Shenzhen DYX Technology Co.,Limited
Shenzhen DYX Technology Co.,Limited
Home> Products> Mini Diaphragm Pump> Mini Submersible Water Pump> Low energy 2 inch mini submersible pump
Low energy 2 inch mini submersible pump
Low energy 2 inch mini submersible pump
Low energy 2 inch mini submersible pump
Low energy 2 inch mini submersible pump
Low energy 2 inch mini submersible pump
Low energy 2 inch mini submersible pump
Low energy 2 inch mini submersible pump

Low energy 2 inch mini submersible pump

$55-4999 Others

$4≥5000Others

Payment Type:L/C,T/T,Paypal
Incoterm:EXW,FOB,CIF
Transportation:Ocean,Air,Express
Port:SHnzhen,Shekou,Yantian
Product Attributes

Model No.DQB421-SB-2

KeywordsMini Submersible Pump

Rated Voltage18V

Current<50mA

Working Temperature5℃~55℃

Power0.9W

Flow15500mL/H

MediaWater

Life Test20000 cycles

Noise40dB

OEM,ODMSupport

Packaging & Delivery
Selling Units : Others
Product Description

How does the power factor of a Submersible Pump affect its current?

Power factor is a parameter that measures the efficiency of electrical equipment, representing the ratio of active power to apparent power of the equipment.

For submersible pumps, power factor affects the magnitude of their current. The closer the power factor is to 1, the more connected the active power of the submersible pump is

Near its apparent power, which means that the submersible pump converts more electrical energy into mechanical energy rather than dissipating it in the form of heat or other forms.

In this case, the efficiency of the submersible pump is higher and the required current is relatively small.

On the contrary, if the power factor is low, it means that the submersible pump has more energy to convert electrical energy into mechanical energy through other means

The loss of form can lead to a decrease in the efficiency of the submersible pump and an increase in its required current.


mini submersible pump p

How does the power factor of a Mini Submersible Pump affect its efficiency?

The power factor of a Small Submersible Pump has a significant impact on its efficiency. The power factor reflects the ratio of active power to apparent power during motor operation.

In other words, it is the ratio between the mechanical power provided by the motor and the total electrical power consumed during motor operation.

The higher the power factor, the higher the energy utilization efficiency of the submersible pump in the process of converting electrical energy into mechanical energy. This means that

Submersible pumps can more effectively utilize mechanical power and reduce energy waste. Therefore, the efficiency of submersible pumps will increase with the increase of power factor higher and higher.

On the contrary, if the power factor is low, it indicates that the submersible pump has a significant energy loss when converting electrical energy, which can lead to a decrease in the efficiency of the submersible pump. This not only increases the energy consumption of submersible pumps, but may also lead to an increase in their operating costs.


Dimension Drawing
submersible pump size

How to improve the power factor of small submersible pumps?

There are several methods to improve the power factor of submersible pumps:

1. Choose a high-efficiency motor: When purchasing a Micro Submersible Pump, attention should be paid to the efficiency parameters of the motor and a high-efficiency motor should be chosen as much as possible.

High efficiency motors can convert more electrical energy into mechanical energy, thereby improving the power factor of submersible pumps.

2. Optimize the circuit: Optimize the circuit structure of the DC Submersible Pump, reduce circuit losses, and reduce circuit harmonics. The specific methods include using low harmonic technology, improving the input filter structure of the circuit, improving the PWM control algorithm, and installing harmonic filtering.

In addition, capacitor compensation can be used to reduce the reactive power of the circuit, thereby improving the power factor.

3. Adjust the voltage and frequency of the power grid: Reasonably adjust the voltage and frequency of the power grid to maximize the power generation of the submersible pump, thereby making it more efficient.

4. Optimize power supply equipment: Install capacitors, resistors, resonators, and other devices to optimize power supply equipment, reduce impedance, and improve the power factor of submersible pumps.


submersible water pump application1



Does the Miniature Submersible Pump have a wave filter?

In general, micro submersible pumps are not equipped with wave filters because wave filters are mainly used to filter impurities and pollutants in water, while micro submersible pumps are generally used in small aquariums or water landscape decoration, and have low water quality requirements, so wave filters are usually not needed. If you need to better filter the water quality, you can consider purchasing another wave filter to use in conjunction.


Technical Specification

Voltage     DC18V Current     50mA
Static water head pressure 55±10CM Operating flow rate@waterhead pressure 15CM 28000~34000 mL/h
Output power consumption 0.13W Operating Noise <40dB



What is the difference between submersible pumps and self-priming pumps?

1. Installation position and working principle: Submersible pumps are usually placed in water and work by driving the impeller to rotate through an electric motor. The high-speed rotation of the impeller generates pressure on the liquid and smoothly discharges it. The main body of the self priming pump is located above the water surface, and it needs to be filled with water in the pump casing before starting. After startup, the high-speed rotation of the impeller will cause water to flow towards the vortex shell, while forming an inlet vacuum, which then sucks in the air and liquid inside the pipe and ultimately discharges it.

2. Performance characteristics: The Mini Submersible Water Pump has the characteristics of compact structure, small volume, light weight, and convenient use. Moreover, it has good suction force and can be operated at high speed without the need for water filling, making it easy to achieve automation. However, submersible pumps are relatively inconvenient to maintain due to their location underwater, and cables are prone to damage during movement and use. Self suction pumps have the advantages of easy operation, smooth operation, easy maintenance, high efficiency, and long service life. They also have strong self suction ability and are not easily clogged. But the self priming pump room requires a large equipment area, and water needs to be added during the first startup, and the sealing requirements for the inlet pipeline are strict.


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