Small AC Diaphragm Solenoid Air Pump
$101000-9999 Piece/Pieces
$14≥10000Piece/Pieces
Payment Type: | L/C,T/T,Paypal |
Incoterm: | FOB,EXW,DDU,DDP,CIF,Express Delivery |
Transportation: | Ocean,Land,Air,Express |
Port: | Shenzhen,Shanghai,Ningbo |
$101000-9999 Piece/Pieces
$14≥10000Piece/Pieces
Payment Type: | L/C,T/T,Paypal |
Incoterm: | FOB,EXW,DDU,DDP,CIF,Express Delivery |
Transportation: | Ocean,Land,Air,Express |
Port: | Shenzhen,Shanghai,Ningbo |
Model No.: DHB15-24V
Brand: DYX
Air Flow Rate: >14LPM
Media: Air
N.W.: 650g
Rated Voltage: AC24.0V
Positive Pressure: >25Kpa
Working Temperature: 5℃ ~40℃
Noise Level: <70db
Life Test: 20000 hours
Power Consumption: <10W
Input Frequency: 50-60Hz
Selling Units | : | Piece/Pieces |
Package Type | : | Export carton |
Why the AC Solenoid Pump can only work at intervals during anti-thrombotic treatment ?
First of all, the Ac Solenoid Pump is a device that uses electromagnetic principles to work. It can generate a certain pressure and flow rate to transport liquid from one place to another.one place. In anti-thrombotic therapy, AC electromagnetic pumps are usually used to pump liquids such as drugs or saline to deliver drugs or saline into the patient's blood vessels.
However, if the AC Air Pump continues to work, it may cause irritation to the patient's blood vessels, thereby increasing the risk of thrombosis. Therefore, in order to prevent the formation of thrombosis, the AC electromagnetic pump can only work intermittently.
In addition, intermittent work can also give the patient's body enough time to absorb and metabolize fluids such as drugs or saline, thereby better exerting its therapeutic effects.
Effect of magnetic objects on the performance of thrombus instruments
If magnetic objects are placed next to a thrombus device with an Solenoid Pump, it may have a negative impact on the performance of the thrombus device.
First, solenoid pumps are often used in thrombus instruments to drive fluid flow or generate magnetic fields. If a magnetic object is placed next to the thrombus device, it may interfere with the work of the electromagnetic pump, thereby affecting the normal operation of the thrombus device.
Second, magnetic objects may interfere with sensors and control systems in thrombus instruments. Sensors of thrombus instruments usually include electromagnetic sensors, pressure sensors, etc., which require good cooperation with electromagnetic pumps to achieve accurate measurement and positioning. If magnetic objects interfere with the work of these sensors, the thrombus instrument may not work properly or may have measurement errors.
In addition, the control system of the thrombus instrument also needs to cooperate well with the electromagnetic pump and other sensors to achieve precise control. If magnetic objects interfere with the normal operation of the control system, it may cause inaccurate movement of the thrombus instrument or other problems.
In summary, placing magnetic objects next to a thrombus device with an electromagnetic pump may have a negative impact on the performance of the device. Therefore, it is recommended to avoid placing magnetic objects nearby when using thrombus instruments to ensure optimal device performance and user experience.
Technical Specification
Product Model | DHB15-24V |
Voltage | AC 240V |
Power | <10W |
Air flow rate | >15L/Min |
Media | Air |
Life cycle | >20,000 cycles(work for 30min and stop for 10min as a cycle) |
Working temperature | 5℃~40℃ |
Weight | 65g |
Pressure | 26-36KPA |
Application | Mainly used for varicose veins treatment and lymphatic circulation therapy. |
Dimension Drawing
Application
Do Solenoid Pump Need Nressure To Work?
The diaphragm Solenoid Air Pump requires pressure to work, because the pressure can provide the pump with sufficient fluid to smoothly pass through the pump chamber under the action of electromagnetic force. At the same time, pressure can also help the pump work more efficiently, because as the fluid pressure increases, the fluid flows better in the pump chamber, thereby reducing friction and energy loss. In addition, pressure can also help the pump remain stable during operation to avoid adverse phenomena such as cavitation.
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