DWP0510 Tapping-Type Electromagnet_SupplyPro Co., Ltd._Dongguan Deen Electromagnetic Technology Co., Ltd. 
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Home > SupplyPro Co., Ltd. > DWP0510 Tapping-Type Electromagnet
DWP0510 Tapping-Type Electromagnet
品牌: Dern
Current characteristics: Direct Current
Material/Composition: Iron material
Is Customization Available?: Is
单价: 电议
最小起订Quantity:
供货总Quantity:
有效期至: 长期有效
最后更新: 2023-07-31 18:04
 
详细Info

Basic Parameters


Model Name: DWP0510 Tapping Electromagnet

Dimensions: Length 25.5mm x Width 25mm x Thickness 10mm

Applicable Voltage: DC3V ~ DC60V

Matching Angle: Approximately 20°

Operating Mode: Suction Mode

Environment: Temperature -20~40°C; humidity 5%RH-85%RH, with high rotation angle accuracy and strong torque.


Structure and Working Principle


Ⅰ Structural Composition

The DWP0510 Tapping Electromagnet is composed of basic components such as coils, yoke, fixed core, spring, armature, and wire.


The 0510 striking electromagnetic yoke and fixed core form the magnetic field transmission section; the 0510 coil, wire, etc., form the magnetic field excitation section; and the magnetic sound action section is composed of the attraction plate and spring piece.


II Working Principle

When powered on, the DWP051 generates a magnetic field through the excitation section. This magnetizes the transmission section, creating a magnetic force on the mating surface, which attracts the mating plate. Under the spring's influence, the mating plate swings into place at the designed angle. Upon power off, the transmission section cannot generate magnetic force, and the mating plate resets under the spring's action.


Operating Frequency

Working Frequency = (Power-On Time / (Power-On Time + Power-Off Time)) * 10010050%25%10%
Continuous Power SupplySpaced electrical connection
Power-on Time (seconds)200204
Power W (20°C)2W4W8W20W
Note: With different working voltages and varying power factor during operation, the power remains constant, but resistance and current will change.
Please note when selecting to calculate the required current. Calculation formula: Resistance = Voltage * Voltage / Power; Current = Power / Voltage.


Dimensions

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