CN203519946U - Full-automatic self-serve assembled spectacle parameter testing equipment - Google Patents
Full-automatic self-serve assembled spectacle parameter testing equipment Download PDFInfo
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- CN203519946U CN203519946U CN201320521707.8U CN201320521707U CN203519946U CN 203519946 U CN203519946 U CN 203519946U CN 201320521707 U CN201320521707 U CN 201320521707U CN 203519946 U CN203519946 U CN 203519946U
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- lensmeter
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Abstract
The utility model discloses full-automatic self-serve assembled spectacle parameter testing equipment. The full-automatic self-serve assembled spectacle parameter testing equipment comprises a lensometer, a two-dimensional moving platform and a controller; to-be-measured spectacles are fixed on the two-dimensional moving platform which is arranged between an upper measurement sensor and a lower measurement sensor of the lensometer, and the spectacles on the two-dimensional moving platform are measured by the upper measurement sensor and the lower measurement sensor; the lensometer and the two-dimensional moving platform are respectively in communication connection with the controller; the controller controls the two-dimensional moving platform to move according to signals transmitted by the lensometer. The device provided by the utility model can automatically calculate the position of a lens optical center so as to accurately position and measure lenses, is high in measurement precision, and is easy to operate.
Description
Technical field
The utility model relates to a kind of full-automatic, self-service Assembled spectacles parameter testing equipment.
Background technology
Wearing glasses needs to obtain before the major parameter of Assembled spectacles, and these parameters mainly comprise: 1, equipped datum line; 2, concave-sphere vertex lens power; 3, post cylinder power; 4, post mirror axle position; 5, optical centre is apart from (being called for short PD, is the distance of the right eyeglass R of glasses and the left eyeglass L of glasses optical centre).Above parameter obtains based on two kinds of approach conventionally: the one, and professional is to the optometry of bore hole, measurement, and the 2nd, based on the glasses that prepare are before measured.
China overwhelming majority Assembled spectacles user gets used in optician's shop the inside optometry and joins mirror, due to reasons such as the professional and user who writes out a prescription do not note, although overwhelming majority user has joined glasses, but also not exclusively know parameter, particularly post cylinder power, post mirror axle position, the optical centre distance of Assembled spectacles.Because user does not grasp prescription of spectacles, wanting to increase a pair of glasses or being only that the glasses of changing a secondary same prescription also must go to buy to glasses solid shop/brick and mortar store, greatly limit the online spending of Assembled spectacles.Because the self-service equipment that directly bore hole is carried out to optometry is jejune, existing laws and regulations do not allow to do so yet.For this reason, user by respond well to correcting defects of vision, existing Assembled spectacles measurement obtains Assembled spectacles parameter, to realize user's internet procurement Assembled spectacles, is feasible.
At present respond well by user is corrected defects of vision, existing Assembled spectacles measurement obtains Assembled spectacles parameter still in realization technical barrier, the measurement mechanism at present both at home and abroad measurement of glasses optical parametric being used is taken into account ruler for focal power, measuring method is the method for man-machine interaction, when for example eyeglass vertex lens power is measured, needing manually to adjust its optical centre position overlaps with lensmeter primary optical axis, with this, determine the position of the optic center point of this eyeglass, thereby by lensmeter, measure vertex lens power numerical value again.Because the method is to complete through man-machine cooperation, wherein personnel are necessary for professional, coordinate and adjust testing process more complicated.And for one of index very important in optical parametric optical centre distance (PD), need manually to the optic center point of two eyeglasses, to get ready after confirming and to adopt the method for ruler or coordinate paper to determine PD respectively, the method measuring accuracy is not high, poor repeatability, consuming time, complicated operation.
By StoreFront, sell in the pattern of glasses at present, the main cost of equipped a pair of glasses is StoreFront expense and labour cost.The in the situation that, network selling so rapid at network Development being so universal, by Networked Marketing glasses, can greatly reduce the cost of Assembled spectacles.And join mirror prescription due to what do not grasp oneself in consumer's hand, and the optical parametric that Assembled spectacles needs must could obtain by manual measurement, and this moves towards the development of networking with regard to seriously having restricted glasses sale.
Utility model content
Utility model object: the purpose of this utility model is for the deficiencies in the prior art, a kind of testing apparatus that can automatic, self-service measurement Assembled spectacles parameter is provided, can avoid that hand dipping precision is not high, time-consuming, the problem of complicated operation, for glasses, sell and move towards networking possibility is provided simultaneously.
Technical scheme: full-automatic, self-service Assembled spectacles parameter testing equipment described in the utility model, comprising: lensmeter, two-dimensional movement platform and controller, described lensmeter is used for gathering the optical parametric of any point on eyeglass; Described two-dimensional movement platform is for placing Assembled spectacles and carrying out mobile mechanism; Described controller is the device for calculating, communicating by letter, control;
User's Assembled spectacles to be measured is vertically fixed on described two-dimensional movement platform, described two-dimensional movement platform is arranged between the upper survey sensor and lower survey sensor of described lensmeter, the any point of the lensmeter primary optical axis that lower survey sensor sends by the eyeglass on two-dimensional movement platform finally enters upper survey sensor and measures, and obtains prism degree and the prism substrate orientation angle of this point of eyeglass; Described lensmeter, described two-dimensional movement platform are connected with described controller communication respectively, and described controller is controlled described two-dimensional movement platform movement according to prism degree and the prism substrate orientation angle signal of described lensmeter transmission.
In order to facilitate result to show, the utility model device also comprises display, and described controller is connected with described display communication, and measurement result is transferred to display.
Described controller to the control mode of two-dimensional movement platform is: the prism degree of the eyeglass any point that described controller records according to described lensmeter and prism substrate orientation angle calculate this point apart from air line distance and the level angle at lens optical center, thereby obtain the particular location coordinate of the optical centre of this eyeglass, control described two-dimensional movement platform movement and make lensmeter primary optical axis vertically by this lens optical center, thereby lensmeter is read the parameters of this eyeglass; Described controller, after described lensmeter completes an eyeglass lens measurement, is controlled described two-dimensional movement platform movement another eyeglass is measured; Described controller is measured the position coordinates of the optic center point of rear definite left and right eyeglass according to lensmeter, obtain the optical centre distance of Assembled spectacles to be measured.
The utility model compared with prior art, its beneficial effect is: user, think under the respond well prerequisite of existing Assembled spectacles vision correction, the utility model obtains the parameter of existing Assembled spectacles based on full-automatic, self-service Assembled spectacles measuring equipment, thereby the technological difficulties of internet sales Assembled spectacles have been broken through, the restriction of having avoided user must remove ophthalmologic hospital or glasses shop optometry, makes network join mirror and more freely facilitates.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model device.
Embodiment
Below technical solutions of the utility model are elaborated, but protection domain of the present utility model is not limited to described embodiment.
embodiment 1:the Assembled spectacles parameter testing equipment that the utility model is full-automatic, self-service, as shown in Figure 1, comprising: lensmeter 1, two-dimensional movement platform 2, controller 3 and display 4, and described lensmeter 1 is used for gathering the optical parametric of any point on eyeglass; Described two-dimensional movement platform 2 is placed Assembled spectacles and is carried out mobile mechanism for being used for; The device of described controller 3 for being used for calculating, communicating by letter, control;
User's Assembled spectacles 5 to be measured is vertically fixed on described two-dimensional movement platform 2, described two-dimensional movement platform 2 is arranged between the upper survey sensor 6 and lower survey sensor 7 of described lensmeter 1, the any point of the lensmeter primary optical axis that lower survey sensor 7 sends by the eyeglass on two-dimensional movement platform finally enters upper survey sensor 6 and measures, and obtains prism degree and the prism substrate orientation angle of this point of eyeglass; Described lensmeter 1, described two-dimensional movement platform 2 are connected with described controller 3 communications respectively, and the prism degree that described controller 3 transmits according to described lensmeter 1 and prism substrate orientation angle signal are controlled described two-dimensional movement platform 2 and moved.Described controller 3 is connected with described display 4 communications, and measurement result is transferred to display 4.
As mentioned above, although represented and explained the utility model with reference to specific preferred embodiment, it shall not be construed as the restriction to the utility model self.Not departing under the spirit and scope prerequisite of the present utility model of claims definition, can make in the form and details various variations to it.
Claims (2)
1. full-automatic, a self-service Assembled spectacles parameter testing equipment, is characterized in that comprising: lensmeter (1), two-dimensional movement platform (2) and controller (3), and described lensmeter (1) is used for gathering the optical parametric of any point on eyeglass; Described two-dimensional movement platform (2) is placed Assembled spectacles and is carried out mobile mechanism for being used for; The device of described controller (3) for being used for calculating, communicating by letter, control;
User's Assembled spectacles (5) to be measured is vertically fixed on described two-dimensional movement platform (2), described two-dimensional movement platform (2) is arranged between the upper survey sensor (6) and lower survey sensor (7) of described lensmeter (1), the any point of the lensmeter primary optical axis that lower survey sensor (7) sends by the eyeglass on two-dimensional movement platform finally enters upper survey sensor (6) and measures, and obtains prism degree and the prism substrate orientation angle of this point of eyeglass; Described lensmeter (1), described two-dimensional movement platform (2) are connected with described controller (3) communication respectively, and it is mobile that the prism degree that described controller (3) transmits according to described lensmeter (1) and prism substrate orientation angle signal are controlled described two-dimensional movement platform (2).
2. full-automatic, self-service Assembled spectacles parameter testing equipment according to claim 1, is characterized in that: also comprise display (4), described controller (3) is connected with described display (4) communication, and measurement result is transferred to display (4).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320521707.8U CN203519946U (en) | 2013-08-23 | 2013-08-23 | Full-automatic self-serve assembled spectacle parameter testing equipment |
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CN201320521707.8U CN203519946U (en) | 2013-08-23 | 2013-08-23 | Full-automatic self-serve assembled spectacle parameter testing equipment |
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CN203519946U true CN203519946U (en) | 2014-04-02 |
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CN201320521707.8U Expired - Fee Related CN203519946U (en) | 2013-08-23 | 2013-08-23 | Full-automatic self-serve assembled spectacle parameter testing equipment |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103412415A (en) * | 2013-08-23 | 2013-11-27 | 费淞 | Full-automatic self-serviced assembled spectacles parameter test device and measuring method |
CN108701321A (en) * | 2016-03-04 | 2018-10-23 | 依视路国际公司 | Method for ordering ophthalmic lens and corresponding system |
-
2013
- 2013-08-23 CN CN201320521707.8U patent/CN203519946U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103412415A (en) * | 2013-08-23 | 2013-11-27 | 费淞 | Full-automatic self-serviced assembled spectacles parameter test device and measuring method |
CN103412415B (en) * | 2013-08-23 | 2015-06-24 | 费淞 | Full-automatic self-serviced assembled spectacles parameter test device and measuring method |
CN108701321A (en) * | 2016-03-04 | 2018-10-23 | 依视路国际公司 | Method for ordering ophthalmic lens and corresponding system |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140402 Termination date: 20170823 |
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CF01 | Termination of patent right due to non-payment of annual fee |