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Replaceable Wearing Parts
Non clog impeller


High Quality Mechanical Seal for Long Life
Fitted with Thermal Overload Protector

Low Power Consumption
Minimum 1m Submergence Required

Motor Designs with 100% Copper Rotor
Dynamically Balanced Rotating Parts

Fitted with Thermal Overload Protector
Powder Coated Motor Body

Energy Efficient
High Grade Pump Castings Ensures Very Slow Rusting of Pump

Optimum Performance at Low Price
Easy to Install in Smaller Spaces

Efficient Water Flow
Single Phase Operation

The Pump Set Is Firmly Coupled To A Submersible Electric
Rigid Construction


Built with Corrosion-Resistant Materials for Long-Term Use
Energy Efficient Motor that Works Even at a Higher Temperature

Vibration Free Smooth Operation & Built in NRV Reduces the
Easy Assembling, Dismantling & Rigid Cast Iron Parts

Easy Transport, Dry Run Protection & Easy to Handle
Silent, Compact Design, Easy Movable & Auto Stop Function

Wide Voltage Design
Longer & Trouble Free Life

Double Sealed Ball Bearing, So No Need of External Lubrication
Built-in with Imported Thermal Overload Protector

Dynamically Balanced Rotating Parts
Wide Voltage Design

Heavy Duty Brass Forged Impeller with Vane Type Fins for
Thermal Overload Protector to Protect the Motor in Case of

Extra Lifting Capacity: Heavy Duty Brass Forged Impeller with Vane
Thermal Overload Protection: Protects the Motor in Case of Heating

Thermal Overload Protection: Protects the Motor in Case of Heating
Extra Lifting Capacity: Heavy Duty Brass Forged Impeller with Vane

TEFC, Capacitor Start & Run Motor & Insulation Class B
High Suction Lift, Low Life Cycle Cost, Low Maintenance, Low

TEFC, Capacitor Start & Run Motor & Insulation Class B
High Suction Lift, Low Life Cycle Cost, Low Maintenance, Low

High Suction Lift
Shielded Ball Bearing, Thermal Overload Protector & Dynamically Balanced Rotating

Tefc (Totally Enclosed Fan-Cooled) Design Ensures Durability & Protection From
High-Quality Materials for Long-Lasting Performance

Ced Coated Cast Iron Components for Rust Free & Longer
Designed to Prevent Overloading & Motor Burnout

Dynamically Balanced Rotating Parts
Motor Designs with 100% Copper Rotor

Powerful Motor Capacity
Capable of Wide Voltage Fluctuations

Minimum Variations in Efficiency During Entire Operation
Design to Prevent Overloading

Superior Performance in Lifting Water
Ced Coated Pump Components

Single Phase Efficiency
Wide Application Range


Robust Monoblock Construction Ensures Durability.
Ideal for Domestic Water Pumping Applications

Extra Lifting Capacity: Heavy Duty Brass Forged Impeller with Vane
Energy Efficient.

In-Built Thermal Over Load Protector
Energy Efficient Motor

Zinc Coated Hardwares
Thermal Overload Protector, High Efficiency & Easy to Use

Built to Withstand Harsh Conditions for Long-term Reliability
Ideal for Borewells, Reaching Depths with Ease

Light in Weight & Easy to Inastall
Energy Efficient, Dynamically Balanced & Epoxy Coated Rotor

Easy to Fit & Compact Size
Optimum Performance at Low Price

Dynamically Balanced Rotor
Pump Seal

Pump Casting: High Grade Pump Castings Ensure Very Slow Rusting
In Built Thermal Overload Protector
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What is a single-phase water pump?
A single-phase water pump is a type of electric pump that operates on a single-phase power supply, which is the standard electrical power found in most homes and small businesses. It uses a single alternating current waveform to power its motor.
Where are single-phase water pumps typically used?
Single-phase water pumps are commonly used for residential water supply, irrigation in small gardens, draining flooded areas, circulating water in heating and cooling systems, and in various domestic applications where high power is not required.
What are the advantages of using a single-phase water pump?
Advantages include simpler installation, lower cost compared to three-phase pumps, compatibility with standard household electricity, and suitability for low to medium flow rate and head applications.
What factors should I consider when choosing a single-phase water pump?
Key factors include the required flow rate (gallons per minute or liters per hour), the total head (vertical lift and friction losses), the power supply voltage and amperage, the type of liquid being pumped, and the pumps durability and material construction.
Are single-phase water pumps efficient?
Efficiency can vary depending on the pumps design, motor quality, and operating conditions. Modern single-phase pumps are designed to be reasonably efficient for their intended applications, but for very high-demand industrial uses, three-phase pumps are generally more efficient.