EC & AC Centrifugal Fans for OEM Ventilation Systems

High-Performance Motorized Impellers & Blowers for Custom HVAC Solutions

Backward curved, forward curved, double inlet, and plug fan solutions for AHU, cold chain, inverter cabinets, data center cooling, and industrial ventilation.

EC / AC / DC options 120-1000mm impellers 0-10V / PWM / Modbus OEM samples available
Centrifugal Fans main product image
Centrifugal Fans RFQ-ready category Leave contact details or email specs directly.
Single Inlet Centrifugal Fans

Single Inlet Centrifugal Fans

Double Inlet Centrifugal Fans

Double Inlet Centrifugal Fans

AC Centrifugal Fans

AC Centrifugal Fan

DC Centrifugal Fans

DC Centrifugal Fan

EC Centrifugal Fans

EC Centrifugal Fan

Get More Recommendation

Leave your name, email and phone. Longwell can follow up for specs and model selection.

Need direct technical consultation?

Send your requirements & attachments directly to our senior sales engineers at sales@longwellfans.com.

Catalogs & Brochures for Centrifugal Fans

Inside these downloadable PDF brochures, you will find precise aerodynamic performance curves (PQ curves), exact dimensional drawings, wiring diagrams, and acoustic data to help you select the optimal airflow solution for your HVAC or industrial project.

Longwell Centrifugal Fans Catalogs & Brochures

Longwell Centrifugal Fans Model Selection

Filter LONGWELL Centrifugal Fans models by airflow, static pressure, voltage or size. Every model on the Fan Selector lists its measured or digitised curve, dimensional drawing and datasheet.
Open in the Fan Selector →
Have your duty point?

See every LONGWELL model whose P-Q curve covers it — margins, noise and power included. No login.

Library: Ø25–1,000 mm, single units up to about 52,000 m³/h — larger duties go straight to an engineer. Prefer to talk it through? Send your specs to an engineer

Buying from LONGWELL

  • Brand owner since 1990
  • Yuyao, Ningbo
  • 12-month standard warranty, extendable to 18–24 months by project agreement
  • Reply within 1 business day

Test & release at LONGWELL

Specified and drawn by LONGWELL, built to our drawings by qualified partner factories, inspected and released to LONGWELL standards.

  • Wind tunnel · AMCA 210 method
  • Semi-anechoic room · sound power testing
  • Outgoing sampling to AQL 2.5
  • Test records retained for 5 years

How ordering works

  1. Spec check duty point & drawings
  2. Samples 1–3 days (stock models), fee credited to first order
  3. Validation on your bench
  4. Order T/T 30/70 (first order)
  5. Production & release 15–30 days, partner factory
  6. Shipping & after-sales FOB · CIF · DDP
Full terms, QC and FAQ

For more information, compare product specifications, applications, and get a quote for your unique requirements.

What is a Centrifugal Fan?

Longwell centrifugal fan consists of several primary components, including impeller, housing, inlet, and outlet. It is available in forward-curved, backward-curved, radial, and mixed-flow designs. Upon being powered on, the impeller begins to rotate; air is drawn in through the inlet, accelerated radially outward, and propelled in a circular motion at a steady, high velocity before finally being discharged through the outlet, thereby fulfilling the functions of ventilation, and heat dissipation.

 

Unlike axial fans—where air flows along the axis—the airflow in centrifugal fan, driven by the high-speed rotation of the impeller, exits in a direction perpendicular to the inlet. Consequently, it is capable of generating a more powerful and stable airflow.

 

Distinguished by its unique design, exceptional durability, and low noise levels, the centrifugal fan is ideally suited for applications requiring a wide range of airflow volumes and pressures. It is widely utilized across various sectors, including air pollution control systems, HVAC systems, pneumatic conveying systems, and industrial exhaust systems.

Contact Us Now

Popular Centrifugal Fan Models

Explore our best-selling centrifugal fan models for HVAC, industrial ventilation, air handling units, refrigeration, combustion systems and OEM applications. Longwell offers AC, EC and DC centrifugal fans with high efficiency, low noise and custom manufacturing support.

EC centrifugal fan 355mm

EC Centrifugal Fan 355mm

PWM EC motor high efficiency
View Details
200mm industrial centrifugal fan

200mm Industrial Centrifugal Fan

High pressure OEM housing
View Details
Cold chain centrifugal blower

Cold Chain Centrifugal Blower

Low temperature resistant
View Details
Forward curved blower 250mm

Forward Curved Blower 250mm

Air purifier low noise
View Details
Double inlet centrifugal blower

Double Inlet Centrifugal Blower

Compact HVAC airflow
View Details
Gas heater blower

Gas Heater Blower

Combustion air encoder option
View Details
Energy-Efficient

Energy-Efficient

Equipped with highly integrated external-rotor EC motor, Longwell centrifugal fans achieve the energy conversion efficiency of 80% to 90%.

Reliable Performance

Reliable Performance

High-quality raw materials and rigorous testing ensure a long service life for the centrifugal fan, as well as an ingress protection rating of up to IP55.

Customizable Solutions

Customizable Solutions

Longwell possesses highly flexible OEM/ODM manufacturing capabilities, covering impeller diameters ranging from φ133 mm to φ1000 mm.

Comprehensive Types

Comprehensive Types

Our extensive variety of centrifugal fans meets all your industrial ventilation needs, providing you with the most professional solutions.

Why Choose Longwell Centrifugal Fans?

When electricity is processed, stored and used, heat is generated that has to be dissipated. Longwell’s range of fans offers compact solutions for this with complete power density—and in a way that ensures powerful protection against environmental influences together with unbeatable quietness.

Longwell centrifugal fans convert incoming air velocity into pressure, delivering powerful airflow for HVAC, dust collection, and industrial ventilation. Their backward or forward curved impellers are engineered for optimized performance and minimal noise.

Designed with robust construction and precise dynamic balancing, Longwell centrifugal fans ensure stable operation and superior efficiency. They are perfect for cleanroom systems, manufacturing plants, and environments requiring reliable airflow under varying pressures.

Powered by Longwell’s SmartEC™ platform and optimized through AcousticFlow™ and AcuFlow™ technologies, our centrifugal fans deliver exceptional efficiency, quieter operation, and stable airflow characteristics. The optional ThermoFlex™ architecture further extends performance in extreme temperature conditions, making them suitable for a wide range of HVAC and industrial ventilation applications.

AC vs. DC vs. EC Centrifugal Fans

☑ AC Centrifugal Fans

  • High-Temperature Resistance: Designed to operate efficiently in environments from -20°C to 120°C, making them ideal for extreme conditions.
  • Dust and Waterproof Protection: With an IP55 rating, these fans are fully protected against dust ingress and water jets.
  • Customization Options: We offer a variety of impeller materials such as steel and aluminum alloy for tailored performance.

☑ DC Centrifugal Fans

  • Energy Efficiency: DC motors use up to 30% less power than traditional AC fans, significantly reducing operational costs.
  • Precise Speed Control: DC fans support PWM (Pulse Width Modulation) for intelligent control and compatibility with IoT systems.
  • Application Case: A medical equipment manufacturer used our DC centrifugal fans to reduce heat generation in sensitive devices.

☑ EC Centrifugal Fans

  • Brushless Motor Design: Offers a lifespan of up to 50,000 hours, reducing maintenance costs.
  • Variable Frequency Control: Dynamic airflow regulation with less than ±2% error.
  • Industry Certifications: Certified to ISO 14644-1 for cleanroom applications, ensuring top-tier performance in sterile environments.

 

Longwell offers a range of centrifugal fans engineered for various industrial applications. The following table provides a detailed comparison of the different types of centrifugal fans:

Type

Voltage Range

Max Airflow (CFM)

Noise (dB)

Typical Applications

DC Centrifugal

12-48V DC

2000

45-50

Data centers, Medical devices

EC Centrifugal

24-240V

5000

50-55

Factory ventilation, Clean rooms

AC Centrifugal

110-220V

8000

55-65

Heavy machinery, High-temperature environments

How Does A Centrifugal Fan Work?

How Does A Centrifugal Fan Work?

Centrifugal fans are mainly powered by 3 types of motors—AC, DC, and EC—which drive the impeller’s rotation either directly or via transmission mechanism, thereby generating centrifugal force.

 

After entering the fan housing axially, the air accelerates radially outward under the influence of this centrifugal force and is subsequently discharged through the outlet. During this process, mechanical energy is converted first into kinetic energy and then into pressure energy.

 

The faster the impeller rotates, the greater the centrifugal force generated, resulting in higher air velocity. This type of fan is well-suited for duct systems that require a change in airflow direction, and it operates with high efficiency even when facing significant static pressure.

Specifications of Longwell Centrifugal Fans

Specifications of Longwell Centrifugal Fans

Airflow: 50 m³/h – 50,000+ m³/h

Static Pressure: 150 Pa – 3,000+ Pa

Speed: 900 RPM – 4,500 RPM

Voltage (DC): 12V, 24V, 48V, 72V

Voltage (AC/EC): Single-phase 115V/230V, Three-phase 380V/480V

Power Input: 10 W – 15+ kW

Impeller Diameter: Φ133 mm – Φ1,000+ mm

Noise Level: 45 dB(A) – 85+ dB(A)

Operating Temp.: -25°C to +60°C (Up to +85°C in exceptional cases)

IP Rating: IP44, IP54, IP55 (Selected explosion-proof/waterproof models up to IP68)

Longwell Centrifugal Fans Factory Gallery

Applications of Industrial Fans

1. HVAC & High-Tech Environments

HVAC & Air Handling Units

Centrifugal fans can provide a stable large air volume and high static pressure, ensuring that cold/warm air can overcome dense coil tubes, surface coolers, filters and long building air duct networks, and be evenly delivered to every corner of the building.

Data Centers & Precision Cooling

Scroll-less centrifugal fans equipped with intelligent EC motors are widely deployed in CRAC/CRAH units and on the air-cooled side of liquid cooling systems, effectively mitigating the array of issues associated with rapidly rising thermal densities in server rooms.

Cleanrooms&FFU

In the semiconductor manufacturing, pharmaceutical, and high-end medical laboratory sectors, high-efficiency centrifugal fans are integrated into Fan Filter Units (FFUs) to propel air through highly dense HEPA/ULPA filters by virtue of their robust static pressure capabilities.

2. Environmental & Exhaust Systems

Dust Collection & Air Pollution Control

The custom-made industrial centrifugal fans can generate extremely high system negative pressure, effectively removing polluted air from the working area and sending it into purification system, enabling enterprises to meet strict environmental protection emission standards.

Exhaust & Fume Extraction

Centrifugal fans featuring anti-corrosion coatings, explosion-proof motors, and explosion-proof impellers are capable of safely and continuously extracting hazardous media from environments such as welding workshops, chemical plants, and large-scale commercial kitchens. 

3. Industrial Thermal & Process Systems

Industrial Ovens, Drying & Cooling

In food processing, wood drying, paper manufacturing and spray curing processes, centrifugal fans equipped with extended shafts, cooling fans or insulation layers are able to withstand high temperatures, can accelerate the forced convection circulation of hot or cold air.

Boiler & Combustion Air Systems

Boiler & Combustion Air Systems

Centrifugal fans supply industrial boilers, incinerators, and kilns with precisely metered oxygen, while simultaneously utilizing high negative pressure to extract high-temperature exhaust gases generated during combustion, thereby maximizing thermal energy conversion efficiency.

4. Material Handling & Heavy Industry

Material Handling & Pneumatic Conveying

Material Handling / Pneumatic Conveying

Centrifugal fans are often used as high-pressure air pumps. They transport bulk solid materials at high speed through the pipeline, effectively preventing the materials from depositing or getting clogged in the conveying pipeline, and achieving fully enclosed and automated material circulation.

Mining & Heavy Industry

Mining & Heavy Industry

The centrifugal fans designed for heavy steel structure welding can provide massive air displacement and ultra-high wind pressure, effectively diluting and discharging toxic gases and high-concentration dust, thereby ensuring safety in deep-level operations within heavy industrial sectors.

5. Agriculture & Specialized Applications

Agricultural

In modern smart greenhouses and large-scale livestock farms, centrifugal fans are utilized to precisely regulate indoor temperature and humidity levels, as well as to exhaust ammonia gas. Furthermore, in large grain silos, high-pressure centrifugal fans are deployed for grain ventilation and moisture control, ensuring the long-term, safe storage of agricultural crops.

What Our Customers Say after Used

Experience Longwell: Inside Our Products & Factory

Factory Tour & Quality Control

7 Videos

Technical & Sourcing Insights

Q1: Should we choose a Forward-Curved or Backward-Curved centrifugal fan for our system?

This entirely depends on your equipment’s internal resistance (system backpressure).

If your unit is compact and the airflow path is relatively unobstructed (like standard ventilators or low-pressure coils), a forward-curved impeller delivers a massive volume of air at lower speeds, with a softer acoustic profile.

However, if your system involves high-density HEPA filters, long and complex ductwork, or high-density server racks, go with a backward-curved impeller without hesitation. These fans are true “bulldozers”—they push through extremely high static pressure without a drop in airflow.

More importantly, backward-curved fans feature a “non-overloading” design. Even if system resistance suddenly drops, the motor won’t draw excessive current and burn out, making them ideal for rigorous industrial environments.

While the initial procurement cost of an EC (Electronically Commutated) fan is higher than a traditional AC fan, the payback period in commercial and 24/7 industrial applications is typically only 12 to 18 months.

First, the energy savings are massive. EC motors integrate an intelligent conversion module that completely eliminates the slip losses of traditional AC motors, achieving an overall efficiency of 80%-90%. This easily meets the most stringent European ErP 2015 directives.

Second, the control system is vastly simplified. To regulate the speed of a traditional AC fan, you need an expensive and bulky Variable Frequency Drive (VFD). In contrast, our EC fans come with a built-in control board.

You simply provide a 0-10V analog signal or PWM pulse for seamless, stepless speed control, which integrates effortlessly with your existing BMS (Building Management System).

Vibration doesn’t just generate noise; it drastically reduces the motor bearing’s lifespan (L10 life). We don’t rely on “assembly feel”; we rely on hard data.

Before assembly, every single centrifugal impeller—whether metal or fiberglass-reinforced plastic (PA66+GF30)—undergoes rigorous multi-plane dynamic balancing on specialized equipment. We strictly adhere to the international ISO 1940 standard, keeping residual unbalance strictly within the G6.3 grade (limiting eccentric vibration velocity to under 6.3 mm/s).

For medical devices or semiconductor cleanrooms with ultra-strict acoustic and micro-vibration requirements, we can even provide custom G2.5 high-precision balancing.

Absolutely. As a direct-to-factory manufacturer with comprehensive R&D and production lines, our response time for custom integration far exceeds that of pure trading companies.

Electrically, whether you need 12V/24V/48V DC fans for telecom base stations or wide-voltage commercial models (e.g., 200V-277V) for global compatibility, we can match the exact stator winding solutions.

Structurally, if you need to modify the scroll housing’s exhaust flange dimensions, customize mounting bracket holes, or change the impeller material for specific corrosive environments, our engineering team can interface directly with your R&D department’s CAD drawings, rapidly output 3D models, and arrange prototyping.

B2B procurement demands rigor, so we highly recommend—even require—our clients to conduct sample testing before committing to bulk orders.

Once your initial technical requirements (such as PQ performance curves and dimensional constraints) are confirmed, we can usually provide prototypes for your unit testing within 7 to 15 business days.

After you complete your thermal and acoustic testing and lock in the BOM (Bill of Materials), our standard bulk lead time is tightly controlled at 25 to 35 days. Thanks to our mature supply chain and robust production capacity, even large-volume orders during peak seasons won’t cause delays on your assembly line.

How many types of backward centrifugal fans does LONGWELL produce ?

Type 1 : Standard backward centrifugal fan without bracket

Motorized impellers are available in sizes 133 to 630 in combination with all motor sizes up to motor size 218. In addition to an inlet ring, an appropriately dimensioned motor mount must be provided on site to operate a motor-impeller.

Standard backward centrifugal fan without bracket

Type #2: Backward centrifugal fan with mounting bracket

LONGWELL Backward centrifugal fan with a support bracket are also available in sizes 250 to 560 in all impeller/motor combinations as ready-to-install support struts for wall mounting.The support bracket design includes the motor-impeller, a welded support strut design, an inlet ring and a square mounting plate.

Backward centrifugal fan with mounting bracket

Type 3: EC PLENUM backward centrifugal fan

LONGWELL EC centrifugal fan with a cube design with impeller diameters 310 to 560mm and the large size 218 motor are only available in the cube design intended for floor mounting.The struts are extruded aluminum profiles, the corner joints are made of die-cast galvanized metal sheet, and the motor mounting plate, inlet ring and nozzle plate are made of galvanized sheet steel.Bye the way ,this version is not suitable for wall mounting

EC PLENUM backward centrifugal fan

Type 4: EC Fan Grid

FanGrid modules are made of few quantities of LONGWELL EC centrifugal fans with a support bracket in a special cube design.The pre-assembled units in sizes 355 to 560 were designed for setting up the FanGrid .They are suitable for applications with very high volumes of air that cannot be achieved by a single fan with the required compact design.

EC Fan Grid

EC centrifugal fans with high static pressure

Ventilating large buildings efficiently – with ready-to-install EC Plug fans .

Main Features of EC Fans :

  • • Sensorless permanent magnet motor drive;
  • • Wide input voltage range, single-phase 110-270V, three-phase 250V-480V, 50/60Hz;
  • • PFC(Power factor correction): Passive and active(IEC61000-3-2);
  • • Soft start, adjustable acceleration, CVT;
  • • Design operating temperature range: -25 – 60 degrees of minimum selection (The device in accordance with -40~ 85 degrees);
  • • Protection: Overvoltage, undervoltage, overtemperature, overcurrent, phase loss detection, communication failures….
  • • The basic interface: 0-10V/PWM, RS485/Modbus, 4-20mA…
  • • The basic parameters of field-programmable: Maximum speed, minimum speed, maximum power, maximum current, resonance avoid….
  • • Constant air pressure controlling function;
  • • Embedded Design;
  • • EMC(Electro Magnetic Compatibility).

Three kinds of Structure of EC Backward centrifugal fan and plenum fan :

centriifugal-fans-with-mountingbracket-1

Backward centrifugal fan (standard version)

centrifugal-fans-with-mountingbracket

centrifugal fans with mounting bracket(V.0)

Centriifugal fans with mountingbracket(V.1)

Main Technical Spec :

Diameter of Impeller (mm):133.175.190…450.500.560.630mm
Air pressure ( static pressure):up to 2200Pa(maximum)
Air flow (m³/h):200-23896 m³/h
Power consumption (W):30-5955W
Sound power (dBA):86 dBA(maximum)
Blade Material:PA666+FG (133..400mm) ;
Galvanized (250mm);
Aluminum Alloy (310…630mm)
Electrical connections EC
Technical features :
  • • Control input 0-10VDC / PWM
  • • Output 10VDC max 10mA
  • • Electronics / motor over temperature protection
  • • Line undervoltage detection
  • • Motor current limitation
  • • Locked-rotor protection
  • • Soft start
  • • PFC

EC Fan specific Technical specificaitons data :

curves
Model no. Diameter Maxi Airflow Max Static Pressure Power Input Protection Class
Unit (mm) (m³/h) (Pa) (W)
LWBE3G EC FAN 133,175,190,225,250 260-2900 up to 1500 30-750W IP44 / IP54 / IP55
LWBE3G EC Plenum fan 280,310.355,400,450 3700-9200 up to 3270 170-4200W IP44 / IP54 / IP55
LWBE3G High pressure Centrifugal fan 500,560,630 15000-23200 up to 1920 1250-5600W IP44 / IP54
Test stand design and tests in accordance with ISO 5801 – Industrial fans, performance measurement on standardized test stands DIN EN ISO 3744, DIN EN ISO 3745, ISO 13347-3 – Acoustics standards Measurement quantities and measurement accuracies attained with the aero-acoustic test stand.

EC Fan specific structure and characteristics:

High-performance impeller

High-performance impeller

High static efficiency :

  • – Aerodynamically optimized blade channel
  • – Integrated radial diffuser
  • – Inlet ring tuned to impeller

Low noise emission :

  • – Diagonal trailing edge for optimal flow control
  • – Integrated radial diffuser

Minimal vibration :

  • – Dynamic balancing of impeller rotor unit minimizes induced structure-borne noise and reduces bearing load
  • – Minimum residual imbalance thanks to complete balancing, meaning balancing only takes place after installation of all rotating parts (guaranteeing extremely smooth operation)

Rugged design:

  • – Suitable for constantly high peripheral speeds
  • – Corrosion-resistant aluminum
GreenTech EC motor

GreenTech EC motor

Unbeatably compact :

  • – The impeller is mounted directly on the rotor of the motor

High efficiency :

  • – Low copper and iron losses
  • – Synchronous running prevents slip losses
  • – Use of permanent magnets prevents magnetic hysteresis losses in the rotor

Economical operation :

  • – Optimized commutation enables partial-load operation down to 1:10 with sustained high efficiency

Low-noise emission :

  • – Commutation and stator design ensure low-noise magnetization of main field
  • – High, acoustically imperceptible cycle frequency

Long service life :

  • – Maintenance-free bearings
  • – Brushless commutation
  • – Insulated bearing system to prevent bearing currents

High-performance impeller

Support bracket Easy installation in AHU

  • – Complete system for quick and easy installation
  • – Nozzle plate for easy attachment of fan to equipment wall
  • – Installation with horizontal OR vertical motor shaft
  • – Compactness enables new design flexibility Aerodynamically perfected
  • – Aerodynamically efficient
  • – Optimized factory positioning of nozzle
Electronics and connection

Electronics and connection

Adaptable :

  • – Infinitely variable speed adjustment
  • – Control signal 0–10V DC / PWM and MODBUS

Universally deployable :

  • – Wide voltage range 110V,230V,400V
  • – Suitable for use with 50 and 60 Hz networks

Safe operation :

  • – Integrated locked-rotor and thermal overload protection
  • – Environment-resistant cable glands

Simple commissioning :

  • – Central terminal area for supply connection, alarm relay, as well as control and communication
  • – Safe separation of terminal area and electronics
  • – No adjustment required

Efficiency Calculations examples

ec fans
ec fan grid
Reduces energy costs by an average of 50% and reduces CO2 while protecting environment.
 
An ECFanGrid consists of an array of EC fans operating in parallel. The flow rate is multiplied proportionally to the number of fans, while the pressure conditions remain constant. Highly efficient EC fans are the perfect combination of motor, electronics and turbine.They allow simple plug & play solutions for any ventilation need.
By replacing old, inefficient fans with high-efficiency EC fans, we can save around 50% energy and CO2. By relatively low investment costs (about 3% of the air conditioning system cost), we can reduce the operating cost of the system by up to 70%. The investment is recovered over a period of 2 to 5 years on average.
ECFanGrid offers an enormous degree of reliability thanks to its redundancy. In the unlikely event of a fan failure, the remaining fans automatically increase speed to compensate for the loss of airflow.The combination of fans allows the unit to adapt much better to any duty point.

Cost comparison

Energy Consumption Comparison (Before vs. After Retrofit)

Energy Consumption Comparison (Before vs. After Retrofit)

Comprehensive Retrofit Comparison (Multi-Dimensional)

Comprehensive Retrofit Comparison (Multi-Dimensional)

What is the main applicaiton for this EC Motor centrifugal fan ?

As the characteristics of high air volume and wide coverage of static pressure in the field of ventilation, EC rear tilt centrifugal fans are widely used in HVAC, refrigeration, heating, ventilation equipment, purifiers, clean rooms, FFU, AHU, precision air conditioning and other applications, the highest air volume up to 24000m³/h, the highest static pressure up to 3270Pa. It is highly customizable and can be customized according to the actual working conditions of customers

ahu refurbishment

AHU Refurbishment

With a maximum static pressure of 2300 Pa, the fan satisfies the high-resistance demands of AHU applications. A single fan can deliver up to 6 kW of power and a maximum airflow of 23,000 m³/h. Additionally, for industrial applications, a fan wall combination option is available, providing flexible solutions to meet diverse application requirements. The energy loss, high maintenance costs, and potential stability issues associated with traditional belt-driven fans in AHUs can be effectively addressed through our fan wall retrofit solution. Compared to conventional forward belt-driven fans, the upgraded fan wall can improve efficiency by 20% to 50%.

Air Purifier :

Air Purifier

Backward-curved centrifugal fans are revolutionizing air purification in residential and commercial settings, delivering unmatched efficiency, quiet operation, and reliability. Designed for optimal air circulation and filtration, these fans excel in air purifiers by leveraging their aerodynamic design—curved blades that minimize turbulence, reduce energy consumption, and maximize air volume under high static pressure (ideal for dense filter media).High-Efficiency Airflow: Generate consistent, high-volume airflow (up to 500+ CFM) while maintaining energy efficiency (10–30% less power than traditional fans), ensuring rapid air turnover for HEPA/activated carbon filters.

Commercial & Industrial Ventilation

Commercial & Industrial Ventilation

As the demands for commercial and industrial environments increase, the performance requirements for HVAC equipment have become more stringent. Our fans must be able to achieve precise control of temperature and humidity with 100% accuracy. Additionally, there is growing concern about fan energy consumption, maintenance costs, and noise pollution.

Data Center

Data Center

To meet the airflow and efficiency requirements of data centers, a 630 medium static pressure high-efficiency fan series has been specifically developed. This series is designed to provide optimal performance, balancing airflow demands with energy efficiency, making it ideal for data center applications.

fan filter unit

FFU (Fan Filter Unit)

For FFU (Fan Filter Unit) applications, which require high efficiency, low noise, and stable group control in medium to low static pressure environments, two highly efficient fan models, have been specifically developed. These models are tailored to meet the unique demands of FFU systems, ensuring optimal performance in such scenarios.

Fan Wall Combination

Impeller sizes ranging from 310 to 630mm are available to fit different installation spaces, and standard mounting brackets can be selected for quick and convenient installation.Can be combined into a fan wall to achieve greater airflow.EC/DC/AC motors can be selected to match different equipment power requirements.Customizable to meet specific application needs, such as C5 corrosion protection, IP56 protection rating, and operation at temperatures as low as -30°C.

How to keep the Centrifugal fan work well in AHU ,FFU and other HVAC equipments ?

Salt Mist Test

Salt Mist Test

Salt mist test assesses the corrosion resistance of the LONGWELL fan, especially under C5-grade corrosion conditions. It ensures long-term performance in salty environments, providing protective measures for aluminum-magnesium alloy impellers against corrosion.

ConstantTemperature & Humidity Test

Temperature Shock Test

This test evaluates the operational stability of the fan under rapid temperature changes. The high-temperature materials and precise control system of the LONGWELL fan ensure that performance is not affected by thermal expansion and contraction under extreme temperature variations.

Airflow Test

Salt Mist Test

This test measures the airflow output and fan efficiency under different speeds and static pressure resistance. The optimized impeller design and threedimensional blade structure of the LONGWELL fan ensure efficient airflow output and adaptability to various working conditions.

Outdoor Lifespan Test

Outdoor Lifespan Test

This test validates the fan’s durability in harsh outdoor environments. The LONGWELL fan’s IP55/IP56 protection rating, along with its high-temperature and corrosion-resistant design, ensures reliable long-term operation outdoors.

Indoor Lifespan Test

Indoor Lifespan Test

This test evaluates the long-term lifespan of the fan in standard indoor environments, ensuring that the LONGWELL fan has a long life with low maintenance requirements. The test is particularly focused on its performance in common applications such as AHU and FFU systems.

High Temperature Test

High Temperature Test

This test validates the reliable operation of the LONGWELL fan in hightemperature environments, especially under high static pressure and efficient electromagnetic design conditions. It ensures the stability of the impeller material at extreme temperatures, extending the fan's lifespan.

constant-temperature-humidity-test

ConstantTemperature
& Humidity Test

This test validates the fan's performance stability in environments with varying temperature and humidity, particularly in corrosion and moisture-resistant conditions. A 21-day continuous operation at 75°C and 95% humidity is used to verify the fan’s long-term stability

Spray test

Spray test

The Water Droplet Spray Test is a critical evaluation for ventilation fans, designed to simulate operational exposure to moisture-laden environments (e.g., humidity, light rain, or condensation). This test ensures fan components—including motors, bearings, electrical systems, and structural materials—maintain corrosion resistance, electrical integrity, and functional reliability under prolonged moisture contact.

Aging test

Aging test

The Aging Test evaluates ventilation fans’ long-term durability and reliability by simulating extended operational cycles and environmental stresses (e.g., temperature fluctuations, humidity, vibration, and dust). This accelerated assessment ensures fans maintain structural integrity, performance efficiency, and safety compliance throughout their designed lifecycle.

Runout testing

The Runout Test is a critical quality control procedure for centrifugal fans, measuring rotational alignment (radial/axial runout) of impellers, shafts, and bearings. By quantifying deviations from perfect concentricity, this test ensures fans operate with minimal vibration, noise, and mechanical stress—key to optimizing performance, durability, and safety.

High-Speed Lifespan Test

High-Speed Lifespan Test

This test focuses on verifying the strength and stability of the LONGWELL fan’s impeller under long-term high-speed operation and ensures that the impeller remains free from deformation or damage under highspeed conditions, ensuring the fan's safety and reliability, especially in applications requiring high-efficiency airflow output.

Noise Test (BK Noise ROOM)

This test verifies the low noise performance of the fan at high speeds and high static pressure, analyzing noise through FFT noise spectrum analysis. The optimized flow path and blade design effectively reduce noise levels, improving the overall comfort of the operating environment. It minimizes the transmission of low-frequency noise over long distances in ventilation ducts.

FAQ Summary from Engineer and Customer

How to choose a suitable fan or blower for AHU,FFU or other ventilation equipments ?

When selecting a fan for a specific application, these parameters play an important role:

  • – Air flow with given back pressure
    – Voltage supply, divided into DC and AC voltage (1~, 3~)
    – Noise generation
    – Efficiency
    – Available mounting space

What is the operating conditioning requirements for the EC backward centrifugal fan ?

  • Operating temperature:-25~60℃,Operaing humidity : 0 – 85% RH;
  • Storing temperature:-25~70℃,Storing humidity: 0~ 95%RH
  • Applicable altitude range: <1000m
  • or Customized ,contact our engineer team by sales@longwellfans.com .

What is the electronic protection function included in this backward centrifugal fan ?

Electronic / Thermal protection for this product

EC motor : Control input 0-10VDC/PWM, Tech output, Locked-Rotor

protection, Reverse Polarity,
Over-voltage protection, Soft Start Protection(Delay time <35 seconds to full speed)

Information on motor protection and thermal protection is provided in product-specific data sheets.

The following protection methods are provided depending on the type of motor and area of application:

– Thermal overload protector, in-circuit or external ;

– PTC with electronic diagnostics;

– Impedance protection ;

– Thermal overload protector with electronic diagnostics ;

– Current limitation via electronics ;
If use is made of an external thermal overload protector, a commercially available tripping unit must be connected by the customer for shut-off. Motor protection conforming to the applicable standard must be fitted for products not provided with a built-in thermal overload protector and not protected against improper use.

How long does this motor can operated ?

Lifespan of this product :40,000 hours (EC MOTOR with ball bearings) , 30,000 hours (AC MOTOR with ball bearings)

The service life of the bearing system is primarily governed by the thermal load on the bearings. For the majority of our products, we use maintenance-free ball bearings which can be fitted in any installation position. Sleeve bearings can alternatively be employed, as described in product-specific data sheets.

As a rough guide (depending on the general conditions), the ball bearings have a life expectancy L10 of approx. 40,000 hours of operation at an ambient temperature of 40 °C. We will gladly provide you with a life expectancy calculation based on your specific usage conditions.

What is the electronic wire diagram for this centrifugal fan ?

Fan connection modes vary according to different voltages and operating conditions (such as speed regulation requirements). Draw a connection diagram based on the fan configuration in use. The following shows two common EC centrifugal fan motor connection modes for reference only. Specific project requirements can be connected with our company’s sales engineers

WX20250325-093919

What are the effects of the nozzle (air inlet ring ) gap dimension on the equipment?

The centrifugal air gap between the inlet nozzle and impeller cover plateinfluences the air performance and efficiency of the centrifugal fan.

curves
curves

What is the effects of installation space for the EC Plenum fan when mounted in an AHU ?

Effects of installation spaceWhen mounting our product in a rectangular box, air performancemight be reduced.

dh= Hydraulic diameter
Formula: dh=2xB xH/(B + H)
B= Width of box
H= Height of box
D= Outer diameter of the fan
Airflow determination for inlet rings with pressuretap:
The differential pressure method compares the static pressureupstream ofthe inlet ring with the static pressure in the inlet ringThe airfow can be calculated from the differential pressure (bet.ween the static pressures) according to the following equation:

drawing-1

Hot sale products promotion

- 220V,132W,924m³/h ,893Pa

- 380V,1700W,7045m³/h ,830Pa

- 380V,910W,7828m³/h ,824Pa

- 380V,3300W,16039m³/h ,1166Pa

LWBE3G630-188PT-04

Category of LONGWELL Products

The Ventilation and Drive Technology Partner for Mission-Critical Environments.

Ready to Upgrade Your System? Get Factory-Direct Pricing on Centrifugal Fans!

Skip the middlemen. Contact LONGWELL today for competitive wholesale prices, rapid prototyping, and reliable OEM/ODM centrifugal fan solutions tailored to your exact specifications.

Send Your Inquiry Today!