Abstract:
A display device may include a display portion to maintain a display state in accordance with a voltage applied thereto; and a plurality of light transmission regions adjacent to the display portion at positions corresponding to a plurality of light sources arranged over the display portion.
Abstract:
A display device includes a first display module for receiving image data and displaying an image according to the received image data; a second display module disposed on the first display module and for receiving image data and displaying an image according to the received image data; and a control module for controlling the first display module and the second display module. The control module controls the second display module and makes the second display module modulated into a visible light band transmission state or a visible light band reflection state. When the second display module is modulated into the visible light band transmission state, the second display module is transparent to the visible light and penetrates the image displayed on the first display module.
Abstract:
A display panel includes a first substrate, a first transparent electrode disposed on the first substrate, and to which a first voltage is applied in a display mode which an image is displayed, a polymer dispersed liquid crystal layer disposed on the first transparent electrode having photosensitive polymer molecules and liquid crystal molecules, and a second transparent electrode disposed on the polymer dispersed liquid crystal layer and to which a second voltage is applied in the display mode.
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 multilayer image display device contains at least the following components arranged along a longitudinal extension direction from the rear toward the front in this order: a) a light source, b) a first liquid crystal layer, and c) a second liquid crystal layer. At least one polarization filter is assigned to the first liquid crystal layer and at least one polarization filter is assigned to the second liquid crystal layer. The light from the light source is furthermore guided through at least one optical and/or electro-optical retardation element before it reaches an observer.
Abstract:
A device is disclosed that is capable of independently modulating the transparency and emissive color of individual pixels that comprise an electronic display. Modulating the transparency of a transmissive layer allows a darkened or semi-darkened foreground field to be provided on the display. Modulating the color of an emissive layer further makes controllable the brightness and color of the foreground field. When these parameters are controlled, the display can generate partially transparent or opaque graphical elements that appear over the scene behind the display. In some embodiments separate emissive layers are provided on the front and back side of a central transmissive layer, thereby allowing different graphical information to be provided on the front and back side of the display. In other embodiments multiple transmissive and emissive layers can be stacked together, thereby allowing three-dimensional imagery to be generated without the need for viewers to use specialized viewing glasses.
Abstract:
Display devices and composites for making display devices are disclosed. Some embodiments include a display device having an inorganic electroluminescent layer, an active matrix layer; an inorganic polarizing layer, a liquid crystal layer, and a color filtering layer. Some embodiments include a composite having an inorganic polarizing layer and inorganic electroluminescent layer. Methods of making and using the display device and composite are also disclosed.
Abstract:
A display panel with two display directions opposite to each other, an electronic device and a method for switching the electronic device are provided. The display panel comprises a substrate, a first switching element, a second switching element, and a light-emitting diode. The first switching element is coupled to a scan line and a data line. The second switching element is coupled to a power source. The light-emitting diode is coupled to the second switching element and another power source. The display panel further comprises a dielectric layer covering the above elements, a pixel electrode formed on the dielectric layer, an opposite substrate formed above the substrate and a non-emission display medium layer formed between the substrate and the opposite substrate. The pixel electrode is coupled to an electrode of the first switching element through the opening and is made of reflective material.
Abstract:
A display including an electroluminescent layer, a liquid crystal layer, and a first electrode and a second electrode arranged such that the electroluminescent layer and the liquid crystal layer are disposed between the first and second electrodes and arranged to apply an electric field across both the electroluminescent layer and the liquid crystal layer.
Abstract:
A display device includes a transparent display panel and an adjustable light valve. The transparent display panel and the adjustable light valve are disposed opposite to each other. The transparent display panel includes a plurality of pixels including active-matrix organic light-emitting diodes for generating an image. When the display device operates under a transparent display mode, the adjustable light valve is in a transparent status. When the display device operates under a high color saturation display mode, the adjustable light valve is in a non-transparent status. Thereby, the display device will not be limited to having only a display mode.