Please wait while we process your order...

Product successfully added to your cart.
Cart Image

Quantity in Cart: 1


Continue Shopping Shopping Cart
Item removed from Cart
X
 
×
Product Image

Graco 652840 Husky 3300S Diaphragm Pump

The Graco 652840 Husky 3300S Diaphragm Pump is a high-capacity air-operated pump designed for demanding industrial fluid transfer. It delivers reliable performance when handling chemicals, oils, coatings, and other industrial liquids.

  • Model: Graco 652840
  • Series: Husky 3300S
  • Pump Type: Air-Operated Double Diaphragm (AODD)
  • Port Size: 3 inch NPT inlet and outlet
  • Maximum Flow Rate: Up to 300 GPM (1135 L/min)
  • Maximum Pressure: 125 psi (8.6 bar)
  • Fluid Section: Stainless steel
  • Diaphragm Material: Santoprene
  • Ball Material: PTFE
  • Power Source: Compressed air

$16220
0
Based on 0 reviews
5
0%
4
0%
3
0%
2
0%
1
0%

Compatible Systems and Machines

The Graco 652840 Husky 3300S Diaphragm Pump is a heavy-duty air-operated pump used in high-volume industrial fluid transfer systems. It is typically installed in large pumping and processing setups rather than being limited to a single machine model.

  • Industrial chemical transfer systems
  • Paint and coating circulation systems
  • Bulk fluid transfer stations
  • Wastewater and sludge pumping systems
  • Adhesive and sealant dispensing equipment
  • Industrial manufacturing fluid handling lines
  • Mining and heavy-duty slurry transfer systems
  • Oil and lubricant transfer equipment
  • Water treatment processing systems
  • Industrial coolant and cutting oil circulation systems

Overview of Graco 652840 Husky 3300S Diaphragm Pump

The Graco 652840 Husky 3300S is a high-capacity air-operated double diaphragm pump engineered for reliable fluid transfer in demanding industrial environments. Built with a durable stainless steel fluid section and aluminium centre section, this pump offers excellent chemical resistance, efficiency, and long service life.

Because it operates using compressed air, the pump eliminates the need for electric motors and can safely handle hazardous, corrosive, or abrasive fluids. Its efficient air valve design helps reduce air consumption while maintaining consistent pumping performance.

Key Features of Graco 652840 Husky 3300S

Feature Description
Pump Type Air-Operated Double Diaphragm (AODD)
Series Husky 3300
Port Size 3 inch NPT inlet and outlet
Fluid Section Stainless steel construction
Centre Section Aluminium
Diaphragm Material Santoprene
Ball Material PTFE
Maximum Flow Rate Up to 300 GPM (1135 L/min)
Maximum Pressure 125 psi (8.6 bar)
Power Source Compressed air

Typical Applications

The Graco 652840 Husky 3300S Diaphragm Pump is designed for heavy-duty fluid transfer and circulation tasks in industrial environments where reliability and high flow capacity are required.

  • Transferring industrial chemicals and solvents
  • Pumping oils, coolants, and lubricants
  • Handling wastewater and slurry
  • Circulating paints, coatings, and adhesives
  • Bulk liquid transfer between storage tanks
  • Industrial processing and production lines

Frequently Asked Questions

The Graco 652840 Husky 3300S is an air-operated double diaphragm pump designed for high-volume fluid transfer in industrial systems. It operates using compressed air rather than electricity.

This pump features a stainless steel fluid section, aluminium centre section, Santoprene diaphragms, and PTFE balls for strong chemical resistance and durability.

The pump can deliver a maximum flow rate of approximately 300 gallons per minute (1135 litres per minute), making it suitable for large industrial transfer applications.

It can handle a wide range of fluids including chemicals, oils, wastewater, coolants, detergents, paints, coatings, and other industrial liquids.

Subscribe to our newsletter to get exclusive discounts and new theme launches right in your inbox.

You may unsubscribe at any moment. For that purpose, please find our contact info in the legal notice.

Payment Method   Payment Method   Payment Method   Payment Method