Abstract:
A backlight assembly includes a light guide plate guiding light, one or more light sources disposed on a side of the light guide plate and generating and providing the light to the light guide plate, a housing including a bottom portion and sidewall portions which each extend from the bottom portion, and accommodating the light guide plate and the light sources, and a light source cover. The light source cover includes a flat portion which contacts a top surface of the light guide plate, a height-adjusting portion which extends upward or downward from the flat portion to form a stepped shape and has the light sources installed thereunder, and fixing portions which extend from the height-adjusting portion and are fixed to a corresponding one of the sidewall portions. A centerline of the light sources is aligned with a centerline of the light guide plate.
Abstract:
One embodiment generally described herein can be characterized as a semiconductor device. The semiconductor device can include a first transistor on a semiconductor substrate. A first interlayer insulating layer may be disposed over the first transistor and includes a first recess region. A single-crystalline semiconductor pattern may be disposed in the first recess region. A single-crystalline semiconductor plug may connect the semiconductor substrate to the single-crystalline semiconductor pattern. A second transistor may be disposed on the single-crystalline semiconductor pattern.
Abstract:
A liquid crystal display includes a first substrate and a second substrate facing each other, a pixel electrode disposed on the first substrate and including a first sub-pixel electrode and a second sub-pixel electrode spaced apart from the first sub-pixel electrode by a gap, a common electrode disposed on the second substrate, a shielding member disposed on the first substrate or the second substrate and overlapping the gap between the first sub-pixel electrode and the second sub-pixel electrode, an alignment layer disposed on at least one of the pixel electrode and the common electrode, and a liquid crystal layer disposed between the first substrate and the second substrate.
Abstract:
A light emitting diode (“LED”) backlight assembly. The LED backlight assembly has a bottom container which has a bottom plate and a side edge surrounding the bottom plate, a plurality of light emitting diode printed circuit boards (“LED-PCBs”) on the bottom plate, and a connector which is closely located to edge located LEDs. The connector of the LED-PCB is closely located to an LED driving board, which is disposed at a lateral space of a lateral part of the bottom container to limit a vertical thickness of the backlight light assembly.
Abstract:
A display substrate includes a transparent substrate, a gate line formed on the transparent substrate, a data line crossing the gate line, a thin film transistor electrically connected to the gate line and the data line, and a pixel electrode. The pixel electrode includes a body electrode section electrically connected to the thin film transistor and a plurality of protruding electrodes protruding from the body electrode section. Each of the protruding electrodes includes a trapezoidal electrode having two sides that are inclined with respect to a protrusion direction that is a lengthwise direction of the body electrode section.
Abstract:
In a backlight assembly and an LCD apparatus including the same, a backlight assembly includes a lamp unit, a light guide plate and a receiving container. The lamp unit includes a lamp, a porosity lamp holder having a plurality of pores, and a lamp cover combined with the porosity lamp holder and surrounding the lamp. The light guide plate guides the light of the lamp unit. The receiving container receives the lamp unit and the light guide plate. The porosity lamp holder includes a porosity portion including the pores and a surface portion surrounding the porosity portion. A diameter size of the pores is between about 10 μm to about 50 μm.
Abstract:
A scan driver drives a display device having a plurality of gate lines transferring scan signals, and a plurality of source lines transferring data signals. The scan driver includes a shift register and a multiple signal applying unit. The shift register includes a plurality of cascade-connected stages, each stage having an output terminal electrically connected to a respective one of the plurality of gate lines. The multiple signal applying unit applies a sub scan signal and a main scan signal. The sub scan signal and the main scan signal sequentially activate each of the plurality of gate lines. Therefore, the scan lines receive the scan signal twice, so that the liquid crystal capacitors electrically connected to the gate lines receive the data voltage twice. As a result, even though the time for charging the liquid crystal capacitors may be reduced, the liquid crystal capacitors may be fully charged to enhance display quality.
Abstract:
A light emitting module includes a light emitting chip generating light, a case and a lead frame. The case includes a bottom plate and sidewalls connected to the bottom plate. The bottom plate and the sidewalls define a receiving space in which the light emitting chip is received. The light is emitted in a first direction through an opening portion opposite to the bottom plate. The lead frame includes an electrode portion disposed in the case, and electrically connected to the light emitting chip, a connecting portion extending from the electrode portion and disposed outside of the case, a mounted portion disposed adjacent to the connecting portion, and a buffering portion disposed between the connecting portion and the mounted portion. The buffering portion has a generally nonlinear shape protruding in a direction substantially perpendicular to the first direction.
Abstract:
A backlight assembly includes a first substrate, a first electrode disposed on the first substrate, a second substrate disposed opposite to the first substrate, and a connector. The connector is disposed on the second substrate and includes a second electrode connected to the first electrode, and an elastic member which applies a force to the second electrode. The connector increases a contact force between the first electrode and the second electrode by applying the force to the second electrode.
Abstract:
A backlight assembly includes; a plurality of light guide blocks disposed substantially in parallel with each other along a first direction, each of the plurality of light guide blocks including; a light guide plate (“LGP”) having a wedge-shape decreasing in thickness from a first side thereof to a second side thereof, and a light source unit disposed facing a side surface of the LGP, and a light source driving unit which individually controls the light source units of the plurality of light guide blocks to emit light via a local dimming method.