摘要:
An electrowetting lens which can move its optical axis using a multiple electrode structure includes: a substrate; a dielectric barrier wall formed on the substrate; polar and non-polar solutions fluidly contained inside the dielectric barrier wall; first and second lower electrodes inserted through lower portions of the dielectric barrier wall in contact with the polar solution, the first and second lower electrodes facing each other; and first and second multiple electrodes respectively disposed in mutually facing first and second legs defining the dielectric barrier wall, each of the first and second multiple electrodes being divided into a plurality of vertically arranged electrode cells.
摘要:
The display device includes a backlight unit including a field sequential light source operated using a sequential partition method and an optical shutter using an electrowetting phenomenon disposed on a light emitting surface of the backlight unit and switching light outputted from the backlight unit.
摘要:
Provided are a liquid crystal compound represented by formula 1, a liquid crystal composition including the same, and a liquid crystal display including the liquid crystal composition: wherein X1, X2, R1, R2, L and are the same as described in specification. High optical anisotropy and negative dielectric anisotropy can be achieved by the use of the liquid crystal composition including the liquid crystal compound.
摘要翻译:提供由式1表示的液晶化合物,含有该液晶组合物的液晶组合物和包含该液晶组合物的液晶显示器,其中X 1,X 2, R 1,R 2,L和与说明书中所述相同。 通过使用包括液晶化合物的液晶组合物可以实现高光学各向异性和负介电各向异性。
摘要:
Provided are a liquid crystal compound represented by formula 1, a liquid crystal composition including the same, and a liquid crystal display including the liquid crystal composition: wherein X1, X2, R1, R2, L and are the same as described in specification. High optical anisotropy and negative dielectric anisotropy can be achieved by the use of the liquid crystal composition including the liquid crystal compound.
摘要翻译:提供由式1表示的液晶化合物,含有该液晶组合物的液晶组合物和包含该液晶组合物的液晶显示器,其中X 1,X 2, R 1,R 2,L和与说明书中所述相同。 通过使用包括液晶化合物的液晶组合物可以实现高光学各向异性和负介电各向异性。