Abstract:
A portable electronic device commonly includes one or more batteries. Further, a portable electronic device may be manufactured using one or more overmolding techniques to achieve certain aesthetic and/or mechanical characteristics. Batteries within the portable electronic device may be overmolded by using a covering, wherein the covering includes a protective layer such that the batteries are not exposed to the high temperatures and high pressures associated with an overmolding process which may be in excess of temperature and pressure thresholds associated with the batteries.
Abstract:
Disclosed are a touch window and a touch device including the same. The touch window includes first and second areas, wherein the second area is bentable from the first area.
Abstract:
Disclosed herein is a display apparatus which may be selectively used in a flat state or a curved state. The display apparatus includes a display module that displays an image and is provided to be bent, and a bending device that is provided to enable the display module to be transformed into a flat state or a curved state. Here, the bending device includes a frame that is provided at a rear side of the display module and a hinge unit that connects between the frames and is provided to enable curvature of the frame to vary by torque.
Abstract:
A display device includes: a backlight chassis; and a circuit substrate having a substrate rear surface facing the chassis with a circuit pattern formed on the substrate rear surface and having a part held with respect to the chassis, the chassis having a drawn part with which an edge of the source substrate makes contact when the source substrate is displaced.
Abstract:
Disclosed are a touch panel and a method for manufacturing the same. A touch panel can include a substrate, a transparent electrode base on the substrate, a first transparent electrode on the transparent electrode base and extending in a first direction, and a second transparent electrode on the transparent electrode base and extending in a second direction. A method of manufacturing a touch panel can include preparing a substrate and a transparent electrode base, forming a transparent electrode over the transparent electrode base, and forming an electrode material over the transparent electrode base.
Abstract:
One embodiment of the present invention provides a highly reliable display device. In particular, a display device to which a signal or a power supply potential can be supplied stably is provided. Further, a bendable display device to which a signal or a power supply potential can be supplied stably is provided. The display device includes, over a flexible substrate, a display portion, a plurality of connection terminals to which a signal from an outside can be input, and a plurality of wirings. One of the plurality of wirings electrically connects one of the plurality of connection terminals to the display portion. The one of the plurality of wirings includes a first portion including a plurality of separate lines and a second portion in which the plurality of lines converge.
Abstract:
It is an object of this invention to provide an FPC capable of improving tamper resistance. An FPC (1) of this invention includes: a signal line pattern (2) for inputting a communication signal; and signal protective line patterns (3, 4) provided to be opposed to an upper surface and a lower surface of the signal line pattern and having the same width as a width of the signal line pattern (2) or a larger width than the width of the signal line pattern (2). The signal protective line patterns are provided along the signal line pattern within a region that requires tamper resistance.
Abstract:
A flexible printed circuit connector structure and assembly method. A panel with a back side that is parallel to a first plane and a flexible printed circuit backer that has a base and a backing structure. The base is attached to the back side of the panel. The backing structure depends from the base and extends along a second plane that forms an angle with the first plane. A first flexible circuit side of the flexible printed circuit is attached to a first side and an opposite second side of the backing structure. The flexible printed circuit has exposed conductors on a second flexible circuit side that is opposite the first flexible circuit side.
Abstract:
An exemplary embodiment of the present disclosure includes a PCB mounted with an image sensor, a base installed at an upper surface of the PCB to centrally form an optical path, a lens holder coupled to an upper surface of the base to form an optical path by being mounted with at least one or more sheets of lenses, a variable lens arranged on the optical path centrally formed at the base to control a refractive index of passing light, and an infrared cut-off coating layer provided on a surface of the variable lens to filter an infrared component from the optical path-passing light.
Abstract:
A printed electrical circuit and methods for additively printing electrical circuits. Patterned layers of conductive, insulating, semi-conductive materials, and other materials are print deposited on a flexible or rigid substrate to form electrical circuits. A buffering layer is selectively deposited to cover or encapsulate these materials to comprise a comfort layer that provides a soft and comfortable interface to the skin of a wearer. The comfort layer can be selectively deposited on the same press that the conductive, insulating, semi-conductive materials, and other materials are deposited. Further, the comfort layer is selectively deposited only where it is desired and exactly where it is desired.