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If it has magnetism, does it mean the north pole faces upward? Why?
Because there is a magnet at the tip, this ensures accuracy; if the tip faces downward, there will be a deviation caused by the float
Because there is a magnet at the tip, this ensures accuracy; if the tip faces downward, there will be a deviation caused by the float
Because there is a magnet at the tip, this ensures accuracy; if the tip faces downward, there will be a deviation caused by the float
With the head facing up, the position of the head is the zero point
With the head facing up, the position of the head is the zero point
With the head facing up, the position of the head is the zero point
First, the head, that is, the heavier end, is facing upward. Also, why? Because the float floats on the surface of the liquid, that is, part of it is under the surface while the other part is on the surface. At this time, if the head is below the liquid surface, wouldn’t the displayed value be too low? So, the head is facing up. Finally, when purchasing magnetic flip switches, the medium density is important in order to customize the magnetic float so that the effective part of the magnet floats precisely at the surface of the liquid; it’s not enough for the float to simply be able to float. So, sometimes when we replace the lightweight float ourselves, we find that the liquid level indication is a little higher than it actually is – that’s because of this.
1. The magnet is not necessarily on the float, such as in the linkage or pulley transmission types. 2. The magnetic flap itself is not an accurate level gauge, so there’s no need to worry about minor errors. 3. The accuracy of the magnetic flap sometimes depends on the accuracy of the selected size. 4. During installation, the height of the flap can be adjusted to match the actual liquid level as closely as possible. 5. If it has a remote function, the transmitted value can also be calibrated. 6. Different densities result in different float positions.