A microwave shielding plate and microwave cooking device
A technology of cooking device and shielding plate, which is applied in microwave heating, electric heating device, magnetic field/electric field shielding and other directions, can solve problems such as failure to find microwave shielding structure damage, and achieve the effect of reducing danger
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Embodiment 1
[0027] Without loss of generality, the first embodiment will be described by taking the microwave shielding plate 12 installed on the oven door 2 of the microwave cooking device as an example. It should be understood that the microwave shielding plate 12 of the first embodiment can also be applied to any other products requiring microwave shielding, and can be installed at any position of the products. Moreover, the microwave shielding plate 12 of the first embodiment can also be an independent product.
[0028] See figure 1 , the microwave cooking device of the first embodiment includes a furnace body 1 and a furnace door 2 .
[0029] For the structure of furnace door 2, please refer to figure 2 and image 3 . Among them, from image 3 It can be seen from the figure that the oven door 2 includes a microwave shielding plate 12 .
[0030] and, by image 3 It can be found that a protective cover 13 is provided on the outer side of the furnace door 2 (that is, the side aw...
Embodiment 2
[0059] The difference from the first embodiment is that the conductor of the second embodiment is continuously bent in a plane to form a spiral shape.
[0060] When the number of conductive layers is one layer, and the conductor includes multiple conductive coils, it is necessary to ensure that the gap between adjacent conductive coils of the conductor is not greater than 1 / 20 of the working wavelength of the microwave cooking device, so as to ensure that the microwave shielding plate 12 shielding effectiveness.
[0061] Of course, when the adjacent conductive coils are arranged in close proximity, the shielding effect is the best at this time, and it is basically guaranteed that there is no path that can directly pass through the conductive layer.
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