Abstract:
A display method used for a display which has a backlight module suitable to provide more than M types of primary color lights, where M=3. The display panel of the display has an array of pixel regions. The display method provides these pixels regions to display multiple image data to be display in multiple frame times. Each of the image data includes (L1N, L2N, . . . , LMN) each representing the brightness of the M primary color light in each pixel region, where N is a positive integer. The backlight module sequentially provides M-1 primary color lights within any two successive frame times, so allow the image data to drive the pixel regions. The first and the Mth primary color lights provide the frame times for these two successive frame times.
Abstract:
An alternating electric field is applied across liquid crystal cells of pixels of an optically compensated birefringence mode liquid crystal display during a time period after power is provided to the display to cause the liquid crystal cells to change from a splay state to a bend state. The alternating electric field has a frequency that is less than 40 Hz. After the liquid crystal cells change to the bend state, a backlight module is turned on, and the pixels are controlled to show images with a refresh rate of greater than 40 Hz.
Abstract:
A displaying method and device. The display device includes a back light module and a display panel. The back light module emits at least M color lights. The display panel includes a plurality of pixel areas arranged in array structure, wherein each pixel area comprises N color filters, and at least one of the color filters is for passing through a plurality of primary color lights. In the displaying method, the back light module provides at least M color lights in a frame time, and a frame is displayed by arranging the M color lights and the N color filters in each pixel area, wherein M≧2 and N≧2. Moreover, the display panel may include an active component array substrate, a liquid crystal layer and a color filter substrate. In addition, any two adjacent pixel areas can share at least one color filter.
Abstract:
A mobile node (10) roams from a home network to a foreign network, and comprises an address detection module (101) and an address conversion request module (107). The address detection module detects a current address of the mobile node. The address conversion request module transmits an address conversion request message to a home agent according to the current address of the mobile node and an address of the home agent, receives an address conversion response message from the home agent, and generates an address mapping relationship between a home address and the current address of the mobile node. A network system and a network roaming method are also provided.
Abstract:
A MVA LCD (Multi-domain Vertical Alignment Liquid Crystal Display) is provided. The MVA LCD includes a first substrate and a second substrate; a common electrode disposed on a first surface of the first substrate; a pixel electrode disposed on a first surface of the second substrate and corresponds to the common electrode; a plurality of liquid crystal molecules filled between the first substrate and the second substrate; a domain regulating means disposed on the first substrate or the second substrate for regulating the LC director of the liquid crystal molecules; a first quarter-wave (¼λ) plate disposed on the top of a second surface of the first substrate; a first linear light polarizer sheet disposed on the top of the first quarter-wave plate; a second quarter-wave plate disposed on the bottom of a second surface of the second substrate; and a second linear light polarizer sheet disposed on the bottom of the second quarter-wave plate. The incident light is in the form of circularly polarized light when transmitted through the liquid crystal molecules of the MVA LCD.
Abstract:
A liquid crystal display includes a first substrate and a second substrate, a liquid crystal layer disposed between the first and second substrate, and a backlight module disposed under the second substrate. The first substrate comprises color filters disposed in array, wherein each color filter has a chromaticity-adjusting region; a thickness of the color filters and a size of the chromaticity-adjusting region are adjustable for adjusting the chromaticity of the LCD. The second substrate comprises pixel electrodes corresponding to the color filters. Therefore, the liquid crystal display can easily adjust and perfect the chromaticity of the liquid crystal display under the restrictions of the material of the color filters, the backlight module, and the design thereof.