Abstract:
The invention relates to electro-optic displays and methods for driving such displays. The invention provides (i) electrochromic displays with solid charge transport layers; (ii) apparatus and methods for improving the contrast and reducing the cost of electrochromic displays; (iii) apparatus and methods for sealing electrochromic displays from the outside environment and preventing ingress of contaminants into such a display; and (iv) methods for adjusting the driving of electro-optic displays to allow for environmental and operating parameters.
Abstract:
A multilayer liquid crystal display element has a plurality of data electrode layer-to-layer interconnects formed in a non-display area of a liquid crystal display panel for connecting data electrodes of liquid crystal display panels for R, G, and B to a plurality of data signal input terminals from layer to layer, and a plurality of scanning electrode layer-to-layer interconnects formed in the non-display area for connecting scanning electrodes of the liquid crystal display panels for R, G, and B to a plurality of scan signal input terminals from layer to layer.
Abstract:
A method of manufacturing an information display device having an information display panel, in which display media are sealed between two substrates, at least one substrate being transparent, and, in which the display media, to which an electrostatic field is applied, are made to move so as to display information such as an image, is characterized in that the improvement comprises, in the case of electrically connecting an electrode arranged on one substrate and an electrode arranged on the other substrate at an outer portion of an information display portion of the information display panel, the steps of: arranging an adhesive including conductive spacer particles having a diameter smaller than a distance between the electrodes arranged on the substrates at a predetermined portion between the substrates; and pressing a portion of the substrate, to which the adhesive is arranged, under pressure; so that the electrode arranged on one substrate is electrically connected to the electrode arranged on the other substrate.
Abstract:
An exemplary liquid crystal panel (400) includes a first substrate (401) having a common electrode layer (429), a second substrate (402) parallel to the first substrate, and a liquid crystal layer (403) between the first and second substrates. The liquid crystal layer defines an active area (406) thereat. The second substrate includes common lines (440). Electrical coupling elements are disposed at the active area, so as to electrically couple the common electrode layer to the common lines.
Abstract:
Novel addressing schemes for controlling electronically addressable displays include a scheme for rear-addressing displays, which allows for in-plane switching of the display material. Other schemes include a rear-addressing scheme which uses a retroreflecting surface to enable greater viewing angle and contrast. Another scheme includes an electrode structure that facilitates manufacture and control of a color display. Another electrode structure facilitates addressing a display using an electrostatic stylus. Methods of using the disclosed electrode structures are also disclosed. Another scheme includes devices combining display materials with silicon transistor addressing structures.
Abstract:
The present invention is an active matrix electrochromic display architecture where the active components are placed on the backplane of the display, thereby maximizing the viewable pixel area. The cathode of the electrochromic pixel is placed on top of the active components, with respect to the viewer, thereby allowing the active components to be as large as desired while not interfering with the viewable area of the pixel.
Abstract:
A pixel array module includes a substrate, a pixel electrode array, a patterned conductive layer and a semiconductor circuit unit. The substrate has a first surface and a second surface opposite to the first surface. The pixel electrode array is disposed on the first surface of the substrate. The patterned conductive layer is disposed on the second surface of the substrate, and the patterned conductive layer is electrically connected to the pixel electrode array. The semiconductor circuit unit has at least one input terminal and at least one output terminal, which is electrically connected to the patterned conductive layer. A flat display apparatus is also disclosed.
Abstract:
The present invention is directed to a flexible backplane for direct drive display devices and methods for its manufacture. The flexible backplane has many advantages. Because there is no need for a polyimide layer and only one layer of metal foil is used, the backplanes may be manufactured at a relatively low cost.
Abstract:
A method of constructing a liquid crystal display element or similar article of manufacture includes providing a first transparent substrate bondable to a second transparent substrate. The second transparent substrate has a plurality of vias passing through opposing active faces. A dispensing technique is used to fill the vias void-free with an optical grade adhesive material to form the LCD element.
Abstract:
A liquid crystal display device (LCD), and particularly to a liquid crystal display which has reduced production cost and enhanced performance. The LCD comprises an optical module, a control module and a backlight module. The optical module is fabricated with known liquid crystal manufacturing process to provide at least a liquid crystal layer and a plurality of pixel unit electrodes, which are provided with a pixel electrode transparent area and a pixel electrode reflective area respectively. The control module is fabricated with known semiconductor manufacturing process. Further, using a plurality of conductive plugs disposed at preset positions, the backlight module is electrically connected to the pixel unit electrodes of optical module and the control circuit devices of the control module. The structure of the present invention resulting enhanced performance of the product, production yield and reliability, and reduced production cost.