TWM523119U - Automatic back light detection structure of liquid crystal display module - Google Patents
Automatic back light detection structure of liquid crystal display module Download PDFInfo
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- TWM523119U TWM523119U TW105201366U TW105201366U TWM523119U TW M523119 U TWM523119 U TW M523119U TW 105201366 U TW105201366 U TW 105201366U TW 105201366 U TW105201366 U TW 105201366U TW M523119 U TWM523119 U TW M523119U
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- liquid crystal
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- display module
- backlight
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- 239000004973 liquid crystal related substance Substances 0.000 title claims description 53
- 238000001514 detection method Methods 0.000 title claims description 25
- 238000005286 illumination Methods 0.000 claims description 7
- 238000000034 method Methods 0.000 description 5
- 238000010586 diagram Methods 0.000 description 4
- 230000000694 effects Effects 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
- 230000000007 visual effect Effects 0.000 description 1
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Description
本創作係關於一種背光自動偵測結構,更特別的是關於一種液晶顯示模組之背光自動偵測結構,能在不破壞液晶顯示模組結構的情況下,簡單地進行設置,從而不犧牲可視區,且不會有漏光問題產生。The present invention relates to a backlight automatic detection structure, and more particularly to a backlight automatic detection structure of a liquid crystal display module, which can be easily set without destroying the structure of the liquid crystal display module, thereby not sacrificing visual Zone, and there will be no light leakage problems.
習知對亮度及灰階有高精準度要求的液晶顯示器為醫療用顯示器或美術用顯示器,其亮度必須保持固定,不能隨著時間、環境溫度而改變。Conventionally, liquid crystal displays having high precision requirements for brightness and gray scale are medical displays or art displays, and their brightness must be kept constant and cannot be changed with time and ambient temperature.
然而,製作前述液晶顯示器用的液晶顯示模組本身並未具有光感測器,故必須於液晶顯示模組額外安裝光感測器。However, the liquid crystal display module for manufacturing the liquid crystal display itself does not have a photo sensor, so an optical sensor must be additionally mounted on the liquid crystal display module.
目前有兩種方式來將光感測器安裝至液晶顯示模組,第一種方式係將光感測器安裝置液晶顯示模組的液晶面板正面角落,其缺點在於,無法量測中心點的位置,且會犧牲可視區;第二種方法係將液晶顯示模組的背蓋打孔埋入光感測器,雖然能克服第一種方式的缺點,但會破壞液晶顯示模組的結構,且難以固定,此外,若沒有妥善將所打孔的位置封住,容易產生漏光的問題,從而導致光感測器失準。At present, there are two ways to mount the photo sensor to the liquid crystal display module. The first method is to mount the photo sensor on the front corner of the liquid crystal panel of the liquid crystal display module. The disadvantage is that the center point cannot be measured. Position, and will sacrifice the visible area; the second method is to embed the back cover of the liquid crystal display module into the light sensor, although the shortcoming of the first method can be overcome, but the structure of the liquid crystal display module is destroyed. Moreover, it is difficult to fix. In addition, if the position of the punched hole is not properly sealed, the problem of light leakage is likely to occur, resulting in misalignment of the photo sensor.
因此,如何創作出一種光感測器,在不破壞液晶顯示模組結構的情況下,能簡單地進行設置,不犧牲可視區,且不會有漏光問題產生,將是本創作所欲積極揭露之處。Therefore, how to create a light sensor can be easily set without destroying the structure of the liquid crystal display module, without sacrificing the visible area, and there will be no light leakage problem, which will be actively disclosed by the creative office. Where.
本創作之目的在於提供一種液晶顯示模組之背光自動偵測結構,能在不破壞液晶顯示模組結構的情況下,簡單地進行設置,從而不犧牲可視區,且不會有漏光問題產生。The purpose of the present invention is to provide a backlight automatic detection structure of a liquid crystal display module, which can be easily set without destroying the structure of the liquid crystal display module, so that the visible area is not sacrificed, and no light leakage problem occurs.
為達上述目的及其他目的,本創作提供一種液晶顯示模組之背光自動偵測結構,設置於一液晶顯示模組的一背光模組,該背光自動偵測結構包含:至少一光感測器,設置於該背光模組的一發光源,以感測該發光源與該液晶顯示模組的一液晶面板之間的亮度。In order to achieve the above and other objects, the present invention provides a backlight automatic detection structure of a liquid crystal display module, which is disposed in a backlight module of a liquid crystal display module, and the backlight automatic detection structure comprises: at least one light sensor And an illumination source disposed on the backlight module to sense brightness between the illumination source and a liquid crystal panel of the liquid crystal display module.
於本創作之背光自動偵測結構中,其中,該背光模組為直下式,該發光源為具有LED光源的板狀體。In the backlight automatic detection structure of the present invention, the backlight module is of a direct type, and the illumination source is a plate-shaped body having an LED light source.
於本創作之背光自動偵測結構中,其中,該背光模組為側光式,該發光源為具有LED光源的條狀體。In the backlight automatic detection structure of the present invention, the backlight module is an edge light type, and the light source is a strip body having an LED light source.
於本創作之背光自動偵測結構中,其中,該光感測器為複數個,並分散設置於該發光源。In the backlight automatic detection structure of the present invention, the photo sensor is plural and distributed to the illumination source.
於本創作之背光自動偵測結構中,其中,當該光感測器為五個時,該等光感測器分別設置於該發光源的四個角落及正中央。In the backlight automatic detection structure of the present invention, when the photo sensors are five, the photo sensors are respectively disposed at four corners and a center of the light source.
綜上所述,本創作液晶顯示模組之背光自動偵測結構藉由上述的結構,能在不破壞液晶顯示模組結構的情況下,簡單地進行設置,從而不犧牲可視區,且不會有漏光問題產生。In summary, the backlight automatic detection structure of the liquid crystal display module of the present invention can be easily set without destroying the structure of the liquid crystal display module by the above structure, so that the visible area is not sacrificed, and There is a light leakage problem.
為充分瞭解本創作之目的、特徵及功效,茲藉由下述具體之實施例,並配合所附之圖式,對本創作做一詳細說明,說明如後:In order to fully understand the purpose, features and effects of this creation, the following specific examples, together with the attached drawings, provide a detailed description of the creation, as explained below:
請參照圖1與圖2,其係為本創作液晶顯示模組之背光自動偵測結構設置於一液晶顯示模組1000的示意圖及剖面圖。該液晶顯示模組1000由一背光模組1100、一液晶面板1200及一殼體1300所組成,且該背光自動偵測結構設置於該背光模組1100,更具體而言,該背光自動偵測結構包含至少一光感測器10,設置於該背光模組1100的一發光源1110,以感測該發光源1110與該液晶顯示模組1000的一液晶面板1200之間的亮度。並且,如圖所示,該背光模組1100為直下式,且該發光源1110為具有LED光源的板狀體。Please refer to FIG. 1 and FIG. 2 , which are schematic diagrams and cross-sectional views of the liquid crystal display module 1000 disposed on the liquid crystal display module 1000 . The liquid crystal display module 1000 is composed of a backlight module 1100, a liquid crystal panel 1200 and a casing 1300, and the backlight automatic detection structure is disposed on the backlight module 1100. More specifically, the backlight is automatically detected. The structure includes at least one light sensor 10 disposed on a light source 1110 of the backlight module 1100 to sense brightness between the light source 1110 and a liquid crystal panel 1200 of the liquid crystal display module 1000. Moreover, as shown in the figure, the backlight module 1100 is of a direct type, and the light source 1110 is a plate-shaped body having an LED light source.
由圖1及圖2可知,由於該光感測器10直接設置於該發光源1110,且位於該液晶面板1200後方,故不會犧牲可視區,且不會破壞該液晶顯示模組1000的結構,從而不會有漏光問題產生。此外,由於該液晶面板1200與該殼體1300形成一封閉的空間,故在沒有漏光的情況下,該光感測器10的感測效果較佳;再者,該光感測器10係事先設置於該發光源1110後,再配合該背光模組1100、該液晶面板1200及該殼體1300來組裝成液晶顯示模組1000,故能有效縮短組裝流程。As shown in FIG. 1 and FIG. 2 , since the photo sensor 10 is directly disposed on the light source 1110 and located behind the liquid crystal panel 1200 , the visible area is not sacrificed, and the structure of the liquid crystal display module 1000 is not damaged. So that there will be no light leakage problems. In addition, since the liquid crystal panel 1200 and the housing 1300 form a closed space, the sensing effect of the photo sensor 10 is better without light leakage; further, the photo sensor 10 is prior to After being disposed in the light source 1110, the backlight module 1100, the liquid crystal panel 1200, and the casing 1300 are assembled to form the liquid crystal display module 1000. Therefore, the assembly process can be effectively shortened.
雖然圖未示,該光感測器10感測亮度後,透過一電線傳輸資訊,以調整該發光源1110的發光強度,從而維持該發光源1110與該液晶面板1200之間的亮度。Although not shown, after the light sensor 10 senses the brightness, the information is transmitted through a wire to adjust the light-emitting intensity of the light source 1110, thereby maintaining the brightness between the light source 1110 and the liquid crystal panel 1200.
綜上所述,本創作液晶顯示模組之背光自動偵測結構藉由上述的結構,能在不破壞液晶顯示模組結構的情況下,簡單地進行設置,從而不犧牲可視區,且不會有漏光問題產生。In summary, the backlight automatic detection structure of the liquid crystal display module of the present invention can be easily set without destroying the structure of the liquid crystal display module by the above structure, so that the visible area is not sacrificed, and There is a light leakage problem.
雖然於圖1及圖2中,該光感測器10只有一個,但當該光感測器10為複數個,並分散設置於該發光源1110時,能更準確地感測該發光源1110與該液晶顯示模組1000的一液晶面板1200之間的亮度。Although there is only one photo sensor 10 in FIG. 1 and FIG. 2, when the photo sensor 10 is plural and dispersed in the light source 1110, the light source 1110 can be more accurately sensed. The brightness between the liquid crystal panel 1200 and the liquid crystal panel 1200 of the liquid crystal display module 1000.
接著,請參照圖3及圖4,其係為本創作液晶顯示模組之背光自動偵測結構設置於一液晶顯示模組1000的示意圖及剖面圖,於圖中,該背光模組1100為側光式,故該發光源1110為具有LED光源的條狀體;此外,該背光模組1100更具有一導光板1120,該發光源1110所發射出的光源藉由該導光板1120而均勻地導引至該液晶面板1200。Then, please refer to FIG. 3 and FIG. 4 , which are schematic diagrams and cross-sectional views of the liquid crystal display module 1000 disposed on the liquid crystal display module 1000. The backlight module 1100 is a side view. The light source 1110 is a strip-shaped body having an LED light source. In addition, the backlight module 1100 further has a light guide plate 1120. The light source emitted by the light source 1110 is uniformly guided by the light guide plate 1120. The liquid crystal panel 1200 is introduced.
最後如圖5所示,當該背光模組1100為直下式時,為了更準確地感測該發光源1110與該液晶面板1200之間的亮度,該光感測器10較佳為五個,並分別設置於該發光源1110的四個角落及正中央。Finally, as shown in FIG. 5, when the backlight module 1100 is in a direct type, in order to more accurately sense the brightness between the light source 1110 and the liquid crystal panel 1200, the photo sensor 10 is preferably five. They are respectively disposed at four corners and a center of the light source 1110.
此外,雖然圖未示,該光感測器10係於製作該發光源1110的同時直接設置於該發光源1110,故不需額外進行黏貼處理。In addition, although not shown, the photo sensor 10 is directly disposed on the light source 1110 while the light source 1110 is being fabricated, so that no additional bonding process is required.
綜上所述,本創作液晶顯示模組之背光自動偵測結構藉由上述的結構,能在不破壞液晶顯示模組結構的情況下,簡單地進行設置,從而不犧牲可視區,且不會有漏光問題產生。In summary, the backlight automatic detection structure of the liquid crystal display module of the present invention can be easily set without destroying the structure of the liquid crystal display module by the above structure, so that the visible area is not sacrificed, and There is a light leakage problem.
本創作在上文中已以較佳實施例揭露,然熟習本項技術者應理解的是,該實施例僅用於描繪本創作,而不應解讀為限制本創作之範圍。應注意的是,舉凡與該實施例等效之變化與置換,均應設為涵蓋於本創作之範疇內。因此,本創作之保護範圍當以申請專利範圍所界定者為準。The present invention has been disclosed in the above preferred embodiments, and it should be understood by those skilled in the art that the present invention is only intended to depict the present invention and should not be construed as limiting the scope of the present invention. It should be noted that variations and permutations equivalent to those of the embodiments are intended to be included within the scope of the present invention. Therefore, the scope of protection of this creation is subject to the definition of the scope of patent application.
10‧‧‧光感測器
1000‧‧‧液晶顯示模組
1100‧‧‧背光模組
1110‧‧‧發光源
1120‧‧‧導光板
1200‧‧‧液晶面板
1300‧‧‧殼體10‧‧‧Light sensor
1000‧‧‧LCD module
1100‧‧‧Backlight module
1110‧‧‧Light source
1120‧‧‧Light guide plate
1200‧‧‧ LCD panel
1300‧‧‧ housing
[圖1]係為本創作背光自動偵測結構設置於液晶顯示模組的直下式背光模組之示意圖。 [圖2]係為本創作背光自動偵測結構設置於液晶顯示模組的直下式背光模組之剖面圖。 [圖3]係為本創作背光自動偵測結構設置於液晶顯示模組的側光式背光模組之示意圖。 [圖4]係為本創作背光自動偵測結構設置於液晶顯示模組的側光式背光模組之剖面圖。 [圖5]係為本創作背光自動偵測結構設置於液晶顯示模組的直下式背光模組之另一示意圖。[Fig. 1] is a schematic diagram of a direct backlight module in which a backlight automatic detection structure is disposed in a liquid crystal display module. [Fig. 2] is a cross-sectional view of a direct type backlight module in which a backlight automatic detection structure is disposed in a liquid crystal display module. [Fig. 3] is a schematic view of an edge-lit backlight module in which a backlight automatic detection structure is disposed in a liquid crystal display module. [Fig. 4] is a cross-sectional view of the edge-light type backlight module in which the artificial backlight automatic detection structure is disposed in the liquid crystal display module. FIG. 5 is another schematic diagram of the direct backlight module of the liquid crystal display module provided with the automatic backlight detection structure.
10‧‧‧光感測器 10‧‧‧Light sensor
1000‧‧‧液晶顯示模組 1000‧‧‧LCD module
1100‧‧‧背光模組 1100‧‧‧Backlight module
1110‧‧‧發光源 1110‧‧‧Light source
1200‧‧‧液晶面板 1200‧‧‧ LCD panel
1300‧‧‧殼體 1300‧‧‧ housing
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112327525A (en) * | 2020-11-17 | 2021-02-05 | 深圳同兴达科技股份有限公司 | System and method for detecting liquid crystal display module |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112327525A (en) * | 2020-11-17 | 2021-02-05 | 深圳同兴达科技股份有限公司 | System and method for detecting liquid crystal display module |
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