JGX-TSC-3 Switching Device
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  • JGX-TSC-3 Switching Device

JGX-TSC-3 Switching Device


Capacitor regulator is mainly suitable for impact load, because of the large harmonic can not use ordinary composite switch or contactor field. Electric load sites that need to quickly switch capacitors, such as: Welding machines, air conditioners, steel rolling, port cranes, elevators, inverter furnaces, etc.


  • Core Advantages
  • Technical Parameter
  • 1. Control mode: DC12V.
    2. High brightness LED indication function, switching state, alarm, operation and other states, intelligent control of cooling fan start and stop function.
    3. Control capacity: 40kvar.
    4. High temperature protection.
    5. Alarm locking function.
    6. Small size, easy to install.
    7. Intelligent AI function, can detect and control the start and stop of the fan in real time.

    Switching device is an essential component in electrical systems, enabling the efficient control and protection of electrical circuits. It plays a crucial role in the safe and effective management of electrical power distribution. These devices are designed to switch electrical circuits on or off, offering flexibility and reliability in numerous applications, from industrial setups to residential homes.

    Switching devices come in various types, including mechanical and electronic switches, circuit breakers, and contactors. These devices are engineered to handle different voltages and current levels, ensuring optimal performance and protection against overloads or short circuits. The primary function of a switching device is to connect or disconnect electrical circuits, allowing for safe operation and maintenance of equipment.

    One key feature of switching devices is their ability to enhance safety. In case of a fault, such as an overload or a short circuit, the switching device can disconnect the faulty circuit to prevent further damage to the electrical system. For example, circuit breakers automatically trip when an overload is detected, cutting off the electrical flow and preventing potential hazards like fire or equipment damage.

    In addition to safety, switching devices improve the efficiency of electrical systems. By allowing easy control of circuits, they help in energy conservation and prevent unnecessary power wastage. The use of switching devices also facilitates maintenance work, as they enable technicians to isolate specific parts of a system for inspection or repair without affecting the entire network.

    Moreover, switching devices contribute to the longevity of electrical equipment. By controlling the flow of electricity and preventing surges or drops in voltage, they help protect sensitive devices from potential damage. This extends the lifespan of machines and reduces maintenance costs.

    In conclusion, switching devices are integral to modern electrical systems, providing safety, efficiency, and protection. Whether in industrial environments, commercial buildings, or residential installations, these devices ensure the reliable and safe operation of electrical circuits. Their ability to manage electrical flow, protect against faults, and improve system efficiency makes them indispensable components in any electrical setup.

  • Power supply conditions

    Accuracy of measurement

    Control parameters

    Adapt to the environment

    Interface parameters

    (1)Rated working voltage: 400V
    (2)Voltage deviation: +20%
    (3)Voltage waveform: sine wave, total distortion rate <5%
    (4)Frequency: 50Hz
    (5)Power consumption: 5W
    (1)Voltage: <0.5%
    (2)Current: ≤0.5%
    (3)Active power and reactive power: 1.0%
    (4)Power factor: ±0.01
    (5)Temperature: ±1.0°C
    (1)Control variables: Voltage, voltage reactive, power factor, voltage power factor reactive power
    (2)Switching mode: Cyclic switching, filter switching
    (3)Switching delay: # switching delay, switching delay, switching interval
    (4)Response time: >100ms
    (1)Ambient temperature: -25 °C ~ +60 °C
    (2)Relative humidity: 20%~90%
    (3)Altitude: <2000m
    (4)Atmospheric pressure: 79.5kPa~106.0kPa

    (1)Switching output capacity:
    Passive: ≤AC250 5A

    Active: ≤DC12V20mA

    (2)Output circuit: single output 24, master-slave mode output 72

    (3)Temperature sensor: NTC

    (4)Communication interface: RS485, Modbus-RTU protocol

Keywords:

JGX-TSC-3 Switching Device

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