icms_en_e39d08e0710511f09d0e2f376ea056ee
icms_en_e39d08e0710511f09d0e2f376ea056ee
50KVAR Self-healing Capacitor for PFC(Power factor correction)-square BKMJ
1.Rated Voltage(Ue):100v~1000v
2.Installation Indoor
3.Case material Galvanized steel sheet
4.Output Range 10~100kvar
5.Frequency 50/60Hz
6.Connection configuration D, Y, YN, III
7.Terminal Block :M6, M8, M10 (According to capacitor power)
8.Lose tanδ<0.001 (20°C 50Hz)
9.Temprature -25°C~50°C
10.Highest Altitude 2000m
11.Capacitor (to wall) pitch ≥50mm
12.Capacitance Deviation -5%~+10%
View details BKMJ0.4KV Submerged Arc Furnace Capacitor
1.Frequency 60Hz
2.Capacitance Deviation -5%~+10%
3.Max Current 2.5×In
Equipped with discharge resistors
4.Integrated with independent over-voltage protection devices
5.Superior self-healing performance and extended service life
6.Low-loss factor, dry-type design with leakage-free construction
7.Equipped with discharge resistors
View details 10KV High voltage Shunt High-Voltage Capacitors
1.Rated Voltage:6kV,10kV,35kV
2.Rated Capacity:1-100Mvar(per bank)
3.The capacitor is mainly consisted of container and device body.
4.The core is consisted of severalelements and insulation parts. The element is rolled, pressed andmade of two aluminum foilsand somepiece of thin dielectric polypropylene films sandwiched betweenthe two aluminum foils. In order to reach the differentdemand of voltage and capacity, the elements in core is connected by someseriesand parallelmethod. The technology of aluminum foiledge folding and protruding weldingare used to reduce the loss and increase the performance of partial discharging.
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Indoor capacitor bank 0
TBB10 High Voltage Reactive Power Automatic Compensation Device
1.Rated voltage: 6–10kV
2.Frequency: 50Hz
3.Capacity: 100–10,000kVar
4.Ambient temperature: -25℃ ~+45℃;
5.Reactor options:
Inrush suppression: 0.1–1% reactance
5th+ harmonic suppression: 6% reactance
3rd+ harmonic suppression: 12% reactance
GGJ Low Voltage Reactive Power Intelligent Compensation Device
1.system voltage:Below AC450
2.Automatic reactive power compensation to improve power factor
3.Enhanced equipment efficiency with reduced investment costs
4.Minimized distribution line losses and transformer losses
5.Optimized voltage quality and improved power supply reliability
6.Compatibility: Integrates with global cabinet systems (MNS/GCK/GGD)