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GV3P401

5/5 - (3 votes)

Motor circuit breaker,TeSys Deca frame 3,3P,30-40A,thermal magnetic,EverLink,without downstream

Main documents

Main
RangeTeSys Deca
Product nameTeSys GV3
TeSys Deca
Product or component typeMotor circuit breaker
Device short nameGV3P
Device applicationMotor protection
Trip unit technologyThermal-magnetic
Complementary
Poles description3P
Network typeAC
Utilisation categoryAC-3 conforming to IEC 60947-4-1
Network frequency50/60 Hz conforming to IEC 60947-4-1
Fixing mode35 mm symmetrical DIN rail: clipped
Panel: screwed (with 3 x M4 screws)
Motor power kW18.5 kW at 400/415 V AC 50/60 Hz
22 kW at 500 V AC 50/60 Hz
37 kW at 690 V AC 50/60 Hz
Breaking capacity100 kA Icu at 230/240 V AC 50/60 Hz conforming to IEC 60947-2
50 kA Icu at 400/415 V AC 50/60 Hz conforming to IEC 60947-2
50 kA Icu at 440 V AC 50/60 Hz conforming to IEC 60947-2
12 kA Icu at 500 V AC 50/60 Hz conforming to IEC 60947-2
6 kA Icu at 690 V AC 50/60 Hz conforming to IEC 60947-2
[Ics] rated service short-circuit breaking capacity100 % at 230/240 V AC 50/60 Hz conforming to IEC 60947-2
100 % at 400/415 V AC 50/60 Hz conforming to IEC 60947-2
100 % at 440 V AC 50/60 Hz conforming to IEC 60947-2
50 % at 500 V AC 50/60 Hz conforming to IEC 60947-2
50 % at 690 V AC 50/60 Hz conforming to IEC 60947-2
Control typeRotary handle
[In] rated current40 A
Thermal protection adjustment range30…40 A conforming to IEC 60947-4-1
Magnetic tripping current560 A
[Ith] conventional free air thermal current40 A conforming to IEC 60947-4-1
[Ue] rated operational voltage690 V AC 50/60 Hz conforming to IEC 60947-2
[Ui] rated insulation voltage690 V AC 50/60 Hz conforming to IEC 60947-2
[Uimp] rated impulse withstand voltage6 kV conforming to IEC 60947-2
Phase failure sensitivityYes conforming to IEC 60947-4-1
Suitability for isolationYes conforming to IEC 60947-1
Power dissipation per pole8 W
Mechanical durability50000 cycles
Electrical durability50000 cycles for AC-3 at 415 V In
Rated dutyContinuous conforming to IEC 60947-4-1
Tightening torque5 N.m – on screw clamp terminal
Width55 mm
height132 mm
Depth136 mm
Net weight0.96 kg
ColourDark grey
Environment
StandardsEN/IEC 60947-2
EN/IEC 60947-4-1
UL 60947-4-1
CSA C22.2 No 60947-4-1
product certificationsCCC
UL
CSA
EAC
ATEX
LROS (Lloyds register of shipping)
BV
ABS
DNV-GL
UKCA
IK degree of protectionIK09 enclosure
IP degree of protectionIP20 conforming to IEC 60529
Climatic withstandConforming to IACS E10
Ambient air temperature for storage-40…80 °C
Fire resistance960 °C conforming to IEC 60695-2-11
Ambient air temperature for operation-20…60 °C
Mechanical robustnessShocks: 15 Gn for 11 ms contactor open
Shocks: 30 Gn for 11 ms contactor closed
Vibrations: 4 Gn, 5…300 Hz
Operating altitude3000 m
Packing Units
Unit Type of Package 1PCE
Number of Units in Package 11
Package 1 Height6.500 cm
Package 1 Width16.000 cm
Package 1 Length14.700 cm
Package 1 Weight909.000 g
Unit Type of Package 2P06
Number of Units in Package 260
Package 2 Height75.000 cm
Package 2 Width60.000 cm
Package 2 Length80.000 cm
Package 2 Weight67.540 kg
Product Description

schneider motor circuit breaker

Frequently Asked Questions

A contactor serves as a specialized relay designed to control the opening and closing of electrical circuits. Primarily utilized in conjunction with electric motors and lighting systems, they facilitate efficient switching operations.

A contactor is employed to safely and indirectly manage the operation of high-power electrical equipment, such as motors, fans, and pumps, by interfacing with a PLC. By using a contactor, we ensure the secure control of heavy-duty, high-voltage devices without directly connecting them to the PLC.

Contactors excel in managing high-current loads, whereas relays are ideal for low to medium-current applications. This contrast stems from their distinct designs, with contactors boasting larger, sturdier auxiliary contacts tailored to handle elevated currents efficiently.

A magnetic contactor is an electromechanical device used to control the flow of electricity in an electrical circuit. It consists of a coil that, when energized, creates a magnetic field to close or open the contacts within the contactor.

Magnetic contactors are commonly used in industrial and commercial applications to switch high-power loads, such as electric motors, lighting systems, heating elements, and other electrical equipment. They are known for their reliability, durability, and ability to handle high currents, making them essential components in various electrical control systems.

Auxiliary contactors are additional sets of contacts added to a primary contactor to perform auxiliary functions within an electrical control system. These contacts are typically used to provide feedback or signaling, monitor the status of the main contacts, or control auxiliary devices such as indicator lights, timers, or interlocks.
Auxiliary contactors are commonly found in industrial control panels, motor control centers, and other electrical equipment where precise control and monitoring of circuits are necessary. They play a crucial role in enhancing the functionality and safety of electrical systems by providing additional control and feedback options.

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