Abstract:
There is provided a liquid crystal display (LCD). The LCD includes a thin film transistor (TFT) disposed on a first substrate, a pixel electrode connected to the TFT, a second substrate that faces the first substrate, a liquid crystal layer formed between the first substrate and the second substrate, a light emitting layer positioned between the liquid crystal layer and the second substrate, a first polarizing plate positioned on a rear surface of the first substrate and including a collimating film and a second polarizing plate positioned between the light emitting layer and the liquid crystal layer.
Abstract:
Provided is a LED light source package comprising a circuit board, a light source seated on an upper portion of the circuit board, and a lens structure arranged on the upper portion of the circuit board via the light source. A surface that faces the light source in the lens structure includes a first inclined surface that projects toward the light source as going to a center portion of the lens structure.
Abstract:
A liquid crystal display includes a first substrate, a first subpixel electrode is disposed on the first substrate and has a planar shape and, an insulating layer disposed on the first subpixel electrode, a second subpixel electrode which is disposed on the insulating layer, overlaps the first subpixel electrode, and includes a plurality of branch electrodes, a second substrate facing the first substrate, a common electrode disposed on the second substrate, and a liquid crystal layer injected between the first substrate and the second substrate, where the first subpixel electrode and the second subpixel electrode are applied with voltages of the same magnitude, and dielectric anisotropy of the liquid crystal layer is about −2.0 to about −2.7 at a temperature of about 30 degrees Celsius.
Abstract:
A backlight unit including: a light guide plate; a wavelength conversion pattern disposed on a lower surface of the light guide plate; and a scattering pattern disposed on the lower surface of the light guide plate, wherein the wavelength conversion pattern and the scattering pattern do not overlap each other in a plan view.
Abstract:
A liquid-crystal display device includes a display panel connected to first to nth gate lines and first to nth control lines, where n is a natural number greater than one, and a gate driving unit which sequentially applies first to nth gate signals having a first pulse width to the first to nth gate lines, respectively, for a unit frame, where the first to nth control lines are sorted into first to kth control line groups, where k is a natural number greater than one and less than n, the gate driving unit sequentially applies first to kth control signals having a second pulse width to the first to kth control line group, respectively, for the unit frame, and the first pulse width is smaller than the second pulse width.
Abstract:
Disclosed is a liquid crystal composition. The liquid crystal composition includes liquid crystal molecules including at least one of a liquid crystal compound having an alkenyl group and a liquid crystal compound having an alkoxy group, and a first stabilizer including a compound having a structure represented by Formula 1: where n is 0 or 1; m is 0 or 1; k is 0 or 1; Z1, Z2, and Z3 are each independently a single bond, —C═C—, —OCO—, —COO—, —CF2O—, or a C1 to C5 alkylene group; X1, X2, X3, and X4 are each independently hydrogen or halogen; Y is hydrogen, an alkylene group, an alkoxy group, a hydroxyl group, —NHCOCH3, or ═O; and A and B are cyclic compounds.
Abstract:
Provided are a light emitting diode package and a backlight assembly including the light emitting diode package. The light emitting diode package may comprise a package main body including a cavity; a light emitting diode (LED) chip positioned in the cavity; a lead frame installed in the package main body, positioned in the cavity at least partly, electrically connected to the light emitting diode chip mounted on the lead frame, and having one surface having a diffusion reflective layer thereon.