CN101038399A - Device for generating belt like luminous source - Google Patents

Device for generating belt like luminous source Download PDF

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Publication number
CN101038399A
CN101038399A CN 200710034876 CN200710034876A CN101038399A CN 101038399 A CN101038399 A CN 101038399A CN 200710034876 CN200710034876 CN 200710034876 CN 200710034876 A CN200710034876 A CN 200710034876A CN 101038399 A CN101038399 A CN 101038399A
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light
light source
generation device
conductor
diffusion bar
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CN 200710034876
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CN100460960C (en
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秦硕
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Abstract

The invention discloses a band light source generator and its applications, the band light source generator consists of one light guide and at least one light-emitting source, the light guide is a cylinder made of light transmission materials, the surface of light guide has at least one diffusion strip, the other side opposite to this diffusion strip is a circular arc light exit surface; one end surface of light guide covered with a refracting film is defined as the refracting surface, the other end opposite to it is the incident surface, the light-emitting source is arranged on the incident surface of light guide. A plurality of the mentioned strip light source in parallel may be integrated into a light source to provide the adequate and uniform directional light ray, thus the optical films such as diffusion film or prism pieces etc may be omitted, moreover, for its low optical loss, compared with the long light guide, it may provide a uniform light source, so the invention is more suitable for large-size liquid crystal panel.

Description

Band light source generation device and application thereof
Technical field
The present invention relates to a kind of light supply apparatus and application thereof, particularly relate to a kind of band light source device and application thereof that produces directive property light.
Background technology
LCD (LCD) has low electric quantity consumption, low radiation, thin thickness, advantage such as in light weight, replaces traditional crt display unit gradually, and becomes present widely used flat-panel screens.This display device of LCD as non-self-luminosity, must can reach display effect by the light source of outside, as external light source, the quality of backlight module light source performance will directly have influence on the display quality of LCD with backlight module (Backlight) in present LCD system.
Existing backlight module is by light source (Light source), light guide plate (Light guideplate), diffusion barrier (Diffuser), prismatic lens (Prism sheet), reflecting plate members such as (Reflector) is formed, the position of furnishing in backlight module according to light source can be divided into side-light type (Side-edge type) and straight-down negative (Direct type), side-light type light source system is arranged on the side of backlight module, after light enters into light guide plate from side, reflection strip via exclusive design in the light guide plate is evenly squeezed into turn light rays on the LCD LCD, adopts the LCD of side-light type light source to be applied to mostly as notebook computer, on the small-sized portable electron device such as personal digital assistant; Directly-down light source system is arranged on the below of liquid crystal panel, and light directly or indirectly reflexes to the top blooming, to promote brightness, adopts the LCD of directly-down light source to be applied to mostly as on the large-sized monitors such as LCD TV.
Described backlight module generally adopts cathode fluorescent tube (Cold cathodefluorescent lamp, CCFL) as light source, cathode fluorescent tube is to be filled with inert gas in a kind of elongated sealed glass tube, and with mercury as discharge medium, when the light pipe applied high voltage, inert gas produced ultraviolet ray and gets to and excite on the fluorescent material of tube inner wall face and send visible light; Cathode fluorescent tube has the advantage of low cost, high-level efficiency (light output and input electric power ratio), but cathode fluorescent tube needs higher driving voltage, and cathode fluorescent tube has temperature dependency and is unfavorable for starting under the low temperature, moreover the contained mercury of cathode fluorescent tube will work the mischief to environment and human body, therefore, how to obtain the light source that substitutes cold cathode fluorescent tube, become the problem that backlight module manufacturer makes great efforts research and development.
In recent years, the technology of light emitting diode (LED) is more and more ripe, light emitting diode has the characteristic of low driving voltage, high life and high power saving, and the demand on can fit applications and be made into miniaturization or array type is formed, all can see the application of light emitting diode such as traffic signals identification light, billboard, electric torch and various electronic product guidance lightings etc., make light emitting diode become the light source of widespread use, therefore replace cathode fluorescent tube with light emitting diode, promptly become the main research direction of backlight module manufacturer.No. 5727862, U.S. Pat, No. 5769521, US, No. 5786665, US, No. 5883684, US, No. 6036328, US, No. 6065845, US, No. 6139163, US, No. 6375335, US, No. 6386720, US, No. 6419372, US, No. 6474826, US, No. 6508564, US, No. 6520655, US, No. 6521879, US, No. 6582095, US, No. 6969189, US and US disclose respectively for No. 6608614 with a plurality of technical schemes of light emitting diode as the light source of backlight module, these technical schemes can divide into side-light type equally and straight-down negative is provided with pattern for two kinds, no matter but be side-light type, still straight-down negative is provided with pattern, all only be that light emitting diode is replaced cathode fluorescent tube, and the light that is sent also must be as the cathode fluorescent tube backlight module, the light system that light emitting diode sent squeezes in the light guide plate, light guide plate is about the square plate body (wedge shape or flat board) of matching fluid crystal panel area, light reflexes to light guide plate top bright dipping via reflector, has blooming (diffusion barrier on the light guide plate, prismatic lens, brightness enhancement film etc.), see through blooming and obtain even area source.
In aforesaid U.S. Patent, no matter be side-light type or straight-down negative, all must adopt a plurality of light emitting diodes, again pointolite is coupled into an area source, thereby area source can't distribute evenly; Moreover, consider the variation of luminous intensity and distribution between a plurality of light emitting diodes, general backlight module design can only be done optical uniformity and consider, can't take into account demands such as bright dipping distribution, light directive property, light extraction efficiency, polarization, so need extra increase many as diffusion barrier (Diffuser), prismatic lens (Prism sheet), brightness enhancement film (Enhance sheet), reflecting plate bloomings such as (Reflector) meets the required of liquid crystal panel application to adjust its optical characteristics.To be applied to large-sized liquid crystal panel backlight, adopt the backlight module of straight-down negative, often need hundreds of even thousands of light emitting diode high-density matrix arrangements, could in short distance, reach uniformity coefficient.Adopt the quantity of light emitting diode many more, though can promote the uniformity coefficient of bright dipping, but manufacturing cost also can increase thereupon, and pointolite is through the repeatedly coupling of light guide plate and multi-layer optical film, to cause serious light loss, increase the power consumption of backlight module relatively, therefore, light emitting diode is applied to backlight module, and it is to be solved to still have many problems to have.
U.S. Pat discloses a kind of linear lighting device that is applied to image scanner for No. 5969343, it is in order to solve tradition with the uneven defective of the light that linear light sorurce is caused of a plurality of light emitting diode array types, the linear light sorurce device be made up of a cylindrical guiding element and an illuminator has been proposed, cylindrical guiding element is to be made by light transmissive material, and be provided with light scattering portion in the part of cylindrical guiding element side, and illuminator system is arranged at an end face of cylindrical guiding element, the light that illuminator is launched enters cylindrical guiding element inside by end face, light is in cylindrical guiding element internal rows and then constantly be its side institute total reflection, when a light part is incident to light scattering portion, part light just carries out scattering, and the light of scattering will enter air and become illuminating ray with respect to the incident angle of the cylindrical guiding element side light less than critical angle.The light scattering portion of disclosed its cylindrical guiding element of linear lighting device of 343 cases makes the scattering of total reflection light, make its interior light scatter of incident to air, and the ray on the acquisition main scanning direction, it is applied on the scanner, can improve the problem that linear light sorurce produced of conventional scanner array type, but its disclosed linear lighting device, the light scatter of incident is in air, thereby make the light that penetrates not have directive property, can't be as the back light of liquid crystal panel.
U.S. Pat discloses a kind of planar light source device and display device thereof No. 20050270796, its goal of the invention is to improve the problem of traditional LED fluorescent tube luminance nonuniformity and light guide plate volume, its disclosed planar light source device is by framework, light source cell, lamp guide, reflecting plate constitutes, a plurality ofly be disposed in the framework in parallel to each other by the made lamp guide of transparent materials such as resin or glass, end face at each lamp guide is provided with a point-like light source, and the inner bottom surface of framework is provided with reflecting plate, the light reflection that light source cell (point source of light and lamp guide) is penetrated and towards the light-emitting area of framework; And the light that light source cell penetrates point source of light from surface feeding sputtering to lamp guide, the light that is incident on lamp guide reflects at end face, the outgoing plane angle of cause and lamp guide is tied to form to more than the critical angle, in the outgoing plane total reflection, propagate towards the lamp guide opposing end surface, be tied to form to below the critical angle owing to be incident on the angle of the outgoing plane of the light of lamp guide and lamp guide, can be in the outgoing plane total reflection of lamp guide, and near the light of the outgoing plane point source of light increases.Its disclosed planar light source device with a plurality of lamp guides and point source of light as light source cell, the light that light source cell sent is via the baffle reflection of the below light-emitting area to framework, this patent also can provide light uniformly, but the design of its framework and reflecting plate is though increased the volume of backlight module; Moreover, its lamp guide only claims the angle of incident light and outgoing plane to be tied to form to below the critical angle, can be in the outgoing plane total reflection of lamp guide, and propose how to obtain evenly or the light with directive property, therefore, still can't specific implementation as the back light of liquid crystal panel.
Summary of the invention
The objective of the invention is to overcome the defective that prior art exists, a kind of band light source generation device that has directive property and be evenly distributed is provided.
The objective of the invention is to be achieved through the following technical solutions: include an at least one light emitting source and a light conductor, described light conductor is the cylinder that is made with light transmissive material, described light conductor surface is provided with at least one diffusion bar, is the exiting surface that is circular arc with respect to this diffusion bar opposite side; A be covered reflectance coating and be defined as reflecting surface of described light conductor one end face, a relative end is the plane of incidence, described light emitting source is arranged at the plane of incidence of light conductor.
The light that described light emitting source produced is entered the inside of light conductor and is carried out total reflection by the plane of incidence, light carries out total reflection in the inside of light conductor constantly, when a certain light that constantly carries out total reflection is mapped to the diffusion bar, can be many scattered beams with a light scatter towards a plurality of angles, scattered beam is incident upon the exiting surface of circular arc, the exiting surface of circular arc will make scattered beam towards the direction refraction with respect to the diffusion bar, penetrate outside the light conductor so that scattered beam is converged, promptly become the band light source that has directive property and be evenly distributed.
Below be preferred version:
The reflecting surface of described light conductor also disposes light emitting source;
Described diffusion bar has the axial grating that is trickle striped;
Or described diffusion bar has the arrowhead grating that is trickle striped;
Described diffusion bar also can be rule or the discontinuous shape of irregular interruption;
Described light conductor surface one side is provided with two corresponding off-normal and has the diffusion bar of identical angle, the light that described light emitting source produced carries out total reflection in the inside of this light conductor, light is mapped to this to the scattering interlaced with each other of diffusion bar, and scattered beam converges staggered bright dipping through this exiting surface refraction.
Band light source generation device of the present invention, pointolite injected carry out total reflection in the light conductor, light is continuously in the light conductor inner total reflection and unglazed throughput loss, total reflection light is repeatedly beaten on the diffusion bar and through the exiting surface refraction of light conductor circular arc and is assembled bright dipping, the band light source that can produce tool directive property and be evenly distributed.
The present invention is applied to the back light of liquid crystal panel, combine an area source side by side by a plurality of band light source, sufficient and uniform tool directive property light can be provided, thereby can omit bloomings such as configuration diffusion barrier or prismatic lens, and liquid crystal panel according to different size, can select the to be complementary light conductor of length, because light loss is low, the line source that long light conductor also can obtain to be evenly distributed, and the polarized light property that sees through diffusion bar control light effectively increases the efficient that light enters liquid crystal panel, makes the present invention be more suitable for being applied to large-sized liquid crystal panel.
As the liquid crystal display backlight module light source, can obviously improve the display quality of LCD, high briliancy, high evenness with the present invention.
Band light source generation device of the present invention can be preferably as the backlight liquid crystal display light source, but is not limited to all can use such as indoor and outdoor lighting light source, automobile-used light source etc. as the backlight liquid crystal display light source.
Description of drawings
Fig. 1 is the structure component relationship synoptic diagram of first embodiment of the invention;
Fig. 2 forms another visual angle synoptic diagram for structure embodiment illustrated in fig. 1;
Fig. 3,4,5 is that structure embodiment illustrated in fig. 1 is formed the optical relation synoptic diagram;
Fig. 6 A, 6B are the first application examples synoptic diagram of first embodiment;
Fig. 7 is first another aspect synoptic diagram of application examples diffusion bar of first embodiment;
Fig. 8 A, 8B are the second application examples synoptic diagram of first embodiment;
Fig. 9 forms synoptic diagram for the second embodiment of the invention structure;
Figure 10 A, 10B are third embodiment of the invention structure optical relation synoptic diagram;
Figure 11 forms synoptic diagram for the fourth embodiment of the invention structure.
Among the figure: 10, light conductor, 10a, the plane of incidence, 10b, reflecting surface, 11, reflectance coating, 12, the diffusion bar, 13, exiting surface, 20, light emitting source, 30, light guide plate
Embodiment
The invention will be further described below in conjunction with drawings and Examples.
Embodiment 1
With reference to Fig. 1,2, present embodiment is made of a light conductor 10 and a light emitting source 20; The right cylinder of light conductor 10 for making with transparent material, wherein transparent material is optics acryl (Polymethyl methacrylate, PMMA) or material such as glass, light conductor 10 1 end faces are defined as plane of incidence 10a, relative other end is defined as reflecting surface 10b, reflecting surface 10b is coated with a reflectance coating 11, when light is injected in light conductor 10, incident angle will be carried out total reflection with unglazed throughput loss greater than the light of critical angle, light also can be incident upon the reflectance coating 11 of reflecting surface 10b and direct reflection, therefore, light is continuously in light conductor 10 inner total reflections, and is full of equably in light conductor 10 inside.
Be provided with a diffusion bar 12 along being parallel to light conductor 10 axial directions on the circumferential surface of light conductor 10, diffusion bar 12 is perpendicular to the normal of light conductor 10, and diffusion bar 12 is with as silicon dioxide (SiO 2), titania (TiO 2) the contour printing coatings of dispersing the light source material directly is coated on light conductor 10 circumferential surfaces, or pastes a high diverging light source material on light conductor 10 surfaces, also or on the surface of light conductor 10, form trickle strip optical grating construction (Texture) and all can.And be to realize tool directive property and the band light source that is evenly distributed, diffusion bar 12 with directly on light conductor 10 coating and printing coating be the best, can control quantity, the width of diffusion bar 12 in the mode of direct coating, distribute with the bright dipping that obtains required directive property band light source.
Be defined as exiting surface 13 in light conductor 10 with respect to the opposite side surface of diffusion bar 12 again, the cylinder surface that exiting surface 13 is light conductor 10 constitutes and is arc surface.
Light emitting source 20 autoluminescence assembly for emitting beam just like light emitting diode etc., light emitting source 20 is the plane of incidence 10a that is disposed at light conductor 10, it can be closely connected or be embedded in the plane of incidence 10a of light conductor 10, also can and plane of incidence 10a between have a gap, obtain required optics requirement to concern according to actual space structure to design.
Shown in Fig. 3,4,5, light emitting source 20 emits beam from plane of incidence 10a and is injected in the light conductor 10, when light transmits in light conductor 10, the incident angle of light is during greater than critical angle, light can't inject to light conductor 10 fully, make light carry out total reflection in the inside of light conductor 10 continuously, light is full of equably in light conductor 10 inside (as shown in Figure 3).When a certain light that constantly carries out total reflection is mapped to diffusion bar 12, can be many scattered beams with a light scatter towards a plurality of angles, the light that these are scattered, when its incident angle was all spent less than the cirtical angle of total reflection, partly light promptly was piercing in light conductor 10 (as shown in Figure 4) from exiting surface 13; And the incident angle of scattered beam still continues reflection greater than the light of the cirtical angle of total reflection, repeats its scattering process up to being incident upon diffusion bar 12.The light of light-source generation device, remove as shown in Figure 4, outside the exiting surface 13 of light conductor 10 penetrates, because scattered beam is incident upon the exiting surface 13 of circular arc, exiting surface 13 converges the exiting surface 13 (as shown in Figure 5) that injects to light conductor 10 with the scattered beam refraction, and becomes the band light source that has directive property and be evenly distributed.
With reference to Fig. 6 A, 6B, shown in the figure first application examples of the above embodiment of the present invention.As back light as the LCD (not shown), a plurality of present embodiment band light source generation devices are set up in parallel with as direct type backlight module (as shown in Figure 6A), adopt the light conductor 10 of different-diameter according to different optical demands, and the spacing of each light-source generation device is set suitably, and a plurality of band light source are combined into a large-scale area source, the even light that can obtain shown in Fig. 6 B distributes, so as to providing sufficient and uniform tool directive property light as back light, thereby can omit blooming (not shown) such as configuration diffusion barrier or prismatic lens, thereby can simplify the manufacturing process of LCD and reduce manufacturing cost.Simultaneously, according to the liquid crystal panel of different size can select the to be complementary light conductor 10 of length, because the luminous flux loss is low, the line source that long light conductor 10 can obtain to be evenly distributed makes the present invention be more suitable for being applied on large-sized LCD.
With reference to Fig. 7 A, 7B, shown in the figure diffusion bar 12 another aspects in first application examples of first embodiment of the invention, wherein in the position of the predetermined coating of light conductor 10 diffusion bars 12 in advance the roll-in shaft behind the trickle striped of (axial) or sagittal section (sagittal), printing coatings with high diverging light source material is coated on the striped place again, and the axial grating 121 (shown in Fig. 7 A) or the sagittal section grating 122 (shown in Fig. 7 B) of formation strip, the axial polarized light property of grating 121 or sagittal section grating 122 width and spacing may command scattered beam, the efficient that enters liquid crystal panel with effective increase light.
With reference to Fig. 8 A, 8B, shown in the figure second application examples of first embodiment of the invention.In known technology, side light type back light module or have and adopt cathode fluorescent tube as the side direction light source, or have with a plurality of light emitting diodes as the side direction light source, but no matter be the side direction light source of cathode fluorescent tube or a plurality of light emitting diodes, because the light that it sent does not have directive property, its light guide plate must adopt the wedge shape light guide plate, but the wedge shape light guide plate has the difficulty in the manufacturing.And band light source generation device of the present invention, also can be applicable to side light type back light module, wherein the band light source generation device is arranged on the light guide plate 30 of a side light type back light module, because the light that the band light source generation device penetrates has directive property, therefore light guide plate 30 can for as the optics acryl make a square plate body, the high directivity light that is penetrated by light conductor 10 exiting surfaces 13 then has more efficient and enters in the light guide plate 30, can replace known cathode fluorescent tube or a plurality of light emitting diode side direction light source.
Embodiment 2
With reference to Fig. 9, present embodiment does not paste reflectance coating 11, and is configured in reflecting surface 10b place with another light emitting source 20, to increase the brightness of light.
Embodiment 3
With reference to Figure 10 A, 10B, present embodiment can change the width or the position of diffusion bar 12 according to different optical demands, to change the scope and the directive property thereof of light bright dipping, also can set up many diffusion bars 12 according to optical demands.As shown in the figure, the diffusion bar 12 of two corresponding off-normal is set on light conductor 10, two diffusion bars 12 have identical angle with respect to normal, the light of light conductor 10 inner total reflections, be incident upon two diffusion bars 12 respectively and scattering, concern that because of diffusion bar 12 relative angles scattered beam is interlaced with each other, and scattered beam is converged jointly and staggered bright dipping through exiting surface 13, the light of staggered bright dipping will compile each other, so can improve briliancy and uniformity coefficient (referring to Figure 10 B), the black and white contrast value was fit to be applied to the large scale liquid crystal display when its directive property bright dipping more increased liquid crystal display.
Embodiment 4
With reference to Figure 11, present embodiment, as shown in the figure, and can be with rule or the irregular discontinuous wire of scattering strip 12 coatings for being interrupted, so also the scope of may command bright dipping is used for can saving on the different optical demands luminous energy, simplifies the chopping mechanism design.
The above several preferred embodiment of the present invention both can be used as the backlight liquid crystal display light source, can be used as again such as indoor and outdoor lighting light source, automobile-used light source etc.
The above only is several preferred embodiment of the present invention, these embodiment must not be used to explain the restriction to scope of patent protection of the present invention.All equivalent variations or modifications of being done according to the present patent application claim all belong to the scope of patent protection of the present invention.

Claims (10)

1. band light source generation device, include a light conductor and at least one light emitting source, described light conductor is the cylinder that is made with light transmissive material, it is characterized in that, described light conductor surface is provided with at least one diffusion bar, is the exiting surface that is circular arc with respect to this diffusion bar opposite side; A be covered reflectance coating and be defined as reflecting surface of described light conductor one end face, a relative end is the plane of incidence, described light emitting source is arranged at the plane of incidence of light conductor.
2. band light source generation device as claimed in claim 1 is characterized in that the reflecting surface of described light conductor also disposes light emitting source.
3, band light source generation device as claimed in claim 1 or 2 is characterized in that, described light conductor surface one side is provided with two corresponding off-normal and has the diffusion bar of identical angle.
4, band light source generation device as claimed in claim 1 or 2 is characterized in that, described diffusion bar has the axial grating that is trickle striped.
5, band light source generation device as claimed in claim 1 or 2 is characterized in that, described diffusion bar has the arrowhead grating that is trickle striped.
6, band light source generation device as claimed in claim 1 or 2 is characterized in that, described diffusion bar is rule or the discontinuous shape of irregular interruption.
7, band light source generation device as claimed in claim 3 is characterized in that, described diffusion bar has the axial grating that is trickle striped.
8, band light source generation device as claimed in claim 3, its feature have the arrowhead grating that is trickle striped at described diffusion bar.
9, band light source generation device as claimed in claim 3 is characterized in that, described diffusion bar is rule or the discontinuous shape of irregular interruption.
10, as the application of the described band light source generation device of one of claim 1-9 in LCD, it includes many light conductors that are set up in parallel, the light that each light emitting source produced carries out total reflection in the inside of this light conductor respectively, light is mapped to this light conductor diffusion bar and carries out scattering, scattered beam converges bright dipping through this exiting surface refraction and forms a band light source, and the band light source of each light conductor is formed an area source.
CNB2007100348768A 2007-04-30 2007-04-30 Device for generating belt like luminous source Expired - Fee Related CN100460960C (en)

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Application Number Priority Date Filing Date Title
CNB2007100348768A CN100460960C (en) 2007-04-30 2007-04-30 Device for generating belt like luminous source

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Application Number Priority Date Filing Date Title
CNB2007100348768A CN100460960C (en) 2007-04-30 2007-04-30 Device for generating belt like luminous source

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CN101038399A true CN101038399A (en) 2007-09-19
CN100460960C CN100460960C (en) 2009-02-11

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7752792B2 (en) 2007-09-21 2010-07-13 Foxsemicon Integrated Technology, Inc. Billboard with light emitting diode light source
CN102081184A (en) * 2010-11-23 2011-06-01 吴明番 Light guide body covered with optical membrane
CN103235358A (en) * 2013-04-27 2013-08-07 北京牡丹视源电子有限责任公司 Light guide bar and linear light source device manufactured with same
US8570303B2 (en) 2008-09-04 2013-10-29 Au Optronics Corporation Display module
CN103852820A (en) * 2012-11-28 2014-06-11 鸿富锦精密工业(深圳)有限公司 Light guide rod and light emitting diode lighting device
CN105869608A (en) * 2016-05-17 2016-08-17 上海大琴科技有限公司 Luminous piano key
CN115355824A (en) * 2022-10-20 2022-11-18 长沙巨翊医疗科技有限公司 Light-transmitting tube image acquisition method, and tube diameter measurement method and device

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3334833B2 (en) * 1995-08-24 2002-10-15 松下電器産業株式会社 Linear lighting device
CN1147673C (en) * 1999-03-08 2004-04-28 百利电子影像有限公司 Light conductive bar and the line shape light source using same
JP4314157B2 (en) * 2004-06-07 2009-08-12 三菱電機株式会社 Planar light source device and display device using the same

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7752792B2 (en) 2007-09-21 2010-07-13 Foxsemicon Integrated Technology, Inc. Billboard with light emitting diode light source
US8570303B2 (en) 2008-09-04 2013-10-29 Au Optronics Corporation Display module
CN102081184A (en) * 2010-11-23 2011-06-01 吴明番 Light guide body covered with optical membrane
CN102081184B (en) * 2010-11-23 2013-03-27 吴明番 Light guide body covered with optical membrane
CN103412365A (en) * 2010-11-23 2013-11-27 吴明番 Special-shaped light guide body covered with photocatalyst optical film
CN103412365B (en) * 2010-11-23 2016-03-23 吴明番 A kind of special-shaped light conductor being coated with photocatalyst optical film
CN103852820A (en) * 2012-11-28 2014-06-11 鸿富锦精密工业(深圳)有限公司 Light guide rod and light emitting diode lighting device
CN103235358A (en) * 2013-04-27 2013-08-07 北京牡丹视源电子有限责任公司 Light guide bar and linear light source device manufactured with same
CN105869608A (en) * 2016-05-17 2016-08-17 上海大琴科技有限公司 Luminous piano key
CN115355824A (en) * 2022-10-20 2022-11-18 长沙巨翊医疗科技有限公司 Light-transmitting tube image acquisition method, and tube diameter measurement method and device

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