a DC relay
A DC relay and current technology, applied in the direction of relays, electromagnetic relays, detailed information of electromagnetic relays, etc., can solve problems such as high cost, weakening electromagnetic force, inconvenient assembly and use, etc., and achieve low product cost, avoid abnormalities, and simplify production Effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0042] Example 1, see Figure 8 to Figure 13 As shown, a DC relay of the present invention includes a contact part. The contact part includes two static contacts 11, 12 for providing current inflow and outflow respectively, and a movable reed 21. The movable reed 21 The two ends of the two are matched with the two static contacts 11 and 12 respectively; on the outside of the two ends of the movable reed 21, a first magnet 31 for arc blowing is arranged symmetrically, and the two first magnets 31 face each other. The polarity of the side of the moving reed 21 is different; on the outside of the middle of the moving reed 21, there are two second magnetic steels 32 with a preset direction magnetic field, so that when the preset direction magnetic field acts on the moving reed 21, a The electromagnetic force opposite to the repulsive force of the contact.
[0043] Two second magnets 32 are respectively arranged symmetrically on the outside of the middle of the moving reed 21, and are...
Embodiment 2
[0047] Example two, see Figure 14 As shown, the difference between the DC relay of the present invention and the first embodiment is that the polarities of the two first magnets 31 are set in opposite directions, so that the poles of the two first magnets 31 are opposite to each other. The performance is still different. At this time, the first magnets at both ends of the movable reed will also generate magnetic blowing on the arc, forming an outward magnetic blowing force F41.
Embodiment 3
[0048] Example three, see Figure 15 As shown, the difference between the DC relay of the present invention and the first embodiment is that the polarity of one of the first magnets 31 (the one on the left in the figure) is set to be opposite, so that the two first magnets The polarity of the opposite side of steel 31 is the same, and the magnetic field distribution is like Figure 15 As shown in the figure, at this time, the first magnets 31 at both ends of the moving reed will also generate magnetic blowing on the arc, forming an outward magnetic blowing force F51, and the magnetic blowing force F51 generated by the two first magnets 31 is moving The reeds face the same in the width direction.
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


