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VBD-12G Integrated indoor high-voltage vacuum circuit breaker

Описание:

• Classification Series :Indoor Vacuum Circuit Breaker • Product Name :VBD-12G Integrated indoor high-voltage vacuum circuit breaker • Product Overview: VBD-12G(R) series indoor high-voltage three-station vacuum circuit breakers have excellent electrical and mechanical properties, reliable and stable mechanism and long service life. The main circuit adopts solid sealing pole...
  • подробность
  • Product overview

     

    Three-station indoor Vacuum Circuit Breaker is a kind of high-voltage switchgear which integrates the functions of circuit breaker and disconnector, and is specially designed for indoor installation (usually used for medium-voltage switchgear, such as KYN28 and KYN61). Its core feature is that it has three clear and interlocking stations (positions):

     

    Closing position: the main circuit is on, and the circuit breaker is closed, which can carry rated current and break fault current.

     

    Switch-off position: the main circuit is disconnected and the circuit breaker is in the open state. At this time, there is a prescribed insulation distance and reliable fracture between the moving and static contacts.

     

    Grounding position: the main circuit is disconnected, and the incoming side or outgoing side (usually load side or cable side according to the design) of the main circuit is reliably grounded through the grounding switch inside the circuit breaker body, providing safety protection for maintenance.

     

     

     

    Core structure and working principle

     

    Vacuum interrupter: the core component, which uses high vacuum environment as insulation and arc extinguishing medium. When the current is interrupted, the metal vapor arc generated between the contacts can quickly spread and extinguish in a vacuum environment.

     

    Three-station mechanism: unique mechanical transmission and operation mechanism. Through a set of operating mechanism (usually spring energy storage operating mechanism) and a rotating shaft, the moving contact of vacuum interrupter and the moving contact of grounding switch are driven.

     

    When the mechanism drives the moving contact to rotate to contact with the static contact of the main circuit, it is the closing position.

     

    When the mechanism drives the moving contact to rotate away from the static contact of the main circuit and does not touch the grounding contact, it is the opening position (isolation fracture is established).

     

    When the mechanism continues to drive the moving contact to rotate and make it reliably contact with the static contact of the grounding circuit, it is the grounding position (the load side of the main circuit is grounded).

     

    Insulation structure: Insulating parts (such as insulating tie rods and insulators) usually cast or pressed with high-quality insulating materials such as epoxy resin or SMC (sheet molding compound) to ensure the insulation strength between phases, phases and fractures.

     

    Operating mechanism: spring energy storage operating mechanism is widely used. Energy can be stored electrically (by motor) or manually. Opening and closing operations can be either electric (electromagnet or permanent magnet mechanism) or manual. The mechanism is internally designed with strict mechanical interlocking to ensure that:

     

    Only when the circuit breaker is in the "opening position" can it be operated to the "grounding position".

     

    Only when the circuit breaker is in the "opening position" can it be operated to the "closing position".

     

    When in the "closing position" or "grounding position", mutual conversion operation cannot be performed.

     

    Prevent the disconnector from opening/closing under load (i.e. operating from the opening position to the grounding position or vice versa, it must be carried out under no load).

     

    In addition to the internal interlocking of the mechanism, the interlocking device usually cooperates with the "five-prevention" interlocking system of the switch cabinet (for example, through the position of the chassis and the locking of the cabinet door, etc.) to achieve comprehensive safety protection and prevent misoperation.

     

    Technical parameter

    Parameter categoryParameter nameUnitTypical value rangeExplain
    Rated parameter
    rated voltagekV12, 24, 40.5MaximUm system voltage (um)
    rated frequencyHz50 / 60
    rated currentA630, 1250, 1600, 2000, 2500, 3150, 4000The working current that the circuit breaker can bear for a long time
    Rated short-circuit breaking currentkA20, 25, 31.5, 40, 50The effective value of the maximum short-circuit current that the circuit breaker can break.
    Rated short-term withstand currentkA20, 25, 31.5, 40, 50Effective value and duration of short-circuit current that circuit breaker can bear in closing position.
    Rated short circuit durations3, 4Usually 3 or 4 seconds.
    Rated peak withstand currentkA50, 63, 80, 100, 125Peak short-circuit current that the circuit breaker can withstand in the closing position (usually =2.5 x Isc)
    Rated short-circuit closing currentkA50, 63, 80, 100, 125The maximum expected short-circuit current peak that the circuit breaker can close.
    Rated operating sequence-O-0.3s-CO-180s-COAutomatic reclosing operation sequence (minute -0.3 seconds-closing -180 seconds-closing)
    Dielectric level
    Rated lightning impulse withstand voltage (peak value)kV75 (12kV), 125 (24kV), 185 (40.5kV)Alternately and oppositely

    kV85 (12kV), 145 (24kV), 215 (40.5kV)Between fractures (isolated fractures)
    Rated power frequency withstand voltage (1min)kV42 (12kV), 65 (24kV), 95 (40.5kV)Alternately and oppositely

    kV48 (12kV), 79 (24kV), 118 (40.5kV)Between fractures (isolated fractures)
    Time parameter
    Opening timems≤ 50 - 65Time from the opening command to the separation of all polar arc contacts.
    Closing timems≤ 75 - 120Time from closing command to contact of all pole contacts.
    Interruption timemsOpening time+arcing time
    Arc timems≤ 10 - 20(usually)Time from contact separation to arc extinction.
    On-off time (metal short circuit time)ms≤ 50 - 70Time from the moment of contact in closing operation to the moment of contact separation in the next opening operation.
    Mechanical properties
    Mechanical life10,000 - 30,000The number of operation cycles when the main circuit is not charged (usually, it is divided into one).
    Rated current breaking times10,000 - 20,000Number of times of interrupting rated current
    Rated short circuit breaking times20 - 100Number of times of interrupting rated short-circuit current
    Energy storage times≤ 15 (electric)Time required for motor energy storage
    Grounding switch parameters
    Rated short-term withstand currentkASame as the main circuit or slightly lowerShort-circuit current that grounding switch can bear and its duration
    Rated short circuit durations3, 4Usually the same as the main circuit
    Rated peak withstand currentkASame as the main circuit or slightly lower
    Rated short-circuit closing currentkASame as the main circuit or slightly lowerThe maximum expected short-circuit current peak that the grounding switch can close (usually used for troubleshooting grounding).
    Mechanical life1,000 - 5,000Grounding switch operation times
    Other parameters
    Allowable wear thickness of dynamic and static contactsmm2月4日
    Main circuit resistanceμΩRefer to the manufacturer's specific model sample.Measured at rated current, the smaller the value, the better.
    Operating voltage (auxiliary circuit)V DC24, 48, 110, 220Energy storage motor, switching coil and control loop voltage

    V AC110, 220
    The protection gradesIPIP4X (shell), IP2X (cabinet)Solid foreign body prevention and waterproof grade
    Weightkg60 - 200+Increase with the increase of rated parameters
    Installation mode-Fixed/handcart type (drawout type)


    Three-station Indoor Vacuum Circuit Breaker is the core equipment in modern medium voltage distribution system, which is widely used for its advantages of integrated function, safety, reliability, convenient operation, less maintenance and environmental protection. Understanding its "three-station" design concept, core structure, working principle and key technical parameters is very important for the correct selection, installation, operation and maintenance of equipment and the safe and stable operation of power system. Be sure to use the official technical data provided by the equipment manufacturer as the basis.



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