Wearable intelligent skiing glasses
A wearable and intelligent technology, applied in the field of glasses, can solve the problems of large eye damage, easy collision, and danger, and achieve the effects of reducing operation difficulty, preventing eyelash crystallization, and preventing water vapor accumulation
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Embodiment 1
[0031] Example 1: See Figure 1~4 , in the present invention, the wearable smart ski glasses include a frame 1, and the frame 1 is made of anti-cold TPU material, and is used to support devices such as the lens 2, the anti-fog lens 3, and the sponge 5. One end of the frame 1 is provided with a Lens 2, the lens 2 is snapped on the frame 1, the other end of the lens 2 is provided with an anti-fog lens 3, the anti-fog lens 3 is fixedly snapped on the frame 1, and there is a gap between the lens 2 and the anti-fog lens 3 In a relatively stable space, the frame 1 is filled with filling cotton 4, and the other side of the frame 1 is provided with a sponge 5. The sponge 5 is fixed on the frame 1. It is a memory foam that contacts and fits the face. The sponge 5. The other side is provided with an adjustment belt 6. The adjustment belt 6 has high elasticity and a wide width. The adjustment belt 6 is provided with an adjuster 7. There are two adjusters 7, which are respectively arrange...
Embodiment 2
[0041] Embodiment 2: Adjust the regulator 7 to make the adjustment belt 6 at a suitable length, press the start switch, turn the projection lens 11, make the projection lens 11 face the lens 2 and the anti-fog lens 3, and wear wearable smart ski glasses at night For skiing, the photoelectric detection module activates the dark light vision system according to the light and darkness. The photoelectric detection module starts to collect the infrared light generated by the thermal radiation of external objects, and converts the infrared light signal into an electrical signal for storage. The photoelectric processing module converts the electrical signal stored in the photoelectric detection module The signal is converted into an image signal, the micro-imaging module presents the image signal, and the projection module projects the image signal on the lens 2. The image signal projected on the lens 2 and the visible light image signal are superimposed to enhance the optical signal a...
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