US2008007665A1PendingUtilityA1
Liquid crystal display having wide viewing angle
Est. expiryMay 29, 2017(expired)· nominal 20-yr term from priority
G02F 1/133707G02F 2201/121G02F 1/133512G02F 1/136213G02F 1/134336G02F 1/137G02F 1/134309G02F 1/1337G02F 2201/128G02F 1/134372G02F 1/1393G02F 1/13712
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Claims
Abstract
Apertures are formed in the common electrode or in the pixel electrode of a liquid crystal display to form a fringe field. Storage capacitor electrodes are formed at the position corresponding to the apertures to prevent the light leakage due to the disclination caused by the fringe field. The apertures extend horizontally, vertically or obliquely. The apertures in adjacent pixel regions may have different directions to widen the viewing angle.
Claims
exact text as granted — not AI-modified1 - 59 . (canceled)
60 . A liquid crystal display comprising:
a first substrate comprising a common electrode; a second substrate opposite the first substrate; a pixel electrode formed on the second substrate; and a storage capacitor electrode formed on the second substrate, overlapping the pixel electrode; wherein at least one of the pixel electrode and the common electrode comprising a first linear domain divider and a second linear domain divider, and the first and the second linear domain divider are substantially arranged in a shape of chevron wherein at least one of the first and the second linear domain dividers is arranged in a parallel direction with a extending direction of the storage capacitor electrode.
61 . A liquid crystal display of claim 60 , further comprising:
a data line extended in a first direction; a gate line extended in a second direction perpendicular to the first direction; wherein the storage capacitor electrode is extended in a direction different from the first direction and the second direction.
62 . A liquid crystal display of claim 61 , further comprising:
a branch formed on the second substrate, extended in the first direction and electrically connected to the storage capacitor electrode.
63 . A liquid crystal display of claim 60 , further comprising:
a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and interposed between the first and the second substrates.
64 . A liquid crystal display of claim 63 , wherein the first linear domain divider is located at the upper area of the pixel electrode and the second linear domain divider is located at the lower area of the pixel electrode.
65 . A liquid crystal display of claim 63 , wherein the first and the second linear domain dividers have one width.
66 . A liquid crystal display of claim 60 , wherein the first and the second linear domain dividers meet each other at end portions of domain dividers.
67 . A liquid crystal display comprising:
a first substrate comprising a common electrode; a second substrate opposite the first substrate; a pixel electrode formed on the second substrate; a branch formed on the second substrate, overlapping the pixel electrode and extending in a first direction; a storage capacitor electrode formed on the second substrate, overlapping the pixel electrode, electrically connected to the branch and extended in a direction different from the first direction; wherein one of the pixel electrode and the common electrode comprising a first linear domain divider and a second linear domain dividers, and the first and the second linear domain dividers are substantially arranged in a shape of chevron.
68 . A liquid crystal display of claim 67 , wherein at least one of the first linear domain divider and the second linear domain divider is arranged in a parallel direction with a extending direction of the storage capacitor.
69 . a liquid crystal display of claim 68 , further comprising:
a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and interposed between the first and the second substrates.
70 . A liquid crystal display of claim 69 , wherein the first linear domain divider is located at the upper area of the pixel electrode and the second linear domain divider is located at the lower area of the pixel electrode.
71 . A liquid crystal display of claim 69 , wherein the first and the second linear domain dividers have one width.
72 . A liquid crystal display of claim 67 , wherein the first and the second linear domain dividers meet each other at end portions of domain dividers.
73 . A liquid crystal display comprising:
a first substrate comprising a common electrode; a second substrate opposite the first substrate; a data line extended in a first direction; a gate line extended in a second direction perpendicular to the first direction; a pixel electrode formed on the second substrate; a storage capacitor electrode formed on the second substrate, overlapping the pixel electrode; wherein one of the pixel electrode and the common electrode comprising a first linear domain divider and a second linear domain divider and the first and the second linear domain dividers are extended in directions different from the first and the second directions and are substantially arranged in a shape of chevron. wherein at least one of the first and the second linear domain dividers is arranged in a parallel direction with a extending direction of the storage capacitor electrode.
74 . A liquid crystal display of claim 73 , further comprising:
a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and interposed between the first and the second substrates.
75 . A liquid crystal display of claim 74 , wherein the first linear domain divider is located at the upper area of the pixel electrode and the second linear domain divider is located at the lower area of the pixel electrode.
76 . A liquid crystal display of claim 75 , wherein the first and the second linear domain dividers have one width.
77 . A liquid crystal display of claim 73 , wherein the first and the second linear domain divider meet each other at end portions of domain divider.
78 . A liquid crystal display comprising:
a first substrate comprising a common electrode; a second substrate opposite the first substrate; a pixel electrode formed on the second substrate; and a storage capacitor electrode formed on the second substrate, overlapping the pixel electrode; wherein one of the pixel electrode and the common electrode comprising a first linear domain divider and a second linear domain divider, and the first and the second linear domain dividers are substantially arranged in a shape of chevron, wherein the first and the second linear domain dividers have one width, wherein the first linear domain divider is located at the upper area of the pixel electrode and the second linear domain divider is located at the lower area of the pixel electrode.
79 . A liquid crystal display of claim 78 , further comprising:
a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and interposed between the first and the second substrates.
80 . A liquid crystal display of claim 78 , wherein the first and the second linear domain divider meet each other at end portions of domain dividers.
81 . A liquid crystal display comprising:
a first substrate comprising a common electrode; a second substrate opposite the first substrate; a TFT formed on the second substrate; a passivation layer formed on the TFT a pixel electrode formed on the passivation layer and electrically connected to the TFT; and a storage capacitor electrode formed on the second substrate and overlapping the pixel electrode; wherein the pixel electrode comprising a first linear domain divider and a second linear domain divider, and the first and the second linear domain dividers are substantially arranged in a shape of chevron, wherein the first linear domain divider is located at the upper area of the pixel electrode and the second linear domain divider is located at the lower area of the pixel electrode.
82 . A liquid crystal display of claim 81 , wherein the first and the second linear domain dividers have one width.
83 . A liquid crystal display of claim 81 , wherein the passivation layer has a thickness equal to or more than 3 μm.
84 . A liquid crystal display of claim 83 , wherein the passivation layer is made of organic material.
85 . A liquid crystal display of claim 81 , further comprising:
a spacer is interposed between the first and the second substrates and made of organic material.
86 . A liquid crystal display of claim 81 , wherein the first and the second linear domain dividers meet each other at end portions of domain dividers.
87 . A liquid crystal display of claim 81 , wherein at least one of the first and the second linear domain dividers is arranged in a parallel direction with a extending direction of the storage capacitor electrode.
88 . A liquid crystal display of claim 87 , further comprising:
a data line extending in a first direction; a gate line extending in a second direction perpendicular to the first direction; wherein the storage capacitor electrode is extended in a direction different from the first direction and the second direction.
89 . A liquid crystal display of claim 88 , further comprising a branch formed on the second substrate, overlapping the pixel electrode, connected to the storage capacitor electrode and extended in a first direction.
90 . A liquid crystal display comprising:
a first substrate comprising a common electrode; a second substrate opposite the first substrate; a pixel electrode formed on the second substrate; and a storage capacitor electrode formed on the second substrate, overlapping the pixel electrode; and a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and interposed between the first and the second substrates, wherein the liquid crystal layer is divided into a plurality of domain areas when electric field is applied to the liquid crystal layer and the storage capacitor electrode is arranged along at least one boundary between a plurality of domain areas.
91 . A liquid crystal display comprising:
a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and divided into a plurality of domain areas when electric field is applied to the liquid crystal layer; a storage capacitor electrode arranged along at least one of boundaries between a plurality of domain areas; wherein the boundaries between a plurality of domain areas are arranged in a shape of chevron.
92 . A liquid crystal display comprising:
a first electrode; a second electrode; a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and divided into a plurality of domain areas when electric field is applied to the liquid crystal layer by the first electrode and the second electrode; a storage capacitor electrode arranged along at least one of boundaries between a plurality of domain areas; a branch electrically connected to the storage capacitor and arranged in a parallel direction with one direction of edges of the first electrode.
93 . A liquid crystal display comprising:
a first electrode; a second electrode; a liquid crystal layer comprising liquid crystal molecules having negative dielectric anisotropy and divided into a plurality of domain areas when electric field is applied to the liquid crystal layer by the first electrode and the second electrode; a branch overlapping the first electrode and arranged in a parallel direction with one direction of edges of the first electrode, wherein directions of the boundaries between a plurality of domain areas are not in a parallel or perpendicular with a extending direction of the branch and the branch is arranged in a parallel direction with one direction of edges of the first electrode.
94 . A liquid crystal display of claim 60 , wherein the domain dividers are apertures.
95 . A liquid crystal display of claim 67 , wherein the domain dividers are apertures.
96 . A liquid crystal display of claim 73 , wherein the domain dividers are apertures.
97 . A liquid crystal display of claim 78 , wherein the domain dividers are apertures.
98 . A liquid crystal display of claim 81 , wherein the domain dividers are apertures.Join the waitlist — get patent alerts
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