摘要:
A liquid crystal display device includes a first substrate (20), a second substrate (40), and a liquid crystal layer (50) sandwiched between the first and the second substrates (20, 40). The first substrate (20) has a first area (A) through which a light is allowed to pass and a second area (B) at which a light is reflected. A reflection electrode (25) is formed on the second area (B) and a transmission electrode (26) is formed in the first area (A). The reflection electrode (25) partially overlaps the transmission electrode (26).
摘要:
A reflection plate (11) is formed so as to have a wavy surface, and to have uneven distribution of normal line directions of the surface in terms of a specific azimuth angle. The wavy surface is formed due to line-shaped protruding patterns (18) and an insulation film layer (19). The protruding patterns (18) intersect with one another to form concave portions each having a shape of a closed figure. The protruding patterns (18) are formed by patterning, such that they have almost uniform thickness.
摘要:
In an in-plane liquid crystal display apparatus including a first transparent substrate (11) having a plurality of gate bus lines (GL i ), a plurality of drain bus lines (DL i ), a plurality of pixel electrodes (E ij ) each connected via a switching element (Q ij ) to one of the drain bus lines, and a common electrode (CE) on the first transparent substrate; a second transparent substrate (21); and a liquid crystal layer (3) interposed between the first and second transparent substrate, an optical shield layer (18, 18'), is formed on the first transparent substrate and covers the drain bus lines.
摘要:
In an in-plane liquid crystal display apparatus including a first transparent substrate (11) having a plurality of gate bus lines (GL i ), a plurality of drain bus lines (DL i ), a plurality of pixel electrodes (E ij ) each connected via a switching element (Q ij ) to one of the drain bus lines, and a common electrode (CE) on the first transparent substrate; a second transparent substrate (21); and a liquid crystal layer (3) interposed between the first and second transparent substrate, an optical shield layer (18, 18'), is formed on the first transparent substrate and covers the drain bus lines.
摘要:
A reflection plate (11) is formed so as to have a wavy surface, and to have uneven distribution of normal line directions of the surface in terms of a specific azimuth angle. The wavy surface is formed due to line-shaped protruding patterns (18) and an insulation film layer (19). The protruding patterns (18) intersect with one another to form concave portions each having a shape of a closed figure. The protruding patterns (18) are formed by patterning, such that they have almost uniform thickness.
摘要:
A reflection plate, a reflection type liquid crystal display apparatus comprising the same and corresponding method of manufacturing, in which the light inputted from a light source such as a fluorescent light or the sun light is reflected and diffused in a preferably given direction of an observer so that a a bright display can be obtained. The reflection plate being patterned with concave and convex shapes arranged to optimize the reflected and diffused light with respect to the input light direction, the observer direction, and the position of the reflection plate.
摘要:
A liquid crystal display device includes a first substrate (20), a second substrate (40), and a liquid crystal layer (50) sandwiched between the first and second substrates (20, 40). The first substrate (20) includes first to N-th 1st retardation plates (27, 28) arranged on the first transparent substrate (21), and the second substrate (40) includes first to N-th 2nd retardation plates (42, 43) arranged on the second transparent substrate (41). Assuming that a retardation plate among the first to N-th 1st retardation plates (27, 28) has an optical axis arranged at a first angle relative to a reference direction and a retardation plate among the first to N-th 2nd retardation plates (42, 43), corresponding to the retardation plate among the first to N-th 1st retardation plates (27, 28), has an optical axis arranged at a second angle relative to the reference direction, the first and second angles are different from each other by about 90 degrees.