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Recessed gate-data line-crossover structures employing an air-gap to reduce signal delay for TFT-LCD panel
By: In-Hyuk Song; Fin-Woo Park; Min-Koo Han; Min-Cheol Lee;
2001 / IEEE
Description
This item was taken from the IEEE Periodical ' Recessed gate-data line-crossover structures employing an air-gap to reduce signal delay for TFT-LCD panel ' Two new line-crossover structures entitled ""recessed air-bridge structure"" and ""recessed gate-line structure,"" which have improved mechanical durability and reduced data-tine signal delay in active matrix liquid crystal display (AMLCD) panel, have been proposed and fabricated. In the recessed air-bridge structure, the air-gap line-crossover is located at the bottom of the oxide trench so that the floated upper lines lie flush with the panel's surface. The recessed gate-line structure was fabricated by recessing the whole gate-line into the bottom of an oxide trench. Both of the fabricated structures, without any passivation layer, were proved sufficiently robust to withstand a rubbing process, which applied realistic mechanical stresses to the AMLCD panel. Experimental results show that the signal delays of the proposed structure are less than about 20% of the conventional structure.
Related Topics
Thin Film Transistors
Integrated Circuit Reliability
Delays
Field Effect Integrated Circuits
Mechanical Testing
Mechanical Rubbing Process Test
Recessed Gate-data Line-crossover Structures
Tft-lcd Panel
Recessed Air-bridge Structure
Mechanical Durability
Data-line Signal Delay Reduction
Active Matrix Liquid Crystal Display Panel
Amlcd Panel
Air-gap Line-crossover
Mechanical Reliability
Recessed Gate-line Structure
Oxide Trench
Mechanical Stresses
Liquid Crystal Displays
Liquid Crystal Displays
Flat Panel Displays
Engineered Materials, Dielectrics And Plasmas
Components, Circuits, Devices And Systems
Engineering
Internal Stresses