Abstract:
Provided is a liquid crystal driving method and a liquid crystal display device that provide a sufficiently high response speed and a sufficiently excellent contrast ratio by reducing distortion of the electric field and sufficiently reducing transmittance during black display. The liquid crystal driving method of the present invention is a liquid crystal driving method of driving a liquid crystal using electrodes at a liquid crystal layer side and an electrode opposite to the liquid crystal layer side disposed in one of upper and lower substrates, the liquid crystal driving method including: performing a driving operation in which the electrode opposite to the liquid crystal layer side has a higher absolute value of an applied voltage than that of the electrodes at the liquid crystal layer side to align an alignment direction of the liquid crystal in a vertical direction or a horizontal direction to main faces of the substrates.
Abstract:
Provided is a display device 100 that includes a display panel having flexibility (an organic EL panel 1 as an example), and an optical member 2 having flexibility, arranged so as to be stacked on the display panel, wherein the display panel and the optical member 2 are stacked and bonded in a bent state, and thereafter stretched into a flat shape.
Abstract:
The present invention provides a thin film transistor array substrate and a liquid crystal display device including the thin film transistor array substrate that are preferably applicable to a liquid crystal display device including the three-layered electrode structure that enables high response speed and high transmittance, and can have a high aperture ratio. The thin film transistor array substrate of the present invention includes: a thin film transistor element, gate bus lines, and source bus lines, in which the thin film transistor array substrate includes electrodes, the electrodes include a first electrode and a second electrode, the first electrode includes a linear portion along the source bus lines, the first electrode includes a linear portion along the gate bus lines, at least one linear portion along the source bus lines is disposed transversely to the linear portion along the gate bus lines in a plan view of main face of the substrate and is connected to a drain electrode of the thin film transistor element at a position overlapping the gate bus lines, and the second electrode is a planar electrode.
Abstract:
The present invention provides a liquid crystal display panel and a liquid crystal display device that can provide a sufficiently high response speed and an excellent transmittance and reduce flexoelectricity so as to achieve excellent display quality. A liquid crystal display panel of the present invention is a liquid crystal panel including a first substrate including a dielectric layer, and a second substrate including an electrode, the electrode including an electrode to generate a transverse electric field and a slit-formed electrode.