Sensing element with adjustable positions and magnetic fluxes of magnetic blocks in shell
A technology of sensing elements and magnetic flux, which is applied in the direction of transmitting sensing components, vehicle parts, transportation and packaging by using electric/magnetic devices, and can solve the problem that permanent magnets cannot represent the pedal rotation position, power-assisted demand model is distorted, and there is no control Signal and other issues
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Embodiment 1
[0073] Embodiment 1, the sensor element with adjustable position and magnetic flux of multiple magnetic blocks in the housing
[0074] Such as figure 1 , 3 , with the concave surfaces of an annular groove rotating disk 1 and an annular groove fixing disk 40 facing each other, the size of the annular groove rotating disk 1 and the annular groove fixing disk 40 just makes the annular groove fixing disk 40 fit in In the annular groove of the annular groove rotating disk 1, two disks are synthesized into a fitting inner hollow shell that can rotate relatively, and the concave surfaces of the two disks are sandwiched into a hollow ring 41; the annular groove rotating disk at the position of the hollow ring 41 1 is fixedly provided with 20 permanent magnet blocks 2. The annular groove rotating disk 1 and the annular groove fixed disk 40 are injection molded with high-strength plastics.
[0075] The diameter of the annular groove rotating disc 1 in the hollow ring 41 is 10.0 cm, ...
Embodiment 2
[0084] Embodiment 2. A sensor element with adjustable positions and magnetic fluxes of multiple magnetic blocks in a high-density housing
[0085] Such as figure 2 , 3 , The annular groove rotating disk 1 surface diameter in the hollow ring 41 is 10.0 centimeters, and 40 permanent magnet blocks 2 are established at the annular groove rotating disk 1, and the diameters of the 40 permanent magnet blocks 2 are respectively 0.6 centimeters, and the magnetic flux is 146---279(B·H)max / KJ·m -3 Different selection values within the range, and the magnetic flux of adjacent permanent magnet block 2 is not equal. Hall 3 keeps a distance of 0.2 cm from each permanent magnet 2 in the rotating state, so that when each rotating permanent magnet 2 passes through Hall 3, Hall 3 can generate a corresponding rectangular wave electric signal output. The circle where the arc of the arc-shaped bar-shaped short groove 8 is located and the inner circular locus 5-1 are concentric circles. The...
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