Shenzhen DYX Technology Co.,Limited
Shenzhen DYX Technology Co.,Limited
Home> Products> Mini Diaphragm Pump> Electric Air Pump> Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump
Smart Toilet Bidget Electric Mini Air Pump

Smart Toilet Bidget Electric Mini Air Pump

$2.52-999 Piece/Pieces

$2.351000-99999 Piece/Pieces

$1.35≥100000Piece/Pieces

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

Model No.DQB380-C

Power Source:Electric

Usage:DC PUMP

Pressure:550-800mmHg

Current:<300mA

Structure:Diaphragm Pump

Voltage:12.0V

Flow Rate:2.0-3.0LPM

Noise<55db

Material:Plastic and metal alloy

Application:smart toilet

Packaging & Delivery
Selling Units : Piece/Pieces
Product Description

What are the three main types of pumps?

The three main types of pumps are as follows:

1. Vane pump (turbine pump): centrifugal pump, axial flow pump, mixed flow pump, vortex pump.

2. Positive displacement pump reciprocating pump: Piston Pump , plunger pump, diaphragm pump, rotary pump.

3. Other types of pumps: jet pump, water hammer pump, vacuum pump.

In addition, according to the way the fluid is sucked into the impeller, pumps can be divided into single suction pumps and double suction pumps; Classified by stages, it can be divided into single-stage pumps and multi-stage pumps; According to the form of the pump body, it can be divided into volute pumps and cylindrical pumps; According to the arrangement of the spindle, it can be classified into horizontal pumps, vertical pumps, and inclined pumps.

mini air pump working principle



What is the difference between electric and pneumatic air compressor?

Electric and pneumatic pumps are two different types of pumps, with significant differences in design and functionality.

The Electric Air Pump is driven by an electric motor to work, and its power comes from electrical energy. This type of pump is usually used for regulating the pressure of gas cylinders, providing a certain pressure of gas supply. Pneumatic pumps are driven by compressed air, which generates power. These pumps are usually used in industries and experiments that require a large amount of gas in the indoor environment.

1. Different power sources: The power source of the mini electric air pump is the power supply, which drives the pump body to work through the motor. The power source of the pneumatic pump is compressed air, which drives the pump body to work.

2. Different working principles: The working principle of an portable electric air pump is to use an electric motor to drive the rotor inside the pump. The rotation of the rotor drives the impeller inside the pump to rotate, and the rotation of the impeller provides power to the gas, thereby expelling it. The working principle of a pneumatic pump is to use the pressure difference to allow gas to enter the suction port inside the pump body, and then use compressed air to obtain power to discharge the gas.



Technical Specification    

Model DQB380-C Voltage dc12v 24v
Current 300mA,100mA     Air flow rate 2.0-3.0LPM
Pressure 550-800mmHg Media Air
Lifespan 100hours Leakage 6mmHg/min



There are various methods to increase the pressure of micro diaphragm air pumps, depending on the actual situation and demand. Here are some common methods:

1. Adjusting air pressure: The pressure of the Small DC Air Pump is controlled by air pressure, and the outlet pressure of the pump can be changed by adjusting the air pressure. Specifically, the pressure control valve of the air source system or the pressure control valve on the Dc Air Pump can be adjusted to change the air pressure.

2. Adjusting the flow rate: By adjusting the flow rate, the outlet pressure of the pump can be indirectly changed. The specific method includes adjusting the opening of the inlet valve or the opening of the outlet valve to change the flow rate.

3. Replacement of diaphragm: The diaphragm of a diaphragm air pump is one of the key components of the pump, and the material and thickness of the diaphragm will affect the outlet pressure of the pump. If you need to adjust the pump pressure, you can consider replacing the diaphragm. Generally speaking, replacing a thicker diaphragm can increase the pump's outlet pressure, while replacing a thinner diaphragm can reduce the pump's outlet pressure.

4. Adjusting the valve: By adjusting the opening of the inlet and outlet valves on the diaphragm air pump, the outlet pressure of the pump can be changed. Increasing the opening of the inlet valve can increase the outlet pressure of the pump, while reducing the opening of the inlet valve can reduce the outlet pressure of the pump. Similarly, increasing the opening of the outlet valve can reduce the outlet pressure of the pump, while decreasing the opening of the outlet valve can increase the outlet pressure of the pump.

5. Increase cylinder pressure: If the Mini Air Pump takes gas from the cylinder, the outlet pressure of the pump can be increased by increasing the pressure of the cylinder. The gas supply pressure can be increased by adjusting the cylinder pressure to a higher pressure level.



Dimension Drawing

                              1


Why adjust the pressure of the micro diaphragm air pump?

There are various reasons for adjusting the pressure of a micro diaphragm air pump, depending on the application scenario and requirements. The following are some common reasons for adjusting the pressure of micro diaphragm air pumps:

1. Control flow: By adjusting the pressure of the Small Air Compressor Pump, the gas flow can be indirectly controlled. When the pressure increases, the flow rate usually decreases; When the pressure decreases, the flow rate usually increases. This adjustment method is very useful in situations where precise control of gas flow is required.

2. Optimize performance: By adjusting the pressure of the small dc air pump, the pump's performance can be optimized. In some cases, increasing the pressure appropriately can increase the output flow rate of the micro diaphragm air pump or reduce noise. In other cases, reducing pressure appropriately can reduce energy consumption or extend the service life of the pump.

3. Safety: In some dangerous or sensitive environments, adjusting the pressure of the micro diaphragm air pump can ensure the safe operation of the equipment. For example, in explosive or highly corrosive environments, regulating the pressure can prevent gas leakage or equipment damage.

4. Meeting specific needs: In some special applications, the pressure of the micro diaphragm air pump can be adjusted to meet specific needs. For example, in the medical field, it is necessary to precisely control the pressure and flow rate of respiratory gases; In the laboratory, it is necessary to conduct various experiments using gases of different pressures.



Performance chart

2


How is the energy consumption of a electric air compressor pump related to pressure regulation?

The energy consumption and pressure regulation of micro diaphragm air pumps are closely related. In pneumatic Diaphragm Pumps, the input and output pressure settings of compressed air directly affect energy consumption. Generally speaking, if a higher output pressure is required, a greater input pressure of compressed air is required, resulting in higher energy consumption. Therefore, by combining

Reasonably adjusting the input and output pressures can effectively reduce the energy consumption of micro diaphragm air pumps.

In addition, the opening of the pressure regulating valve can also affect energy consumption. If the opening of the pressure regulating valve is too large, it will cause the pump pressure to be too high, thereby increasing energy consumption. Therefore, when adjusting pressure, it is necessary to find a suitable balance point to achieve the effect of meeting application requirements while reducing energy consumption.

In addition, the energy efficiency of micro diaphragm air pumps is also affected by other factors, such as equipment efficiency, compressed air quality, and pipeline system resistance. Therefore, while regulating pressure, other factors need to be comprehensively considered, such as optimizing equipment maintenance, improving compressed air quality, reducing pipeline resistance, etc., in order to achieve lower energy consumption and higher energy efficiency.

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