Glasses special for driving
Technical Field
The utility model relates to a photoelectric equipment technical field specifically is a drive special glasses.
Background
People often encounter various complex light conditions including backlight, tunnel entrance, high beam and the like when driving, and the conditions are usually dealt with by using sun visors or sunglasses, but the devices need to be replaced or adjusted frequently and manually, so that the danger is caused by easy distraction in the driving process.
At present, conventional sunglasses on the market are mainly fixed in a light-transmitting mode and are divided into four categories according to the light-transmitting degree, people need to prepare a plurality of pairs of different sunglasses for different external environments, the sunglasses are inconvenient and cumbersome to carry, meanwhile, existing light-adjustable glasses, namely photochromic glasses, are required to be changed for about 1-3min in color changing speed and cannot adapt to rapid change of environmental brightness, and vehicle windows have the function of blocking ultraviolet rays, so that the glasses cannot be basically changed in a vehicle and cannot meet actual use requirements, and the special driving glasses are provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a drive special glasses to solve the current sunglasses that provide among the above-mentioned background art and can adjust luminance the not satisfied interior problem of driving the needs that become the light of car of eyes.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a drive special glasses, is including widening the picture frame, widen the both sides tip of picture frame and all rotate the installation and widen the mirror leg, widen the equal fixed mounting antiskid of mirror leg tip and hold in the palm, widen the equal fixed mounting installation lens in mirror leg both sides, the surface that widens the picture frame is located and is equipped with the installation component that can satisfy actual installation demand between the installation lens, the inside of installation component is equipped with the control assembly that can realize the installation lens function of discolouing.
Preferably, the installation lens includes myopia lens, flexible photochromic lens, puts groove and bearer bar, widen the equal fixed mounting bearer bar of picture frame both sides inner wall, the flexible photochromic lens of front side fixed mounting between the bearer bar, it has the groove of putting to lie in the flexible photochromic lens rear side between the bearer bar, but put inslot portion card and hold and put myopia lens.
Preferably, widen the surface of picture frame and be located the both sides of installation lens and seted up the mounting groove, mounting groove lateral wall surface is close to mounting groove port department fixed mounting transparent plate, and the transparent plate adopts the ya keli material to make.
Preferably, the inside surface mounting solar cell panel of mounting groove, the inside surface of mounting groove is located solar cell panel one side fixed mounting main control chip, the inside surface of mounting groove is located solar cell panel and main control chip below position fixed mounting pressure regulating control circuit and light sense sensor in proper order.
Preferably, the solar cell panel and the light sensation sensor are respectively electrically connected with the main control chip, and the main control chip is electrically connected with the voltage regulation control circuit.
Preferably, the power generation blocks are fixedly installed in the solar cell panel at equal intervals, and the power generation blocks are connected electrically in series.
Compared with the prior art, the beneficial effects of the utility model are that:
1. through the electrical property cooperation between control assembly and the installation lens, can accomplish the processing of discolouing fast, combine in this device light sensor can carry out the perception to the light of driving environment and transmit its perception signal to main control chip, main control chip will control the work of pressure regulating control circuit afterwards, after the pressure regulating control circuit receives the regulation and control of main control chip, can change the voltage on flexible discolouing lens both sides, thereby change the refracting index that flexible discolouing lens set to the light, make the highlight weaken, the low light becomes strong, in order to satisfy actual driving needs, whole process control is in the millisecond simultaneously, can quick response in order to adapt to the quick change of ambient light, can not influence the security of driving;
2. compared with the traditional color-changing eyes, the flexible color-changing lens does not depend on ultraviolet rays to change color, the high-sensitivity light-sensitive sensor of the device can trigger the glasses to change color when sensing visible light, and the glass of the vehicle can be suitable for being used during driving under the condition that the ultraviolet rays are filtered by the glass of the vehicle even when the vehicle is driven in a cab of the vehicle;
3. the flexible color-changing lens in the device is in light gradual change color from top to bottom after changing color, and the dazzling sunlight is usually above the visual field of people, so that the dazzling sunlight can be better handled, and the comfort of the glasses is improved.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic cross-sectional view of the lens assembly of the present invention;
FIG. 3 is a schematic structural view of the control assembly of the present invention;
FIG. 4 is a schematic view of the installation of the power generation block structure of the present invention;
FIG. 5 is a schematic diagram of the electrical connection of the present invention.
In the figure: 1. widening the mirror frame; 101. widening the glasses legs; 102. an anti-skid support; 2. installing a lens; 201. a myopic lens; 202. a flexible color changing lens; 203. a placing groove; 204. a protective frame; 3. mounting the component; 301. mounting grooves; 302. a transparent plate; 4. a control component; 401. a solar panel; 402. a main control chip; 403. a voltage regulation control circuit; 404. a light-sensitive sensor; 405. and a power generation block.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides an embodiment:
the glasses special for driving comprise a widened glasses frame 1, wherein both side ends of the widened glasses frame 1 are rotatably provided with widened glasses legs 101, both side ends of the widened glasses legs 101 are fixedly provided with anti-skidding supports 102, both sides of the widened glasses legs 101 are fixedly provided with lenses 2, an installation component 3 capable of meeting actual installation requirements is arranged between the installed lenses 2 on the surface of the widened glasses frame 1, and a control component 4 capable of realizing the color changing function of the installed lenses 2 is arranged in the installation component 3;
further, the mounting lenses 2 include a myopia lens 201, a flexible color-changing lens 202, a placing groove 203 and a protection frame 204, the protection frames 204 are fixedly mounted on the inner walls of the two sides of the widened mirror frame 1, the flexible color-changing lens 202 is fixedly mounted on the front side between the protection frames 204, the placing groove 203 is formed in the position, located on the rear side of the flexible color-changing lens 202, between the protection frames 204, the placing groove 203 can be used for holding the myopia lens 201, the myopia lens 201 can be mounted on the inner side of the flexible color-changing lens 202 through the placing groove 203, the flexible color-changing lens 202 adjusts light and then transmits the adjusted light to human eyes through the myopia lens 201, so that the requirements of myopia people are met, and meanwhile, the protection frame 204 can effectively protect the myopia lens 201 and the flexible color-changing lens 202 from being easily damaged;
furthermore, mounting grooves 301 are formed in the surfaces of the widened mirror frame 1, which are located on the two sides of the mounting lenses 2, the side wall surfaces of the mounting grooves 301 are close to the ports of the mounting grooves 301, and transparent plates 302 are fixedly mounted on the side wall surfaces of the mounting grooves 301, the transparent plates 302 are made of acrylic materials, the mounting grooves 301 effectively meet the embedded mounting requirements of the device, and the transparent plates 302 are made of acrylic materials and have the effects of high hardness and good light transmission;
further, a solar cell panel 401 is fixed on the inner surface of the mounting groove 301, a main control chip 402 is fixedly mounted on the inner surface of the mounting groove 301, which is located on one side of the solar cell panel 401, a voltage regulation control circuit 403 and a light sensation sensor 404 are sequentially and fixedly mounted on the inner surface of the mounting groove 301, which is located below the solar cell panel 401 and the main control chip 402, and the solar cell panel 401 absorbs solar rays and converts the solar rays into electric energy for the main control chip 402, the voltage regulation control circuit 403 and the light sensation sensor 404 to use;
further, the solar cell panel 401 and the light sensor 404 are electrically connected to the main control chip 402, the main control chip 402 is electrically connected to the voltage regulation control circuit 403, the light sensor 404 can sense light of the driving environment and transmit a sensing signal to the main control chip 402, and then the main control chip 402 controls the voltage regulation control circuit 403 to operate, when the voltage regulation control circuit 403 is controlled by the main control chip 402, the voltage on two sides of the flexible color-changing lens 202 can be changed, so that the refractive index of the flexible color-changing lens 202 to light is changed, strong light is weakened, and weak light is strengthened, thereby meeting the actual driving requirements;
further, the inside equidistance of solar cell panel 401 is fixed mounting electricity generation piece 405 once, and all series connection electric connection between the electricity generation piece 405, series connection between the electricity generation piece 405 to increase the holistic output voltage of solar cell panel 401.
The working principle is as follows: the device can be suitable for myopia people, the myopia lenses 201 can be arranged on the inner sides of the flexible color-changing lenses 202 through the placing grooves 203, the flexible color-changing lenses 202 can adjust light rays and then transmit the light rays to human eyes through the myopia lenses 201 to meet the requirements of the myopia people, meanwhile, the protective frame 204 can effectively protect the myopia lenses 201 and the flexible color-changing lenses 202 from being easily damaged, the device is similar to the using method of normal myopia glasses, the eyes are worn at the eyes in a sunny day, the solar panels 401 absorb the sunlight rays and the solar energy can be converted into electric energy through the series connection of the power generation blocks 405 to be used by the device, meanwhile, the light sensor 404 can sense the light rays of the driving environment and transmit sensing signals to the main control chip 402, then, the main control chip 402 controls the voltage regulation control circuit 403 to work, when the voltage regulation control circuit 403 is regulated by the main control chip 402, can change the voltage on flexible photochromic lens 202 both sides, thereby change the refracting index that flexible photochromic lens 202 was to light, make the highlight weaken, the low light becomes strong, in order to satisfy actual driving needs, whole process control is in the millisecond simultaneously, response that can be quick is with the quick change of adaptation ambient light, can not influence the security of driving, flexible photochromic lens 202 is upper and lower light gradual change look simultaneously, because dazzling sunshine often is in our field of vision top, reply sunshine dazzling that like this can be better, promote the travelling comfort of glasses.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.