SUNXFAN®

Centrifugal Fan

SF146A Series

DC EC

Applications

The SF146A series spans DC 24V / 310V and AC 115V / 230V for precise airflow selection — for 24V DC battery or telecom equipment, the SF146A-D092A6-02 (24 V DC, 720 m³/h, 80 W) delivers low-power, quiet ventilation; for high-voltage DC systems and energy-storage cabinets, the SF146A-D092A0-02 (310 V DC, 1080 m³/h, 180 W) provides higher airflow; for North American 115V AC mains, the SF146A-E092A1-01 (115 V AC, 860 m³/h, 120 W) is the direct plug-in choice; for European/global 230V AC — medical equipment, cleanrooms, grow tents, greenhouses and industrial air heaters — the SF146A-E092B3-03 (230 V AC, 1180 m³/h, 220 W) delivers the highest airflow, while the SF146A-E092C3-34 (230 V AC, 780 m³/h, 88 W) suits quieter, lower-power installations.

Model Voltage Power Airflow Noise Speed Control View Details
SF146A-D092A0-02 310 V DC 180 W 1080 m³/h 64±1 dB(A) 0-10V/PWM View Details
SF146A-D092A6-02 24 V DC 80 W 720 m³/h 52±2 dB(A) 0-10V/PWM View Details
Model Voltage Power Airflow Noise Speed Control View Details
SF146A-E092A1-01 115 V AC 120 W 860 m³/h 60±1 dB(A) 0-10V/PWM, 0-5V, 0-6.5V, 3-speed, 4-speed View Details
SF146A-E092A3-02 230 V AC 180 W 1080 m³/h 64±1 dB(A) 0-10V/PWM, 0-5V, 0-6.5V, 3-speed, 4-speed View Details
SF146A-E092B1-02 115 V AC 165 W 960 m³/h 62±1 dB(A) 0-10V/PWM, 0-5V, 0-6.5V, 3-speed, 4-speed View Details
SF146A-E092B3-03 230 V AC 220 W 1180 m³/h 68±1 dB(A) 0-10V/PWM, 0-5V, 0-6.5V, 3-speed, 4-speed View Details
SF146A-E092C3-34 230 V AC 88 W 780 m³/h 54±2 dB(A) 3-speed, 4-speed View Details

FAQ

SF146A-D092A6-02

What other voltage options are available for this DC24V double inlet blower? Does it support wide DC voltage input?

The fan supports an 8Vdc-60Vdc wide voltage range, such as: 12Vdc/26Vdc/32Vdc/48Vdc/56Vdc etc.

SF146A-E092A3-02

Why do manufacturers of high-end range hoods favor this EC146 Extractor blower?

The dual-inlet centrifugal fan is the correct choice for kitchen exhaust systems because it delivers approximately 40% more airflow at the same impeller diameter and speed, generates high static pressure to overcome the resistance of grease hoods, elbows, and fire dampers, reduces noise by 8-12 dB(A) compared to traditional single-inlet fans, and, with EC motors maintaining efficiency above 85% even under partial load, achieves energy savings of up to 70% compared to traditional AC motors while supporting 0-10V/PWM stepless speed control for "on-demand ventilation" based on grease concentration.

SF146A-E092B3-03

What is an EC fan?

An EC fan is a fan that directly connects to an AC power source (such as 220V/50Hz or 115V/60Hz) and uses a built-in controller to convert AC to DC, then applies an electronic driver board to control motor winding current switching, replacing the mechanical commutation (carbon brushes) of traditional motors. Its working process is as follows:
1. Power supply: Directly connected to an AC power source (such as 220V/50Hz or 115V/60Hz), without the need for an external DC power supply or VFD.
2. Rectification: The built-in controller converts AC power to DC power.
3. Electronic commutation: With a built-in electronic driver board, the electronic circuit controls the current switching of the motor windings, replacing the mechanical commutation (carbon brushes) of traditional motors.
4. Speed control: Precisely adjusts the speed based on external control signals (0-10V, PWM, or Modbus).
5. Load efficiency: Maintains a flat, high-efficiency curve across the 10%-100% load range.
6. No carbon brush electromagnetic humming, and noise remains stable during speed adjustment; EC fans can achieve an additional 15%-35% energy savings within the typical 30%-70% operating range.

How to select and match EC fans?

EC fan selection requires a systematic evaluation of the operating point, fan type, motor performance, control method, environmental protection, and installation dimensions, rather than simply "matching airflow." The following is a seven-step engineering selection process:

1. Determine the operating point (airflow + static pressure)
This is the foundation of selection. Never rely solely on the "free air flow" specification; both airflow and total system static pressure must be determined simultaneously.
Airflow calculation:
Sensible heat load method: Q (kW) = m × cp × ΔT, where cp = 1.006 kJ/kg·K (air)

Volumetric airflow: V (m³/h) = Q / (1.2 × 1.006 × ΔT) × 3600

Typical ΔT values: 10K for office HVAC, 12K for data center CRAH, 8K for residential

Static pressure calculation: At the design airflow, sum the pressure losses of all components:

System componentTypical static pressure range (Pa)
Filter50–250 (G4 clean 80Pa/dirty 250Pa; F7 clean 200Pa/dirty 400Pa)
Heating/cooling coil100–400
Damper30–100
Duct friction200–500
Diffuser/terminal50–150

Total static pressure = sum of all items × 1.1 (safety factor). A 10–15% static pressure margin must be reserved because resistance increases as filters accumulate dust.
2. Select the fan type
Choose the appropriate fan family based on the total system static pressure range:

Total static pressure (Pa)Recommended fan typeTypical applications
< 400EC axial fanCondensers, dry coolers, large ventilation ducts
400–1,800EC backward-curved centrifugal plug fanAHU, CRAH, FFU, heat pumps, energy storage air conditioners
1,800–3,200High-pressure EC plug fanLiquid cooling units, dust collectors, high-density heat exchangers

For high-resistance complex ductwork, backward-curved centrifugal EC fans are most suitable; for high-airflow, low-resistance scenarios, EC axial fans can be selected; mixed-flow EC fans balance both airflow and static pressure requirements.
3. Use performance curves to determine fan size
Plot the calculated operating point (airflow + static pressure) on the PQ performance curve of candidate fans, and select the smallest high-efficiency size that covers this operating point. Data center fan walls commonly use Ø355–630mm, while compact models commonly use Ø133–310mm.
4. Calculate motor power
P (W) = (V × Pa) / (η × 1000), where V is in m³/s, Pa is total pressure, and η is fan efficiency; add a 10% margin to the result. The motor nameplate power should be ≥ calculated value × 1.1.
5. Determine the ingress protection rating (IP rating)
Select the IP rating based on the installation environment. Humid and dusty environments require IP55 or higher; cleanrooms and medical environments require consideration of corrosion resistance and easy-to-clean design.
6. Select the control method
EC fans support multiple control interfaces and must match your control system:

Control methodFeaturesApplicable scenarios
0-10V analogSimple wiring, conventional wiring ≤50mBuilding automation (BMS), simple speed control
4-20mAStronger interference immunity than 0-10VIndustrial environments
PWMSuitable for embedded controllersOEM equipment integration
Modbus RTU/RS485Supports networked control, maximum wiring length 1000m, supports remote read/write of speed, current, and fault codesLarge-scale cluster management, data centers

7. Verify noise and installation dimensions
Confirm whether the noise limit meets project requirements (medical and educational scenarios are noise-sensitive), and check whether the fan's installation space dimensions match. The integrated design of EC fans eliminates the need for a separate VFD cabinet, saving installation space.

SF146A-E092C3-34

Why does the EC146 double-inlet centrifugal fan with a plastic volute have such a wide range of applications in high-end range hoods, laminar flow beds/laminar flow canopies, and humidification and purification equipment?

The EC146 plastic volute dual-inlet centrifugal fan is widely used in high-end range hoods, laminar flow beds/laminar flow hoods, and humidification and purification equipment. Its core advantage lies in its precise balance of the demanding requirements these three scenarios place on the fan: achieving high airflow, high static pressure, low noise, and intelligent speed control simultaneously within a compact size. Its dual-inlet structure, EC motor, and the material properties of the plastic volute precisely address the core pain points in these applications one by one.

Why are EC double inlet centrifugal blowers used in low-noise applications?

The EC146 dual-inlet centrifugal fan is widely used because it systematically resolves three key contradictions: its dual-inlet structure balances airflow and uniformity, its EC motor balances efficiency and controllability, and its plastic scroll housing balances cleanliness, corrosion resistance, and cost. This systematic balancing capability makes it an ideal choice for compact equipment with stringent requirements for performance, reliability, noise, and dimensions.