TWI403759B - Light-emitting diode stereo display device - Google Patents
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Description
本發明涉及一種資訊顯示裝置,尤其係一種發光二極體立體顯示裝置。 The invention relates to an information display device, in particular to a light-emitting diode stereoscopic display device.
先前之立體顯示裝置所採用之立體顯示技術一般為眼鏡式立體技術及裸眼式立體顯示技術。眼鏡式立體技術之原理係於眼鏡之鏡片上使用快門式相互交替技術,或者使用不同偏極方向之光學鏡片,使得左右眼於同一時間所獲取之影像不同,從而產生立體之感覺。而裸眼式立體顯示技術之原理係利用顯示屏中之光閘(light valve)之打開及關閉,而使得左右眼於同一時間所獲取之影像不同,從而產生立體之感覺。在此,一種新型之立體顯示裝置可參閱Chiodo,J.D.等人於2000年Electronics and the Environment,2000.ISEE 2000.Proceedings of the 2000 IEEE International Symposium on上發表之論文Isolating LCD’S at end-of-life using active disassembly technology:a feasibility study。 The stereoscopic display technology used in the prior three-dimensional display device is generally a glasses-type stereoscopic technology and a naked-eye stereoscopic display technology. The principle of the glasses-type stereo technology is based on the use of shutter-type alternating technology on the lenses of the glasses, or the use of optical lenses with different polarization directions, so that the images obtained by the left and right eyes at the same time are different, thereby generating a three-dimensional feeling. The principle of the naked-eye stereoscopic display technology utilizes the opening and closing of the light valve in the display screen, so that the images acquired by the left and right eyes at the same time are different, thereby generating a three-dimensional feeling. Here, a novel stereoscopic display device can be found in Chiodo, JD et al. 2000 Electronics and the Environment, 2000. ISEE 2000. Proceedings of the 2000 IEEE International Symposium on Papers Isolating LCD 'S at end-of-life using Active disassembly technology: a feasibility study.
先前之這兩種立體顯示技術分別需增加眼鏡、偏極片或者光閘等元件,製作工藝難且成本高。同時,由於眼鏡式立體技術所產生之立體效果不佳,一般選用裸眼式立體技術,但裸眼式立體顯示技術一般需使用液晶顯示屏,而液晶材料於控制時要達到穩態則需要一定時間,所 以其開關頻率有其上限,無法實現較高頻率之開關操作。 In the past, these two stereo display technologies need to add components such as glasses, polarizers or shutters, and the manufacturing process is difficult and costly. At the same time, due to the poor stereoscopic effect produced by the glasses-type stereo technology, the naked-eye stereoscopic technology is generally used, but the naked-eye stereoscopic display technology generally needs to use a liquid crystal display, and the liquid crystal material needs a certain time to reach a steady state during control. Place Since its switching frequency has an upper limit, it is impossible to achieve a higher frequency switching operation.
有鑒於此,提供一種能夠進行較高頻率開關操作之立體顯示裝置實為必要。 In view of the above, it is necessary to provide a stereoscopic display device capable of performing higher frequency switching operations.
下面將以實施例說明一種能夠進行較高頻率開關操作之發光二極體立體顯示裝置。 Hereinafter, a light-emitting diode stereoscopic display device capable of performing a higher frequency switching operation will be described by way of embodiments.
一種發光二極體立體顯示裝置,用以顯示立體圖像,其包括:一個基板,複數個畫素以及一個柱狀透鏡陣列。該複數個畫素設置於該基板上,每一畫素包含複數個不同色光發光二極體;該複數個畫素組成沿一第一方向交替排列之複數個奇數列畫素區及複數個偶數列畫素區;該柱狀透鏡陣列與該基板相對設置且與該複數個畫素相鄰,其包括複數個沿該第一方向排列之柱狀透鏡,每一柱狀透鏡包括一個遠離該複數個畫素之凸柱面,且每一個該柱狀透鏡對應一個奇數列畫素區及與該奇數列畫素區相鄰之一個偶數列畫素區。 A light emitting diode stereoscopic display device for displaying a stereoscopic image, comprising: a substrate, a plurality of pixels and a cylindrical lens array. The plurality of pixels are disposed on the substrate, and each pixel comprises a plurality of different color light emitting diodes; the plurality of pixels form a plurality of odd column pixel regions and a plurality of even numbers alternately arranged along a first direction a columnar lens array; the lenticular lens array is disposed opposite to the substrate and adjacent to the plurality of pixels, and includes a plurality of lenticular lenses arranged along the first direction, each lenticular lens including a plurality of lenticular lenses The convex cylinders of the pixels, and each of the lenticular lenses corresponds to an odd column pixel region and an even column pixel region adjacent to the odd column pixel region.
與先前技術相比,該發光二極體立體顯示裝置中之奇數列畫素區與偶數列畫素區發出之光線經由柱狀透鏡陣列中之柱狀透鏡之凸柱面折射後從不同方向出射,觀察者左右眼所獲取之視覺影像不同,從而產生立體畫面之感覺。因此,本發明實施例提供之發光二極體立體顯示裝置無需增加眼鏡、偏極片或者光閘等元件,結構簡單,且發光二極體能夠快速反應,其從驅動到穩態所需時間很短,所以能夠很好之實現較高頻率之開關操作。 Compared with the prior art, the light emitted by the odd-numbered pixel region and the even-numbered pixel region in the LED display device is refracted through the convex cylindrical surface of the lenticular lens in the lenticular lens array and then emitted from different directions. The visual images acquired by the observer's left and right eyes are different, resulting in a stereoscopic picture. Therefore, the LED display device of the embodiment of the invention does not need to add components such as glasses, polarizers or shutters, has a simple structure, and the LED can react quickly, and the time from driving to steady state is very high. Short, so it is good to achieve higher frequency switching operation.
下面將結合附圖對本發明實施例作進一步之詳細說明。 The embodiments of the present invention will be further described in detail below with reference to the accompanying drawings.
請參閱圖1至圖5,本發明第一實施例提供之發光二極體立體顯示裝置10,其包括一個基板11、複數個畫素12以及一個柱狀透鏡陣列13。 Referring to FIG. 1 to FIG. 5 , a three-dimensional LED display device 10 according to a first embodiment of the present invention includes a substrate 11 , a plurality of pixels 12 , and a lenticular lens array 13 .
該複數個畫素12設置於該基板11上,該複數個畫素12組成沿A方向交替排佈之複數個奇數列畫素區12a及複數個偶數列畫素區12b。每一個奇數列畫素區12a及偶數列畫素區12b分別包括複數個排列成一個列之畫素12。每一個畫素12包含複數個不同色光發光二極體,例如一個紅色發光二極體121、一個藍色發光二極體123及一個綠色發光二極體122。該紅色、藍色及綠色發光二極體121、122及123呈一規則排佈方式,例如三角形排佈(如圖1所示),或行列式排佈(如圖3所示)。當然,每一個畫素12中之發光二極體之數量則可視實際需要而定。 The plurality of pixels 12 are disposed on the substrate 11, and the plurality of pixels 12 constitute a plurality of odd-numbered pixel regions 12a and a plurality of even-numbered pixel regions 12b alternately arranged in the A direction. Each of the odd-numbered column pixels 12a and the even-numbered column pixels 12b includes a plurality of pixels 12 arranged in a column. Each pixel 12 includes a plurality of different color light emitting diodes, such as a red light emitting diode 121, a blue light emitting diode 123, and a green light emitting diode 122. The red, blue, and green LEDs 121, 122, and 123 are arranged in a regular arrangement, such as a triangular arrangement (as shown in FIG. 1) or a determinant arrangement (as shown in FIG. 3). Of course, the number of light-emitting diodes in each pixel 12 can be determined according to actual needs.
需指明的是,每一個畫素12也可包含複數個紅色發光二極體121、複數個藍色發光二極體123及複數個綠色發光二極體122。也就是說,每一個畫素12中之同色光發光二極體並不限於一個,而可為複數個。對於該種設置之畫素,其所包含之複數個發光二極體也為一規則排佈方式,例如,金字塔形排佈(如圖4所示),或者其他合適之排佈方式例如行列式排佈。 It should be noted that each pixel 12 may also include a plurality of red light-emitting diodes 121, a plurality of blue light-emitting diodes 123, and a plurality of green light-emitting diodes 122. That is to say, the same color light emitting diode in each pixel 12 is not limited to one, but may be plural. For such a set of pixels, the plurality of light-emitting diodes included therein are also arranged in a regular manner, for example, a pyramidal arrangement (as shown in FIG. 4), or other suitable arrangement such as a determinant. Arrange.
該柱狀透鏡陣列13與該基板11相對設置且與該複數個畫素12相鄰。該柱狀透鏡陣列13包括複數個相互平行設置且沿A方向排列之柱狀透鏡131,該複數個柱狀透鏡131分 別沿不同於A方向之另一方向延伸。本實施例中,該複數個柱狀透鏡131分別為平凸柱狀透鏡,每一柱狀透鏡131分別包括一個鄰近複數個畫素12之平面及一個遠離該複數個畫素12之凸柱面131a,且每個柱狀透鏡131對應一個奇數列畫素區12a及一個與該奇數列畫素區12a相鄰之偶數列畫素區12b。 The lenticular lens array 13 is disposed opposite to the substrate 11 and adjacent to the plurality of pixels 12. The lenticular lens array 13 includes a plurality of lenticular lenses 131 arranged in parallel with each other and arranged in the A direction, and the plurality of lenticular lenses 131 Do not extend in the other direction than the A direction. In this embodiment, the plurality of lenticular lenses 131 are respectively plano-convex cylindrical lenses, and each of the lenticular lenses 131 respectively includes a plane adjacent to the plurality of pixels 12 and a convex cylinder surface away from the plurality of pixels 12 131a, and each of the lenticular lenses 131 corresponds to an odd-numbered column pixel region 12a and an even-numbered column pixel region 12b adjacent to the odd-numbered column pixel region 12a.
進一步的,發光二極體立體顯示裝置10還包括一個控制電路(圖中未顯示),該控制電路用以控制奇數列畫素區12a及偶數列畫素區12b所包括之複數個畫素12之點亮及熄滅狀態,從而實現圖像顯示。該控制電路可設置於該基板11上。 Further, the LED display device 10 further includes a control circuit (not shown) for controlling the plurality of pixels 12 included in the odd column pixel region 12a and the even column pixel region 12b. The light is turned on and off, thereby realizing image display. The control circuit can be disposed on the substrate 11.
請參閱圖5,當經由該控制電路之控制驅動一個柱狀透鏡131所對應之奇數列畫素區12a及偶數列畫素區12b所包含之複數個畫素中與所欲顯示圖像對應之畫素同時點亮,且觀察者位於該柱狀透鏡131之前方時,該奇數列畫素區12a及偶數列畫素區12b所發出之光線於該柱狀透鏡131之凸柱面131a發生折射後分別沿不同之方向射出。由於觀察者之左右眼之間存在一定之間距,因此左眼可接收到該偶數列畫素區12b所投射出來之影像畫面;同時,右眼可接收到該奇數列畫素區12a所投射出來之影像畫面。在同一時間,觀察者之大腦將該左右眼所獲得之不同影像畫面整合,即可產生立體畫面之感覺。 Referring to FIG. 5, when a plurality of pixels included in the odd-numbered column pixel region 12a and the even-numbered column pixel region 12b corresponding to one lenticular lens 131 are driven by the control of the control circuit, corresponding to the image to be displayed. When the pixels are illuminated at the same time, and the observer is located in front of the lenticular lens 131, the light emitted by the odd-numbered pixel region 12a and the even-numbered column pixel region 12b is refracted by the convex cylindrical surface 131a of the lenticular lens 131. Then they are shot in different directions. Since there is a certain distance between the left and right eyes of the observer, the left eye can receive the image frame projected by the even-numbered column pixel region 12b; meanwhile, the right eye can receive the projected image of the odd-numbered pixel region 12a. Image screen. At the same time, the observer's brain integrates the different image images obtained by the left and right eyes to produce a stereoscopic picture.
參見圖6及圖7,本發明第二實施例提供之發光二極體立體顯示裝置與第一實施例之結構基本相同,區別在於,本發明第二實施例係採用時序控制使該觀察者之視覺影 像產生差異,進一步加強了立體視覺效果。 Referring to FIG. 6 and FIG. 7 , the LED display device according to the second embodiment of the present invention has substantially the same structure as that of the first embodiment, except that the second embodiment of the present invention uses timing control to make the observer Visual shadow Like the difference, the stereoscopic effect is further enhanced.
具體的,該奇數列畫素區12a所包含之複數個畫素與該偶數列畫素區12b所包含之複數個畫素係經由控制電路之控制而交替點亮。也即,當該奇數列畫素區12a所包含之複數個畫素中與所欲顯示圖像對應之畫素點亮,則該偶數列畫素區12b所包含之複數個畫素處於熄滅狀態;反之,當該奇數列畫素區12a所包含之複數個畫素處於熄滅狀態,則該偶數列畫素區12b所包含之複數個畫素中與所欲顯示圖像對應之畫素點亮。 Specifically, the plurality of pixels included in the odd-numbered column pixel region 12a and the plurality of pixels included in the even-numbered column pixel region 12b are alternately lit by the control of the control circuit. That is, when the pixels corresponding to the image to be displayed are illuminated in the plurality of pixels included in the odd-numbered pixel region 12a, the plurality of pixels included in the even-numbered pixel region 12b are in an extinguished state. On the other hand, when the plurality of pixels included in the odd-numbered pixel region 12a are in an extinguished state, the pixels corresponding to the image to be displayed among the plurality of pixels included in the even-numbered pixel region 12b are lit. .
如圖6所示,當該奇數列畫素區12a與該偶數列畫素區12b所包含之複數個畫素交替點亮且不存於延遲時間,即於任何一個時間,僅有該奇數列畫素區12a或者該偶數列畫素區12b所包含之複數個畫素中與所欲顯示圖像對應之畫素處於點亮狀態。因此,該觀察者只有左眼(或者右眼)能夠接受到該偶數列畫素區12b(或者該奇數列畫素區12a)所投射出來之影像畫面,而另一隻眼睛則不會獲取到影像畫面。然而,由於該奇數列畫素區12a所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間t1與該偶數列畫素區12b所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間t2均小於視覺之暫留時間,由於視覺暫留現象,於同一時間內觀察者之左右眼仍能夠感受到不同之影像畫面,進而可產生立體之視覺效果。 As shown in FIG. 6, when the odd-numbered pixel regions 12a and the plurality of pixels included in the even-numbered column pixels 12b are alternately lit and do not exist in the delay time, that is, at any one time, only the odd-numbered columns The pixels corresponding to the image to be displayed among the plurality of pixels included in the pixel area 12a or the even-numbered pixel area 12b are in a lit state. Therefore, the observer only has the left eye (or the right eye) capable of receiving the image projected by the even-numbered column pixel region 12b (or the odd-numbered pixel region 12a), and the other eye is not acquired. Image screen. However, since the pixel of the plurality of pixels included in the odd-numbered pixel region 12a has a lighting duration t1 corresponding to the pixel to be displayed and a plurality of pixels included in the even-numbered pixel region 12b The illumination duration t2 of the pixel corresponding to the image to be displayed is smaller than the persistence time of the vision. Due to the persistence of the vision, the left and right eyes of the observer can still feel different image images at the same time, and then Produces a three-dimensional visual effect.
如圖7所示,當交替點亮存於一個延遲時間Δt,即於某個時刻,該奇數列畫素區12a與該偶數列畫素區12b會均 處於熄滅狀態;因此該偶數列畫素區12b與該奇數列畫素區12a所投射出來之影像畫面為不連續的。但於該奇數列畫素區12a所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間t1與該偶數列畫素區12b所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間t2均小於視覺之暫留時間,且該延遲時間Δt小於視覺之暫留時間之情形下,由於視覺暫留現象,觀察者左右眼所接收到之影像畫面仍然是連續的。同理,觀察者之大腦將該左右眼所獲得之不同影像畫面整合,即可產生立體畫面之感覺。 As shown in FIG. 7, when the alternate lighting is performed for a delay time Δt, that is, at some time, the odd-numbered pixel region 12a and the even-numbered pixel region 12b are both averaged. It is in an extinguished state; therefore, the image frame projected by the even-numbered column pixel area 12b and the odd-numbered column pixel area 12a is discontinuous. However, in the plurality of pixels included in the odd-numbered pixel region 12a, the lighting duration t1 of the pixel corresponding to the image to be displayed and the plurality of pixels included in the even-numbered pixel region 12b are The lighting duration t2 of the pixel corresponding to the image to be displayed is smaller than the persistence time of the visual, and the delay time Δt is smaller than the persistence time of the vision, and the observer receives the left and right eyes due to the persistence of vision. The image to the image is still continuous. In the same way, the observer's brain integrates the different image images obtained by the left and right eyes to produce a stereoscopic picture.
參見圖8,本發明第三實施例提供之發光二極體立體顯示裝置與第一實施例之結構基本相同,不同之處在於:每一個柱狀透鏡131對應六個畫素列A、B、C、D、E及F,其中畫素列A、B及C構成一個奇數列畫素區12a,畫素列D、E及F為一個偶數列畫素區12b。 Referring to FIG. 8, a three-dimensional display device for a light-emitting diode according to a third embodiment of the present invention has substantially the same structure as that of the first embodiment, except that each of the lenticular lenses 131 corresponds to six pixel columns A and B. C, D, E and F, wherein the pixel columns A, B and C constitute an odd column pixel region 12a, and the pixel columns D, E and F are an even column pixel region 12b.
(1)當該奇數列畫素區12a與該偶數列畫素區12b分別所包含之複數個畫素中與所欲顯示圖像對應之畫素同時點亮,位於圖9之該柱狀透鏡131前方之觀察者之左眼所接收到之是該偶數列畫素區12b投射出來之影像畫面,其右眼所接收到之是該奇數列畫素區12a投射出來之影像畫面。於同一時間,觀察者之大腦將該左右眼所獲得之不同影像畫面整合,即可產生立體畫面之感覺。 (1) when the pixel corresponding to the image to be displayed is simultaneously illuminated in the plurality of pixels included in the odd-numbered pixel region 12a and the even-numbered pixel region 12b, the lenticular lens in FIG. The left eye of the observer in front of 131 receives the image image projected by the even-numbered pixel region 12b, and the right eye receives the image image projected by the odd-numbered pixel region 12a. At the same time, the observer's brain integrates the different image images obtained by the left and right eyes to produce a stereoscopic picture.
(2)當該奇數列畫素區12a與該偶數列畫素區12b分別所包含之複數個畫素交替點亮且不存於延遲時間,即於任何一個時間,該奇數列畫素區12a中至少有一畫素列所包 含之複數個畫素中與所欲顯示圖像對應之畫素點亮,或者該偶數列畫素區12b中至少有一畫素列所包含之複數個畫素中與所欲顯示圖像對應之畫素點亮。即於任何一個時間,該觀察者只有左眼(或者右眼)能夠接受到該偶數列畫素區12b(或者該奇數列畫素區12a)中被點亮之畫素列投射出來之影像畫面,而另一隻眼睛則不會獲取到影像畫面。然而,由於該奇數列畫素區12a所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間與該偶數列畫素區12b所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間均小於視覺之暫留時間,由於視覺暫留現象,因此,於同一時間觀察者之左右眼仍能夠感受到不同之影像畫面,進而可產生立體之視覺效果。 (2) When the odd-numbered pixel regions 12a and the even-numbered pixel regions 12b respectively alternately illuminate the plurality of pixels and do not exist in the delay time, that is, at any one time, the odd-numbered pixel regions 12a At least one of the elements included in the package The pixels corresponding to the image to be displayed are illuminated in the plurality of pixels, or the plurality of pixels included in the even pixel region 12b correspond to the image to be displayed. The pixels are lit. That is, at any one time, the observer only has the left eye (or the right eye) capable of receiving the image frame projected by the illuminated pixel column in the even-numbered column pixel region 12b (or the odd-numbered pixel region 12a). The other eye will not get the image. However, since the pixel of the plurality of pixels included in the odd-numbered pixel region 12a has a lighting duration corresponding to the pixel to be displayed and a plurality of pixels included in the even-numbered pixel region 12b The duration of the illumination of the pixel corresponding to the desired image is smaller than the duration of the visual persistence. Because of the persistence of vision, the left and right eyes of the observer can still feel different image images at the same time, and thus can generate Three-dimensional visual effects.
(3)當該奇數列畫素區12a與該偶數列畫素區12b分別所包含之複數個畫素交替點亮存於一個延遲時間Δt,即於某個時間,該奇數列畫素區12a與該偶數列畫素區12b所包含之複數個畫素會處於熄滅狀態,因此該偶數列畫素區12b中被點亮之畫素列或者該奇數列畫素區12a中被點亮之畫素列所投射出來之影像畫面為不連續的。但於該奇數列畫素區12a所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間與該偶數列畫素區12b所包含之複數個畫素中與所欲顯示圖像對應之畫素之點亮持續時間均小於視覺之暫留時間,且該延遲時間Δt小於視覺之暫留時間之情形下,由於視覺暫留現象,因此,觀察者左右眼所接收到之影像畫面仍為連續的。同理,觀察 者之大腦將該左右眼所獲得之不同影像畫面整合,即可產生立體畫面之感覺。 (3) when the odd-numbered pixel region 12a and the even-numbered column pixel region 12b respectively alternately illuminate a plurality of pixels, the delay time Δt is stored, that is, at a certain time, the odd-numbered pixel region 12a The plurality of pixels included in the even-numbered column pixel region 12b are in an extinguished state, so that the illuminated pixel column in the even-numbered column pixel region 12b or the illuminated picture in the odd-numbered pixel region 12a The image images projected by the prime column are discontinuous. But in the plurality of pixels included in the odd-numbered pixel region 12a, the lighting duration of the pixel corresponding to the image to be displayed and the plurality of pixels included in the even-numbered pixel region 12b are If the illumination duration of the pixel corresponding to the image to be displayed is less than the persistence time of the visual, and the delay time Δt is less than the persistence time of the vision, due to the persistence of the vision, the observer receives the left and right eyes. The image to the image is still continuous. Similarly, observe The brain of the person integrates the different image images obtained by the left and right eyes to create a stereoscopic picture.
可理解的是,於本發明第一、第二及第三實施例中,一個柱狀透鏡131之奇數列畫素區及偶數列畫素區分別所對應之畫素列並不限於一個或三個,其也可為兩個或者三個以上。需要說明的是,本發明實施例所涉及之列畫素區也可稱之為行畫素區,因為“列”與“行”之稱謂是相對的。 It can be understood that, in the first, second and third embodiments of the present invention, the pixel columns corresponding to the odd column pixel region and the even column pixel region of one lenticular lens 131 are not limited to one or three. They can also be two or more. It should be noted that the column pixel region involved in the embodiment of the present invention may also be referred to as a row pixel region, because the names of "column" and "row" are relative.
綜上所述,本發明確已符合發明專利之要件,遂依法提出專利申請。但以上所述者僅為本發明之較佳實施方式,自不能以此限制本案之申請專利範圍。舉凡熟悉本案技藝之人士援依本發明之精神所作之等效修飾或變化,皆應涵蓋於以下申請專利範圍內。 In summary, the present invention has indeed met the requirements of the invention patent, and has filed a patent application according to law. However, the above description is only a preferred embodiment of the present invention, and it is not possible to limit the scope of the patent application of the present invention. Equivalent modifications or variations made by persons skilled in the art in light of the spirit of the invention are intended to be included within the scope of the following claims.
10‧‧‧發光二極體立體顯示裝置 10‧‧‧Lighting diode stereo display device
11‧‧‧基板 11‧‧‧Substrate
12‧‧‧畫素 12‧‧‧ pixels
13‧‧‧柱狀透鏡陣列 13‧‧‧ lenticular lens array
12a‧‧‧奇數列畫素區 12a‧‧‧ odd-numbered pixels
12b‧‧‧偶數列畫素區 12b‧‧‧ even-numbered pixels
121‧‧‧紅色發光二極體 121‧‧‧Red LEDs
123‧‧‧藍色發光二極體 123‧‧‧Blue LED
122‧‧‧綠色發光二極體 122‧‧‧Green LED
131‧‧‧柱狀透鏡 131‧‧‧ lenticular lens
131a‧‧‧凸柱面 131a‧‧‧ convex cylinder
圖1係本發明第一實施例提供之發光二極體立體顯示裝置之結構示意圖;圖2係圖1中沿II-II線之剖面示意圖;圖3係圖1中每個畫素所包含之複數個不同色光發光二極體呈行列式排佈之示意圖;圖4係圖1中每個畫素所包含之複數個不同色光發光二極體呈金字塔形排佈之示意圖;圖5係圖1中之柱狀透鏡之成像原理示意圖;圖6係本發明第二實施例提供之發光二極體立體顯示裝置 之奇數列畫素區與偶數列素區交替點亮且不存於延遲時間之訊號時序圖;圖7係本發明第二實施例提供之發光二極體立體顯示裝置之奇數列畫素區與偶數列素區交替點亮且存於延遲時間之訊號時序圖;圖8係本發明第三實施例提供之發光二極體立體顯示裝置之柱狀透鏡成像原理示意圖。 1 is a schematic structural view of a light-emitting diode stereoscopic display device according to a first embodiment of the present invention; FIG. 2 is a schematic cross-sectional view taken along line II-II of FIG. 1; FIG. 3 is a diagram of each pixel included in FIG. A schematic diagram of a plurality of different color light-emitting diodes arranged in a matrix; FIG. 4 is a schematic diagram of a plurality of different color light-emitting diodes arranged in a pyramid shape in each pixel of FIG. 1; FIG. FIG. 6 is a schematic diagram of an imaging principle of a cylindrical lens according to a second embodiment of the present invention; FIG. The signal sequence diagram of the odd-numbered pixel region and the even-numbered region is alternately lit and does not exist in the delay time; FIG. 7 is an odd-numbered pixel region of the LED display device according to the second embodiment of the present invention. FIG. 8 is a schematic diagram showing the imaging principle of the lenticular lens of the illuminating diode stereoscopic display device according to the third embodiment of the present invention.
10‧‧‧發光二極體立體顯示裝置 10‧‧‧Lighting diode stereo display device
11‧‧‧基板 11‧‧‧Substrate
12‧‧‧畫素 12‧‧‧ pixels
13‧‧‧柱狀透鏡陣列 13‧‧‧ lenticular lens array
12a‧‧‧奇數列畫素區 12a‧‧‧ odd-numbered pixels
12b‧‧‧偶數列畫素區 12b‧‧‧ even-numbered pixels
121‧‧‧紅色發光二極體 121‧‧‧Red LEDs
123‧‧‧藍色發光二極體 123‧‧‧Blue LED
122‧‧‧綠色發光二極體 122‧‧‧Green LED
131‧‧‧柱狀透鏡 131‧‧‧ lenticular lens
Claims (8)
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CN110632766A (en) * | 2019-09-30 | 2019-12-31 | 深圳奇屏科技有限公司 | LED naked eye display |
TWI833749B (en) * | 2018-04-25 | 2024-03-01 | 美商谷歌有限責任公司 | Light field display for producing multiple views |
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CN115933237B (en) * | 2022-12-16 | 2024-07-09 | 业成科技(成都)有限公司 | Display device and method of operating the same |
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TW448312B (en) * | 2000-11-02 | 2001-08-01 | Ind Tech Res Inst | Microprism automatic stereoscopic display |
US7001021B2 (en) * | 1999-05-26 | 2006-02-21 | Daimlerchrysler Ag | Device for projecting a stereo color image |
TW200702769A (en) * | 2005-07-01 | 2007-01-16 | Wintek Corp | Image display device and stereoscopic image forming structure used for the same |
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US7001021B2 (en) * | 1999-05-26 | 2006-02-21 | Daimlerchrysler Ag | Device for projecting a stereo color image |
TW448312B (en) * | 2000-11-02 | 2001-08-01 | Ind Tech Res Inst | Microprism automatic stereoscopic display |
TW200702769A (en) * | 2005-07-01 | 2007-01-16 | Wintek Corp | Image display device and stereoscopic image forming structure used for the same |
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TWI833749B (en) * | 2018-04-25 | 2024-03-01 | 美商谷歌有限責任公司 | Light field display for producing multiple views |
CN110632766A (en) * | 2019-09-30 | 2019-12-31 | 深圳奇屏科技有限公司 | LED naked eye display |
CN110632766B (en) * | 2019-09-30 | 2022-03-04 | 深圳奇屏科技有限公司 | LED naked eye display |
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