Indication device

By using transparent electrodes and open/recessed structures made of oxide semiconductor materials in liquid crystal displays, the problems of reduced aperture ratio and non-uniform orientation of liquid crystal molecules caused by increased capacitor element area have been solved, thus achieving liquid crystal displays with high charge capacity and high display quality.

JP2026086589APending Publication Date: 2026-05-26SEMICON ENERGY LAB CO LTD

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
SEMICON ENERGY LAB CO LTD
Filing Date
2026-02-05
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

In liquid crystal displays, increasing the area of ​​capacitor elements to improve charge capacity will reduce the aperture ratio of pixels, affecting display quality. At the same time, uneven alignment of liquid crystal molecules will lead to display defects such as light leakage and reduced contrast.

Method used

By using transparent electrodes and oxide semiconductor materials, and forming openings and grooves on the electrodes, combined with organic resin filling, the area of ​​the capacitor element can be increased without reducing the aperture ratio, and the non-uniformity of liquid crystal molecule orientation can be reduced.

Benefits of technology

Capacitor elements with high aperture ratio and high charge capacity are achieved, reducing display defects and improving display quality and contrast.

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  • Figure 2026086589000001_ABST
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Abstract

A semiconductor having a high aperture ratio and a capacitive element capable of increasing charge capacitance. We provide the device. [Solution] A transistor on a substrate, a first light-transmitting conductive film on the substrate, and An oxide insulating film covering the zista and having an opening provided on a conductive film having first light-transmitting properties, , on an oxide insulating film, and in contact with a first light-transmitting conductive film at the opening, nitrogen A dielectric insulating film and a second light-transmitting material connected to a transistor, with a recess formed at the opening. It comprises a conductive film having a second light-transmitting property and an organic resin film that fills the recesses of the conductive film having a second light-transmitting property. It is a semiconductor device.
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