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Active Harmonic Filter Solution for Ningxia Monocrystalline Silicon Manufacturing Plant

Harmonic Mitigation for Monocrystalline Silicon Manufacturing Plant in Ningxia with Active Harmonic Filters

Project Overview

In 2023, Winzele provided an Active Harmonic Filter (AHF) solution for the Phase II expansion project of Ningxia Zhongjing Semiconductor Co., Ltd, a semiconductor material manufacturer specializing in monocrystalline silicon rods, grinding wafers, polishing wafers, and semiconductor components.

The project was developed for a high-power semiconductor manufacturing facility operated by Zhongjing Technology. The production process includes a large number of nonlinear electrical loads, including monocrystalline silicon furnaces, variable frequency drives, and servo-controlled equipment.

These power electronic devices generate significant harmonic currents, which may cause waveform distortion, additional transformer loading, increased electrical losses, and reduced power quality.

Active Harmonic Filter (AHF) cabinets installed in combination with low-voltage distribution switchgear at the project site

The AHF cabinets were combined with the low-voltage distribution switchgear to provide harmonic compensation within the 2000kVA transformer distribution system.

Customer Requirement

The semiconductor manufacturing process requires a stable and high-quality power supply system.

During operation, multiple nonlinear loads connected to the low-voltage distribution system generated considerable harmonic currents, especially low-order harmonics such as:

  • 5th harmonic
  • 7th harmonic
  • 11th harmonic
  • 13th harmonic

The harmonic distortion affected the current waveform quality and increased the harmonic burden on the distribution transformers.

To improve the power quality of the low-voltage system, an Active Harmonic Filter solution was selected for dynamic harmonic compensation.

System Configuration

The harmonic mitigation system was installed for the low-voltage distribution system supplied by 2000kVA transformers.

Transformer and AHF Configuration

Item Specification
Application Monocrystalline silicon manufacturing
Project Location Ningxia, China
Installation Year 2023
Transformer Capacity 2000kVA per transformer
Compensation Equipment Active Harmonic Filter (AHF)
AHF Configuration 2 cabinets per transformer
Compensation Capacity 450A per cabinet
Total Compensation Capacity 900A per transformer

The AHF system was integrated into the low-voltage distribution system as part of the low-voltage switchgear integration solution for the semiconductor manufacturing facility.

Harmonic Measurement Before and After Compensation

Before harmonic treatment, the electrical system showed significant waveform distortion caused by nonlinear semiconductor manufacturing loads.

Measured results:

Parameter Before Compensation After Compensation
THDi 30.41% 2.98%
THDu 10.81% 2.48%

The main harmonic current components were significantly reduced:

Harmonic Order Before (A) After (A)
5th 463.4 12.4
7th 126.7 17.5
11th 76.7 23.5
13th 70.5 18.1

Voltage and current waveforms before AHF harmonic compensation showing distortion from semiconductor manufacturing loads

The pre-compensation test screenshot shows voltage and current waveform distortion caused by the nonlinear semiconductor manufacturing loads.

Voltage and current waveform test results after AHF harmonic compensation showing improved waveform quality

The post-compensation measurement screenshot verifies the harmonic compensation effect, with the current waveform restored closer to sinusoidal.

The results demonstrate that the AHF system effectively compensated the harmonic currents generated by nonlinear production equipment.

Installation and Commissioning

The AHF cabinets were installed alongside the low-voltage distribution equipment inside the semiconductor manufacturing facility.

The project included:

  • AHF cabinet installation
  • Low-voltage switchgear integration
  • Harmonic measurement before and after commissioning
  • System adjustment and performance verification

The commissioning process verified that the compensated current waveform became significantly closer to a sinusoidal waveform.

Installed Active Harmonic Filter (AHF) cabinet in operation after commissioning at the semiconductor manufacturing facility

The AHF cabinet was commissioned and put into operation, providing continuous harmonic compensation for the semiconductor production loads.

Active Harmonic Filter (AHF) cabinets installed in combination with low-voltage distribution switchgear at the project site

The AHF cabinets were combined with the low-voltage distribution switchgear to provide harmonic compensation within the 2000kVA transformer distribution system.

Results Achieved

  • Current THD was reduced from 30.41% to 2.98%
  • Voltage THD was reduced from 10.81% to 2.48%
  • 5th harmonic current was reduced from 463.4A to 12.4A
  • The harmonic impact on the 2000kVA transformer system was significantly reduced

The Active Harmonic Filter solution improved the power quality of the semiconductor manufacturing facility and provided a more stable electrical environment for precision production equipment.

AHF cabinet internal modules and operation status during the follow-up site inspection at the semiconductor plant

A follow-up site inspection recorded the AHF cabinet module and operating status, confirming continued harmonic compensation performance.

Application Value

Semiconductor manufacturing plants contain many power electronic loads, including:

  • Silicon crystal growth furnaces
  • Variable frequency drives
  • Servo systems
  • Automated production equipment

For these applications, harmonic control is critical because electrical distortion can increase transformer losses, affect sensitive equipment operation, and reduce overall system reliability.

The Ningxia Zhongjing project demonstrates Winzele’s capability in providing customized power quality solutions for high-power industrial and semiconductor manufacturing applications.

Related Solution

Related Case Study

Semiconductor manufacturing harmonic mitigation project — installed 2023.