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China XPQ Static Var Generator 400V/690V - Reliable Suppliers and Factory for Reactive Power Compensation Solutions

The XPQ-Static Var Generator is an advanced solution designed to efficiently compensate for reactive power in the grid, significantly enhancing overall power quality. As a leading product from a top China factory, this generator showcases superior performance and reliability.


√ Rated Voltage: 400V (±20%) / 690V (±20%);

√ Compensation Capacity: 25 ~ 500kVar;

√ Adjustable Target Power Factor: -0.99 ~ 0.99;

√ Harmonic Compensation: 2nd ~ 25th harmonic;

√ Compensation Range: perceptual and capacitive reactive power;

√ Comprehensive Protection Functions: including grid overvoltage, undervoltage, overcurrent, bus overvoltage, overheating, and current limiting protection.


As a prominent supplier in the industry, we ensure that our XPQ-Static Var Generator meets the highest quality standards, making it an ideal choice for various applications. Improve your energy efficiency and power quality with our cutting-edge technology today!

    Features

    1. Compensation ability
    The system can adjust the reactive power output based on site conditions to prevent overcompensation or undercompensation, ensuring a power factor of 0.99.
    2. Fast response
    Fully digital control. The harmonic current detection utilizes an efficient TTA algorithm based on time domain exchange. This enables quick and accurate calculation of the instantaneous value of reactive current, leading to a significant improvement in compensation response time and achieving a full response within 10ms.
    3. High-end quality of core components
    German original IGBT module, three-level topology. The control system is comprised of the American TIDSP control chip, as well as ALTERA and CYCLONE 3 series FPGA chips, making it a powerful three-core system. Additionally, TI's double-ended high-speed input 12-bit A/D data conversion chip enhances the accuracy and reliability of signal sampling.
    4. Efficient heat dissipation
    The layered heat dissipation design allows for independent air ducts, leading to improved heat dissipation performance and effectively preventing dust and other pollutants from affecting the control system.
    5. Independent fan, detachable
    The fans can be easily disassembled and reassembled independently, enhancing heat dissipation reliability.
    6. Modular design
    Various capacity modules can be installed in any combination to improve the reliability and maintainability of the whole machine.
    7. Human-Machine Interface
    Single module can be equipped with a 5-inch LCD touchscreen, and multiple modules can have an external 7-inch LCD touchscreen. It supports real-time monitoring of operating data and online change of control parameters. It is simple to operate and can be equipped with an optional mobile phone APP for remote control.

    Basic Parameters

    Compensation capacity / Kvar 25 30 50 75 100 100
    AC input Rated voltage 400V(±15%) 690V (±15%)
    Working frequency (50±10%) Hz
    Wiring method 3-phase 4-wire or 3-phase 3-wire
    Technical Parameter Filtering capability

    ≥97%;

    Excess capacity is compensated at maximum capacity

    Power consumption ≤3% of rated capacity
    Module expansion capability Up to 10 function modules
    Switching frequency 20kHz
    Circuit topology Three-level
    Compensation range Inductive reactive power and capacitive reactive power can be continuously compensated
    Filter level setting Each harmonic can be individually set, and the ability to selectively eliminate specific harmonics (enhanced SVG) and ordinary SVG without filtering
    Compensation range Inductive reactive power, capacitive reactive power can be continuously compensated
    Compensation range The maximum inrush current Not more than rated current
    Response time 100μs/10ms
    Protection function Grid overvoltage, undervoltage, overcurrent, bus overvoltage, overheating and current limiting protection, etc., with a delay of 5μs
    Display function
    1. Each voltage and current value, current waveform display;
    2. Total load current value, SVG output total current value display;
    3. Operation mode setting, fault and runtime inquiry.
    Communication Interface RS232, RS485; WIFI and GPRS optional
    Performance Noise <65dB
    Target power factor -0. 99 ~ 0. 99 adjustable
    Cooling method Forced air cooling
    Ambient temperature -10℃ ~ +40℃
    Storage temperature -20℃ ~ +60℃
    Humidity Maximum Max 95%RH(non-condensing)
    Altitude Altitude ≤1500m, according to GB/T3859.2, the capacity decreases by 1% for every 100M increase
    Protection grade IP20 (other protection grades can be customized)
    Mechanical characteristic Color

    Acrylic black;

    other colors can be customized on request.

    Operating characteristics

    Operating safely and reliably 24/7 without disrupting the normal operation of other system equipment.

    The module has protection measures such as overhumidity, overvoltage, undervoltage, overload and overcurrent, short circuit and system self-diagnosis function.

    If a fault such as a short circuit occurs inside the module, it can protect itself without affecting the external power system.

    If the compensation energy required by the load is greater than the rated compensation energy, it can be output according to the main body capacity and continue to compensate without overloading or causing equipment damage and exiting operation.

    Model Specifications

    XPQ Static Var Generator, 400V690V4js

    Dimensions

    Drawer type
    XPQ Static Var Generator, 400V690V (1)3y4
    Model No. Dimensions (mm)
    W H D w d h Set screw Net weight(kg)
    XPQ - SG - 4L - 030 484 200 640 465 158 610 M6 34
    XPQ - SG - 4L - 050
    XPQ - SG/MG - 4L - 075
    XPQ - SG/MG - 4L - 100 544 250 646 525 180 610 47
    XPQ - MG - 4L - 030 392 200 555 373 158 530 29
    XPQ - MG - 4L - 050 392 200 555 373 158 530 29
    Wall-mounted type
    XPQ Static Var Generator, 400V690V (2)74k
    Model No. Dimensions (mm)
    W H D w d h Set screw Net weight(kg)
    XPQ - SG - 4L - 030 440 657 212 375 633 / M8 35
    XPQ - SG - 4L - 050
    XPQ - SG/MG - 4L - 075
    XPQ - SG/MG - 4L - 100 500 657 262 375 633 / 48
    XPQ - MG - 4L - 030 348 577 208 275 553 / 30
    XPQ - MG - 4L - 050 / 30
    Drawer type (lightweight)
    XPQ Static Var Generator, 400V690V (3)5sg
    Model No. Dimensions (mm)
    W H D w d h Set screw Net weight(kg)
    XPQ - CG - 4L - 030 88 520 420 / 507.6 / M6 15
    XPQ - CG - 4L - 050
    Wall-mounted (lightweight)
    XPQ Static Var Generator, 400V690V (4)lzh
    Model No. Dimensions (mm)
    W H D w d h Set screw Net weight(kg)
    XPQ - CG - 4L - 030 460 473 101.2 350 454 / M8 15
    XPQ - CG - 4L - 050

    Frequently Asked Questions

    What is the reactive power compensation target of this system?
    The system dynamically adjusts its reactive power output based on site conditions to prevent both overcompensation and undercompensation, maintaining a highly stable and optimized power factor of 0.99.
    How fast does the system respond to power quality variations?
    Thanks to its fully digital control system and efficient TTA algorithm based on time domain exchange, the system calculates instantaneous reactive currents rapidly, achieving a full response time within 10ms.
    What core components guarantee the high performance of this SVG?
    The device is built with a German original IGBT module and a three-level topology. The control unit runs on a powerful three-core system featuring an American TI DSP control chip, ALTERA and CYCLONE 3 series FPGA chips, and a TI 12-bit A/D data conversion chip.
    What are the benefits of the layered heat dissipation design?
    The layered design isolates the air ducts independently. This improves heat dissipation efficiency while protecting the sensitive electronics in the control system from dust, debris, and other environmental pollutants.
    How does the modular configuration design help maintenance?
    The modular layout allows you to combine modules of various capacities as needed. It ensures high system redundancy, simplifies troubleshooting, and makes individual modules easy to service or replace without taking down the entire system.
    What happens if the load requires more compensation than the rated capacity?
    If the required compensation energy exceeds the rated capacity, the system safely outputs at its maximum rated capacity to continue compensating. It will not overload, sustain damage, or exit operation.

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