Solar panel with night light
A solar panel and circuit board technology, applied in the field of solar energy, can solve the problems of reducing light transmittance, super-hydrophilic anti-fogging performance is not long-lasting, image distortion, etc., to achieve full energy conversion and utilization, and better anti-fog effect. Excellent, prolong the service life effect
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Embodiment 1
[0030] Embodiment 1: A solar panel with nocturnal light, including a solar panel body 2, a charge and discharge controller, a connection box and a telescopic lifting frame, the connection box is fixedly installed on the solar panel body 2, and the connection box is connected to the charge and discharge The controller is electrically connected, and the telescopic lifting frame is fixedly installed at both ends of the solar panel body 2, the number of the solar panel body 2 is greater than or equal to 2, and the solar panel body 2 is provided with an output interface and an input interface. The output interface of two adjacent solar panel bodies 2 is connected with the input interface, and the two adjacent solar panel bodies 2 are connected through a connecting device, and the at least one solar panel body 2 is electrically connected with a charging connector 1 The solar panel body 2 comprises a convex lens sheet 24, a solar panel 25, a chip 26, a PVC panel 27 and a circuit board...
Embodiment 2
[0040] Embodiment 2: Compared with Embodiment 1, the connection device of this embodiment is a socket 21 and an interface 22. The two adjacent solar panel bodies 2 are respectively provided with a socket 21 and an interface 22. The corresponding The two adjacent solar panel bodies 2 are matched with the interface 22 through the socket 21, and the rest are the same as the first embodiment. The connection mode of the socket 21 and the interface 22 is selected for detachable connection, which is convenient for transportation and storage.
Embodiment 3
[0041] Example 3: Preparation of anti-fog coating 23 through CaCO 3 Particle preparation, SiO 2 Nanoparticle preparation, CaCO 3 / SiO 2 The preparatory step of the composite nanoparticle is to complete the preparation of the anti-fog coating 23; the specific steps are as follows:
[0042] (1) CaCO 3 Particle preparation: choose CaCO 3 Particles were ultrasonically cleaned, and then 2g of polyvinylpyrrolidone was added to 100ml of deionized water, and the cleaned CaCO 3 The particles were added to deionized water, and ultrasonicated again for 20 minutes to make the CaCO 3 The particle surface is coated with a layer of polyvinylpyrrolidone;
[0043] (2) SiO 2 Preparation of nanoparticles: Add 4ml of ammonia water and 100ml of absolute ethanol into the Erlenmeyer flask at room temperature and stir for 8min, then stir at 40°C for 2min, add 2ml of tetraethyl orthosilicate dropwise under stirring, and continue stirring at 50°C for 10h to obtain half Transparent containing so...
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Abstract
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