Abstract:
Disclosed herein is a parallax barrier including a first substrate, a second substrate and a liquid crystal layer disposed between the first and the second substrates. A plurality of first strip electrodes and a plurality of second strip electrodes are arranged on the first substrate, whereas a plurality of third electrodes and a plurality of fourth electrodes are arranged on the second substrate. Each of the third electrodes has a step-shaped first portion and each of the fourth electrodes has a step-shaped second portion.
Abstract:
A display device includes: a substrate including a display area composed of a plurality of pixels disposed in a matrix; lower electrodes each formed in each of the plurality of pixels on the substrate and composed of a conductor; an organic layer formed on the lower electrodes and including a light-emitting layer; an upper electrode formed on the organic layer and composed of a conductor; and a pixel separation film at least a portion of which includes polymer dispersed liquid crystal, the pixel separation film being in contact with edges of the lower electrodes to insulate between the lower electrodes of the pixels adjacent to each other.
Abstract:
The present disclosure relates to the use of a solid background layer in conjunction with a transparent display panel. In one such implementation, a layer that is switchable between opaque and transparent states is provided between the solid background layer and the transparent display panel. By switching the switchable layer between opaque and transparent states, visibility of the background layer through the transparent display panel may be controlled.
Abstract:
A display module is disclosed herein. The display module includes a substrate, an auxiliary display component, and an e-paper display component. The auxiliary display component is disposed on the substrate. The e-paper display component is disposed on the auxiliary display component. In a shutter mode, the e-paper display component is substantially transparent, such that an image displayed by the auxiliary display component can pass along the e-paper display component and can be presented on a viewing side of the display module.
Abstract:
A gaming system including an electronic gaming machine (EGM) having a multi-layer display is described. In particular, the EGM can be configured with a display that provides a 3D-like image. An acousto-optical modulator interstitial component can be positioned between two liquid crystal displays to mitigate moiré interference. A piezoelectric transducer can be attached to a glass interstitial component or to a display panel of a multi-layer display in order to control the moiré interference.
Abstract:
An emissive display system includes an electro-optic device having a first substantially transparent substrate including first and second surfaces, at least one of which includes a first electrically conductive layer. A second substantially transparent substrate includes third and fourth surfaces, at least one of which includes a second electrically conductive layer. A primary seal is disposed around perimeter portions of the first and second substrates, which define a cavity therebetween. An electro-optic medium is disposed in the cavity and is variably transmissive such that the electro-optic device is operable between substantially clear and darkened states. A plurality of beads are disposed in a central portion of the cavity and are movable to a perimeter portion of the cavity. A substantially transparent light emitting display is disposed adjacent to the electro-optic device, which is in the darkened state when the light emitting display is emitting light.
Abstract:
An emissive display system includes an electro-optic device having a first substantially transparent substrate including a first electrically conductive material associated therewith. A second substantially transparent substrate is spaced apart from the first substrate to define a cavity and includes a second electrically conductive material associated therewith. One or more spacing members are positioned within the cavity and include one or more polymer matrix discs configured to maintain a cell spacing between the first and second substrates. An electro-optic medium is disposed within the cavity and is variably transmissive such that the electro-optic device is operable between substantially clear and darkened states, and includes at least one solvent, at least one anodic material, and at least one cathodic material. A substantially transparent light emitting display is operably coupled to the electro-optic device, which is in the darkened state when the light emitting display is emitting light.
Abstract:
Disclosed are dual mode display devices and methods of manufacturing the same. The dual mode display device may include a first substrate, a first electrode on the first substrate, a second substrate opposite to the first electrode and the first substrate, a second electrode between the second substrate and the first electrode, a third electrode between the first electrode and the second electrode, an optic switching layer between the first electrode and the third electrode, and an organic light-emitting layer between the second electrode and the third electrode.
Abstract:
A display panel including a substrate, a meshed shielding pattern, and a plurality of light-emitting devices is provided. The meshed shielding pattern is disposed on the substrate so as to define a plurality of pixel regions on the substrate. The light-emitting devices are disposed on the substrate. At least one light-emitting device of the light-emitting devices is disposed in each pixel region of the pixel regions, wherein an area of the pixel region is A1, an area of the light-emitting device is A2, and a ratio of A2 to A1 is below 50%.
Abstract:
An exemplary display device includes a substrate, a plurality of first and second pixel units, a first display layer, a second display layer, a spacer and a first color filter. The substrate has a first and a second display region. The first and second pixel units are disposed in the first and second display regions, respectively. The first display layer and the second display layer are disposed on the first and second pixel units, respectively. The first display region is surrounded by the spacer therefore the first display layer is separated from the second display layer. The first color filter is disposed on the first display layer. The first display layer and the second display layer are based on different displaying mechanisms. Therefore, the display device has the advantages of both the first display layer and the second display layer.