Abstract:
A display apparatus for switching between 2-dimensional (2D) and 3-dimensional (3D) image displaying modes is disclosed. In one embodiment, the display apparatus includes: i) a display unit configured to emit light, ii) a first optical sheet configured to input the emitted light and output a first refracted light and iii) a second optical sheet configured to input the first refracted light and selectively output one of a second refracted light and a third refracted light, wherein the first optical sheet is located between the display unit and second optical sheet. The display apparatus further includes an actuator configured to move at least one of the first optical sheet and the second optical sheet between a contacting state and a separating state, wherein the first and second optical sheets contact each other at the contacting state so that the second optical sheet outputs the second refracted light, and wherein the first and second optical sheets are spaced apart from each other at the separating state so that the second optical sheet outputs the third refracted light.
Abstract:
The present embodiments relate to a plasma display panel (PDP) for preventing a glare effect caused by external light, and preventing a blur effect of an image. The PDP includes a first substrate, a second substrate facing the first substrate, a barrier rib, an address electrode, first and second electrodes, and a filter. The barrier rib is disposed between the first and second substrates and partitions discharge cells. The address electrode is disposed to correspond to the discharge cell and is extended in a first direction. The first and second electrodes are disposed by pairs to correspond to the discharge cell, and are extended in a second direction crossing the first direction. The filter is provided on the second substrate, and includes a bubble layer.
Abstract:
A display apparatus includes a display and a display filter, wherein the display filter includes a base film, a plurality of reflective elements, and a plurality of light absorbing elements, wherein each of the light absorbing elements corresponds to a reflective element.
Abstract:
An optical filter includes a base film and at least two conductive layers stacked on the base film, a first conductive layer of the two conductive layers having a first thickness and a first refractive index, and a second conductive layer of the two conductive layers having a second thickness and a second refractive index, the first and second refractive indices and the first and second thicknesses being configured to generate a destructive interference of external light reflected from the first and second conductive layers.
Abstract:
A filter that can prevent a double image and increase bright room contrast, has a reduced weight and low manufacturing cost, and is easy to manufacture, and a plasma display apparatus employing the filter. The filter includes a base film, a plurality of light absorbing pattern units that are extended on a surface of the base film in predetermined intervals having a stripe shape, blocking electromagnetic waves, and a reflection prevention layer covering the plurality of light absorbing pattern units.
Abstract:
A filter that has an excellent light room contrast, reduced double image formation, reduced external light reflection, lightweight, slim, inexpensive to produce, and a display apparatus having the filter. The filter made out of one sheet includes a reflection preventing layer arranged as the outermost layer of the filter, an electromagnetic wave shielding layer arranged on a rear surface of the reflection preventing layer and a base film arranged on a rear surface of the electromagnetic wave shielding layer.
Abstract:
A display apparatus includes a display and a display filter, wherein the display filter includes a base film and a plurality of beads, wherein each bead includes a light absorbing element and a transparent layer.
Abstract:
A display panel easily implements reflection color of a display. The display panel includes a panel which has a plate shape to implement an image, and an optical filter which is attached to the panel. The optical filter includes a color compensating layer which implements transmittance color by controlling transmittance light passing from an interior to an exterior of the panel, and a reflection layer which implements reflection color by controlling reflection light which is incident from the exterior to the panel, and which is reflected.
Abstract:
An optical filter and a plasma display device including the same are provided. The optical filter includes a support layer, and a plurality of stripe-shaped structures arranged at predetermined intervals on one surface of the support layer and formed using a material having a different refractive index than a refractive index of the support layer. In the optical filter, incident light is reflected at an interface between the support layer and the structure due to a difference of the respective refractive indices. Since the direction of entry of external light is the same as the reflected exit direction of the external light, visibility degradation caused by interference from the external light is minimized or reduced. Since the structure is formed using a material having a high transmittance, luminance loss of light generated by the display is also minimized.
Abstract:
An optical filter and a plasma display device having the same is provided. The optical filter includes a support layer. A photochromic pattern has pattern elements spaced apart on a surface of the support layer and has a light transmission characteristic wherein light transmission is changeable according to the intensity of external light.