WO2015089879A1 - 用于薄膜偏光式3d显示的液晶显示面板及液晶显示装置 - Google Patents

用于薄膜偏光式3d显示的液晶显示面板及液晶显示装置 Download PDF

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Publication number
WO2015089879A1
WO2015089879A1 PCT/CN2013/090829 CN2013090829W WO2015089879A1 WO 2015089879 A1 WO2015089879 A1 WO 2015089879A1 CN 2013090829 W CN2013090829 W CN 2013090829W WO 2015089879 A1 WO2015089879 A1 WO 2015089879A1
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WIPO (PCT)
Prior art keywords
signal
liquid crystal
picture
display pixel
crystal display
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Ceased
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PCT/CN2013/090829
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English (en)
French (fr)
Inventor
张华�
杨雪亮
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TCL China Star Optoelectronics Technology Co Ltd
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Shenzhen China Star Optoelectronics Technology Co Ltd
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Priority to US14/235,805 priority Critical patent/US20150170591A1/en
Publication of WO2015089879A1 publication Critical patent/WO2015089879A1/zh
Anticipated expiration legal-status Critical
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/001Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes using specific devices not provided for in groups G09G3/02 - G09G3/36, e.g. using an intermediate record carrier such as a film slide; Projection systems; Display of non-alphanumerical information, solely or in combination with alphanumerical information, e.g. digital display on projected diapositive as background
    • G09G3/003Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes using specific devices not provided for in groups G09G3/02 - G09G3/36, e.g. using an intermediate record carrier such as a film slide; Projection systems; Display of non-alphanumerical information, solely or in combination with alphanumerical information, e.g. digital display on projected diapositive as background to produce spatial visual effects
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B30/00Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images
    • G02B30/20Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes
    • G02B30/22Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes of the stereoscopic type
    • G02B30/25Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes of the stereoscopic type using polarisation techniques
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N13/00Stereoscopic video systems; Multi-view video systems; Details thereof
    • H04N13/30Image reproducers
    • H04N13/332Displays for viewing with the aid of special glasses or head-mounted displays [HMD]
    • H04N13/337Displays for viewing with the aid of special glasses or head-mounted displays [HMD] using polarisation multiplexing
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2310/00Command of the display device
    • G09G2310/02Addressing, scanning or driving the display screen or processing steps related thereto
    • G09G2310/0224Details of interlacing
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/02Improving the quality of display appearance
    • G09G2320/0209Crosstalk reduction, i.e. to reduce direct or indirect influences of signals directed to a certain pixel of the displayed image on other pixels of said image, inclusive of influences affecting pixels in different frames or fields or sub-images which constitute a same image, e.g. left and right images of a stereoscopic display
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • G09G3/34Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source
    • G09G3/36Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source using liquid crystals
    • G09G3/3611Control of matrices with row and column drivers
    • G09G3/3648Control of matrices with row and column drivers using an active matrix

Definitions

  • the present invention relates to the field of liquid crystal display, and more particularly to a liquid crystal display panel and a liquid crystal display device for thin film polarized 3D display.
  • 3D stereoscopic display technology With the continuous development of display technology, 3D stereoscopic display technology is becoming more and more mature. 3D stereoscopic video devices such as 3D TVs, 3D projections, and 3D cameras are emerging. Different from the 2D plane display, the 3D stereoscopic display technology is more realistic and has better visual effects, and has gradually become the mainstream development direction of future display devices.
  • FIG. 1 is a working principle diagram of a conventional FPR 3D display system.
  • FPR The 3D display system includes a liquid crystal display panel 11, polarized (Patterned Retarder film 12 and polarized glasses 13.
  • the liquid crystal display panel 11 includes a pixel 16 that forms a left-eye signal, a pixel 17 that forms a right-eye signal, and a black matrix 18 therebetween.
  • the 3D display system mainly separates the 3D picture into the left eye image 14 and the right eye image 15 by the polarizing film 12 attached to the liquid crystal display panel 11, and then sends the left eye image 14 and the right eye image 15 to the left eye image 15 through the polarizing glasses 13 respectively.
  • User's left and right glasses The user's left and right eyes receive two sets of images, and then the brain synthesizes stereoscopic images.
  • FIG. 2A is a schematic structural view of a conventional liquid crystal display panel
  • FIG. 2B is a timing relationship diagram of driving signals of the conventional liquid crystal display panel.
  • the corresponding thin film field effect transistor 22 is turned on by the corresponding scan signal 21, and then the liquid crystal in each row of pixels is charged by the corresponding data signal 23, so that the liquid crystal is deflected, and the backlight and the polarizing film are matched.
  • the scan signal 21 is triggered by the CKV signal 25 (row drive clock signal), each scan signal 21 in FIG.
  • FIG. 2A controls the turn-on and turn-off of a row of display pixels 24; the data signal 23 is triggered by the TP signal 26 (trigger pulse signal), in FIG. 2A
  • Each data signal 23 controls the signal picture of a column of display pixels 24.
  • the display pixels 24 of the odd rows display the left eye signal picture (the data signal 23 is the left eye picture signal 231), and the even line of the display pixels 24 display the right eye signal picture (the data signal 23 is the right eye picture signal 232), the left eye signal
  • the picture and the right-eye signal picture enter the human brain through the polarizing film 12 and the corresponding polarizing glasses 13, respectively, and then the stereoscopic image is synthesized through the brain.
  • the distances of display pixels of adjacent rows of the existing liquid crystal display panel 11 are relatively close. As shown in FIG. 1 , when the viewer is in a large viewing angle position, crosstalk between the left eye signal picture and the right eye signal picture may occur. The phenomenon that the picture should be sent to the right eye is observed by the left eye at the same time, which affects the display effect of the liquid crystal display panel.
  • An object of the present invention is to provide a liquid crystal display panel and a liquid crystal display device for thin film polarized 3D display, which can solve the left eye signal picture and the right eye of the liquid crystal display panel and the liquid crystal display device of the conventional thin film polarized 3D display.
  • the phenomenon of crosstalk between signal pictures is a serious technical problem.
  • a liquid crystal display panel for a film polarized 3D display which comprises:
  • a thin film field effect transistor configured to charge the liquid crystal in the display pixel by using the data signal according to the scan signal
  • the display pixel includes a first display pixel and a second display pixel, and the first display pixel and the second display pixel are arranged at a line spacing.
  • the second display pixel displays a black screen
  • the first display pixel displays a black screen.
  • liquid crystal display panel for thin film polarized 3D display In the liquid crystal display panel for thin film polarized 3D display according to the present invention,
  • the liquid crystal display panel displays a signal screen through the first display pixel
  • the data signal is stopped from being input to the second display pixel by the scan signal
  • the data signal is stopped from being input to the first display pixel by the scan signal.
  • liquid crystal display panel for thin film polarized 3D display In the liquid crystal display panel for thin film polarized 3D display according to the present invention,
  • liquid crystal display panel displays a signal picture through the first display pixel, sequentially inputting a left eye picture signal and a right eye picture signal to the first display pixel in the same picture frame;
  • the liquid crystal display panel displays a signal picture through the second display pixel
  • the left eye picture signal and the right eye picture signal are alternately input to the second display pixel in the same picture frame.
  • liquid crystal display panel for thin film polarized 3D display In the liquid crystal display panel for thin film polarized 3D display according to the present invention,
  • liquid crystal display panel displays a signal picture through the first display pixel, input a left eye picture signal to the first display pixel in an odd picture frame; and input the first display pixel in an even picture frame Right eye picture signal;
  • liquid crystal display panel displays a signal picture through the first display pixel, input a left eye picture signal to the first display pixel in an even picture frame; and input the first display pixel in an odd picture frame Right eye picture signal.
  • liquid crystal display panel for thin film polarized 3D display In the liquid crystal display panel for thin film polarized 3D display according to the present invention,
  • liquid crystal display panel displays a signal picture through the second display pixel, input a left eye picture signal to the second display pixel in an odd picture frame; and input to the second display pixel in an even picture frame Right eye picture signal;
  • liquid crystal display panel displays a signal picture through the second display pixel, input a left eye picture signal to the second display pixel in an even picture frame; and input the second display pixel in an odd picture frame Right eye picture signal.
  • liquid crystal display panel for thin film polarized 3D display In the liquid crystal display panel for thin film polarized 3D display according to the present invention,
  • the liquid crystal display panel displays a left eye signal picture through the first display pixel, and stops inputting the data signal to the second display pixel by using the scan signal;
  • the liquid crystal display panel displays a right eye signal screen through the second display pixel, and stops inputting the data signal to the first display pixel by the scan signal.
  • liquid crystal display panel for thin film polarized 3D display In the liquid crystal display panel for thin film polarized 3D display according to the present invention,
  • the liquid crystal display panel displays a signal screen through the first display pixel
  • the liquid crystal display panel displays a black screen through the second display pixel
  • the liquid crystal display panel displays a signal screen through the second display pixel
  • the liquid crystal display panel displays a black screen through the first display pixel
  • liquid crystal display panel for thin film polarized 3D display In the liquid crystal display panel for thin film polarized 3D display according to the present invention,
  • the liquid crystal display panel displays a left-eye signal picture through the first display pixel, and displays a black picture through the second display pixel; and the even-numbered picture frame passes the
  • the second display pixel displays a right eye signal picture through which a black picture is displayed.
  • liquid crystal display device comprising a liquid crystal display panel for a film polarized 3D liquid crystal display, the liquid crystal display panel comprising:
  • a thin film field effect transistor configured to charge the liquid crystal in the display pixel by using the data signal according to the scan signal
  • the display pixel includes a first display pixel and a second display pixel, and the first display pixel and the second display pixel are arranged at a line spacing.
  • the second display pixel displays a black screen
  • the first display pixel displays a black screen.
  • the data signal is stopped from being input to the second display pixel by the scan signal;
  • the data signal is stopped from being input to the first display pixel by the scan signal.
  • the liquid crystal display panel displays a signal picture through the first display pixel
  • the left eye picture signal and the right are alternately input to the first display pixel in the same picture frame.
  • the liquid crystal display panel displays a signal picture through the second display pixel
  • the left eye picture signal and the right eye picture signal are alternately input to the second display pixel in the same picture frame.
  • the liquid crystal display panel displays a signal picture through the first display pixel
  • the left-eye picture signal is input to the first display pixel in an odd-numbered picture frame;
  • the frame inputting a right eye picture signal to the first display pixel;
  • liquid crystal display panel displays a signal picture through the first display pixel, input a left eye picture signal to the first display pixel in an even picture frame; and input the first display pixel in an odd picture frame Right eye picture signal.
  • the liquid crystal display panel in the odd picture frame, displays a left eye signal picture through the first display pixel, and stops inputting to the second display pixel by the scan signal.
  • the data signal in an even picture frame, the liquid crystal display panel displays a right eye signal picture through the second display pixel, and stops inputting the data signal to the first display pixel by the scan signal.
  • the liquid crystal display panel when the liquid crystal display panel displays a signal screen through the first display pixel, the liquid crystal display panel displays a black screen through the second display pixel;
  • the liquid crystal display panel displays a signal screen through the second display pixel
  • the liquid crystal display panel displays a black screen through the first display pixel
  • the liquid crystal display panel displays a signal picture through the first display pixel
  • the left eye picture signal and the right are alternately input to the first display pixel in the same picture frame.
  • the liquid crystal display panel displays a signal picture through the second display pixel
  • the left eye picture signal and the right eye picture signal are alternately input to the second display pixel in the same picture frame.
  • the liquid crystal display panel displays a signal picture through the first display pixel
  • the left-eye picture signal is input to the first display pixel in an odd-numbered picture frame;
  • the frame inputting a right eye picture signal to the first display pixel;
  • liquid crystal display panel displays a signal picture through the first display pixel, input a left eye picture signal to the first display pixel in an even picture frame; and input the first display pixel in an odd picture frame Right eye picture signal.
  • the liquid crystal display panel in an odd-numbered picture frame, displays a left-eye signal picture through the first display pixel, and displays a black picture through the second display pixel;
  • the liquid crystal display panel displays a right eye signal picture through the second display pixel, and displays a black picture through the first display pixel.
  • the liquid crystal display panel and the liquid crystal display device of the thin film polarized 3D display of the present invention avoid the left eye signal by inputting a black image signal to a part of the pixels.
  • FIG. 1 is a working principle diagram of a conventional FPR 3D display system
  • FIG. 2A is a schematic structural view of a conventional liquid crystal display panel
  • 2B is a timing relationship diagram of driving signals of a conventional liquid crystal display panel
  • FIG. 3A is a schematic structural view of a preferred embodiment of a liquid crystal display panel of the present invention.
  • 3B is a timing chart showing driving signals of a first preferred embodiment of the liquid crystal display panel of the present invention.
  • 4A is a timing chart showing driving signals of odd-numbered picture frames in a second preferred embodiment of the liquid crystal display panel of the present invention.
  • 4B is a timing chart showing driving signals of even-numbered picture frames in a second preferred embodiment of the liquid crystal display panel of the present invention.
  • FIG. 5 is a timing chart showing a driving signal of a third preferred embodiment of the liquid crystal display panel of the present invention.
  • 6A is a timing chart showing driving signals of odd-numbered picture frames in a fourth preferred embodiment of the liquid crystal display panel of the present invention.
  • 6B is a timing chart showing driving signals of even-numbered picture frames in a fourth preferred embodiment of the liquid crystal display panel of the present invention.
  • FIG. 3A is a schematic structural view of a preferred embodiment of a liquid crystal display panel according to the present invention
  • the liquid crystal display panel for thin film polarized 3D display of the preferred embodiment includes a plurality of display pixels 34, data lines 37, and scanning. Line 38 and thin film field effect transistor 32.
  • the data line 37 is used to input a data signal to the display pixel 34
  • the scan line 38 is used to input a scan signal to the display pixel 34
  • the thin film field effect transistor is used to charge the liquid crystal in the display pixel using the data signal according to the scan signal.
  • the display pixel 34 includes a first display pixel and a second display pixel.
  • the first display pixel and the second display pixel are arranged at a row spacing (eg, the first display pixel is an odd-numbered row of display pixels 34, and the second display pixel is an even-numbered row).
  • the data signal is input to the corresponding first display pixel and the second display pixel by the scan signal triggering.
  • the liquid crystal display panel of the present invention displays the signal screen through the first display pixel, the second display pixel displays a black screen; the liquid crystal display panel passes the When the pixel display signal screen is displayed, the first display pixel displays a black screen.
  • the display pixels of the display signal screen of the liquid crystal display panel of the present invention are separated by the display pixels of the black screen, which increases the spacing between the display pixels of the display signal screen, and can avoid the crosstalk between the signal images. In order to ensure the display effect of the liquid crystal display panel.
  • FIG. 3B is a timing diagram showing the driving signals of the first preferred embodiment of the liquid crystal display panel of the present invention.
  • the liquid crystal display panel when the liquid crystal display panel displays the signal screen through the first display pixel, the liquid crystal display panel stops inputting the data signal 33 to the second display pixel through the scan signal 31, and sequentially goes to the first display pixel in the same frame frame.
  • the left eye picture signal 331 and the right eye picture signal 332 are alternately input; when the liquid crystal display panel displays the signal picture through the second display pixel, the liquid crystal display panel stops inputting the data signal 33 to the first display pixel by the scan signal 31, in the same frame frame.
  • the left eye picture signal 331 and the right eye picture signal 332 are alternately input to the second display pixel.
  • the scan signal 31 is triggered by the CKV signal 35, each scan signal 31 controls the turn-on and turn-off of a row of display pixels; the data signal 33 is triggered by the TP signal 36, and each data signal 33 controls the signal of a column of display pixels.
  • Picture When the liquid crystal display panel of the preferred embodiment is in operation, the corresponding display pixels are turned on by the scan signal 31. In the same frame frame, the scan signal 31 sequentially turns on all the odd-numbered rows of display pixels, and all the even-numbered rows of display pixels are turned off; In the open display pixels, the left-eye picture signal 331 and the right-eye picture signal 332 are alternately input in order.
  • the left eye picture signal 331 is finally displayed for the display pixels of the first row of the liquid crystal display panel, the display pixels of the second row do not display the screen, the display pixels of the third row display the right eye picture signal 332, and the display pixels of the fourth row are not displayed.
  • the display screen, ... the display pixel of the (4n+1)th line displays the left-eye picture signal 331, the display pixel of the (4n+2)th line does not display the picture, and the display pixel of the (4n+3)th line displays the right-eye picture At signal 332, the display pixels of the (4n+4)th line do not display a picture.
  • the display pixel of the (4n+1)th row is displayed, and the left eye picture signal 331 and the (4n+3)th line of the display pixel display right eye picture signal 332 are separated by the display pixels of the non-displayed picture, avoiding the left
  • the crosstalk phenomenon between the eye picture signal 331 and the right eye picture signal 332 improves the display effect of the liquid crystal display panel.
  • the display pixels of the (4n+1)th row and the display pixels of the (4n+3)th row may not display the picture, the display pixels of the (4n+2)th row and the (4n+ 4)
  • the display pixels of the row respectively display the left-eye picture signal 331 and the right-eye picture signal 332, which can achieve the same technical effect of improving the display quality of the liquid crystal display panel.
  • the liquid crystal display panel of the thin film polarized 3D display of the preferred embodiment avoids the occurrence of crosstalk between the left-eye signal picture and the right-eye picture signal by inputting a black picture signal to a part of the pixels.
  • FIG. 4A is a timing relationship diagram of driving signals of odd-numbered picture frames according to a second preferred embodiment of the liquid crystal display panel of the present invention
  • FIG. 4B is a second preferred embodiment of the liquid crystal display panel of the present invention. Timing diagram of the drive signal of the even picture frame.
  • the liquid crystal display panel displays the signal screen through the first display pixel
  • the liquid crystal display panel stops inputting the data signal 43 to the second display pixel by the scan signal 41, and inputs the first display pixel into the odd display frame.
  • the left-eye picture signal 431 inputs the right-eye picture signal 432 to the first display pixel in the even-numbered picture frame, or the right-eye picture signal 432 to the first display pixel in the odd-numbered picture frame, and in the even-numbered picture frame,
  • the first display pixel inputs a left eye picture signal 431.
  • the liquid crystal display panel When the liquid crystal display panel displays the signal screen through the second display pixel, the liquid crystal display panel stops inputting the data signal 43 to the first display pixel by the scan signal 41, and inputs the left eye image signal 431 to the second display pixel in the odd screen frame.
  • the right eye picture signal 432 In the even picture frame, the right eye picture signal 432 is input to the second display pixel; or in the even picture frame, the left eye picture signal 431 is input to the second display pixel; in the odd picture frame, the right eye is input to the second display pixel Screen signal 432.
  • the scan signal 41 is triggered by the CKV signal 45, each scan signal 41 controls the on and off of a row of display pixels; the data signal 43 is triggered by the TP signal 46, and each data signal 43 controls the display of a column.
  • the signal picture of the pixel When the liquid crystal display panel of the preferred embodiment is in operation, the corresponding display pixels are turned on by the scan signal 41.
  • the scan signal 41 In the odd picture frame (as shown in FIG. 4A), the scan signal 41 sequentially turns on all the odd-line display pixels, and turns off all the pixels.
  • the display pixels of the even lines; at the same time, only the left eye picture signal 431 is input in the open display pixels.
  • the even picture frame (as shown in FIG.
  • the scan signal 41 sequentially turns on the display pixels of all the odd lines, and turns off the display pixels of all the even lines; at the same time, only the right eye picture signal is input in the opened display pixels. 432. Therefore, the odd picture frame of the liquid crystal display panel only displays the left eye picture, and the even picture frame only displays the right eye picture, and the picture signal in each frame picture is also separated by the display pixels not displaying the picture, due to the left eye picture and the right eye. The pictures are displayed in different frames, so crosstalk between picture signals can be further avoided.
  • the right eye picture signal may be input to the second display pixel in the even picture frame. 432. Stop inputting a data signal or the like to the first display pixel. That is, simultaneously displaying the left-eye picture and the right-eye picture through the framing and interval display pixels are all within the protection scope of the preferred embodiment.
  • the liquid crystal display panel of the thin film polarized 3D display of the preferred embodiment further avoids the occurrence of crosstalk between the left-eye signal picture and the right-eye picture signal by the frame display on the basis of the first preferred embodiment.
  • FIG. 5 is a timing diagram showing driving signals of a third preferred embodiment of the liquid crystal display panel of the present invention.
  • the liquid crystal display panel displays the signal screen through the first display pixel
  • the liquid crystal display panel displays the black screen through the second display pixel, and sequentially inputs the left eye image signal to the first display pixel in the same screen frame.
  • 531 and the right-eye picture signal 532 when the liquid crystal display panel displays the signal picture through the second display pixel, the liquid crystal display panel displays the black picture through the first display pixel, and sequentially inputs the left-eye picture to the second display pixel in the same picture frame.
  • Signal 531 and right eye picture signal 532 when the liquid crystal display panel displays the signal screen through the first display pixel, the liquid crystal display panel displays the black screen through the second display pixel, and sequentially inputs the left-eye picture to the second display pixel in the same picture frame.
  • the scan signal 51 is triggered by the CKV signal 55, each scan signal 51 controls the on and off of a row of display pixels; the data signal 53 is triggered by the TP signal 56, and each data signal 53 controls the signal of a column of display pixels. Picture.
  • the corresponding display pixel is turned on by the scan signal 51.
  • the scan signal 51 sequentially turns on all the display pixels, and simultaneously inputs the left eye picture alternately in the opened display pixel.
  • the pixel displays a black screen signal 533, ...
  • the display pixel of the (4n+1)th line displays the left eye picture signal 531
  • the display pixel of the (4n+2)th line displays the black picture signal 533, the (4n+3)th line
  • the display pixel displays the right eye picture signal 532
  • the display pixels of the (4n+4)th line display the black picture signal 533.
  • the display pixel of the (4n+1)th row is displayed, and the left eye picture signal 531 and the (4n+3)th line of the display pixel display right eye picture signal 532 are separated by the display pixels of the displayed black picture signal 533, thereby avoiding
  • the crosstalk phenomenon between the left-eye picture signal 531 and the right-eye picture signal 532 enhances the display effect of the liquid crystal display panel.
  • the display pixels of the (4n+1)th row and the display pixels of the (4n+3)th row may also display the black picture signal 533, the display pixels of the (4n+2)th row, and the ( The display pixels of the 4n+4) row respectively display the left-eye picture signal 531 and the right-eye picture signal 532, which can achieve the same technical effect of improving the display quality of the liquid crystal display panel.
  • the liquid crystal display panel of the thin film polarized 3D display of the preferred embodiment avoids the occurrence of crosstalk between the left-eye signal picture and the right-eye picture signal by inputting a black picture signal to a part of the pixels.
  • FIG. 6A is a timing relationship diagram of driving signals of odd-numbered picture frames according to a fourth preferred embodiment of the liquid crystal display panel of the present invention
  • FIG. 6B is a fourth preferred embodiment of the liquid crystal display panel of the present invention. Timing diagram of the drive signal of even picture frames.
  • the liquid crystal display panel displays the signal screen through the first display pixel
  • the liquid crystal display panel displays the black screen through the second display pixel, and inputs the left-eye image signal 631 to the first display pixel in the odd screen frame.
  • the right eye picture signal 632 is input to the first display pixel; or in the odd picture frame, the right eye picture signal 632 is input to the first display pixel, and in the even picture frame, the left display picture is input to the first display pixel Eye picture signal 631.
  • the liquid crystal display panel displays the signal screen through the second display pixel
  • the liquid crystal display panel displays the black screen through the second display pixel, and in the odd screen frame, inputs the left-eye image signal 631 to the second display pixel, and in the even-numbered frame frame,
  • the second display pixel inputs the right eye picture signal 632; or in the even picture frame, the left eye picture signal 631 is input to the second display pixel; and in the odd picture frame, the right eye picture signal 632 is input to the second display pixel.
  • the scan signal 61 is triggered by the CKV signal 65, each scan signal 61 controls the on and off of a row of display pixels; the data signal 63 is triggered by the TP signal 66, and each data signal 63 controls the display of a column.
  • the signal picture of the pixel When the liquid crystal display panel of the preferred embodiment is in operation, the corresponding display pixel is turned on by the scan signal 61. In the odd frame frame (as shown in FIG. 6A), the scan signal 61 sequentially turns on all the display pixels, and at the same time, the display is turned on.
  • the left-eye picture signal 631 and the black picture signal 633 are alternately input in the pixel; that is, the first display pixel (the display pixel of the odd-numbered line) inputs the left-eye picture signal 631, and the second display pixel (the display pixel of the even-numbered line) only inputs the black Screen signal 633.
  • the scan signal 61 sequentially turns on all the display pixels, and simultaneously inputs the right eye picture signal 632 and the black picture signal 633 in the open display pixels; that is, the first display pixel (Display pixels of odd rows)
  • the right eye picture signal 632 is input while the second display pixel (display pixels of even lines) inputs only the black picture signal 633.
  • the odd picture frame of the liquid crystal display panel only displays the left eye picture
  • the even picture frame only displays the right eye picture
  • the picture signal in each frame picture is also separated by the display pixels of the black picture, due to the left eye picture and the right eye picture. Different frames are displayed, so crosstalk between picture signals can be further avoided.
  • the right eye picture may be input to the second display pixel in the even picture frame.
  • Signal 632 inputs a black picture signal 633 or the like to the first display pixel. That is, simultaneously displaying the left-eye picture and the right-eye picture through the framing and interval display pixels are all within the protection scope of the preferred embodiment.
  • the liquid crystal display panel of the thin film polarized 3D display of the preferred embodiment further avoids the occurrence of crosstalk of the left-eye signal picture and the right-eye picture signal by the frame display on the basis of the third preferred embodiment.
  • the present invention also provides a liquid crystal display device using the liquid crystal display panel described above, and the working principle of the liquid crystal display device is the same as that described in the preferred embodiment of the liquid crystal display panel described above.
  • the working principle of the liquid crystal display device is the same as that described in the preferred embodiment of the liquid crystal display panel described above.
  • the liquid crystal display panel and the liquid crystal display device of the thin film polarized 3D display of the present invention prevent the occurrence of crosstalk between the left-eye signal picture and the right-eye picture signal by inputting a black picture signal to a part of the pixels; and solving the existing film polarized type
  • the liquid crystal display panel of the 3D display and the phenomenon that the left eye signal picture and the right eye signal picture of the liquid crystal display device cross each other are more serious technical problems.

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Abstract

提供了一种用于薄膜偏光式3D显示的液晶显示面板及液晶显示装置,液晶显示面板包括多个显示像素(34)、数据线(37)、扫描线(38)以及薄膜场效应晶体管(32),其中显示像素(34)包括第一显示像素以及第二显示像素,通过第一显示像素显示信号画面时,第二显示像素显示黑色画面。通过对部分像素输入黑色画面信号,避免了左眼信号画面和右眼信号画面的串扰现象的发生。

Description

用于薄膜偏光式3D显示的液晶显示面板及液晶显示装置 技术领域
本发明涉及液晶显示领域,特别是涉及一种用于薄膜偏光式3D显示的液晶显示面板及液晶显示装置。
背景技术
随着显示技术的不断发展,3D立体显示技术也越来越成熟。3D电视、3D投影、3D摄像机等3D立体影像设备层出不穷。与2D平面显示不同的是,3D立体显示技术的画面更逼真,具有更好的视觉效果,已逐渐成为未来显示设备的主流发展方向。
FPR(Film-type Patterned Retarder,薄膜偏光式)是现有3D液晶显示的成像方式之一。如图1所示,图1为现有的FPR 3D显示系统的工作原理图。FPR 3D显示系统包括液晶显示面板11、偏光(Patterned Retarder)薄膜12以及偏光眼镜13。液晶显示面板11包括形成左眼信号的像素16、形成右眼信号的像素17以及两者之间的黑色矩阵18。FPR 3D显示系统主要是通过附着在液晶显示面板11上的偏光薄膜12将3D画面分离成左眼图像14和右眼图像15,再经过偏光眼镜13将左眼图像14和右眼图像15分别送至用户的左、右眼镜。用户的左右眼接收到两组图像,再经大脑合成立体影像。
该液晶显示面板11的工作原理如图2A和图2B所示,图2A为现有的液晶显示面板的结构示意图,图2B为现有的液晶显示面板的驱动信号的时序关系图。该液晶显示面板工作时,由相应的扫描信号21打开相应的薄膜场效应晶体管22,然后由相应的数据信号23对每一行的像素中的液晶进行充电,这样液晶发生偏转,配合背光以及偏光薄膜,以形成一个个显示像素24。扫描信号21由CKV信号25(行驱动时钟信号)触发,图2A中每一个扫描信号21控制一行显示像素24的开启和关闭;数据信号23由TP信号26(触发脉冲信号)触发,图2A中每一个数据信号23控制一列的显示像素24的信号画面。其中奇数行的显示像素24显示左眼信号画面(数据信号23为左眼画面信号231),偶数行的显示像素24显示右眼信号画面(数据信号23为右眼画面信号232),左眼信号画面和右眼信号画面通过偏光薄膜12以及相应的偏光眼镜13分别进入人脑,再经大脑合成立体影像。
现有的液晶显示面板11的相邻行的显示像素的距离比较近,如图1所示,当观看者处于较大的视角位置时,会出现左眼信号画面和右眼信号画面相互串扰的现象,即应送到右眼的画面同时被左眼观察到了,影响了液晶显示面板的显示效果。
技术问题
本发明的目的在于提供一种用于薄膜偏光式3D显示的液晶显示面板及液晶显示装置;以解决现有的薄膜偏光式3D显示的液晶显示面板及液晶显示装置的左眼信号画面和右眼信号画面相互串扰的现象比较严重的技术问题。
技术解决方案
提供一种用于薄膜偏光式3D显示的液晶显示面板,其包括:.
多个显示像素;
数据线,用于给所述显示像素输入数据信号;
扫描线,用于给所述显示像素输入扫描信号;
薄膜场效应晶体管,用于根据所述扫描信号,使用所述数据信号对所述显示像素中的液晶进行充电;
其中所述显示像素包括第一显示像素以及第二显示像素,所述第一显示像素和所述第二显示像素按行间隔排列,
所述液晶显示面板通过所述第一显示像素显示信号画面时,所述第二显示像素显示黑色画面;
所述液晶显示面板通过所述第二显示像素显示信号画面时,所述第一显示像素显示黑色画面。
在本发明所述的用于薄膜偏光式3D显示的液晶显示面板中,
所述液晶显示面板通过所述第一显示像素显示信号画面时,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;
所述液晶显示面板通过所述第二显示像素显示信号画面时,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
在本发明所述的用于薄膜偏光式3D显示的液晶显示面板中,
所述液晶显示面板通过所述第一显示像素显示信号画面时,在同一画面帧中,向所述第一显示像素依次交替输入左眼画面信号和右眼画面信号;
所述液晶显示面板通过所述第二显示像素显示信号画面时,在同一画面帧中,向所述第二显示像素依次交替输入左眼画面信号和右眼画面信号。
在本发明所述的用于薄膜偏光式3D显示的液晶显示面板中,
所述液晶显示面板通过所述第一显示像素显示信号画面时,在奇数画面帧中,向所述第一显示像素输入左眼画面信号;在偶数画面帧中,向所述第一显示像素输入右眼画面信号;
所述液晶显示面板通过所述第一显示像素显示信号画面时,在偶数画面帧中,向所述第一显示像素输入左眼画面信号;在奇数画面帧中,向所述第一显示像素输入右眼画面信号。
在本发明所述的用于薄膜偏光式3D显示的液晶显示面板中,
所述液晶显示面板通过所述第二显示像素显示信号画面时,在奇数画面帧中,向所述第二显示像素输入左眼画面信号;在偶数画面帧中,向所述第二显示像素输入右眼画面信号;
所述液晶显示面板通过所述第二显示像素显示信号画面时,在偶数画面帧中,向所述第二显示像素输入左眼画面信号;在奇数画面帧中,向所述第二显示像素输入右眼画面信号。
在本发明所述的用于薄膜偏光式3D显示的液晶显示面板中,
在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
在本发明所述的用于薄膜偏光式3D显示的液晶显示面板中,
所述液晶显示面板通过所述第一显示像素显示信号画面时,所述液晶显示面板通过所述第二显示像素显示黑色画面;
所述液晶显示面板通过所述第二显示像素显示信号画面时,所述液晶显示面板通过所述第一显示像素显示黑色画面。
在本发明所述的用于薄膜偏光式3D显示的液晶显示面板中,
在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述第二显示像素显示黑色画面;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述第一显示像素显示黑色画面。
还提供一种液晶显示装置,其包括用于薄膜偏光式3D液晶显示的液晶显示面板,所述液晶显示面板包括:
多个显示像素;
数据线,用于给所述显示像素输入数据信号;
扫描线,用于给所述显示像素输入扫描信号;以及
薄膜场效应晶体管,用于根据所述扫描信号,使用所述数据信号对所述显示像素中的液晶进行充电;
其中所述显示像素包括第一显示像素以及第二显示像素,所述第一显示像素和所述第二显示像素按行间隔排列,
所述液晶显示面板通过所述第一显示像素显示信号画面时,所述第二显示像素显示黑色画面;
所述液晶显示面板通过所述第二显示像素显示信号画面时,所述第一显示像素显示黑色画面。
在本发明所述的液晶显示装置中,所述液晶显示面板通过所述第一显示像素显示信号画面时,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;
所述液晶显示面板通过所述第二显示像素显示信号画面时,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
在本发明所述的液晶显示装置中,所述液晶显示面板通过所述第一显示像素显示信号画面时,在同一画面帧中,向所述第一显示像素依次交替输入左眼画面信号和右眼画面信号;
所述液晶显示面板通过所述第二显示像素显示信号画面时,在同一画面帧中,向所述第二显示像素依次交替输入左眼画面信号和右眼画面信号。
在本发明所述的液晶显示装置中,所述液晶显示面板通过所述第一显示像素显示信号画面时,在奇数画面帧中,向所述第一显示像素输入左眼画面信号;在偶数画面帧中,向所述第一显示像素输入右眼画面信号;
所述液晶显示面板通过所述第一显示像素显示信号画面时,在偶数画面帧中,向所述第一显示像素输入左眼画面信号;在奇数画面帧中,向所述第一显示像素输入右眼画面信号。
在本发明所述的液晶显示装置中,在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
在本发明所述的液晶显示装置中,所述液晶显示面板通过所述第一显示像素显示信号画面时,所述液晶显示面板通过所述第二显示像素显示黑色画面;
所述液晶显示面板通过所述第二显示像素显示信号画面时,所述液晶显示面板通过所述第一显示像素显示黑色画面。
在本发明所述的液晶显示装置中,所述液晶显示面板通过所述第一显示像素显示信号画面时,在同一画面帧中,向所述第一显示像素依次交替输入左眼画面信号和右眼画面信号;
所述液晶显示面板通过所述第二显示像素显示信号画面时,在同一画面帧中,向所述第二显示像素依次交替输入左眼画面信号和右眼画面信号。
在本发明所述的液晶显示装置中,所述液晶显示面板通过所述第一显示像素显示信号画面时,在奇数画面帧中,向所述第一显示像素输入左眼画面信号;在偶数画面帧中,向所述第一显示像素输入右眼画面信号;
所述液晶显示面板通过所述第一显示像素显示信号画面时,在偶数画面帧中,向所述第一显示像素输入左眼画面信号;在奇数画面帧中,向所述第一显示像素输入右眼画面信号。
在本发明所述的液晶显示装置中,在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述第二显示像素显示黑色画面;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述第一显示像素显示黑色画面。
有益效果
相较于现有的薄膜偏光式3D显示的液晶显示面板及液晶显示装置,本发明的薄膜偏光式3D显示的液晶显示面板及液晶显示装置通过对部分像素输入黑色画面信号,避免了左眼信号画面和右眼画面信号的串扰现象的发生;解决了现有的薄膜偏光式3D显示的液晶显示面板及液晶显示装置的左眼信号画面和右眼信号画面相互串扰的现象比较严重的技术问题。
附图说明
图1为现有的FPR 3D显示系统的工作原理图;
图2A为现有的液晶显示面板的结构示意图;
图2B为现有的液晶显示面板的驱动信号的时序关系图;
图3A为本发明的液晶显示面板的优选实施例的结构示意图;
图3B为本发明的液晶显示面板的第一优选实施例的驱动信号的时序关系图;
图4A为本发明的液晶显示面板的第二优选实施例的奇数画面帧的驱动信号的时序关系图;
图4B为本发明的液晶显示面板的第二优选实施例的偶数画面帧的驱动信号的时序关系图;
图5为本发明的液晶显示面板的第三优选实施例的驱动信号的时序关系图;
图6A为本发明的液晶显示面板的第四优选实施例的奇数画面帧的驱动信号的时序关系图;
图6B为本发明的液晶显示面板的第四优选实施例的偶数画面帧的驱动信号的时序关系图。
本发明的最佳实施方式
以下各实施例的说明是参考附加的图式,用以例示本发明可用以实施的特定实施例。本发明所提到的方向用语,例如「上」、「下」、「前」、「后」、「左」、「右」、「内」、「外」、「侧面」等,仅是参考附加图式的方向。因此,使用的方向用语是用以说明及理解本发明,而非用以限制本发明。
在图中,结构相似的单元是以相同标号表示。
请参照图3A,图3A为本发明的液晶显示面板的优选实施例的结构示意图;本优选实施例的用于薄膜偏光式3D显示的液晶显示面板包括多个显示像素34、数据线37、扫描线38以及薄膜场效应晶体管32。数据线37用于给显示像素34输入数据信号,扫描线38用于给显示像素34输入扫描信号,薄膜场效应晶体管用于根据扫描信号,使用数据信号对显示像素中的液晶进行充电。其中显示像素34包括第一显示像素以及第二显示像素,第一显示像素和第二显示像素按行间隔排列(如第一显示像素为奇数行的显示像素34,第二显示像素为偶数行的显示像素34;或第一显示像素为偶数行的显示像素34,第二显示像素为奇数的显示像素34)。通过扫描信号触发将数据信号输入到相应的第一显示像素以及第二显示像素,本发明的液晶显示面板通过第一显示像素显示信号画面时,第二显示像素显示黑色画面;液晶显示面板通过第二显示像素显示信号画面时,第一显示像素显示黑色画面。这样本发明的液晶显示面板的显示信号画面的显示像素被显示黑色画面的显示像素隔开,加大了显示信号画面的显示像素之间的间距,可以较好的避免信号画面之间的串扰现象,从而保证了液晶显示面板的显示效果。
下面通过图3B-图6B详细说明本发明的液晶显示面板的驱动过程。
请参照图3B,图3B为本发明的液晶显示面板的第一优选实施例的驱动信号的时序关系图。在本优选实施例中,液晶显示面板通过第一显示像素显示信号画面时,液晶显示面板通过扫描信号31停止向第二显示像素输入数据信号33,在同一画面帧中,向第一显示像素依次交替输入左眼画面信号331和右眼画面信号332;液晶显示面板通过第二显示像素显示信号画面时,液晶显示面板通过扫描信号31停止向第一显示像素输入数据信号33,在同一画面帧中,向第二显示像素依次交替输入左眼画面信号331和右眼画面信号332。
如图3所示,扫描信号31由CKV信号35触发,每一个扫描信号31控制一行显示像素的开启和关闭;数据信号33由TP信号36触发,每一个数据信号33控制一列的显示像素的信号画面。本优选实施例的液晶显示面板工作时,由扫描信号31打开相应的显示像素,在同一画面帧中,扫描信号31依次打开了所有奇数行的显示像素,关闭了所有偶数行的显示像素;同时在打开的显示像素中,依次交替输入左眼画面信号331和右眼画面信号332。因此最终为液晶显示面板的第1行的显示像素显示左眼画面信号331,第2行的显示像素不显示画面,第3行的显示像素显示右眼画面信号332,第4行的显示像素不显示画面,……第(4n+1)行的显示像素显示左眼画面信号331,第(4n+2)行的显示像素不显示画面,第(4n+3)行的显示像素显示右眼画面信号332,第(4n+4)行的显示像素不显示画面。这样即实现了第(4n+1)行的显示像素显示左眼画面信号331和第(4n+3)行的显示像素显示右眼画面信号332被不显示画面的显示像素隔开,避免了左眼画面信号331和右眼画面信号332之间的串扰现象,提升了液晶显示面板的显示效果。
当然在本优选实施例中,也可第(4n+1)行的显示像素和第(4n+3)行的显示像素不显示画面,第(4n+2)行的显示像素和第(4n+4)行的显示像素分别显示左眼画面信号331和右眼画面信号332,可以达到同样的提升液晶显示面板的显示质量的技术效果。
本优选实施例的薄膜偏光式3D显示的液晶显示面板通过对部分像素输入黑色画面信号,避免了左眼信号画面和右眼画面信号的串扰现象的发生。
请参照图4A和图4B,图4A为本发明的液晶显示面板的第二优选实施例的奇数画面帧的驱动信号的时序关系图;图4B为本发明的液晶显示面板的第二优选实施例的偶数画面帧的驱动信号的时序关系图。在本优选实施例中,液晶显示面板通过第一显示像素显示信号画面时,液晶显示面板通过扫描信号41停止向第二显示像素输入数据信号43,在奇数画面帧中,向第一显示像素输入左眼画面信号431,在偶数画面帧中,向第一显示像素输入右眼画面信号432;或在奇数画面帧中,向第一显示像素输入右眼画面信号432,在偶数画面帧中,向第一显示像素输入左眼画面信号431。
液晶显示面板通过第二显示像素显示信号画面时,液晶显示面板通过扫描信号41停止向第一显示像素输入数据信号43,在奇数画面帧中,向第二显示像素输入左眼画面信号431,在偶数画面帧中,向第二显示像素输入右眼画面信号432;或在偶数画面帧中,向第二显示像素输入左眼画面信号431;在奇数画面帧中,向第二显示像素输入右眼画面信号432。
如图4A和图4B所示,扫描信号41由CKV信号45触发,每一个扫描信号41控制一行显示像素的开启和关闭;数据信号43由TP信号46触发,每一个数据信号43控制一列的显示像素的信号画面。本优选实施例的液晶显示面板工作时,由扫描信号41打开相应的显示像素,在奇数画面帧(如图4A所示)中,扫描信号41依次打开了所有奇数行的显示像素,关闭了所有偶数行的显示像素;同时在打开的显示像素中,仅输入了左眼画面信号431。在偶数画面帧(如图4B所示)中,扫描信号41依次打开了所有奇数行的显示像素,关闭了所有偶数行的显示像素;同时在打开的显示像素中,仅输入了右眼画面信号432。因此最终液晶显示面板的奇数画面帧仅显示左眼画面,偶数画面帧仅显示右眼画面,同时每帧画面中的画面信号也通过不显示画面的显示像素隔开,由于左眼画面和右眼画面不同帧显示,因此可以进一步避免画面信号之间的串扰现象。
当然,在奇数画面帧中,向第一显示像素输入左眼画面信号431,停止向第二显示像素输入数据信号的情况下,也可在偶数画面帧,向第二显示像素输入右眼画面信号432,停止向第一显示像素输入数据信号等。即同时通过分帧和间隔显示像素来显示左眼画面和右眼画面均属于本优选实施例的保护范围。
本优选实施例的薄膜偏光式3D显示的液晶显示面板在第一优选实施例的基础上,通过分帧显示进一步避免了左眼信号画面和右眼画面信号的串扰现象的发生。
请参照图5,图5为本发明的液晶显示面板的第三优选实施例的驱动信号的时序关系图。在本优选实施例中,液晶显示面板通过第一显示像素显示信号画面时,液晶显示面板通过第二显示像素显示黑色画面,在同一画面帧中,向第一显示像素依次交替输入左眼画面信号531和右眼画面信号532;液晶显示面板通过第二显示像素显示信号画面时,液晶显示面板通过第一显示像素显示黑色画面,在同一画面帧中,向第二显示像素依次交替输入左眼画面信号531和右眼画面信号532。
如图5所示,扫描信号51由CKV信号55触发,每一个扫描信号51控制一行显示像素的开启和关闭;数据信号53由TP信号56触发,每一个数据信号53控制一列的显示像素的信号画面。本优选实施例的液晶显示面板工作时,由扫描信号51打开相应的显示像素,在同一画面帧中,扫描信号51依次打开所有的显示像素,同时在打开的显示像素中依次交替输入左眼画面信号531、黑色画面信号533、右眼画面信号532以及黑色画面信号533;即第一显示像素(奇数行的显示像素)中依次交替输入左眼画面信号531和右眼画面信号532,同时第二显示像素(偶数行的显示像素)中仅输入黑色画面信号533。因此最终为液晶显示面板的第1行的显示像素显示左眼画面信号531,第2行的显示像素显示黑色画面信号533,第3行的显示像素显示右眼画面信号532,第4行的显示像素显示黑色画面信号533,……第(4n+1)行的显示像素显示左眼画面信号531,第(4n+2)行的显示像素显示黑色画面信号533,第(4n+3)行的显示像素显示右眼画面信号532,第(4n+4)行的显示像素显示黑色画面信号533。这样即实现了第(4n+1)行的显示像素显示左眼画面信号531和第(4n+3)行的显示像素显示右眼画面信号532被显示黑色画面信号533的显示像素隔开,避免了左眼画面信号531和右眼画面信号532之间的串扰现象,提升了液晶显示面板的显示效果。
当然在本优选实施例中,也可第(4n+1)行的显示像素和第(4n+3)行的显示像素显示黑色画面信号533,第(4n+2)行的显示像素和第(4n+4)行的显示像素分别显示左眼画面信号531和右眼画面信号532,可以达到同样的提升液晶显示面板的显示质量的技术效果。
本优选实施例的薄膜偏光式3D显示的液晶显示面板通过对部分像素输入黑色画面信号,避免了左眼信号画面和右眼画面信号的串扰现象的发生。
请参照图6A和6B,图6A为本发明的液晶显示面板的第四优选实施例的奇数画面帧的驱动信号的时序关系图;图6B为本发明的液晶显示面板的第四优选实施例的偶数画面帧的驱动信号的时序关系图。在本优选实施例中,液晶显示面板通过第一显示像素显示信号画面时,液晶显示面板通过第二显示像素显示黑色画面,在奇数画面帧中,向第一显示像素输入左眼画面信号631,在偶数画面帧中,向第一显示像素输入右眼画面信号632;或在奇数画面帧中,向第一显示像素输入右眼画面信号632,在偶数画面帧中,向第一显示像素输入左眼画面信号631。
液晶显示面板通过第二显示像素显示信号画面时,液晶显示面板通过第二显示像素显示黑色画面,在奇数画面帧中,向第二显示像素输入左眼画面信号631,在偶数画面帧中,向第二显示像素输入右眼画面信号632;或在偶数画面帧中,向第二显示像素输入左眼画面信号631;在奇数画面帧中,向第二显示像素输入右眼画面信号632。
如图6A和图6B所示,扫描信号61由CKV信号65触发,每一个扫描信号61控制一行显示像素的开启和关闭;数据信号63由TP信号66触发,每一个数据信号63控制一列的显示像素的信号画面。本优选实施例的液晶显示面板工作时,由扫描信号61打开相应的显示像素,在奇数画面帧(如图6A所示)中,扫描信号61依次打开了所有的显示像素,同时在打开的显示像素中依次交替输入左眼画面信号631和黑色画面信号633;即第一显示像素(奇数行的显示像素)输入左眼画面信号631,同时第二显示像素(偶数行的显示像素)仅输入黑色画面信号633。在偶数画面帧(如图6B所示)中,扫描信号61依次打开了所有的显示像素,同时在打开的显示像素中依次交替输入右眼画面信号632和黑色画面信号633;即第一显示像素(奇数行的显示像素)输入右眼画面信号632,同时第二显示像素(偶数行的显示像素)仅输入黑色画面信号633。因此最终液晶显示面板的奇数画面帧仅显示左眼画面,偶数画面帧仅显示右眼画面,同时每帧画面中的画面信号也通过黑色画面的显示像素隔开,由于左眼画面和右眼画面不同帧显示,因此可以进一步避免画面信号之间的串扰现象。
当然,在奇数画面帧中,向第一显示像素输入左眼画面信号631,向第二显示像素输入黑色画面信号633的情况下,也可在偶数画面帧,向第二显示像素输入右眼画面信号632,向第一显示像素输入黑色画面信号633等。即同时通过分帧和间隔显示像素来显示左眼画面和右眼画面均属于本优选实施例的保护范围。
本优选实施例的薄膜偏光式3D显示的液晶显示面板在第三优选实施例的基础上,通过分帧显示进一步避免了左眼信号画面和右眼画面信号的串扰现象的发生。
本发明还提供一种使用上述的液晶显示面板的液晶显示装置,该液晶显示装置的工作原理与上述的液晶显示面板的优选实施例中的相关描述相同,具体可参见上述液晶显示面板的优选实施例中的相关描述。
本发明的薄膜偏光式3D显示的液晶显示面板及液晶显示装置通过对部分像素输入黑色画面信号,避免了左眼信号画面和右眼画面信号的串扰现象的发生;解决了现有的薄膜偏光式3D显示的液晶显示面板及液晶显示装置的左眼信号画面和右眼信号画面相互串扰的现象比较严重的技术问题。
综上所述,虽然本发明已以优选实施例揭露如上,但上述优选实施例并非用以限制本发明,本领域的普通技术人员,在不脱离本发明的精神和范围内,均可作各种更动与润饰,因此本发明的保护范围以权利要求界定的范围为准。
本发明的实施方式
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Claims (20)

  1. 一种用于薄膜偏光式3D液晶显示的液晶显示面板,其包括:
    多个显示像素;
    数据线,用于给所述显示像素输入数据信号;
    扫描线,用于给所述显示像素输入扫描信号;以及
    薄膜场效应晶体管,用于根据所述扫描信号,使用所述数据信号对所述显示像素中的液晶进行充电;
    其中所述显示像素包括第一显示像素以及第二显示像素,所述第一显示像素和所述第二显示像素按行间隔排列,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,所述第二显示像素显示黑色画面;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,所述第一显示像素显示黑色画面。
  2. 根据权利要求1所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
  3. 根据权利要求2所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在同一画面帧中,向所述第一显示像素依次交替输入左眼画面信号和右眼画面信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在同一画面帧中,向所述第二显示像素依次交替输入左眼画面信号和右眼画面信号。
  4. 根据权利要求2所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在奇数画面帧中,向所述第一显示像素输入左眼画面信号;在偶数画面帧中,向所述第一显示像素输入右眼画面信号;
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在偶数画面帧中,向所述第一显示像素输入左眼画面信号;在奇数画面帧中,向所述第一显示像素输入右眼画面信号。
  5. 根据权利要求2所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在奇数画面帧中,向所述第二显示像素输入左眼画面信号;在偶数画面帧中,向所述第二显示像素输入右眼画面信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在偶数画面帧中,向所述第二显示像素输入左眼画面信号;在奇数画面帧中,向所述第二显示像素输入右眼画面信号。
  6. 根据权利要求2所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
  7. 根据权利要求1所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,所述液晶显示面板通过所述第二显示像素显示黑色画面;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,所述液晶显示面板通过所述第一显示像素显示黑色画面。
  8. 根据权利要求7所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在同一画面帧中,向所述第一显示像素依次交替输入左眼画面信号和右眼画面信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在同一画面帧中,向所述第二显示像素依次交替输入左眼画面信号和右眼画面信号。
  9. 根据权利要求7所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在奇数画面帧中,向所述第一显示像素输入左眼画面信号;在偶数画面帧中,向所述第一显示像素输入右眼画面信号;
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在偶数画面帧中,向所述第一显示像素输入左眼画面信号;在奇数画面帧中,向所述第一显示像素输入右眼画面信号。
  10. 根据权利要求7所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在奇数画面帧中,向所述第二显示像素输入左眼画面信号;在偶数画面帧中,向所述第二显示像素输入右眼画面信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在偶数画面帧中,向所述第二显示像素输入左眼画面信号;在奇数画面帧中,向所述第二显示像素输入右眼画面信号。
  11. 根据权利要求7所述的用于薄膜偏光式3D显示的液晶显示面板,其中,
    在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述第二显示像素显示黑色画面;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述第一显示像素显示黑色画面。
  12. 一种液晶显示装置,其包括用于薄膜偏光式3D液晶显示的液晶显示面板,所述液晶显示面板包括:
    多个显示像素;
    数据线,用于给所述显示像素输入数据信号;
    扫描线,用于给所述显示像素输入扫描信号;以及
    薄膜场效应晶体管,用于根据所述扫描信号,使用所述数据信号对所述显示像素中的液晶进行充电;
    其中所述显示像素包括第一显示像素以及第二显示像素,所述第一显示像素和所述第二显示像素按行间隔排列,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,所述第二显示像素显示黑色画面;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,所述第一显示像素显示黑色画面。
  13. 根据权利要求12所述的液晶显示装置,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
  14. 根据权利要求13所述的液晶显示装置,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在同一画面帧中,向所述第一显示像素依次交替输入左眼画面信号和右眼画面信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在同一画面帧中,向所述第二显示像素依次交替输入左眼画面信号和右眼画面信号。
  15. 根据权利要求13所述的液晶显示装置,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在奇数画面帧中,向所述第一显示像素输入左眼画面信号;在偶数画面帧中,向所述第一显示像素输入右眼画面信号;
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在偶数画面帧中,向所述第一显示像素输入左眼画面信号;在奇数画面帧中,向所述第一显示像素输入右眼画面信号。
  16. 根据权利要求13所述的液晶显示装置,其中,
    在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述扫描信号停止向所述第二显示像素输入所述数据信号;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述扫描信号停止向所述第一显示像素输入所述数据信号。
  17. 根据权利要求12所述的液晶显示装置,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,所述液晶显示面板通过所述第二显示像素显示黑色画面;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,所述液晶显示面板通过所述第一显示像素显示黑色画面。
  18. 根据权利要求17所述的液晶显示装置,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在同一画面帧中,向所述第一显示像素依次交替输入左眼画面信号和右眼画面信号;
    所述液晶显示面板通过所述第二显示像素显示信号画面时,在同一画面帧中,向所述第二显示像素依次交替输入左眼画面信号和右眼画面信号。
  19. 根据权利要求17所述的液晶显示装置,其中,
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在奇数画面帧中,向所述第一显示像素输入左眼画面信号;在偶数画面帧中,向所述第一显示像素输入右眼画面信号;
    所述液晶显示面板通过所述第一显示像素显示信号画面时,在偶数画面帧中,向所述第一显示像素输入左眼画面信号;在奇数画面帧中,向所述第一显示像素输入右眼画面信号。
  20. 根据权利要求17所述的液晶显示装置,其中,
    在奇数画面帧中,所述液晶显示面板通过所述第一显示像素显示左眼信号画面,通过所述第二显示像素显示黑色画面;在偶数画面帧时,所述液晶显示面板通过所述第二显示像素显示右眼信号画面,通过所述第一显示像素显示黑色画面。
PCT/CN2013/090829 2013-12-17 2013-12-30 用于薄膜偏光式3d显示的液晶显示面板及液晶显示装置 Ceased WO2015089879A1 (zh)

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