DKX5035 High Strength Magnetic Retentive Vacuum Electromagnet_SupplyPro Co., Ltd._Dongguan Deen Electromagnetic Technology Co., Ltd. 
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Home > SupplyPro Co., Ltd. > DKX5035 High Strength Magnetic Retentive Vacuum Electromagnet
DKX5035 High Strength Magnetic Retentive Vacuum 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 18:05
 
详细Info

Basic Parameters


DKX5035 Magnetic Retentive Magnet has a diameter of 50mm and is processed as a whole. It loses magnetism when de-energized and has no magnetic field when power is off. The product features threaded installation (installation dimensions and methods can be customized as required) and a flat-machined surface for maximum suction. The wire exit position is double-protected for long-lasting durability.


Structure and Working Principle


Ⅰ Structural Composition

The DKX5035 Self-Holding Suction Cup Electromagnet is composed of basic components such as the spool, yoke, fixed core, magnet, and wire.


5035 yoke iron, magnets, and fixed cores form the magnetic field transmission section; 5035 spools, enameled wire, and wires etc. make up the magnetic field excitation section.


Ⅱ Working Principle

In the absence of power, the 5035 maintains the yoke of the suction cup electromagnet, magnetizes and guides the magnetism under the action of the magnet, thereby creating a stronger magnetic field on its surface to achieve adhesion of workpieces. When the product is powered in reverse, the magnetic field generates a magnetic force that cancels out the magnetic force produced by the magnet, causing the workpiece to detach. When powered in the forward direction, the combined magnetic forces create a greater suction.


Operating Frequency

Operating Frequency = (Power-On Time / (Power-On Time + Power-Off Time)) * 10010050%25%10%

Continuous Power SupplyInterval power supply
Power-on Time (seconds)180153
Power W (20℃)8W16W32W70W
Note: With different working voltages and different power factor under operation, the power remains constant, while resistance and current will change.
Please note when selecting to calculate the required current, using the formula: Resistance = Voltage * Voltage / Power Current = Power / Voltage

Dimensions

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