Here in our Animation, The raise in liquid level lifts the float and this in turn moves the magnet closer to the reed switch. when magnet comes near to reed switch, the output contact changes. The change in contact is a signal of liquid level raise or vice versa.
The purpose of a float level switch is to open or close a circuit as the level of a liquid rises or falls. All float operated liquid level controls operate on the basic buoyancy principle which states “the buoyancy force action on an object is equal to the mass of liquid displaced by the object.” As a result, floats ride on the liquid surface partially submerged and move the same distance the liquid level moves. Because of this, they are normally used for narrow level differential applications such as high level alarm or low level alarm.
To complete a circuit, float switches utilize a magnetic reed switch, which consists of two contacts sealed in a glass tube. When a magnet comes close to the two contacts, they become attracted to each other and touch, allowing current to pass through. When the magnet moves away, the contacts demagnetize and separate (breaking the circuit), as shown below figure.
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