Side-arranged double-magnet toggle type self-generating device and wireless switch
A wireless switch and self-generating technology, which is 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, facilitating integrated processing, and compact internal structure of the switch
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Embodiment 1
[0052] 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 17', a magnetic frame 19', a first permanent magnet 154' and a second permanent magnet 155', and the coil support 11 The coil 12' is wound on the top, and the soft magnetic plate 17' 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 154 fixed to the magnetic frame 19' ' and the second permanent magnet 155', in the initial state, such as figure 2 As shown, the soft magnetic plate 17' is in contact with the second permanent magnet 155' and the magnetic permeable frame 19' at the same time, forming a combination of the second permanent magnet 155'-soft magnetic plate 17'-magnetic permeable frame 19'-second permanent magnet 155 After pressing the right end of the soft magnetic plate 17', the soft magnetic plate 17' is in...
Embodiment 2
[0064] like Figure 9-12 As shown, this embodiment provides a wireless switch, including a base 2, an upper cover 3 and an elastic member 4, the base 2 is equipped with the self-generating device in Embodiment 1, and one end of the elastic member 4 is fixedly connected to the soft magnetic plate 17 , the other end of the elastic member 4 is connected with the upper cover 3, and the self-power generation can be realized by pressing the upper cover 3. Specifically, the self-generating device is fixed to the inner bottom surface of the base 2 through the fixing plate 16, one end of the elastic member 4 is fixed to the soft magnetic plate 17, and the other end of the elastic member 4 passes through and is sleeved on the positioning rod 33 on the inner bottom surface of the upper cover 3 In this way, by pressing the surface of the upper cover 3, the soft magnetic plate 17 can be driven to rotate to switch the closed magnetic circuit, thereby inducing a current in the coil 12, and t...
Embodiment 3
[0068] like Figure 13-15 As 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 17 and the elastic assembly are different. The elastic assembly of this embodiment includes a spring 176, and the spring 176 is configured between the soft magnetic plate 17 and the fixed plate 16 . Specifically, the lower surface of the soft magnetic plate 17 and the upper surface of the fixed plate 16 are provided with a limit sleeve 178, and a spring 176 is placed in the limit sleeve 178, so that by pressing the soft magnetic plate 17, the closed magnetic circuit can be switched. .
[0069] In this embodiment, the upper part of the first contact port 144 is its first contact part, the lower part is its second contact part, the upper part of the second contact port 156 is its first contact part, and the lower part is its second contact part. In addition, the upper part of the f...
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