CN209070249U - Intelligent glasses - Google Patents

Intelligent glasses Download PDF

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Publication number
CN209070249U
CN209070249U CN201822101216.3U CN201822101216U CN209070249U CN 209070249 U CN209070249 U CN 209070249U CN 201822101216 U CN201822101216 U CN 201822101216U CN 209070249 U CN209070249 U CN 209070249U
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Prior art keywords
eyeglass
lens drive
drive device
glasses
glasses lens
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CN201822101216.3U
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吕竹林
朱志军
杨小平
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Goertek Techology Co Ltd
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Goertek Techology Co Ltd
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Abstract

Intelligent glasses provided by the embodiment of the utility model, comprising: eyeglass, glasses lens drive device, optical sensor circuit control chip, and wherein eyeglass is filled with dimethicone, so that the eyeglass can generate telescopic deformation;The eyeglass is set in the frame, has the reserved space to stretch for eyeglass in the frame;Glasses lens drive device is electrically connected with the eyeglass, for stretching the eyeglass;Optical sensor circuit is connect with the glasses lens drive device, for sensing ambient intensity;Chip is controlled, is connect with the optical sensor, the light intensity signal sent for receiving the optical sensor circuit, and the movement that glasses lens drive device executes stretching eyeglass is controlled according to the light intensity signal.Technical solution provided by the embodiment of the utility model improves the flexibility that glasses use so that the light transmittance of glasses is adjustable using the performance that dimethicone light transmittance can be changed.

Description

Intelligent glasses
Technical field
The utility model relates to technical field of electronic equipment more particularly to a kind of intelligent glasses.
Background technique
With the development of present society, miscellaneous intelligent glasses emerge one after another, intelligent requirements of the people to glasses Also higher and higher.
User is different according to the environment of wearing in wearing spectacles, and the requirement for the light transmittance of glasses is also not quite similar, For example, when in the stronger environment of light, it is often desired to the light transmittance of glasses is lower, to prevent injury of the strong light to eyes, And when in the environment weaker for light, and the light transmittance for being often desirable to glasses is higher, more to adapt to dim environment, because How this, accomplish that the adjustable using flexible to improve glasses of the light transmittance of glasses is allowed to be urgent problem.
Utility model content
In view of the above problems, the utility model is proposed to solve the above problems or at least be partially solved the above problem Intelligent glasses.
The utility model embodiment provides a kind of intelligent glasses, comprising:
Eyeglass is filled with dimethicone, so that the eyeglass can be stretched;
Frame, the eyeglass are set in the frame, have the reserved space to stretch for eyeglass in the frame;
Glasses lens drive device is connect with the eyeglass, for stretching the eyeglass;
Optical sensor is electrically connected with the glasses lens drive device, for sensing ambient intensity;
Chip is controlled, is electrically connected with the optical sensor, the light intensity signal sent for receiving the optical sensor, and The movement that glasses lens drive device executes stretching eyeglass is controlled according to the light intensity signal.
Further, be correspondingly connected on each eyeglass there are two glasses lens drive device, two glasses lens drive devices respectively with First side of the eyeglass is connected with second side, wherein first side is oppositely arranged with described second side.
Further, a glasses lens drive device has been correspondingly connected on each eyeglass, the first side of the eyeglass is fixed on On the frame, second side opposite with the first side is connect with the glasses lens drive device on the eyeglass.
Further, further include eyeglass clamping piece, be used for clipped lens, the eyeglass clamping piece is slideably positioned in the mirror In frame, the eyeglass is connect by the eyeglass clamping piece with the glasses lens drive device.
Further, the glasses lens drive device includes motor and flexible drive parts, the flexible drive parts one ends wound In on the output shaft of the motor, the other end of the flexible drive parts is connect with the eyeglass clamping piece.
Further, through-thickness offers aperture on the eyeglass clamping piece, and the flexible drive parts are fixed on institute State tapping.
Further, the control chip is also used to after the eyeglass is stretched to target transmission, and control eyeglass drives Dynamic device stopping movement, so that the eyeglass maintains target transmission.
Optionally, the glasses lens drive device is linear actuator, the output shaft of the linear actuator and the eyeglass Clamping piece connection, the telescopic direction of the output shaft of the linear actuator are consistent with the draw direction of the eyeglass.
Further, further include operation module, connect with the control chip, the operation module is used to input for user The scheduled ambient light maximum intensity threshold value allowed through eyeglass, so that the control chip is according to the ambient light maximum intensity Threshold value and light intensity signal control glasses lens drive device movement.
It further, further include power supply circuit, the power supply circuit is electrically connected with control chip, for the control core Piece power supply.
Intelligent glasses provided by the embodiment of the utility model enable eyeglass due to filling dimethicone in eyeglass It is enough stretched, and the performance that dimethicone is variable with light transmittance after stretching, it is strong that ambient is perceived by optical sensor Degree executes the movement for stretching eyeglass by control chip, so that mirror according to ambient strength control glasses lens drive device The light transmittance of piece changes, and can be realized the purpose for automatically adjusting glasses light transmittance according to extraneous luminous intensity, can greatly improve eye The using flexible of mirror improves user experience.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is Some embodiments of the utility model, for those of ordinary skill in the art, without creative efforts, It is also possible to obtain other drawings based on these drawings.
Fig. 1 is the electric control schematic diagram of intelligent glasses provided by the embodiment of the utility model;
Fig. 2 is the axonometric drawing of intelligent glasses provided by the embodiment of the utility model;
Fig. 3 is the main view of intelligent glasses provided by the embodiment of the utility model;
Fig. 4 is the partial sectional view of intelligent glasses provided by the embodiment of the utility model.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe.Obviously, the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those skilled in the art are obtained without making creative work The every other embodiment obtained, fall within the protection scope of the utility model.
Mentioned " comprising " is an open language throughout the specification and claims, therefore should be construed to " packet It includes but is not limited to "." substantially " refer within the acceptable error range, those skilled in the art can be in certain error range Interior solution the technical problem, basically reaches the technical effect.
In addition, " connection " word includes any direct and indirect connection means herein.Therefore, if it is described herein that one first Device is connected to a second device, then representing the first device may be directly connected to the second device, or pass through other dresses It sets and is coupled indirectly to the second device.Specification subsequent descriptions are preferred embodiment of the present invention, right institute Stating description is to illustrate the general principles of this utility model, being not intended to limit the scope of the utility model.This is practical Novel protection scope is as defined by the appended claims.
It should be appreciated that term "and/or" used herein is only a kind of incidence relation for describing affiliated partner, indicate There may be three kinds of relationships, for example, A and/or B, can indicate: individualism A, exist simultaneously A and B, individualism B these three Situation.In addition, character "/" herein, typicallys represent the relationship that forward-backward correlation object is a kind of "or".
Fig. 1 is the electric control schematic diagram of intelligent glasses provided by the embodiment of the utility model;Fig. 2 is the utility model embodiment The axonometric drawing of the intelligent glasses of offer;Fig. 3 is the main view of intelligent glasses provided by the embodiment of the utility model;Fig. 4 is this reality With the partial sectional view for the intelligent glasses that new embodiment provides.As Figure 1-Figure 4, intelligent glasses provided in this embodiment, It include: eyeglass 10, frame 20, glasses lens drive device 30, optical sensor 40 and control chip 50.
Wherein, eyeglass 10 is filled with dimethicone, so that eyeglass 10 can be stretched.Eyeglass 10 is set to frame 20 In, it can specifically slide in frame 20, there is the reserved space to stretch for eyeglass 10 in frame 20;Glasses lens drive device 30 It is connect with eyeglass 10, for stretching eyeglass 10.Optical sensor 40 is electrically connected with glasses lens drive device 30, strong for sensing ambient Degree.Control chip 50 is electrically connected with optical sensor 40, for receiving the light intensity signal of the transmission of optical sensor 40, and according to light Strength signal controls glasses lens drive device 30 and executes the movement for stretching eyeglass 10.
Specifically, eyeglass 10 can joined a kind of organic silicon materials in the fabrication process, this material Polydimethylsiloxane (dimethicone, also referred to as dimethyl silicone polymer) is a kind of organosilicon object of hydrophobic class Material, has application in each field such as drug, daily chemical product, food, building.Current research discovery, the characteristic of this material is, It can gradually bleach when possessing lighttight dark space under normal circumstances, but being stretched.During gradually becoming transparent, thoroughly Light rate constantly changes, in the state of fully transparent, light transmittance highest.
As shown in figure 4, having the reserved space A stretched for eyeglass 10 in frame 20, wherein reserved space A refers to eyeglass 10 In the state of original be not stretched, eyeglass 10 does not fully take up the region of entire frame 20, so that eyeglass 10 has quilt That is unfolded after stretching puts space to good use.The sliding slot slided for eyeglass 10 can be set in the inside of frame 20, and eyeglass 10 is being stretched In the process, it is slided in the sliding slot of frame 20, gradually occupies the bigger region of frame 20.
In life, such as in following scene, the automobile travelled on road surface is more and more, and driving at night quantity also becomes It is more.But driving at night influences field range because of dark, and the actual range judgement of driver's road pavement object can exist certain Deviation, be easy to happen erroneous judgement, result in an automobile accident generation.Dipped headlight projection distance is closer, cannot find people remotely, object in time Body or vehicle cannot judge ahead of time, have little time the emergency episode that processing occurs, are prone to accidents, so many car owner's meetings Selection opens high beam to increase irradiation distance and projection scope.High beam light is relatively strong, farther out, and when meeting can make opposite lane People's moment blinding 3 seconds or more, opposite driver can be made to generate Psychological phobia, maloperation is triggered, cause non-essential accident.Such as For fruit in the faster situation of speed, the probability caused danger can be bigger.If drive time is longer, this continual blinding, Eyes can be damaged, and driving is made to become more difficult.For above-mentioned living scene, wearing light transmittance to driver can The intelligent glasses of tune are able to solve above-mentioned technical problem, and the present embodiment detects ambient intensity by optical sensor 40, when When optical sensor 40 detects that ambient intensity is weaker, for the visual field for guaranteeing driver, eyeglass 10 should be made as much as possible Light transmittance is higher, at this point, control chip 50 receives the lower light intensity signal, and it is judged and is handled, controls core There can be scheduled ambient maximum intensity threshold value in piece 50 with default setting, so that control chip 50 is judged, control mirror Piece driving device 30 executes the movement for stretching eyeglass 10, and control chip 50 is also used to be stretched to target transmission in eyeglass 10 Afterwards, control 30 stopping of glasses lens drive device movement, so that eyeglass 10 maintains target transmission.Due to eyeglass 10 light transmittance with The level of stretch of eyeglass 10 is corresponding that is, glasses lens drive device 30 is also used to maintain eyeglass 10 to stretch after reaching target transmission Degree, during being stretched, light transmittance gradually increases eyeglass 10, and driver can more clearly see clearly in front of the visual field. And when other side's driving opens high beam, optical sensor 40 detects that ambient intensity is stronger, to avoid injury driver Eyes need to reduce at this time the light transmittance of eyeglass 10, at this point, control chip 50 receives the higher light intensity signal, and It is judged and is handled, control glasses lens drive device 30 can be with slow release eyeglass 10, so that the level of stretch of eyeglass 10 drops It is low, and required level of stretch is maintained, eyeglass 10 constantly bounces back during release, and light transmittance gradually decreases, can The eyes for preventing the high intensitv light injury driver such as high beam, can effectively improve driving at night safety.
In the present embodiment, after arriving required level of stretch after eyeglass 10 is stretched, i.e., after target transmission, with this During carrying out use in the state of light transmittance, glasses lens drive device 30 maintains the level of stretch of eyeglass 10, is needing again When adjusting light transmittance, for example, it is desired to which glasses lens drive device 30 can discharge eyeglass 10 when light transmittance is reduced, due to eyeglass 10 Property with scalable deformation, the driving force release that glasses lens drive device 30 is applied, eyeglass 10 can restore deformation, restore In deformation process, light transmittance is constantly reduced.
It further, can also include power supply circuit 60, power supply circuit 60 is electrically connected with control chip 50, for control Chip 50 is powered, and power supply circuit 60 can use replaceable battery and relevant power circuit, and power supply circuit 60 can be direct To control chip 50 power, and control chip 50 can between be connected in optical sensor 40, glasses lens drive device 30 power.
Intelligent glasses provided by the embodiment of the utility model enable eyeglass due to filling dimethicone in eyeglass Enough be stretched, and dimethicone have stretch after the variable performance of light transmittance, by optical sensor can be with real-time perception outside Boundary's light intensity, and collected ambient strength signal is transmitted to control chip and is handled, by controlling chip root The movement for stretching eyeglass is executed according to ambient strength signal control glasses lens drive device, so that the light transmittance of eyeglass changes Become, can be realized the purpose for automatically adjusting glasses light transmittance according to extraneous luminous intensity, the use of intelligent glasses can be greatly improved Flexibility improves user experience.
Specifically, as shown in figure 3, can be correspondingly connected on each eyeglass 10 there are two glasses lens drive device 30, two mirrors Piece driving device 30 is connect with the first side 11 of eyeglass 10 and second side 12 respectively, wherein the first side 11 is opposite with second side 12 Setting.Glasses lens drive device 30 can be set in frame 20, and cavity can be set in frame 20, fill so that eyeglass drives Set 30 receivings.First side 11 and second side 12 can be the two sides up and down of eyeglass 10, be also possible to the left and right sides of eyeglass 10, this Embodiment is without limitation.The two sides of the mode of the present embodiment, eyeglass 10 are stretched, and enable to the drawing force of eyeglass 10 more Uniformly, and the variation of its light transmittance is also more uniform, better user experience.
As optional embodiment, a glasses lens drive device 30, mirror can be only correspondingly connected on each eyeglass 10 First side of piece 10 is fixed on frame 20, and second side opposite with the first side is connect with glasses lens drive device 30 on eyeglass 10. Under this kind of mode, the stretching of eyeglass 10 also may be implemented, but compared to its stretching uniformity for stretching eyeglass 10 of above-mentioned mode It is poor.
The present embodiment provides further including eyeglass clamping piece 70, clipped lens 10 are used for, eyeglass clamping piece 70 to be slideably positioned in In frame 20, eyeglass 10 is connect by eyeglass clamping piece 70 with glasses lens drive device 30.Specifically, as shown in figure 4, eyeglass clamps Part 70 can be in U-shape, and the eyeglass clamping piece 70 of U-shaped is clamped in the edge of eyeglass 10, and eyeglass clamping piece 70 can be plastic parts, with Eyeglass 10 is fixed together, for example, being glued together.The driving end of glasses lens drive device 30 and eyeglass clamping piece 70 are fixed Connection, glasses lens drive device 30 provide pulling force to eyeglass clamping piece 70, and eyeglass clamping piece 70 drives eyeglass 10 to stretch.
Based on the above embodiment, it is preferred that as shown in figure 4, glasses lens drive device 30 may include motor 31 and flexible biography Moving part 32,32 one end of flexible drive parts can wind on the output shaft 311 of motor 31, and the other ends of flexible drive parts 32 can be with It is connect with eyeglass clamping piece 70.Preferably, in the present embodiment, flexible drive parts 32 can be nylon rope to eyeglass clamping piece 70. The extending direction of the output shaft 311 of motor 31 can be fixed on electricity when motor 31 rotates perpendicular to the draw direction of eyeglass 10 Flexible drive parts 32 on the output shaft 311 of machine 31, which are driven, to be wrapped on output shaft 311, by way of flexible drive parts 32 Transmission distance can be reduced as little as possible to transmit power compared to the mode of positive drive part, can save space, effectively Reduce the volume of glasses.
In addition, through-thickness can offer aperture (not shown), flexible drive parts 32 on eyeglass clamping piece 70 Tapping can be fixed on.Preferably, aperture is arranged in 70 middle position of eyeglass clamping piece, it is possible thereby to better ensure that stress Uniformity, flexible drive parts 32 are connected directly between tapping, and structure is simple, convenient for assembling.
As another optional embodiment, glasses lens drive device 30 can also be linear actuator, linear actuator Output shaft connect with eyeglass clamping piece 70, the telescopic direction of the output shaft of linear actuator 30 and the draw direction one of eyeglass It causes.In the present embodiment, glasses lens drive device 30 can directly export the driving dress of linear driving force for cylinder, linear motor etc. It sets, this kind of mode is so that eyeglass 10 is directly stretched, and can save mediation member.
Further, above-mentioned intelligent glasses can also include operation module 80, and operation module 80 and control chip 50 connect It connects, operation module 80 is used to input the scheduled ambient light maximum intensity threshold value allowed through eyeglass 10 for user, so that control Chip 50 is acted according to ambient light maximum intensity threshold value and light intensity signal control glasses lens drive device 30.Specifically, such as Fig. 2 Shown, operation module 80 can have two operation buttons of "+" "-", and user can choose operation button to increase or reduce The max-thresholds of extraneous luminous intensity, alternatively, the max-thresholds of the extraneous luminous intensity set needed for can directly inputting, in this this reality Apply example without limitation.
When the ambient intensity that optical sensor 40 detects is higher than the ambient light maximum intensity threshold that operation module 80 is set Value, control chip 50, which can send instructions, controls the work of glasses lens drive device 30, is dropped by the method for the light transmittance of reduction eyeglass 10 The low luminous intensity into eyes;When optical sensor 40 detects ambient light maximum intensity threshold value of the ambient intensity lower than setting Afterwards, control chip 50 can control the work of glasses lens drive device 30, and the light transmittance of eyeglass 10 is gradually mentioned highest.
As used some vocabulary to censure specific components in the specification and claims.Those skilled in the art answer It is understood that hardware manufacturer may call the same component with different nouns.This specification and claims are not with name The difference of title is as the mode for distinguishing component, but with the difference of component functionally as the criterion of differentiation.
Finally, it should be noted that above embodiments are only to illustrate the technical solution of the utility model, rather than its limitations; Although the utility model is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: It is still possible to modify the technical solutions described in the foregoing embodiments, or part of technical characteristic is carried out etc. With replacement;And these are modified or replaceed, various embodiments of the utility model technology that it does not separate the essence of the corresponding technical solution The spirit and scope of scheme.

Claims (10)

1. a kind of intelligent glasses characterized by comprising
Eyeglass is filled with dimethicone, so that the eyeglass can generate telescopic deformation;
Frame, the eyeglass are set in the frame, have the reserved space to stretch for eyeglass in the frame;
Glasses lens drive device is electrically connected with the eyeglass, for stretching the eyeglass;
Optical sensor is electrically connected with the glasses lens drive device, for sensing ambient intensity;
Chip is controlled, is connect with the optical sensor, the light intensity signal sent for receiving the optical sensor, and according to The light intensity signal control glasses lens drive device executes the movement for stretching eyeglass.
2. intelligent glasses according to claim 1, which is characterized in that eyeglass drives there are two being correspondingly connected on each eyeglass Device, two glasses lens drive devices are connect with the first side of the eyeglass and second side respectively, wherein first side with it is described Second side is oppositely arranged.
3. intelligent glasses according to claim 1, which is characterized in that be correspondingly connected with an eyeglass driving on each eyeglass First side of device, the eyeglass is fixed on the frame, second side opposite with the first side and the mirror on the eyeglass The connection of piece driving device.
4. intelligent glasses according to claim 1-3, which is characterized in that further include eyeglass clamping piece, for pressing from both sides Eyeglass is held, the eyeglass clamping piece is slideably positioned in the frame, and the eyeglass passes through the eyeglass clamping piece and the mirror The connection of piece driving device.
5. intelligent glasses according to claim 4, which is characterized in that the glasses lens drive device includes motor and flexible biography Moving part, the flexible drive parts one ends wound on the output shaft of the motor, the other end of the flexible drive parts with it is described The connection of eyeglass clamping piece.
6. intelligent glasses according to claim 5, which is characterized in that through-thickness offers on the eyeglass clamping piece Aperture, the flexible drive parts are fixed on the tapping.
7. intelligent glasses according to claim 1, which is characterized in that the control chip is also used to be drawn in the eyeglass After reaching target transmission, control glasses lens drive device stopping movement, so that the eyeglass maintains target transmission.
8. intelligent glasses according to claim 4, which is characterized in that the glasses lens drive device is linear actuator, institute The output shaft for stating linear actuator is connect with the eyeglass clamping piece, the telescopic direction of the output shaft of the linear actuator and institute The draw direction for stating eyeglass is consistent.
9. intelligent glasses according to claim 1, which is characterized in that further include operation module, connect with the control chip It connects, the operation module is used to input the scheduled ambient light maximum intensity threshold value allowed through eyeglass for user, so that described Chip is controlled according to the ambient light maximum intensity threshold value and light intensity signal control glasses lens drive device movement.
10. intelligent glasses according to claim 1, which is characterized in that it further include power supply circuit, the power supply circuit and control Coremaking piece electrical connection, for powering to the control chip.
CN201822101216.3U 2018-12-13 2018-12-13 Intelligent glasses Active CN209070249U (en)

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CN201822101216.3U CN209070249U (en) 2018-12-13 2018-12-13 Intelligent glasses

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CN201822101216.3U CN209070249U (en) 2018-12-13 2018-12-13 Intelligent glasses

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109375386A (en) * 2018-12-13 2019-02-22 歌尔科技有限公司 Intelligent glasses

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109375386A (en) * 2018-12-13 2019-02-22 歌尔科技有限公司 Intelligent glasses

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Effective date of registration: 20201015

Address after: 261031 north of Yuqing street, east of Dongming Road, high tech Zone, Weifang City, Shandong Province (Room 502, Geer electronic office building)

Patentee after: GoerTek Optical Technology Co.,Ltd.

Address before: 266104 Laoshan Qingdao District North House Street investment service center room, Room 308, Shandong

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Address before: 261031 north of Yuqing street, east of Dongming Road, high tech Zone, Weifang City, Shandong Province (Room 502, Geer electronics office building)

Patentee before: GoerTek Optical Technology Co.,Ltd.

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