An overheating self-cutting power strip
A self-power-off and overheating technology, which is applied to circuits, electrical components, cooling/ventilation/heating transformation, etc., can solve problems such as damage to electronic components, failure of automatic power-off of power strips, failure of normal use of electrical equipment, etc.
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Embodiment 1
[0027] refer to Figure 1-3 , an overheating self-cutting power socket, comprising a socket housing 13, two straight plates 11 are symmetrically arranged on the inner bottom wall of the socket housing 13, and an insulating plate 5 is mounted on the two straight plates 11 to seal and slide together, The insulating plate 5 is provided with a telescopic sleeve 2 and two conductive grooves 4, and the two sides of the insulating plate 5 are symmetrically welded with a connecting piece 7, and each connecting piece 7 is electrically connected with the corresponding conductive groove 4, and the row and socket The top wall of the housing 13 is provided with a round hole 3 and two slots 1, the position of the round hole 3 corresponds to the position of the telescopic sleeve 2, and the position of each slot 1 corresponds to the position of the corresponding conductive groove 4. Correspondingly, the middle part of the insulating plate 5 is provided with a communication port 6, and the pos...
Embodiment 2
[0040] refer to Figure 4-5 , the difference between this embodiment and Embodiment 1 is that two placement grooves 15 are symmetrically opened in the socket housing 13, and the positions of the two placement grooves 15 correspond to the positions of the corresponding conductive rods 8 respectively, and each placement A transparent plate 14 is sealed and installed in the grooves 15 , through which people can observe the color or state change of the objects placed in the groove 15 .
[0041] When the present embodiment is in use, the placement tank 15 is filled with thermochromic materials, such as heat-sensitive pigments and color-changing powders. When the temperature rises to a certain value, the thermochromic materials change from one color to another. After the temperature drops below a certain value, the thermochromic material returns to its original color. When the circuit is overloaded or short-circuited, the temperature at the conductive rod 8 is transmitted to the the...
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