Carl Eric Johnson Co.
MOYNO 33260 Progressive Cavity Pump with Motor
MOYNO 33260 Progressive Cavity Pump with Motor
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MOYNO 33260 Progressive Cavity Pump with Motor – 1/2 HP, 230/460V, 3-Phase, Cast Iron Body
Model: 33260
Brand: MOYNO
Series: 500 Series 300 Motor Pump
Product Overview:
The Moyno 33260 is a compact, motorized progressive cavity pump designed for efficient, low-shear fluid transfer. This close-coupled unit includes a 1/2 HP TEFC motor and is ideal for handling a broad range of fluid types—from clean water to thick, abrasive, or solids-laden liquids. Built with durable materials like cast iron and chrome-plated stainless steel, this pump delivers reliable performance in demanding industrial settings.
Key Features:
All-in-One Design: Pump comes close-coupled with a 1/2 HP, 3-phase, TEFC motor (230/460V, 60 Hz, 1725 RPM) for seamless operation.
Versatile Fluid Handling: Suitable for clean, viscous, abrasive, or solids-containing fluids with non-pulsating, low-shear flow.
Durable Materials:
· Housing: Cast iron
· Rotor: Chrome-plated 416 stainless steel
· Stator: Buna-N
· Seal: Buna mechanical seal with carbon/ceramic faces
Compact & Efficient: Delivers high performance in a small footprint, reducing installation space and complexity.
Self-Priming Capability: Up to 25 ft. of suction lift (when wetted), with appropriate airtight suction lines and pipe sizing.
Specifications:
· Motor: 1/2 HP, 3-phase, 230/460V, 60 Hz, 1725 RPM, TEFC, C-Face
· Connections: 3/4" NPT inlet and outlet
· Temperature Range: Up to 160°F
· Rotor Material: 416 Stainless Steel, Chrome-Plated
· Seal Type: Mechanical (Buna/Carbon/Ceramic)
· Mounting: Close-Coupled
Applications:
· Chemical processing
· Wastewater and sludge handling
· Food and beverage production
· Industrial adhesives, slurries, and coatings
· Any application requiring accurate, repeatable, low-shear flow
Why Choose the Moyno 33260?
This pump combines rugged construction with maintenance-friendly design. With no timing gears or valves to maintain, the 33260 minimizes downtime while maximizing versatility and flow accuracy.
