DIDW Centrifugal Fan 180 MM X 228 MM
DIDW Centrifugal Fan 180 MM X 228 MM

DIDW Centrifugal Fan 180 MM X 228 MM

MOQ : 12 Pieces

DIDW Centrifugal Fan 180 MM X 228 MM Specification

  • Display Type
  • nan
  • Efficiency
  • High
  • Automation Grade
  • Semi-Automatic
  • Instruments Type
  • Fan/Blower
  • Usage & Applications
  • Industrial ventilation, air handling units, HVAC & Exhaust applications
  • Measurement
  • Air Flow
  • Orientation
  • Horizontal
  • Air Flow
  • Up to 3100 m3/h
  • Sensor Type
  • nan
  • Scrubber Type
  • nan
  • Temperature
  • Ambient up to 60C
  • Power Source
  • Electric
  • Product Type
  • DIDW (Double Inlet Double Width) Centrifugal Fan
  • Material
  • Mild Steel
  • Cooling System
  • Air Cooling
  • Noise Level
  • 70-85 dB
  • Reactor Thickness
  • nan
  • Processing Time
  • nan
  • Capacity
  • 15003100 m3/h
  • Voltage
  • 220-240 V / 380-415 V AC
  • Weight
  • Approx. 18 kg
  • Dimension (L*W*H)
  • 180 mm x 228 mm (Impeller Size)
  • Surface
  • Powder coated
 

DIDW Centrifugal Fan 180 MM X 228 MM Trade Information

  • Minimum Order Quantity
  • 12 Pieces
  • Payment Terms
  • Cash on Delivery (COD), Paypal, Cash Against Delivery (CAD), Cash Advance (CA), Cash in Advance (CID), Cheque
  • Main Export Market(s)
  • Australia, North America, South America, Eastern Europe, Western Europe, Middle East, Central America, Africa, Asia
  • Main Domestic Market
  • All India
 

About DIDW Centrifugal Fan 180 MM X 228 MM

DIDW Centrifugal Fan 180 MM X 228 MM

DIDW CENTRIFUGAL BLOWER  

 SL.NO CATALOGUE NO  MILLIMETERS  INCHES  BORE SIZE  MATERIAL 
    OD X HT X ID  OD X HT   MM & INCH
21 ETIP 7 90   180 X 228 X 153 7 X 9 12.70 (1/2) & 15 MM  AL. / GI.  


Robust Industrial Air Handling Solution

Built to meet demanding ventilation needs, this centrifugal fan combines heavy-gauge steel housing with dynamically balanced impeller blades. Its construction guarantees steady performance across HVAC, air handling units, and exhaust processes, even at higher static pressures and temperatures up to 60C. The powder-coated finish enhances corrosion resistance, making it suitable for long-term industrial operations.


Flexible Mounting and Efficient Design

The fan supports both flange and bolted mounting types and offers drive options of belt drive or coupled direct drive. Its backward curved impeller design maximizes high-volume airflow while minimizing energy consumption. This, coupled with ball bearing support, ensures lower maintenance and high operational reliability, making it a cost-effective choice for continuous-use applications.

FAQs of DIDW Centrifugal Fan 180 MM X 228 MM:


Q: How is the DIDW Centrifugal Fan 180 MM X 228 MM installed in industrial setups?

A: This centrifugal fan can be installed using either a flange or bolted mounting method, allowing flexible integration into existing ventilation, HVAC, or exhaust systems without extensive modifications.

Q: What benefits does the backward curved impeller provide?

A: The backward curved impeller enhances aerodynamic efficiency, resulting in higher airflow at lower power consumption and improved resistance to dust and debris buildup, making it ideal for industrial environments.

Q: When is it best to use this fan in industrial applications?

A: This fan is best suited for situations requiring continuous operation and reliable ventilation, such as in air handling units, HVAC systems, and industrial exhaust scenarios where consistent air movement and static pressure are essential.

Q: Where can this centrifugal fan be typically applied?

A: It is commonly used in industrial ventilation, air handling units, exhaust applications, and any facility needing robust and efficient air movement, suitable for various industrial sectors across India.

Q: What is the process for maintaining the DIDW Centrifugal Fan?

A: Routine maintenance involves checking the ball bearings, inspecting the impeller for balance and cleanliness, ensuring belt integrity (for belt drive), and keeping the powder-coated surface free of corrosion to preserve longevity and efficiency.

Q: How does the fan ensure high operational efficiency and reliability?

A: The combination of a backward curved, dynamically balanced impeller and heavy-duty mild steel construction, along with ball bearings and efficient motor design, delivers reliable operation, high air flow, and reduced energy consumption in continuous modes.

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