摘要:
An exemplary active matrix display device includes a display panel comprising a plurality of scanning lines extending along a horizontal axis, a plurality of data lines extending along a vertical axis, and a plurality of dummy data lines. Two scanning lines and two data lines define two display pixels; each of the plurality of data lines is connected to at least two adjacent display pixels along the horizontal axis, and the at least two adjacent display pixels are driven by the two scanning lines, respectively. Each of the plurality of dummy data lines is disposed between two random adjacent data lines and is provided with gray scale voltage signals by a driving circuit of the display panel, thereby forming coupling capacitances between each of the plurality of dummy data lines and two pixel electrodes of the two display pixels.
摘要:
An exemplary thin film transistor (TFT) array substrate (200) includes: a substrate (210), a gate electrode (220) disposed on the substrate, a gate insulating layer (230) disposed on the substrate having the gate electrode, a lightly doped amorphous silicon (a-Si) layer (241) disposed on the gate insulating layer, a first a-Si layer (242) disposed on the lightly doped a-Si layer, a source electrode (251) and a drain electrode (252) disposed on the gate insulating layer and the a-Si layer. The thin film transistor array substrate has a low leakage current.
摘要:
An exemplary liquid crystal display panel includes a substrate, parallel gate lines disposed on the substrate, parallel source lines disposed on the substrate and crossing the gate lines insultingly, and first protection elements and second protection elements electrically connected to the gate lines and the source lines respectively. The first and second protection elements are capacitors, which can break down to discharge electrostatic buildup therein.
摘要:
An exemplary liquid crystal display panel (1) includes an upper substrate (111) and a lower substrate (121) parallel to each other, a liquid crystal layer (10) sandwiched between the upper and the lower substrates, and data lines (13) and driving lines (14) formed at the lower substrate. The data lines and the driving lines cross each other, thereby defining pixel regions. Each of the pixel regions includes a first spacer (17) and a second spacer (18). The first spacer is arranged between the upper substrate and the corresponding data line. The second spacer is arranged between the upper substrate and the corresponding driving line. A predetermined gap is defined between the first spacer and the data line.
摘要:
An in-plane switching (IPS) liquid crystal display device (100) includes pixel units each having a storage capacitor. The storage capacitor is formed by a common electrode (112), a drain electrode (103), and a counter electrode (110). The common electrode is electrically coupled with the counter electrode. The counter electrode substantially covers the drain electrode, for shielding unexpected coupling effects on the drain electrode due to data signals on a data line (101) driving other pixels of the liquid crystal display device.
摘要:
A liquid crystal panel (100) includes a first and a second substrates (110, 120), a liquid crystal layer (130) disposed between the first and second substrates, and a sealant (140) disposed at a peripheral region between the first and second substrates for sealing liquid crystal molecules between the first and second substrates. A baffle-wall (150) is disposed inside the sealant at a peripheral portion of the second substrate. The baffle-wall, the sealant and the first and second substrates cooperatively define at least one retaining space (160) therebetween. The baffle-wall and the first substrate cooperatively define at least one channel (170) therebetween, the channel communicating between the liquid crystal layer and the retaining space. During manufacturing, the baffle-wall helps prevent air bubbles from returning to the liquid crystal layer. Thus the liquid crystal panel has a high display quality.
摘要:
An exemplary active matrix display device includes a display panel comprising a plurality of scanning lines extending along a horizontal axis, a plurality of data lines extending along a vertical axis, and a plurality of dummy data lines. Two scanning lines and two data lines define two display pixels; each of the plurality of data lines is connected to at least two adjacent display pixels along the horizontal axis, and the at least two adjacent display pixels are driven by the two scanning lines, respectively. Each of the plurality of dummy data lines is disposed between two random adjacent data lines and is provided with gray scale voltage signals by a driving circuit of the display panel, thereby forming coupling capacitances between each of the plurality of dummy data lines and two pixel electrodes of the two display pixels.
摘要:
An exemplary liquid crystal display includes a first substrate (110), a second substrate (120) opposite to the first substrate, and a liquid crystal layer (130) therebetween. The first substrate includes a common electrode (140) having a plurality of slits (141). The second substrate includes a plurality of gate lines (121) and data lines (122). The slits are provided at positions corresponding to the gate lines and the data lines respectively.
摘要:
An exemplary liquid crystal display includes a first substrate (110), a second substrate (120) opposite to the first substrate, and a liquid crystal layer (130) therebetween. The first substrate includes a common electrode (140) having a plurality of slits (141). The second substrate includes a plurality of gate lines (121) and data lines (122). The slits are provided at positions corresponding to the gate lines and the data lines respectively.
摘要:
An exemplary liquid crystal display panel includes a substrate, parallel gate lines disposed on the substrate, parallel source lines disposed on the substrate and crossing the gate lines insultingly, and first protection elements and second protection elements electrically connected to the gate lines and the source lines respectively. The first and second protection elements are capacitors, which can break down to discharge electrostatic buildup therein.