Patent classifications
G02F2201/08
REFLECTIVE DISPLAY DEVICE
A reflective display device includes an electrophoretic display (EPD) module, an optical layer, a color filter layer, and at least one quantum dot (QD). The optical layer is located above the electrophoretic display module. The color filter layer is located on the optical layer. The quantum dot is located between the optical layer and the electrophoretic display module. When first light passes through the optical layer and transmits to the quantum dot, the quantum dot emits second light, and the electrophoretic display module is configured to reflect the second light to irradiate outwards from the color filter layer.
LIGHT CONTROL FILM AND DISPLAY DEVICE INCLUDING THE SAME
A light control film includes a first light absorbing layer, a first organic layer disposed on the first light absorbing layer, and a second light absorbing layer disposed on the first organic layer. At least one of the first light absorbing layer and the second light absorbing layer includes a first layer including a metal oxide, a second layer disposed on the first layer and including a metal, and a third layer disposed on the second layer and including a metal oxide.
Display device and optical composite sheet used therein
In the display device according to an embodiment, optical functional elements such as a prism sheet and a light diffusion layer are combined, and an optical composite sheet to which a light absorbing layer that selectively absorbs light of a specific wavelength band is inserted is used, so that the color gamut can be enhanced as compared with the prior art.
DISPLAY DEVICE HAVING BACKLIGHT
According to one embodiment, a display device includes a display panel including a first sub display area and a second sub display area, and an illumination device, wherein the illumination device includes a first light source opposed to the first sub display area, a second light source opposed to the second sub display area, and a partition positioned between the first and second light sources and the display panel, and the partition includes a first side surface surrounding the first light source, a second side surface surrounding the second light source, and a connector which connects the first side surface and the second side surface, and the connector is formed of curved surfaces, or two or more flat surfaces, or a combination of curved surfaces and flat surfaces.
PHOTOVOLTAIC DEVICES FOR SWITCHABLE WINDOWS
The present disclosure relates to a device that includes a switchable photovoltaic (PV) device that includes a first active material and a static PV device that includes a second active material, where the switchable PV device and the static PV device are positioned substantially parallel to one another, the switchable PV device has a first state that is substantially transparent to a first wavelength of light in the visible spectrum, the switchable PV device has a second state this is substantially opaque to a second wavelength of light in the visible spectrum, the switchable PV device can be reversibly switched between the first state and the second state, the static PV device is substantially transparent to the visible spectrum of light, and both the switchable PV device and static PV device are capable of generating power.
Liquid crystal display and manufacturing method thereof
A wide viewing angle liquid crystal display includes color filters having a quantum dot and scattering particles and liquid crystal layer disposed in a microcavity, a distance between the color filter and the liquid crystal layer being sized to minimize display deterioration due to parallax.
Display device having backlight
According to one embodiment, a display device includes a display panel including a first sub display area and a second sub display area, and an illumination device, wherein the illumination device includes a first light source opposed to the first sub display area, a second light source opposed to the second sub display area, and a partition positioned between the first and second light sources and the display panel, and the partition includes a first side surface surrounding the first light source, a second side surface surrounding the second light source, and a connector which connects the first side surface and the second side surface, and the connector is formed of curved surfaces, or two or more flat surfaces, or a combination of curved surfaces and flat surfaces.
Adhesive, display panel and manufacturing method thereof, display device
An adhesive, a display panel and a manufacturing method thereof, and a display device are provided. The adhesive includes a base bonding material and a light-shielding particle, and the light-shielding particle includes a degradable coating layer and a light-shielding material wrapped by the degradable coating layer.
Liquid lens
A liquid lens may include a first plate which accommodates a conductive liquid and a non-conductive liquid, has an opening formed therein and having a predetermined inclined surface, and is formed from silicon; a first electrode disposed on the first plate; a second electrode disposed under the first plate; a second plate disposed on the first electrode; a third plate disposed under the second electrode; and a light blocking layer disposed between the first plate and the third plate.
Method for manufacturing optical laminate, optical laminate, and image display device
An object of the present invention is to provide a method for manufacturing an optical laminate in which an alignment defect is less likely to occur in a light-absorbing anisotropic layer even in a case where a surface of a photo-alignment layer is rubbed; an optical laminate; and an image display device. The method for manufacturing an optical laminate according to an embodiment of the present invention is a method for manufacturing an optical laminate in which an optical laminate including a photo-alignment layer and a light-absorbing anisotropic layer and having a front transmittance of 60% or less is produced and which includes a photo-alignment layer formation step of forming a photo-alignment layer on a polymer film, and a light-absorbing anisotropic layer formation step of applying a liquid crystal composition containing a dichroic substance and a high-molecular liquid crystalline compound onto the photo-alignment layer to form a light-absorbing anisotropic layer.