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High-Voltage Shunt Power Capacitor

High-voltage power capacitors, designed for 50Hz/60Hz AC power systems, are primarily applied to enhance power factor and grid voltage quality, reduce line losses and effectively optimize the efficiency of power generation and supply equipment.

High-Voltage Shunt Power Capacitor
Product Features

·GB/T11024.1Shunt Capacitors for A.C. Power Systems Having a Rated Voltage above 1kV - Part 1: General

·GB/T11024.2Shunt Capacitors for A.C. Power Systems Having a Rated Voltage above 1kV - Part 2: Aging Testing

·GB/T11024.3Shunt Capacitors for A.C. Power Systems Having a Rated Voltage above 1kV - Part 2: Aging Testing

·GB/T11024.4Shunt Capacitors for A.C. Power Systems Having a Rated Voltage above 1kV - Part 2: Aging Testing

·DL/T840Specification of High-voltage Shunt Capacitors for Service

·GB/T311.2Insulation Co-ordination Part 1: Definitions, Principles and Rules

·IEC 60871-1Shunt capacitor for a.c. power systems having a rated voltage above1000V-Part1: General

·IEC 60871-2Shunt capacitor for a.c. power systems having a rated voltage above1000V-Part2: Endurance testing

·IEC 60871-3Shunt capacitor for a.c. power systems having a rated voltage above1000V-Part3: Protection of shunt capacitor and shunt capacitor banks

·IEC 60871-4Shunt capacitor for a.c. power systems having a rated voltage above1000V-Part4: internal fuses

1. The dielectric between the electrodes of the capacitor can withstand one of the following two test voltages for 10 seconds:

a. Power frequency AC voltage: Ut(~)=2.0UNb. DC voltage: Ut(-)=4.0UN

2. The difference between the measured capacitance value and the rated value of the capacitor does not exceed -2%-+3%.

3. The tangent value (tanδ) of the loss angle of the capacitor at a rated power frequency voltage and a temperature of 20℃ is:

Capacitors with internal fuses: tanδ≤0.02%; capacitors without internal fuses: tanδ≤0.015%.

4. Discharge resistance: The capacitor is equipped with built-in discharge resistors, ensuring that the discharge resistance drops from√2UNto 75V or below 50V within 10 minutes.

5. Short-circuit discharge capability: The capacitor can withstand 5 times of 2.8UN short-circuit discharges within 10 minutes.

6. Fuse isolation: The upper and lower voltage limit is 2.5√2UN, and 0.8√2UN, respectively. After the fuse operates, the rupture withstands a DC test voltage of 3.5UNE (UNE is the component voltage) and an AC test voltage of 2.15UNE.

7. Partial discharge performance

1) Inter-electrode partial discharge:

After imposing voltage on the capacitor for 1 second after the partial discharge starts, then reducing the voltage to 1.35UNfor 10 minutes, and subsequently increasing the voltage to 1.6UNand maintaining it for 10 minutes, no obvious partial discharge occurs in this process. For application in extremely cold regions, the capacitor’s partial discharge quenching voltage is not less than 1.2UNat the lower temperature limit.

2) Electrode-to-shell partial discharge quenching voltage:

The electrode-to-shell partial discharge quenching voltage is not less than 1.2Ulm(Ulmis the maximum operating line voltage).

8. Overload capability

1) Operating overvoltage: The capacitor can withstand the transient overvoltage of the first peak not exceeding 2√2UNfor 1/2 cycle.

2) Maximum permissible current: The capacitor is designed to operate under a steady overcurrent with an effective value of 1.3IN caused by voltage rise and high harmonics. For capacitors with the maximum positive deviation, this overcurrent is permissible up to 1.43 times.

3) Long-term voltage


Model Description
Voltage factor Maximum duration Description
1.00 Highest average value during any time when the capacitor is powered on.
1.10 12h/24h Adjustment and fluctuation of system voltage
1.15 30min/24h Adjustment and fluctuation of system voltage
1.20 5min Voltage rises under light load
1.3 1min
Shunt Capactior (Internal Fuse)

Model TYPE Rated voltage kV Rated capacity kvar Rated capacitance μF Weight kg Wmm H1mm h1mm
BAM11/√3-200-1W 11/√ 3 200 15.78 32 140 415 100
BAM12/√3-200-1W 12/√3 200 13.26 34 140 435 100
BAM12/√3-300-1W 12/√3 300 19.89 49 180 490 100
BAM11/√3-334-1W 11/√3 334 26.36 50 180 500 200
BAM12/√3-334-1W 12/√3 334 22.15 54 180 535 200
BAM11/√3-400-1W 11/√3 400 31.57 59 180 585 200
BAM12/√3-400-1W 12/√3 400 26.53 61 180 610 200
BAM11/√3-500-1 W 11/√3 500 39.46 75 180 750 200
BAM12/√3-500-1W 12/√3 500 33.16 75 180 750 200
BAM11/√3-600-1W 11/√3 600 47.35 83 180 825 300
BAM12/√3-600-1W 12/√3 600 39.79 90 180 895 300
BAM11/√3-700-1W 11/√3 < /td> 700 55.24 95 180 945 300
BAM12/√3-700-1W 12/√3 700 46.42 100 180 1000 400
BAM11/2-334-1W 11/2 334 35.15 52 180 520 200
BAM12/2-334-1W 12/2 334 29.53 51 180 510 200
BAM11/2-417-1W 11/2 417 43.88 63 180 625 200
BAM12/2-417-1W 12/2 417 36.87 63 180 625 200
BAM11/2-500-1W 11/2 500 52.61 77 180 770 200
BAM12/2-500-1W 12/2 500 44.21 77 180 770 200
BAM11-500-1W 11 500 13.15 76 180 760 200
BAM12-500-1W 12 500 11.05 78 180 775 200
BAM 21/2-500-1W 21/2 500 14.44 76 180 760 200
BAM23/2-50 0-1W 23/2 500 12.03 80 180 800 300
Shunt Capactior (External Fuse)

Model TYPE Rated voltage kV Rated capacity kvar Rated capacitance μF Weight kg Wmm H1mm h1mm
BAM11/√3-100-1W 11/√3 100 7.89 19 140 245 100
BAM12/√3-100-1 W 12/√3 100 6.63 18 140 235 100
BAM11/√3-200-1W 11/√3 200 15.78 31 140 400 100
BAM12/√3-200-1W 12/√3 200 13.25 33 140 420 100
BAM11-100-1W 11 100 2.63 19 140 250 100
BAM12-100-1W 12 100 2.21 19 140 250 100
BAM11-200-1W 1 1 200 5.26 33 140 420 100
BAM12-200-1W 12 200 4.42 33 140 420 100
BAM11-300-1W 11 300 7.89 47 180 465 100
BAM12-300-1W 12 300 6.63 47 180 470 100
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