Abstract:
An image projection system includes a translucent screen, a projector that projects image light to the translucent screen, and a controller that controls the projector and the translucent screen. The translucent screen includes a first light control film configured to be switchable between a transmissive state for transmitting incident light therethrough and a diffusion state for diffusing incident light, and a second light control film configured such that the transmittance thereof with respect to incident light can be changed. The controller has: a first mode in which, in the state where the projector does not project image light, the first light control film is in the transmissive state and the second light control film is in the state of having transmittance for transmitting incident light therethrough; and a second mode in which, in the state where the projector projects image light, the first light control film is in the diffusion state and the second light control film is in the state of having transmittance lower than the transmittance in the first mode. The controller is settable to the first mode or the second mode.
Abstract:
Provided are a spatial light modulator (SLM) and a method of fabricating the same. The complex spatial light modulator includes a thin film transistor (TFT) layer provided on a substrate, an amplitude type SLM and a phase type SLM electrically connected to the TFT layer, and a first polarizer provided on the phase type SLM, wherein the TFT layer includes transistors electrically connected to the amplitude type SLM and the phase type SLM, respectively, and the amplitude type SLM and the phase type SLM are commonly and electrically connected to the TFT layer and driven.
Abstract:
The present application discloses a substrate comprising a base substrate; a black matrix layer comprising an array of a plurality of black matrixes on a first side of the base substrate; and a plurality of electrophoresis cells on the first side of the base substrate. Each of the plurality of electrophoresis cells comprises a first electrode, a second electrode, a mixture of an electrophoresis media and charged particle. The charged particles are movable in response to an electrical signal.
Abstract:
An optical switching device includes: a plurality of optically variable bodies that are each variable in a degree of an optical state according to electric power; and an optical adjustment layer located between the plurality of optically variable bodies. The optically variable bodies each include: a pair of substrates; a pair of electrodes located between the pair of substrates; and an optically variable layer located between the pair of electrodes. The optical adjustment layer adheres the plurality of optically variable bodies in sheet form in a thickness direction, and adjusts a refractive index between respective substrates of adjacent optically variable bodies. The pair of electrodes have an exposed surface for supplying the electric power. An adhesion strength of the optical adjustment layer to the substrates is higher than an adhesion strength of the optically variable layer to the electrodes.
Abstract:
Provided is a novel display device which is highly convenient and reliable. The display device includes a first display element, a second display element, and a pixel circuit. The first display element includes a first electrode and a liquid crystal layer. The second display element includes a second electrode and a light-emitting layer. The first electrode includes a reflective film. The reflective film includes an opening. The first electrode and the second electrode are electrically connected to the pixel circuit. The light-emitting layer includes a quantum dot. The second display element is configured emit light toward the opening. The first display element and the second display element are configured to perform display in the same direction.
Abstract:
A novel information processing device that is highly convenient or reliable is provided. For example, a configuration including a selection circuit which has a function of selecting image information or background information on the basis of sensing information on the illuminance of an environment in which the information processing device is used and a photograph or a moving image included in the image information and supplying the selected information to a reflective display element or a light-emitting element has been devised.
Abstract:
A display panel and a display device are disclosed; and the display panel includes a first substrate and a second substrate which are disposed opposite to each other, and a light shielding pattern located between the two substrates; a side of the first substrate away from the second substrate is a light emitting side of the display panel; a plurality of first pixel units are additionally disposed in a peripheral region of the display panel and a side of the light shielding pattern away from the second substrate, and a driving circuit electrically connected with the first pixel units and a printed circuit board of the display panel.
Abstract:
The disclosure provides a light guide plate, a backlight unit, a display device and a display control system. The light guide plate has a first operation state and a second operation state. In the first operation state, an upper surface of the light guide plate is a surface where light comes out, and in the second operation state, the upper surface of the light guide plate includes a light exiting region and a non-light exiting region. In the technical solution of the present disclosure, when the display device performs a regional displaying, the light guide plate operates in the second operation state, here the upper surface of the light guide plate includes the light exiting region and the non-light exiting region; light emitted by a light source finally comes out from the light exiting region of the light guide plate after reflections inside the light guide plate.
Abstract:
Provided is a novel display panel that is highly convenient or reliable. The display device has two display modes: a reflective display mode and a light-emitting display mode. In the light-emitting display mode, light display is performed by transmitting light from a light-emitting element overlapping with an opening in a pixel electrode of a reflective display element. A switching element of the reflective display element and a switching element electrically connected to the light-emitting element are formed over one substrate. They are each a transistor whose channel formation region is formed in a silicon-containing film, specifically a polysilicon film.
Abstract:
An EL element including an EL light-emitting structure including a light-emitting layer on a transparent electrode, and a counter electrode on the light-emitting layer, a translucent substrate, and a light scattering layer between the EL light-emitting structure and the translucent substrate, the light scattering layer having a first surface on a transparent electrode side and a second surface on a side of the translucent substrate. The light scattering layer includes light scattering particles which includes particles that form agglomerates in a portion of the first surface such that the portion of the first surface has a concavo-convex shape. The light scattering particles further include particles positioned in order along the second surface such that the second surface is smoother than the portion of the first surface having the concavo-convex shape.