Main Switch for Photovoltaic Installations C60NA-DC

    DC Main Switch for Photovoltaic Installations C60NA-DC

    Schneider Electric

    The C60NA-DC is a direct current switch-disconnector dedicated to disconnection of the string of photovoltaic modules and the PV inverter.
    It is designed to isolate the string of photovoltaic modules and the inverter from the rest of the photovoltaicinstallation for maintenance operations in compelete safety
    From: ฿ 2,844.00
    Days to Ship: day to ship 60 Day(s)
    day to ship 60 Day(s)
Brand
Product Series
From
Days to Ship
Ampere frame
Rated block capacity AC 100 V(kA)
Rated block capacity AC 200 V(kA)
Rated block capacity AC 400 V(kA)
Rated Braking Capacity at Rated Voltage of VDC 250(kA)
Rated block capacity, voltages except VAC 100/200/400, VDC 250
Number of Poles
Rated Current(A)
Mounting Method
Connection Method
Representative Standard
Dimension height(mm)
Dimension width(mm)
Dimension depth(mm)
You can add up to 6 items per a category to the compare list.
DC Main Switch for Photovoltaic Installations C60NA-DC
Brand

Schneider Electric

Product Series

DC Main Switch for Photovoltaic Installations C60NA-DC

From

฿ 2,844.00

Days to Ship 60 Day(s)
Ampere frame-
Rated block capacity AC 100 V(kA)-
Rated block capacity AC 200 V(kA)-
Rated block capacity AC 400 V(kA)-
Rated Braking Capacity at Rated Voltage of VDC 250(kA)-
Rated block capacity, voltages except VAC 100/200/400, VDC 250-
Number of Poles2
Rated Current(A)50
Mounting MethodDIN rail mount
Connection Method-
Representative Standard-
Dimension height(mm)132.7
Dimension width(mm)72
Dimension depth(mm)77.4

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  1. 1

Related Categories to Circuit Breakers (Low Capacity)

FAQ Circuit Breakers (Low Capacity)

Question: Types of circuit breaker and their applications.
Answer: Circuit breakers mainly are categorized based on application as per voltage.
1. Low Voltage Circuit Breaker
Low-voltage circuit breakers are typically used in applications such as lighting circuits, motor control centers, feeder circuits, and any application in which electrical power needs to be turned on and off and overcurrent protection is required.
2. Medium Voltage Circuit Breakers
Medium voltage breakers are designed to be operated electrically by a closing solenoid or a stored energy mechanism. Manual operation is used primarily for breaker maintenance.
3. HIGH-VOLTAGE CIRCUIT BREAKERS
High-voltage circuit breakers are mechanical switching devices that connect and break current circuits (operating currents and fault currents) and carry the nominal current in the closed position.
Question: What can cause the main circuit breaker to trip?
Answer: The most common cause of a tripped circuit breaker is an overload in that circuit. Each circuit is only intended to carry a certain electrical load, and if it exceeds this load, it will cause the breaker to trip. This is important, as overloading a circuit can cause the wiring to heat up and potentially create a fire risk. In fact, it is this excess heat running through the circuit that causes the breaker to trip.
Question: How we know that have to replace breaker?
Answer: 1. Breaker trips frequently.
2. Burning smell coming from the electrical panel.
3. Poorly performing appliances and light fixtures.
4. Breaker fails to stay in reset mode.
5. Visible signs of physical damage.
Question: How do I know whether to get a 15 or 20 A circuit breaker?
Answer: Calculate the total current of all electrical equipment. that want to be connected to the breaker The sum of the calculated current should not exceed 80% of the breaker capacity. For example, a 15 A breaker can be connected to external devices up to 12A (15 x 0.80 = 12), and a 20 A breaker can be connected to external devices up to 16A (20 x 0.80 = 16). This can lead to calculation errors and can cause a fire.