Reflective and transflective liquid crystal display device and its manufacturing method
First Claim
1. A reflective liquid crystal display device comprising:
- a plurality of gate lines and data lines intersecting on a substrate, the gate lines and the data lines defining pixel areas;
a plurality of thin film transistors formed at the intersections of the gate lines and the data lines, each thin film transistor including a gate electrode, a semiconductor layer, a source electrode and a drain electrode;
a capacitor lower electrode of a storage capacitor formed on the same plane as a gate line;
a capacitor upper electrode formed integrally with the drain electrode on the capacitor lower electrode;
a gate insulation film between the capacitor upper electrode and the capacitor lower electrode;
a passivation film on the capacitor upper electrode; and
a reflective electrode formed over the passivation film at the pixel areas and electrically connected to the drain electrode through a contact hole in the passivation film, wherein the passivation film is between the capacitor upper electrode and the reflective electrode whereby a depression at a pixel electrode is improved.
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Accused Products
Abstract
Disclosed are a reflective and transflective liquid crystal display device and its manufacturing method, which can raise light efficiency by removing a depressed part in a reflective device without forming a capacitor contact hole in a storage capacitor. The reflective liquid crystal display device includes: a plurality of gate lines and data lines intersecting on a first substrate, the gate line and the data line defining pixel areas; a thin film transistor formed at the intersection of the gate line and the data line, the thin film transistor including a gate electrode, a semiconductor layer, a source electrode and a drain electrode; a capacitor lower electrode of a storage capacitor formed on the same plane as the gate line; an capacitor upper electrode formed integrally with the drain electrode on the capacitor lower electrode; a first insulation film inserted between the capacitor upper electrode and the capacitor lower electrode; and a thin film transistor array substrate connected with the drain electrode and including the reflective electrode formed at the pixel area.
19 Citations
15 Claims
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1. A reflective liquid crystal display device comprising:
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a plurality of gate lines and data lines intersecting on a substrate, the gate lines and the data lines defining pixel areas;
a plurality of thin film transistors formed at the intersections of the gate lines and the data lines, each thin film transistor including a gate electrode, a semiconductor layer, a source electrode and a drain electrode;
a capacitor lower electrode of a storage capacitor formed on the same plane as a gate line;
a capacitor upper electrode formed integrally with the drain electrode on the capacitor lower electrode;
a gate insulation film between the capacitor upper electrode and the capacitor lower electrode;
a passivation film on the capacitor upper electrode; and
a reflective electrode formed over the passivation film at the pixel areas and electrically connected to the drain electrode through a contact hole in the passivation film, wherein the passivation film is between the capacitor upper electrode and the reflective electrode whereby a depression at a pixel electrode is improved. - View Dependent Claims (2, 3, 4, 5, 6)
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7. A transflective liquid crystal display device, which has pixel areas defined into a reflection part and a transmission part, the liquid crystal display device comprising:
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a plurality of gate lines and data lines intersecting on a substrate, the gate lines and the data lines defining pixel areas;
a plurality of thin film transistors formed at the intersections of the gate lines and the data lines, each thin film transistor including a gate electrode, a semiconductor layer, a source electrode and a drain electrode;
a capacitor lower electrode of a storage capacitor formed on the same plane as a gate line;
a capacitor upper electrode formed integrally with the drain electrode on the capacitor lower electrode;
a gate insulation film inserted between the capacitor upper electrode and the capacitor lower electrode;
a first passivation film on the capacitor upper electrode; and
a reflective electrode electrically connected with the drain electrode through a contact hole in the first passivation film and formed over the first passivation film at the reflection part, the passivation film being between the capacitor upper electrode and the reflective electrode;
wherein the pixel areas include the transmissive electrode formed at the transmission part whereby a depression at a pixel electrode is improved. - View Dependent Claims (8, 9, 10, 11, 12, 13, 14, 15)
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Specification