SiC-Fanless & Low Noise Active Harmonic Filter — Natural-Cooling Series

Tags SiC-Fanless AHF, fanless active dynamic filter ADF, low-noise SiC AHF, fanless harmonic filter module, silent SiC APF module, natural cooling active harmonic filter

Function: Harmonic Mitigation, Reactive Compensation, Imbalance Phase Balancing

Rated Voltage: 208/400/480 VAC

Power Capacity: 30/50A single module (unlimited for parallel)

Efficiency: ≥ 98%

Filter Performance: up to 97%

Nominal Frequency: 50/60HZ

Connection Type: 3 Phase 3 Wire / 3 Phase 4 Wire

Installation: Wall mounted/Rack mounted/Cabinet

Warranty: Standard 2 years/negotiable

Configure your SKU

SKU: —

Pick voltage, protection rate, capacity, wiring and installation — the selector fills in the matching part number.

Rated Voltage

Protection Rate

Power Capacity

Wiring

Installation

CHITEK SiC-Fanless & Low Noise Active Harmonic Filter

Product

SiC-Fanless & Low Noise Active Harmonic Filter

Voltage level

208/400/480 VAC

Product Description

Lower harmonic levels on a CHITEK Active Harmonic Filter translate directly into a more dependable electrical network and lower running costs. By removing the harmonic currents that cause extra heating, the filter helps eliminate the nuisance tripping of protective devices and the unexplained fuse failures that plant teams often spend weeks tracing.

Because harmonic heating is kept in check, motors, transformers, switchgear and cables run cooler, so their service life is extended and maintenance schedules become lighter. On new-build projects, engineers can also revisit the practice of oversizing distribution equipment purely as a defence against harmonics — a smaller, better-utilised design is usually enough.

Graphical HMI

Direct control, configuration, monitoring and harmonic analysis from the front panel — no PC required.

Comprehensive Measurements

RMS voltages and currents, THDu/THDi, system frequency, load factor, compensated current, PF before/after and 2nd–50th order spectrum.

Power Factor Correction

Dynamic correction for both lagging and leading power factor without capacitor-step switching.

Load Balancing

Balances three-phase systems and relieves neutral current in 3P4W networks.

Low Thermal Loss

SiC switching keeps losses under 1.8% of rated kVA and efficiency at 98% or better, cutting cooling demand.

Flexible & Modular

Modular design embedded in standard or customized cabinets, with parallel expansion and factory ODM support.

Technical Parameters

Module Parameters
Rated Voltage400VAC (208V, 480V please contact us)
Rated CurrentAPF 30AAPF 50A
Power CapacitySVG 20KvarSVG 35Kvar
System Parameters
Rated Input Voltage400VAC (-20%~+15%)
Grid Frequency50Hz (range: 47Hz~53Hz), 60Hz (range: 57Hz~63Hz)
Number of Parallel Connections≤ 16 units
EfficiencyUp to 99%
Grid StructureThree-phase four-wire or three-phase three-wire
Current Transformer50/5~10,000/5
Performance Indicators
Harmonic Compensation Range2~50 times
Harmonic Attenuation>95% (rated load)
Quick Response Time< 25µs
Full Response Time< 5ms
Target Power Factor-1~+1, capacitive and inductive continuously adjustable
Compensation ModeHarmonic suppression / reactive power compensation / unbalance compensation, any combination of 11 modes
Noise Indicator<40dB
Communications & Monitoring
Communication InterfaceRS485, WiFi, 4G, CAN
Communication ProtocolModbus protocol (RTU or TCP/IP)
Module Display InterfaceLED indicators, independent touch screen, local WiFi operation interface
Mechanical Properties
Mounting OptionsWall-mounted
Dimensions W×D×H (mm)515×500×185
Net Weight18kg
ColorIndustrial gray (RAL7035), customizable upon request
CT Connection ModeSupport the source side / load side
Environmental Requirements
Altitude≤1500m; between 1500m and 4000m, according to GB/T3859.2, power decreases by 1% for every 100m increase
Operating Temperature-40℃~+55℃
Relative Humidity5%~95%, no condensation
Protection LevelIP65
Related Qualifications and Standards
Standards ComplianceIEC61000-3-6, IEC61000-6-4, ER G5/4, EN 62477-1
CertificationCE, CQC

WHY CHITEK SiC-Fanless & Low Noise Active Harmonic Filter?

Easy to install and commission

Hardware

  • CT Wiring: Isolated S1/S2 terminals; error-proof CT terminal blocks (pre-fabricated cables included as standard). Flange-locking design prevents open circuits.
  • RJ45 ports for module paralleling and module-to-control panel connections. Ports integrate power, RS-485, and CAN communication. Pre-fabricated cables come as standard for plug-and-play, significantly reducing wiring time.

Software

Easy software operation, and simple hardware installation. Only power cables and a set of CT to set up SiC-Fanless & Low Noise Active Harmonic Filter. The Automatic fine-tuning function realizes intelligent and excellent compensation effects, bringing users a simple and efficient commissioning experience.

Potting Protection

Protects electronic circuits against contamination without compromising heat dissipation

Smart Sleep Mode

  • Load-based start/stop prevents prolonged operation under low-load conditions
  • Duty cycling for low-load modules
  • Enhanced energy efficiency and extended lifespan

Resonance suppression

  • Proprietary algorithm that detects line conditions and automatically adjusts parameters.
  • Compatible with a wide range of complex load types

Manufacturing & Quality Assurance Capabilities

The SiC-Fanless & Low Noise Active Harmonic Filter is built in our own 2,300 m² plant under an ISO 9001:2015 quality system — from incoming inspection to burn-in testing, every stage is completed and signed off under our own roof.

ISO 9001:2015 quality system

SGS-certified quality management governs design, procurement, production and final release — published parameters match actual shipped performance.

Complete in-house production line

Component procurement, SMT/DIP assembly, board FCT, IPQC, safety-compliance testing, ATE fixture test, potting and aging — all completed inside our own facility.

Every unit burn-in tested

A self-developed aging cabinet with module fixture testing (patent CN22268956U) runs each unit through full burn-in, followed by a post-aging final quality check.

Proven in the field

CHITEK filters are in service in more than 10 countries, with multilingual interfaces and factory technical support for overseas commissioning.

Certifications

EUTEST Attestation of Conformity TD11432302.R1 for the CHITEK Active Power Filter, covering EU Low Voltage Directive 2014/35/EU and EMC Directive 2014/30/EU

CE — LVD & EMC (EUTEST, 2023)

TÜV SÜD Attestation of Conformity No. N8A 136516 0001 Rev. 00 for the CHITEK Active Power Filter, issued under EU Low Voltage Directive 2014/35/EU

LVD 2014/35/EU (TÜV SÜD, 2026)

EMC test report No. SET2022-01936 for the Active Power Filter, issued by CCIC Southern Testing Co., Ltd. (CNAS L1659 accredited laboratory)

EMC test report (CCIC-SET, 2022)

CE Attestation of Conformity No. SET2022-02884 for the Active Power Filter, issued by CCIC Southern Testing Co., Ltd. to EN 62477-1:2012+A11:2014 and EU Low Voltage Directive 2014/35/EU

CE / LVD 2014/35/EU (CCIC-SET, 2022)

Want a network that runs cooler, trips less often and stays inside specification? Send us your load details and our engineers will propose a configuration and quote it against your actual requirements — not a catalogue guess.

Request a Consultation

FAQs About the SiC-Fanless & Low Noise Active Harmonic Filter

Q1: What is a SiC MOSFET active harmonic filter?

A SiC active harmonic filter replaces the conventional silicon IGBT bridge with silicon-carbide power devices. SiC switches faster with lower loss, so the filter achieves higher efficiency, higher power density and lower heat rejection while still cancelling harmonics in real time and holding THDi below 5%.

Q2: Why choose silicon carbide instead of IGBT?

SiC MOSFETs tolerate higher switching frequencies (up to 40 kHz), which shrinks the magnetics, raises efficiency to 98% or more and reduces thermal loss by roughly a third — a smaller cabinet for the same capacity, less cooling and longer device life.

Q3: How does the Ultra AHF work?

An external CT samples the load current; a DSP/FPGA runs an FFT to separate 2nd–51st order harmonics, reactive power and imbalance; the SiC bridge then injects an equal and opposite-phase compensation current so the utility sees only the fundamental.

Q4: What capacity and voltage range is available?

208–690V, 3P3W/3P4W, 50A to 200A per module. Modules parallel without a practical limit to reach 3000 A and beyond for large plants.

Q5: Can it correct power factor and balance loads too?

Yes. A selectable priority function covers harmonic mitigation, reactive compensation and three-phase balancing. In 3P4W mode it also cancels the accumulated 3rd-harmonic neutral current.

Q6: How do I confirm the right model for my site?

Send us the load's harmonic spectrum, voltage class and installed nonlinear capacity. CHITEK supplies a selection matrix by voltage class, series and capacity, plus a sizing calculation on request.

Application of the SiC-Fanless & Low Noise Active Harmonic Filter

Data Center

40 MW Hyperscale Data Center — UPS Input Harmonics

Three 2.4 MW UPS modules running in parallel at a 40 MW hyperscale facility were circulating rectifier harmonics between units — unbalancing load sharing, thermally stressing the battery strings and triggering false PDU alarms. Six AHF-200A units went in at the UPS input with three SVG-150kvar units on the LV bus. Distortion at the UPS input fell from 14.0% to 2.8%, circulating current dropped by 80%, and the site recovered 2.6M CNY in annual energy cost.

THD 14.0% → 2.8% · circulating current down 80% · 2.6M CNY saved per year

China Active Harmonic Filter, SVG Static Var Generator Suppliers, Manufacturers, Factory - CHITEK

Industrial Manufacturing

12-inch Wafer Fab — Sub-Cycle Sag Protection

An immersion-lithography fab needs voltage sags held below 5 ms, yet utility faults 30 km away kept stripping scanner stage position — about three incidents a month, each scrapping roughly 25 wafers. Four dual-feed AHF+SVG units at the UPS front end and two SPC-100A units balancing the test floor brought sag duration back inside spec. Scanner halts stopped completely, wafer yield gained three percentage points, and payback landed under eight months.

Sag under 5 ms · zero scanner halts · wafer yield +3 points

China Active Harmonic Filter, SVG Static Var Generator Suppliers, Manufacturers, Factory - CHITEK

Commercial & Medical

2,000-Bed Hospital — Imaging & OR Power Quality

A 2,000-bed tertiary hospital with four 1,600 kVA transformers watched main-busbar THD climb past 18% after its imaging centre was expanded — enough to produce CT and MRI image artifacts and one power-quality incident in an operating theatre. Two AHF-200A units now cover the OR and imaging feeders, with one SVG-100A on HVAC reactive duty. THD settled at 4.1% under IEEE 519, transformer temperature fell 15°C and maintenance cost dropped 45%.

THD 18.3% → 4.1% · transformer down 15°C · maintenance cost −45%

China Active Harmonic Filter, SVG Static Var Generator Suppliers, Manufacturers, Factory - CHITEK