Stacked double-magnet toggle type self-generating device and wireless switch
A self-generating and magnet technology, applied in the field of switches, can solve the problems of large space occupied by self-generating devices and inconvenient integrated processing, and achieve the effect of reducing size and facilitating integrated processing.
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Embodiment 1
[0045] Such as Figure 1-2 As shown, the self-generating device in the prior art includes a coil support 11', a coil 12', a soft magnetic plate 161', a magnetic frame 18', a first permanent magnet 162' and a second permanent magnet 163', and the coil support 11 The coil 12' is wound on the top, and the soft magnetic plate 161' is rotatably installed in the coil support 11', and the upper and lower sides of one end of the coil support 11' are respectively provided with a first permanent magnet 162 fixed to the magnetic frame 18' ' and the second permanent magnet 163', in the initial state, such as figure 2 As shown, the soft magnetic plate 161' is in contact with the second permanent magnet 163' and the magnetic permeable frame 18' at the same time, forming a structure consisting of the second permanent magnet 163'-soft magnetic plate 161'-magnetic permeable frame 18'-second permanent magnet 163 'The first closed magnetic circuit, after pressing the right end of the soft magn...
Embodiment 2
[0054] Such as Figure 7-9 As shown, this embodiment provides a self-generating device. The difference from the self-generating device in Embodiment 1 is that the structures of the soft magnetic plate 161 and the elastic assembly are different. The elastic assembly of this embodiment includes two turrets 175 and The fixed shaft 173 and the torsion spring 174 arranged at the bottom of the soft magnetic plate assembly 16, the soft magnetic plate assembly 16 is arranged between two turrets 175, and one end of the two turrets 175 is provided with a rotating shaft 1612 and the two turrets 175 can rotate around the rotating shaft 1612, and the other ends of the two turrets 175 are fixedly connected to the soft magnetic board assembly 16, specifically, the first end of the soft magnetic board assembly 16 is the first end of the soft magnetic board 161 and one of the The rotatable frame 175 is fixed, and the second end of the soft magnetic board assembly 16 , that is, the first connec...
Embodiment 3
[0058] Such as Figure 10-11As shown, this embodiment provides a self-generating device. The difference from the self-generating device in Embodiment 1 is that the structure of the soft magnetic plate 161 and the elastic component are different. The elastic component of this embodiment includes a spring 176, and the spring 176 is configured Between the soft magnetic plate assembly 16 and the fixed plate 17 . Specifically, the bottom of the soft magnetic plate 161, the bottom of the second connecting magnetic plate 165 and the top of the fixed plate 17 are all provided with a limit sleeve 177, and a spring 176 is placed in the limit sleeve 177, so that by pressing the middle of the soft magnetic plate 161 , the closed magnetic circuit can be switched.
[0059] In this embodiment, the upper part of the first permanent magnet 162 is set as an N pole, and the lower part is set as an S pole, and the upper part of the second permanent magnet 163 is set as an N pole, and the lower p...
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