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The working principle of 5v relay products

The working principle of 5v relay products

  • Categories:relay news
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  • Time of issue:2021-12-16 16:45
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The working principle of 5v relay products

(Summary description)5v relay products belong to a classification of relay products, which also have certain requirements for the operating environment. So the popular knowledge today is about the working principle of 15v relay products and the content of reference value in power calculation.

  • Categories:relay news
  • Author:
  • Origin:
  • Time of issue:2021-12-16 16:45
  • Views:0
Information

5v relay products belong to a classification of relay products, which also have certain requirements for the operating environment. So the popular knowledge today is about the working principle of 15v relay products and the content of reference value in power calculation. Friends who are interested can learn from the actual situation.

5v relay products

The working principle of 5v relay products is generally composed of iron core, coil, armature, contact reed, etc. As long as a certain voltage is applied to both ends of the coil, a certain current will flow in the coil, which will produce electromagnetic effects. Under the action of electromagnetic force, the armature will overcome the pull force of the return spring and attract to the core, thereby driving the armature. The moving contact and the static contact (normally open contact) are pulled together. When the coil is de-energized, the electromagnetic attraction will disappear, and the armature will return to its original position under the reaction force of the spring, releasing the moving contact and the original static contact (normally closed contact). This pulls in and releases, so as to achieve the purpose of conducting and cutting off in the circuit.

For the "normally open and normally closed" contacts of 5v relay products, it can be distinguished as follows: the static contact that is in the off state when the relay coil is not energized is called "normally open contact"; the static contact that is in the on state The points are called "normally closed contacts".


 

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