CN204575998U - A kind of driving anti-glare glasses - Google Patents

A kind of driving anti-glare glasses Download PDF

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Publication number
CN204575998U
CN204575998U CN201520016009.1U CN201520016009U CN204575998U CN 204575998 U CN204575998 U CN 204575998U CN 201520016009 U CN201520016009 U CN 201520016009U CN 204575998 U CN204575998 U CN 204575998U
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eyeglass
pattern
mirror holder
driving
pattern element
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刘景利
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Dongguan City Chuan Xian Science And Technology Ltd
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Dongguan City Chuan Xian Science And Technology Ltd
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Abstract

The utility model relates to eyewear products technical field, refer in particular to a kind of driving anti-glare glasses, it comprises: mirror holder, the eyeglass be arranged on mirror holder, described eyeglass is liquid crystal lens or PDLC eyeglass, mirror holder is provided with the governor circuit driving eyeglass, on the ito glass or ito thin film of described eyeglass, etching has pattern, and this pattern is distributed on eyeglass by most pattern elements according to rule from dense to sparse, namely the dense degree of this pattern element be from the edge of eyeglass to central area gradually from intensive become sparse.The utility model becomes some pattern elements of sparse distribution from intensive at the edge, the lower left corner of eyeglass gradually to central area, when meeting, high light occurs, optical receiver in governor circuit sends electric signal while receiving optical signals, pattern element on eyeglass is dimmed, whole like this eyeglass will be formed in lower left according to gradual change law dimmed region gradually, thus the personnel of driving that effectively strick precaution high light causes dazzle the eyes.

Description

A kind of driving anti-glare glasses
Technical field:
The utility model relates to eyewear products technical field, refers in particular to a kind of driving anti-glare glasses.
Background technology:
Along with growth in the living standard, automobile progressively enters common family, and the recoverable amount of Chinese family car is also in increase progressively, and motor traffic accidents also increases thereupon.According to statistics, during owing to meeting at night, the traffic hazard cumulative year after year that the high light because of opposite vehicle causes the moment of human pilot to dazzle the eyes and causes.Avoid the appearance of this traffic hazard, be improve human pilot self diathesis on the one hand, such as, strengthen the education and study of traffic law, cultivate good individual driving habits etc.On the other hand, human pilot can prevent the appearance of this accident by some equipment.Anti-glare glasses designs for this situation.See that China Patent No. is: the patent of invention of 96115703.8, it discloses " a kind of anti-glare glasses ", this anti-glare glasses is on the upper left side of common spectacles two eyeglasses, forms two arc Dark grey shading (painted) districts bent with lens edge respectively.When meeting at night, driver only need bow slightly, opposite intense light source just can be made to fall into shading region, both reduced the dazzle and glare effect of intense light source, does not affect again the observation of driver to major part road surface, right side simultaneously.This technical scheme Problems existing is exactly, and what shading region adopted is directly painted, and whether opposite has high light, and it always exists, and can bring some inconvenience like this, easily form vision dead zone to human pilot.Meanwhile, what it adopted is passive anti-glare, needs human pilot to bow, sight line is adjusted to shading region, will form certain interference, the security that impact is driven like this to driving.
Along with the development of liquid crystal technology, liquid-crystalline glasses or PDLC are applied on anti-glare glasses by people, see that Chinese Patent Application No. is the application for a patent for invention of 201010543154.7, it discloses one " light-controlled liquid crystal eyeglasses ", this light-controlled liquid crystal eyeglasses comprises liquid crystal lens, and the support of fixing len, control circuit is connected with described liquid crystal lens, described circuit is serially connected with power supply, switch, a photoresistance, a slip variable resistor, connect with a pole of liquid crystal lens in variable-resistance one end, the other end is connected with another pole of liquid crystal lens by a crystal diode.Light-controlled liquid crystal eyeglasses of the present invention can reach and automatically block high light, protection eyes.This glasses are exactly the principle displaying principle that make use of LCDs, due to LCDs employing is ITO electro-conductive glass, namely on the basis of sodium calcium base or silicon boryl substrate glass, utilize the method for magnetron sputtering to plate indium oxide layer tin (being commonly called as ITO) film to manufacture, such as conventional electronic calculator display screen etc.When after energising, the liquid crystal mirror sector-meeting in the present patent application is dimmed (blackening), thus plays the effect of covering high light.But the maximum deficiency of this liquid crystal glasses is exactly that after it is triggered by high light, whole eyeglass is all dimmed, so it is generally used for the working environments such as electric welding.If for driving, because whole eyeglass is dimmed, although high light when can cover carriage return, but simultaneously, the sight line of human pilot also receives impact, and the completely dimmed of eyeglass observes the surface conditions in dead ahead by directly affecting human pilot, easily traffic hazard occurs.
In addition, current PDLC (Polymer Dispersed Liquid Crystal) application is progressively extensive, its feature can produce fuzzy (to all directions diverging incident light) and transparent two states at PDLC polymer molecule under electric field action, this display technique scenery observing front that energy is intact transparent time, but front scenery can be cannot see completely in fringe, human pilot cannot be made to see the visual field clearly, and therefore in fact conventional PDLC display screen also cannot use to human pilot.
Utility model content:
Technical problem to be solved in the utility model is just to utilize available liquid crystal glasses and PDLC display technique, overcomes the shortcoming of current liquid crystal anti-glare glasses and the existence of PDLC display screen, provides a kind of driving anti-glare glasses.
In order to solve the problems of the technologies described above, the utility model have employed following technical proposals: this driving anti-glare glasses comprises: mirror holder, the eyeglass be arranged on mirror holder, described eyeglass is liquid crystal lens or PDLC eyeglass, mirror holder is provided with the governor circuit driving liquid crystal lens, on the ito glass or ITO film of described eyeglass, etching has pattern, and this pattern is distributed on eyeglass by most pattern elements according to rule from dense to sparse, namely the dense degree of this pattern element be from the edge of eyeglass to central area gradually from intensive become sparse.
Furthermore, in technique scheme, described pattern element dense degree be from the edge, the lower left corner of eyeglass to central area gradually from intensive become sparse.
Furthermore, in technique scheme, described pattern element is dot pattern.
Furthermore, in technique scheme, described pattern element is strip pattern.
Furthermore, in technique scheme, described pattern element is blocky.
Furthermore, in technique scheme, described governor circuit is provided with the optical receiver for detecting high light signal, this optical receiver is positioned at mirror holder center position area.
The utility model designs according to traffic rules, according to the regulation that current traffic law " is kept to the right ", when vehicle meeting, high light is from lower left, the high light that dead ahead and right are not dazzle the eyes, as long as so carry out some suitable covering to the region of lower left, just greatly light intensity can be reduced, play abblendbar effect.The utility model is exactly become some pattern elements of sparse distribution from intensive at the edge, the lower left corner of eyeglass gradually to central area, when meeting, high light number occurs, optical receiver in governor circuit sends electric signal while receiving optical signals, pattern element on eyeglass is dimmed, whole like this eyeglass will be formed in lower left according to gradual change law region dimmed gradually, thus the personnel of driving that effectively strick precaution high light causes dazzle the eyes; And when there not being high light, lens recovers light normally through state (pattern element recovers transparent), penetrability gets back to normal condition equally.
Accompanying drawing illustrates:
Fig. 1 is the front view of the utility model embodiment one;
Fig. 2 is the front view of the utility model embodiment two;
Fig. 3 is the front view of the utility model embodiment three;
Fig. 4 is the front view of the utility model embodiment four;
Embodiment:
Below in conjunction with specific embodiments and the drawings, the utility model is further illustrated.
As shown in Figure 1, this is embodiment one of the present utility model, the present embodiment is a kind of driving anti-glare glasses, it comprises: mirror holder 1, the eyeglass 2 be arranged on mirror holder, described eyeglass 2 is liquid crystal lens or PDLC eyeglass (being referred to as eyeglass below), mirror holder 1 is provided with and drives the governor circuit 3 of eyeglass 2, this governor circuit comprises: power supply, controller, have the photosensitive circuit etc. of optical receiver 30.Trigger governor circuit by photosensitive circuit, thus control eyeglass 2 is opened.In order to better receiving optical signals, described optical receiver 30 is positioned at the central area of mirror holder 1.
On the ito glass of described eyeglass 2, etching has pattern 4, and this pattern 4 is distributed on eyeglass 2 by most pattern elements 40 according to rule from dense to sparse, namely the dense degree of this pattern element 40 be from the edge of eyeglass 2 to central area gradually from intensive become sparse.The traffic law current according to China, described pattern element 40 dense degree becomes sparse edge from intensive gradually from the edge, the lower left corner of eyeglass 2 to central area.Certainly, if the country of following " keeping to the left " and specifying, then the density arragement direction of pattern element 40 is different from the present embodiment, changes into and being formed according to gradual change law region dimmed gradually in lower right.
Due to two cars cross time, the car light of the other side's automobile will irradiate out from lower left, the position that namely left front deriving from glasses of high light is lower, after liquid crystal lens 2 is triggered, pattern element 40 just starts to change, wherein, if employing liquid crystal lens, then corresponding region blackening; If adopt PDLC eyeglass, then corresponding region fogs, and will form a slice " special " region like this, and the bright-dark degree in this region is corresponding with the density degree of element 40, so just effectively can shield the high light in left forward side in the lower left of eyeglass 2.Meanwhile, human pilot dead ahead and other regions are also unaffected, can normally check, can not impact normal driving.After meeting terminates, the high light on opposite disappears, and optical receiver 30 does not receive high light, again trigger governor circuit, the voltage being carried in liquid crystal lens is cancelled, and eyeglass 2 quits work, whole eyeglass 2 returns to virgin state again, and pattern element 40 recovers pellucidity again.
Can find out from the above mentioned, the whole anti-glare process of the utility model is all initiatively completed by glasses self, user without the need to making any passive protection, the security protection better effects if of product.
The present embodiment is a kind of, and described pattern element 40 is dot pattern, and certainly, pattern element 40 also can be other moulding, as shown in Figure 2, and the bulk that pattern element 40 is triangular in shape.
As shown in Figure 3, the structure of the present embodiment three is substantially identical with above-described embodiment, and difference is, described pattern element 40 is strip pattern, and the pattern element 40 of this strip is also followed corresponding density degree and arranged.
As shown in Figure 4, embodiment four of the present utility model is set, the difference of itself and embodiment three is: be wide in the pattern element 40 of embodiment three kinds of strips, in the present embodiment, the width of bar elements 40 is gradual changes, and it also can realize identical light and shade fade effect.
Certainly, the foregoing is only specific embodiment of the utility model, be not limit the utility model practical range, all equivalences done according to structure, feature and principle described in the utility model claim change or modify, and all should be included in the utility model claim.

Claims (6)

1. a driving anti-glare glasses, it comprises: mirror holder (1), be arranged on the eyeglass (2) on mirror holder, described eyeglass (2) is liquid crystal lens or PDLC eyeglass, mirror holder (1) is provided with the governor circuit (3) driving eyeglass (2), it is characterized in that: on the ito glass or ito thin film of described eyeglass (2), etching has pattern (4), and this pattern (4) is distributed on eyeglass (2) by most pattern elements (40) according to rule from dense to sparse, namely the dense degree of this pattern element (40) be from the edge of eyeglass (2) to central area gradually from intensive become sparse.
2. a kind of driving anti-glare glasses according to claim 1, is characterized in that: described pattern element (40) dense degree be from the edge, the lower left corner of eyeglass (2) to central area gradually from intensive become sparse.
3. a kind of driving anti-glare glasses according to claim 2, is characterized in that: described pattern element (40) is dot pattern.
4. a kind of driving anti-glare glasses according to claim 2, is characterized in that: described pattern element (40) is strip pattern.
5. a kind of driving anti-glare glasses according to claim 2, is characterized in that: described pattern element (40) is blocky.
6. according to the one driving anti-glare glasses in claim 2-5 described in any one, it is characterized in that: described governor circuit (3) is provided with the optical receiver (30) for detecting high light signal, this optical receiver (30) is positioned at the center position area of mirror holder (1).
CN201520016009.1U 2015-01-09 2015-01-09 A kind of driving anti-glare glasses Active CN204575998U (en)

Priority Applications (1)

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CN201520016009.1U CN204575998U (en) 2015-01-09 2015-01-09 A kind of driving anti-glare glasses

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Application Number Priority Date Filing Date Title
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Publications (1)

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CN204575998U true CN204575998U (en) 2015-08-19

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109206016A (en) * 2018-11-30 2019-01-15 Oppo(重庆)智能科技有限公司 Glass board material and preparation method thereof, electronic equipment
CN109828386A (en) * 2019-02-28 2019-05-31 王周连 A kind of darkening eyeglass and automatic beam change driving mirror

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109206016A (en) * 2018-11-30 2019-01-15 Oppo(重庆)智能科技有限公司 Glass board material and preparation method thereof, electronic equipment
CN109828386A (en) * 2019-02-28 2019-05-31 王周连 A kind of darkening eyeglass and automatic beam change driving mirror

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GR01 Patent grant
C53 Correction of patent for invention or patent application
CB03 Change of inventor or designer information

Inventor after: Liu Jingli

Inventor after: Tao Xiongliang

Inventor before: Liu Jingli

COR Change of bibliographic data

Free format text: CORRECT: INVENTOR; FROM: LIU JINGLI TO: LIU JINGLI TAO XIONGLIANG