Advanced power quality solutions for industrial and commercial applications.
Unexpected equipment downtime, data loss, and production line interruptions caused by unstable grid voltage.
Transformer overheating, additional cable losses, and precision equipment malfunction from harmonic pollution.
Hidden costs climbing on electricity bills, with utility companies charging extra for poor power factor.
Grid Sampling
FFT Analysis
SiC/IGBT Inversion
Harmonic Injection
Switching frequency >20kHz, loss reduction 30%
Adaptive damping, prevents 5th/7th resonance amplification
Space saving vs traditional 100mm+ cabinet models
Ultra high efficiency, maximizing energy utilization and reducing system losses
From standard cabinets to extreme environments, from harmonic filtering to reactive power compensation — find your configuration
Select voltage class, then choose series and capacity from the matrix
| Capacity \ Model | Ultra-SlimU-Series | DistributedD-Series | Anti-PollutionA-Series | SiCC-Series | StandardL-Series |
|---|
Step 1: Select Voltage Class
Step 2: Select Series
Step 3: Select Capacity
Equipped with a 7-inch high-resolution capacitive touchscreen providing an intuitive power quality monitoring experience. Real-time waveform display, historical data logging, remote communication, and control of up to 16 modules in one.
7-inch Touchscreen
Touch LCD & system setting
Real-time Measurement
Parameters / waveforms / spectra
Modbus / Ethernet
Remote monitoring & data logging
Multi-Language
EN/ZH/ES/DE/FR and 8 more
Note: Capacitor bank controller, which controls up to 32 sets of capacitor banks, is available. (7" monitor built-in or stand-alone type)
| Pain Point | Scenario Description | Consequence |
|---|---|---|
| Harmonic Distortion | Nonlinear loads such as VFDs, UPSs, LED drivers, and welding machines generate 3rd/5th/7th/11th harmonics | Transformer overheating, additional cable losses, sensitive equipment malfunction, nuisance tripping |
| Resonance Risk | Traditional passive filters form series/parallel resonance with system impedance | Harmonic current amplification, equipment damage, capacitor bank explosion |
| THDi Exceeds Limits | Total harmonic current distortion > 8% (IEEE 519) or > 5% (G5/4) | Utility fines, power supply restrictions, commissioning failure |
| Neutral Overload | 3rd harmonics accumulate in phase in 3-phase 4-wire systems | Neutral current reaches 1.7× phase current, cable insulation aging, fire hazard |
| False PF Reading | Harmonics distort traditional power factor meter measurements | Capacitor bank over/under compensation, ongoing penalty charges |