CN204943358U - Colour recognition module, lighting device - Google Patents

Colour recognition module, lighting device Download PDF

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Publication number
CN204943358U
CN204943358U CN201520394488.0U CN201520394488U CN204943358U CN 204943358 U CN204943358 U CN 204943358U CN 201520394488 U CN201520394488 U CN 201520394488U CN 204943358 U CN204943358 U CN 204943358U
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China
Prior art keywords
light
color
recognition module
colour recognition
lighting device
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CN201520394488.0U
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Chinese (zh)
Inventor
郑天航
胡飏
王见
周志贤
王亮
何捷
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Opple Lighting Co Ltd
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Opple Lighting Co Ltd
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Priority to CN201520394488.0U priority Critical patent/CN204943358U/en
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Publication of CN204943358U publication Critical patent/CN204943358U/en
Priority to DE202016008521.3U priority patent/DE202016008521U1/en
Priority to DE202016008522.1U priority patent/DE202016008522U1/en
Priority to PCT/CN2016/085042 priority patent/WO2016197903A1/en
Priority to PCT/CN2016/085043 priority patent/WO2016197904A1/en
Priority to EP16806802.1A priority patent/EP3220724B1/en
Priority to EP16806801.3A priority patent/EP3220723B1/en
Priority to US15/680,982 priority patent/US10251239B2/en
Priority to US15/681,646 priority patent/US10285244B2/en
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Abstract

The utility model discloses a kind of colour recognition module, can be connected on lighting device, it comprises: housing, the printed circuit board (PCB) be contained in housing, be installed on the color detector of printed circuit board (PCB) side, described colour recognition module also comprises and is installed on described printed circuit board (PCB) opposite side and the connector being connected to described lighting device, and described connector is to housing extension and be communicated with hull outside.Due to the existence of the connector on colour recognition module, colour recognition module is made to be assembled on corresponding lighting device easily and fast.The invention also discloses a kind of lighting device with above-mentioned colour recognition module, how the color that this lighting device achieves no matter irradiated object changes, and when even color change is very trickle, also automatically can obtain the irradiation light of color and its coordination.

Description

Colour recognition module, lighting device
Technical field
The utility model relates to lighting technical field, particularly relates to a kind of colour recognition module, lighting device be applied on lighting device.
Background technology
In prior art, people can by adjusting with the equipment such as hand-held remote controller, mobile terminal of lighting device wireless connections the color that lighting device exports light.The color that lighting device exports light is decided by the program about the output of lighting device light be pre-set in hand-held remote controller or mobile terminal.But the method for this kind of change lighting device output light color needs manual operation, and the output of lighting device light simultaneously also has certain retardance.
In order to solve the problem, also exist in prior art and utilizing the colour recognition module be installed in lighting device automatically to adjust the color that lighting device emits beam.That is, colour recognition module can perception lighting device surrounding objects or environmental colors, and according to the colouring information of the surrounding objects received or environment, color lighting device being sent light be adjusted to can with the color that matches of surrounding objects or environment, with meet increasing lighting device application wish between lighting device and surrounding objects or environmental colors can be interactive requirement.
But, existing colour recognition module wide variety and the lighting device application coordinated from colour recognition module is wide and to cause illuminator structure also all different, therefore, in the assembling process of colour recognition module and lighting device, the process that the electric connection between colour recognition module and the control module in lighting device and colour recognition module are fixedly connected with the machinery between lighting device is loaded down with trivial details and install inconvenience.
Along with the fast development of lighting engineering, illumination is no longer confined to surrounding objects or environment are only illuminated already, but upgrades to a kind of light efficiency applying to coordinate mutually with this object color to irradiated object to promote the technology of object perception.This lighting device, owing to can carry out the color of its irradiation light of accommodation for the irradiated object of different colours, makes the object of different colours all can reach perception and promotes, paid attention to more in the industry.
In prior art, generally come as follows accommodation lighting device irradiate the color of light:
S1, startup lighting device project detected light to irradiated object, obtain the reflectance spectrum of irradiated object;
S2, obtain the color index of irradiated object according to reflectance spectrum;
S3, irradiate light list according to color index inquiry, obtain target illumination light;
S4, control lighting device are to irradiated object projection target illumination light.
Wherein, the color due to irradiated object is random, and its possible color category order of magnitude is huge, and the irradiation each color of object all being configured to a kind of particular color is only unpractical.Color gamut possible for object generally can be divided between multiple chromatic zones by the irradiation light list in step S2, then to the irradiation light configuring a kind of particular color between each chromatic zones.After acquisition color index, obtain between its chromatic zones, and then determine target illumination light.
But also there are the following problems in prior art:
Owing to irradiating the color that all there is number of different types in light list between each chromatic zones, single irradiation light must and this chromatic zones in all color all reach coordination, cause according to irradiating light list that to carry out the precision of the irradiation light color that self-adaptative adjustment lighting device sends poor.
Utility model content
The purpose of this utility model is to solve the problem, and provides a kind of structure simple and the colour recognition module that can be assembled to easily and fast on lighting device.
The purpose of this utility model is to solve the problem, a kind of color that can realize no matter irradiated object is provided how to change, when even color change is very trickle, also automatically can obtain the lighting device with colour recognition module of the detected light of color and its coordination.
For achieving the above object, the utility model provides a kind of colour recognition module, can be connected on lighting device, it comprises: housing, the printed circuit board (PCB) be contained in housing, be installed on the color detector of printed circuit board (PCB) side, described colour recognition module also comprises and is installed on described printed circuit board (PCB) opposite side and the connector being connected to described lighting device, and described connector is to housing extension and be communicated with hull outside.
Further, described housing comprises the first lid and the second lid that fit together.
Further, described colour recognition module also comprises optical lens, and described color detector is between optical lens and printed circuit board (PCB).
Further, described color detector is color sensor or spectral detector.
Further, described first lid is provided with first through hole that can pass through for described optical lens, and described second lid is provided with second through hole that can pass through for described connector.
Further, be provided with back-up block in described second lid, described printed circuit board (PCB) to be positioned on described back-up block and to be fixedly connected with described second lid.
Further, described connector is welded on described printed circuit board (PCB) by surface mounting technology.
Further, described second lid is provided with for colour recognition module Fast Installation in two installing holes of lighting device.
Further, described lighting device is any one in TL lamp, Halogen lamp LED, LED.
For achieving the above object, the utility model additionally provides a kind of lighting device with above-mentioned colour recognition module, and described lighting device also comprises: control module, driver module and light source module,
Described light source module, for projecting initial scout light to irradiated object, described initial scout light has priming color information;
Described colour recognition module, for obtaining the colouring information of irradiated object based on the initial reflection light of described initial scout photogenerated;
Described control module, generates target color information for the colouring information according to described initial reflection light, and target color information is converted to drive control signal;
Described driver module, for sending target detected light corresponding to target color information according to the drive control signal driving light source module received;
Described colour recognition module is also for obtaining the colouring information of the target reflecting light that described shone thing based target detected light generates;
Described control module, also for judging that the colour-difference of described initial reflection light and target reflecting light is whether in pre-set color difference scope, controls the color that described light source module projects described target detected light.
The colour recognition module 100 that the utility model preferred embodiment provides is fairly simple, easily assemble.In addition, by the connector 5 on colour recognition module 100 and the installing hole 124 on the second lid 12, colour recognition module 100 is made to be assembled on corresponding lighting device easily and fast.
The technical scheme of the lighting device provided from above the utility model preferred embodiment, by obtaining a rear detected light according to the reverberation of last detected light, when the colour-difference of the reverberation of former and later two detected light is less than pre-set color difference scope, after controlling lighting device, a detected light projects irradiated object.How the color realizing no matter irradiated object changes, and when even color change is very trickle, also automatically can obtain the irradiation light of color and its coordination.
Accompanying drawing explanation
Accompanying drawing described herein is used to provide further understanding of the present utility model, forms a part of the present utility model, and schematic description and description of the present utility model, for explaining the utility model, is not formed improper restriction of the present utility model.In the accompanying drawings:
Fig. 1 is the three-dimensional assembly diagram of the colour recognition module meeting the utility model preferred embodiment;
Fig. 2 is another angle three-dimensional assembly diagram of the colour recognition module meeting the utility model preferred embodiment;
Fig. 3 is the three-dimensional exploded view of Fig. 1;
Fig. 4 is the three-dimensional exploded view of Fig. 2;
Fig. 5 is the structural representation of the lighting device meeting the utility model preferred embodiment;
Fig. 6 is the flow chart of the control method of the lighting device meeting the utility model preferred embodiment;
Fig. 7 is the particular flow sheet of the control method interior acquisition of the color according to the described initial reflection light target color information of the lighting device meeting the utility model preferred embodiment.
Detailed description of the invention
For making the purpose of this utility model, technical scheme and advantage clearly, below in conjunction with the utility model specific embodiment and corresponding accompanying drawing, technical solutions of the utility model are clearly and completely described.Obviously, described embodiment is only the utility model part embodiment, instead of whole embodiments.Based on the embodiment in the utility model, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all belong to the scope of the utility model protection.
Please refer to Fig. 1 to Fig. 4, the colour recognition module 100 that the utility model preferred embodiment provides, for being arranged on lighting device (not shown), it comprises: housing 1, the printed circuit board (PCB) 2 be contained in housing 1, the optical lens 3 being assembled in printed circuit board (PCB) 2 side and color detector 4 and be assembled in the connector 5 of printed circuit board (PCB) 2 opposite side.
Illustrate for each element in the colour recognition module 100 of the utility model preferred embodiment below.
Please refer to Fig. 1, Fig. 3 and Fig. 4, housing 1 is made up of isolation material, and it comprises the first lid 11 and the second lid 12 fitted together.The first side wall 112 that first lid 11 comprises rounded roof 111 and extends out from roof 111 1 side.The roof 111 of the first lid 11 is provided with first through hole 113 that can spill for lens 3, the rounded dress of this first through hole 113.The second sidewall 122 that second lid 12 comprises a diapire 121 and extends out from diapire 121 1 side.Second through hole 123 that the diapire 121 of the second lid 12 can spill for connector 5 and be convenient to two installing holes 124 of colour recognition module 100 Fast Installation on lighting device (not shown), the rectangular shape of this second through hole 123.Also be provided with some back-up blocks 125 being positioned at diapire 121 and the second sidewall 122 intersection in second lid 12, wherein at least two back-up blocks 125 be respectively equipped with screw hole.Can by being threaded and being fixed together between the first side wall 112 and the second sidewall 122 between first lid 11 with the second lid 12.
Please refer to Fig. 3 and Fig. 4, printed circuit board (PCB) 2 is rounded, and it to be placed in the second lid 12 on some back-up blocks 125.Printed circuit board (PCB) 2 is provided with and by locating hole 21.Can be positioned together by screw (not shown) between printed circuit board (PCB) 2 and the second lid 12.
Please refer to Fig. 1, Fig. 3 and Fig. 4, optical lens 3 is in cylindric, and its one end is contained in extend in the first through hole 113 and can receives extraneous light.The effect of optical lens 3 mainly comprises: one is according to selected optical lens different size, can realize collecting the light of particular range; Two is that the intensity that can arrive on color detector 4 surface the light through optical lens adjusts.
Color detector 4 can be color sensor, also can be spectral detector.Color detector 4 to be fixed on printed circuit board (PCB) 2 and between optical lens 3 and printed circuit board (PCB) 2.Extraneous light, after optical lens 3, arrives at color detector 4 surface.Color detector 4 collects photographed object reverberation, and exports suitable electric parameter according to reverberation, and the electric parameter obtained just obtains colouring information after signal transacting, namely obtains the surface color information of photographed object.It should be noted that, colouring information comprises the component relative intensity of R, G, B.Rgb color pattern is a kind of color standard of industrial quarters, that namely R, G, B are the colors representing red, green, blue three passages by obtaining color miscellaneous to the change of red (R), green (G), blue (B) three Color Channels and their superpositions each other.
Connector 5 can be welded on printed circuit board (PCB) 2 by surface mounting technology (SurfaceMountTechnology, SMT).
The colour recognition module 100 of the utility model preferred embodiment completes assembling by following steps, and concrete steps comprise:
Optical lens 3, color detector 4 and connector 5 are assembled in printed circuit board (PCB) 2, form assembly;
Combinations thereof body is assembled and is fixed on the second lid 12;
First lid 11 is assembled in the second lid.
By above-mentioned steps, colour recognition module 100 just completes and assembles.
To sum up, the colour recognition module 100 that provides of the utility model preferred embodiment fairly simple, easily assemble.In addition, by the connector 5 on colour recognition module 100 and the installing hole 124 on the second lid 12, colour recognition module 100 is made to be assembled on corresponding lighting device easily and fast.
The utility model preferred embodiment also provides a kind of lighting device with colour recognition module 100, please refer to the drawing 5, and lighting device also comprises: control module 600, driver module 700 and light source module 800.Concrete, control module 600 can be MCU module or single-chip microcomputer, and control module 600 is provided with control chip.Control module 600 connects colour recognition module 100 and light source module 800.The colouring information received is converted to drive control signal by control module 600, also can claim spectrum regulating command.Drive control signal can comprise the modulation signal of different modes, and in the utility model preferred embodiment, modulation signal is pulse width modulating signal (PulseWidthModulation, PWM), pwm signal.
Concrete, driver module 700, according to the drive control signal received, as pwm signal, and carries out spectrum adjustment operation to light source module 800, to realize projecting corresponding spectrum to shone thing.
Light source module 800 is LED light source module preferably, and utilize RGB, RGBW light mixing way, make the light source passage that shades of colour LED light source forms, to form mixed light permutation, and carry out build-up of luminance and brilliance control by the light source passage of described driver module 700 to each color, realize light modulation toning function, and then simulate and obtain required spectrum.Light source module 800 can also be the types such as TL lamp, Halogen lamp LED.
It should be noted that, by extra connecting line (not shown), colour recognition module 100 is connected in control module 600, namely connecting line one end is connected to the connector 5 in colour recognition module 100, and the other end is connected in the control module 600 of lighting device.Concrete, by connector 5 realize color detector 4 in colour recognition module 100 can and the control module 600 of lighting device between realize being electrically connected.After the control module 600 of lighting device receives the colouring information that color detector 4 sends, the colouring information received is converted to drive control signal, driver module 700 is according to the drive control signal received and carry out spectrum adjustment operation to light source module 800, namely adjusts the color that light source module 800 exports light.
Be connected because connector 5 and connecting line one end directly coordinate to complete by grafting, the connection therefore between colour recognition module 100 with corresponding lighting device is simple, quick.
In the utility model preferred embodiment, in lighting device, modules is configured to carry out automatic sensing environmental colors in the following way and the irradiation light sent according to the adjustment of collected environmental colors.
Light source module 800, for projecting initial scout light to irradiated object, described initial scout light is priming color;
Colour recognition module 100, for obtaining the colouring information of irradiated object based on the initial reflection light of described initial scout photogenerated;
Control module 600, generates target color information for the colouring information according to described initial reflection light, and target color information is converted to drive control signal, as pwm signal;
Driver module 700, the drive control signal received for basis also carries out spectrum adjustment operation to light source module 800, and namely driving light source module 800 sends target detected light corresponding to target color information.
Colour recognition module 100 is also for obtaining the colouring information of the target reflecting light that described shone thing based target detected light generates;
Control module 600, also for judging that the colour-difference of described initial reflection light and target reflecting light is whether in pre-set color difference scope;
Control module 600, also for when the colour-difference of described initial reflection light and target reflecting light is in pre-set color difference scope, controls the color that described light source module 800 projects described target detected light.
The utility model preferred embodiment also provides a kind of control method with the lighting device of colour recognition module 100, describes this method in detail below in conjunction with accompanying drawing.
Fig. 6 is the flow chart of the control method of lighting device in the utility model preferred embodiment, the executive agent of this control method can be mounted in the control circuit board in lighting device, this control circuit board comprises some elements, as colour recognition module 100, control module 600, driver module 700, light source module 800 etc., said elements can between connect by wired or wireless mode the transmission realizing signal.
Wherein, in the process that light source module 800 pairs of shone things of lighting device illuminate routinely, this control circuit board periodically starts aforementioned control method, during to guarantee that shone thing occurs to change, and can the irradiation light that sends of the light source module 800 of rapid adjustment lighting device.
Aforementioned control method comprises the steps.
The light source module 800 of S10, control lighting device is to irradiated object projection initial scout light, and described initial scout light has priming color information.
In the utility model preferred embodiment, initial scout light can be projected by the light source module 800 of lighting device.When starting this control method, in advance original for the light source module 800 of lighting device sent out irradiation light is closed down, then open projection detected light.
Certainly, can also in lighting device another independently auxiliary light emission source built-in, after original for the light source module 800 of lighting device sent out irradiation light is closed down, detected light is projected by this auxiliary light emission source, only need the driver module 700 of this auxiliary light emission source and lighting device and power supply to be electrically connected, do not repeat at this.
In the utility model preferred embodiment, initial scout light is chosen as white light, and the spectral width due to white light is wider and currently disturb without other color of light, can obtain the reverberation of irradiated object more accurately.In the utility model preferred embodiment, the colour temperature of white light can be selected among 2000K to 30000K scope, also can be selected among less 2500 to 25000K scope.
Certainly, initial scout light also can adopt other color of light except white light, and makes light emitting source send the detected light of pre-set color by setting up pwm signal, does not repeat at this.
No matter by the light source module 800 of lighting device or another independently auxiliary light emission source, LED all can be adopted as light source, and utilize RGB, RGBW light mixing way, make the light source passage that shades of colour LED light source forms, to form mixed light permutation, and carry out build-up of luminance and brilliance control by the light source passage of described driver element to each color, realize light modulation toning function.
The light source module 800 of certain lighting device or another independently also can adopt the other types such as TL lamp, Halogen lamp LED in auxiliary light emission source, does not repeat at this.
S20, colour recognition module 100 obtain the colouring information of described irradiated object based on the initial reflection light of described initial scout photogenerated.
In the utility model preferred embodiment, can arrange towards the colour recognition module 100 of irradiated object on lighting device, the initial reflection light based on initial scout light is obtained by this colour recognition module 100, and the electric parameter suitable according to the initial reflection light output of initial scout light, the electric parameter obtained just obtains the colouring information of irradiated object after signal transacting, the component relative intensity of RGB, this is technology well known to those of ordinary skill in the art, does not repeat at this.
S30, control module 600 generate target color information according to the colouring information of described initial reflection light, and target color information are converted to drive control signal, as pwm signal.
The colouring information of initial reflection light embodies the color of shone thing itself, the color-associations of the target color information obtained by the colouring information of initial reflection light and irradiated object itself, make the follow-up target detected light with target color information that sends and irradiated object, color is tending towards gradually coordinate.
Shown in composition graphs 7, in the utility model preferred embodiment, abovementioned steps S30 specifically comprises the steps;
S31, obtain the chromaticity coordinates value of described initial reflection light.
In the utility model preferred embodiment, the colouring information of the initial reflection light of acquisition can be converted to corresponding chromaticity coordinates value, this is technology well known to those of ordinary skill in the art, does not repeat at this.
S32, carry out conversion with the chromaticity coordinates value of default weight coefficient to described initial reflectance spectrum and obtain target color coordinates value.
In the utility model preferred embodiment, the control method of illumination apparatus comprises two kinds of patterns, namely presets with optical mode and default light filling pattern.
Presetting with under optical mode, the control method provided by the utility model preferred embodiment, the irradiation light sent by lighting device is adjusted to basically identical with the color of irradiated object.Such as, when the color of irradiated object is yellow, the irradiation light adjustment that lighting device can be sent also is adjusted to yellow, to reach the object making the color of irradiated object be set off by contrast by forward.
Under default light filling pattern, the control method provided by the utility model preferred embodiment, the irradiation light sent by lighting device is adjusted to substantially contrary with the color of irradiated object.Such as, when the color of irradiated object is yellow, the irradiation light that light source module 700 can be sent is adjusted to and other colors such as the purple of yellow complementation, makes the color of irradiated object be reversed the object set off to reach.
No matter be preset with optical mode or default light filling pattern, the color of the irradiation light sent by adjustment light source module 700, just can realize the irradiation light that irradiated object and light source module 700 send mutually to coordinate, thus highlight irradiated object, theoretical based on toning in chromatics, this is technology well known to those of ordinary skill in the art, does not repeat at this.
In the utility model preferred embodiment, step S32 specifically comprises the steps:
Obtain target illumination pattern, described target illumination pattern is for presetting with in optical mode and default light filling pattern one;
When described target illumination pattern is for presetting with optical mode, carrying out increase with the chromaticity coordinates value of default weight coefficient to described initial reflectance spectrum obtains target color coordinates value;
When described target illumination pattern is for presetting light filling pattern, carries out reduction with the chromaticity coordinates value of default weight coefficient to described initial reflectance spectrum and obtaining target color coordinates value.
Because reverberation exists the decay of color relative to irradiating light, the reverberation namely obtained based on a certain irradiation light photochromic obviously weak as the irradiation light on its basis.Presetting with under optical mode, increase can carried out by the default chromaticity coordinates value of weight coefficient to initial reflectance spectrum and obtain target color coordinates value, thus overcome the decay of aforementioned color.But, under default light filling pattern, because default light filling pattern required irradiation light should be contrary with the color of irradiated object, then need to carry out reduction with the chromaticity coordinates value of default weight coefficient to described initial reflectance spectrum and obtain target color coordinates value.
Aforementioned default weight coefficient artificially can be preset according to presetting the degree of optical mode and default light filling pattern of sharing the same light, and presets share the same light optical mode and the default weight coefficient needed for default light filling pattern and can be set as same, also can be set as difference.
S33, obtain target color information according to described target color coordinates value.
In the utility model preferred embodiment, opponent-color coordinates value can carry out the component relative intensity of the RGB be converted to for embodying color of object, to carry out changing the process obtaining its corresponding chromaticity coordinates value contrary with the colouring information of the initial reflection light obtained by colour recognition module 100, do not repeat at this.
S40, driver module 700 are according to the drive control signal received and carry out spectrum adjustment operation to light source module 800, and namely driving light source module 800 sends target detected light corresponding to target color information.
In the utility model preferred embodiment, obtain target P WM signal according to described target color information, then control described light source module 800 to irradiated object projection target detected light by described target P WM signal.
S50, colour recognition module 100 obtain the colouring information of the target reflecting light that described irradiated object generates based on described target detected light.
In the utility model preferred embodiment, the colouring information of based target reverberation is obtained, namely for embodying the component relative intensity of the RGB of color, i.e. rgb value by this colour recognition module 100, this is technology well known to those of ordinary skill in the art, does not repeat at this.
S60, judge that the colour-difference of described initial reflection light and target reflecting light is whether in pre-set color difference scope, if so, performs step S70, if not, performs step S80
In the utility model preferred embodiment, judge that the colour-difference of the two is whether in pre-set color difference scope by the difference of the chromaticity coordinates value of initial reflection light and target reflecting light.Wherein, the difference that described pre-set color difference scope comprises the described color coordinate values of initial reflection light and the color coordinate values of target reflecting light is less than or equal to 0.001.
Certainly, pre-set color difference scope is not limited to the scope of aforementioned 0.001, and its concrete numerical value can set according to demand, does not repeat at this.
S70, control described lighting module 700 keep projection described target detected light.
Theoretical according to chromatics, any one irradiates light and is be mutually related between the reverberation generated based on this irradiation light, then can be extrapolated the color in-scope irradiating light by the color obtaining reverberation.Because the color of irradiating light cannot gather, whether the colour-difference that naturally also cannot calculate initial scout light and target detected light is close, when the colour-difference of initial reflection light and target reflecting light is in pre-set color difference scope, obviously can infer that the colour-difference of initial scout light and target detected light is also very close.
No matter be preset with optical mode or default light filling pattern, obtaining in the process of color of object by step S30, color of object is close all the time towards the color of the irradiation light coordinated most with irradiated object color, the colour-difference of initial scout light and target detected light be also very close to time, show that adjacent twice adjustment for detected light there is no color change for detected light, can show that detected light is adjusted to the right place, now the color of detected light and the color of irradiated object are coordinated most.Therefore, the target that meets the requirements detected light can as the irradiation light irradiated to irradiated object.
S80, colouring information according to obtained target reflecting light, upgrade the colouring information of described initial scout light, and return step S10.
When the colour-difference of described initial reflection light and target reflecting light is not in preset range, show in the colour-difference of initial scout light and target detected light very not close, namely detected light is not adjusted to the right place, then need with current obtained color of object to upgrade priming color, and return step S10 to S60, more fresh target detected light is carried out, until obtain the conclusion of colour-difference in preset range of initial reflection light and target reflecting light in step S60 by wherein step S30.
The technical scheme of the control method of the lighting device provided from above the utility model preferred embodiment, the utility model preferred embodiment is by obtaining a rear detected light according to the reverberation of last detected light, when the colour-difference of the reverberation of former and later two detected light is less than pre-set color difference scope, after controlling lighting device, a detected light projects irradiated object.How the color realizing no matter irradiated object changes, and when even color change is very trickle, also automatically can obtain the irradiation light of color and its coordination.
Above-described instantiation; the purpose of this utility model, technical scheme and beneficial effect are further described; be understood that; the foregoing is only specific embodiment of the utility model; be not limited to the utility model; all within spirit of the present utility model and principle, any amendment made, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.

Claims (10)

1. a colour recognition module, can be connected on lighting device, it comprises: housing, the printed circuit board (PCB) be contained in housing, be installed on the color detector of printed circuit board (PCB) side, it is characterized in that, described colour recognition module also comprises and is installed on described printed circuit board (PCB) opposite side and the connector being connected to described lighting device, and described connector is to housing extension and be communicated with hull outside.
2. colour recognition module as claimed in claim 1, it is characterized in that, described housing comprises the first lid and the second lid that fit together.
3. colour recognition module as claimed in claim 2, it is characterized in that, described colour recognition module also comprises optical lens, and described color detector is between optical lens and printed circuit board (PCB).
4. colour recognition module as claimed in claim 1, it is characterized in that, described color detector is color sensor or spectral detector.
5. colour recognition module as claimed in claim 3, is characterized in that, described first lid is provided with first through hole that can pass through for described optical lens, and described second lid is provided with second through hole that can pass through for described connector.
6. colour recognition module as claimed in claim 2, is characterized in that, be provided with back-up block in described second lid, and described printed circuit board (PCB) to be positioned on described back-up block and to be fixedly connected with described second lid.
7. colour recognition module as claimed in claim 1, it is characterized in that, described connector is welded on described printed circuit board (PCB) by surface mounting technology.
8. colour recognition module as claimed in claim 2, is characterized in that, described second lid is provided with for colour recognition module Fast Installation in two installing holes of lighting device.
9. colour recognition module as claimed in claim 1, is characterized in that, described lighting device is any one in TL lamp, Halogen lamp LED, LED.
10. have the lighting device as colour recognition module as described in arbitrary in claim 1 to 9, it is characterized in that, described lighting device also comprises: control module, driver module and light source module,
Described light source module, for projecting initial scout light to irradiated object, described initial scout light has priming color information;
Described colour recognition module, for obtaining the colouring information of irradiated object based on the initial reflection light of described initial scout photogenerated;
Described control module, generates target color information for the colouring information according to described initial reflection light, and target color information is converted to drive control signal;
Described driver module, for sending target detected light corresponding to target color information according to the drive control signal driving light source module received;
Described colour recognition module is also for obtaining the colouring information of the target reflecting light that described shone thing based target detected light generates;
Described control module, also for judging that the colour-difference of described initial reflection light and target reflecting light is whether in pre-set color difference scope, controls the color that described light source module projects described target detected light.
CN201520394488.0U 2015-06-08 2015-06-08 Colour recognition module, lighting device Active CN204943358U (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
CN201520394488.0U CN204943358U (en) 2015-06-08 2015-06-08 Colour recognition module, lighting device
EP16806801.3A EP3220723B1 (en) 2015-06-08 2016-06-07 Illumination device and control method and control system therefor
PCT/CN2016/085042 WO2016197903A1 (en) 2015-06-08 2016-06-07 Illumination device and control method and control system therefor
DE202016008522.1U DE202016008522U1 (en) 2015-06-08 2016-06-07 Lighting device and control system for it
DE202016008521.3U DE202016008521U1 (en) 2015-06-08 2016-06-07 Lighting device and control system for it
PCT/CN2016/085043 WO2016197904A1 (en) 2015-06-08 2016-06-07 Illumination device and control method therefor, and control system
EP16806802.1A EP3220724B1 (en) 2015-06-08 2016-06-07 Illumination device and control method therefor, and control system
US15/680,982 US10251239B2 (en) 2015-06-08 2017-08-18 Illuminating device, control method thereof and control system thereof
US15/681,646 US10285244B2 (en) 2015-06-08 2017-08-21 Illuminating device, control method thereof and control system thereof

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104913273A (en) * 2015-06-08 2015-09-16 欧普照明股份有限公司 Color recognition module, lighting device and control method thereof
WO2016197903A1 (en) * 2015-06-08 2016-12-15 欧普照明股份有限公司 Illumination device and control method and control system therefor
WO2018001055A1 (en) * 2016-06-30 2018-01-04 欧普照明股份有限公司 Remote control, lighting device and lighting system
US10285244B2 (en) 2015-06-08 2019-05-07 Opple Lighting Co., Ltd. Illuminating device, control method thereof and control system thereof

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104913273A (en) * 2015-06-08 2015-09-16 欧普照明股份有限公司 Color recognition module, lighting device and control method thereof
WO2016197903A1 (en) * 2015-06-08 2016-12-15 欧普照明股份有限公司 Illumination device and control method and control system therefor
US10251239B2 (en) 2015-06-08 2019-04-02 Opple Lighting Co., Ltd. Illuminating device, control method thereof and control system thereof
US10285244B2 (en) 2015-06-08 2019-05-07 Opple Lighting Co., Ltd. Illuminating device, control method thereof and control system thereof
WO2018001055A1 (en) * 2016-06-30 2018-01-04 欧普照明股份有限公司 Remote control, lighting device and lighting system
US10582599B2 (en) 2016-06-30 2020-03-03 Opple Lighting Co., Ltd. Remote controller, lighting device and lighting system

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