Abstract:
A substrate support frame includes a body having an upper surface for supporting a first module substrate and a lower surface for supporting a second module substrate, and including a plurality of extending portions that define a cavity for receiving semiconductor devices mounted on first and second module substrates, a curved portion protruding outwardly from a first one of the extending portions of the body corresponding to a position of a flexible substrate that electrically connects the first and second module substrates to each other, the curved portion having a curved sectional shape protruding toward the flexible substrate, and a fastening hole penetrating through the first one of the extending portions of the body and configured to receive a screw to couple the body to at least one of the first and second module substrates.
Abstract:
A unitary printed circuit board assembly includes a circuit board and a flexible substrate extending from, and continuous with, the circuit board. The flexible substrate includes a first portion extending from the circuit board and terminating a second portion. The second portion of the flexible substrate can be wrapped about a spring form. The assembly can be disposed in a housing defining a body and an ear insertion stem, with the spring form disposed within the ear insertion stem with arms of the spring form applying a biasing force against inner surfaces of the ear insertion stem.
Abstract:
A flexible board includes a first sheet section including a first principal surface, a second sheet section including a second principal surface and provided in a different position from the first principal surface in a normal direction to the first principal surface, at least one first bent sheet section configured to connect ends of the first and second sheet sections, the first bent sheet section including a third principal surface not parallel to the first and second principal surfaces, and at least two second bent sheet sections each including a fourth principal surface and provided in different positions from the third principal surface in a normal direction to the third principal surface. The second bent sheet sections are positioned so as to sandwich the first bent sheet section therebetween when viewed in a plan view in the normal direction to the third principal surface.
Abstract:
Provided is a display apparatus. The display apparatus includes a display panel, a back cover disposed on a rear side of the display panel, the back cover having a curved shape of which both ends protrude forward, and a fixing part fixing the back cover to maintain the curved shape of the back cover. The display panel is curved in a shape corresponding to that of the back cover.
Abstract:
A display device includes: a lower substrate; an upper substrate facing the lower substrate; a printed board assembly disposed on a rear surface of the lower substrate; a first flexible printed circuit board having a first end and a second end that are respectively connected to the lower substrate and the printed board assembly; and a second flexible printed circuit board having a first end and a second end that are respectively connected to the upper substrate and the printed board assembly. One of the first flexible printed circuit board and the second flexible printed circuit board has an opening at a central portion, and the other flexible printed circuit board at least partially overlaps the opening in a plane view.
Abstract:
A flexible display module includes a panel having a display unit thereon, and a built-in battery which supplies an internal power source to the panel, for driving the display unit.
Abstract:
An organic electroluminescent module of the present invention includes an organic EL panel and an electrical connection unit. The electrical connection unit includes a flexible substrate including a body disposed adjacent to a light-emitting surface of the organic EL panel, and a contact piece defined by a cutout in the body and disposed remote from the light-emitting surface of the organic EL panel; a capacitance sensing circuit and drive circuits formed on a surface of the body; lands formed on a surface of the contact piece; and metal layers formed on a surface of the contact piece in portions overlapping with the lands.
Abstract:
A method of making a folded micro-wire substrate structure includes providing a flexible substrate and first, second, and third portions. One or more electrical conductors are formed on or in the flexible substrate. The flexible substrate is folded with a first fold between the first and second portions so that the first portion is located adjacent to the second portion in a perpendicular direction. The flexible substrate is folded with at least a second fold between the second and third portions so that the second side is between the second portion and the third portion in the perpendicular direction. The folded flexible substrate is secured to form the folded micro-wire substrate structure.
Abstract:
A method of making a micro-wire circuit structure adapted for wrapping includes providing a display and a flexible substrate. The flexible substrate includes a plurality of electrically conductive micro-wires on, in, or adjacent to a common side of the flexible substrate and forming micro-wire electrodes in a touch portion of the flexible substrate. One or more electrical circuits is located on or in a circuit portion of the flexible substrate and one or more micro-wires electrically connects the one or more electrical circuits to corresponding micro-wire electrodes. The flexible substrate is located in relation to the display with the touch portion located adjacent to a display viewing side, the circuit portion located adjacent to a display back side, and an edge portion of the flexible substrate wrapping around a display edge from the display viewing side to the display back side.
Abstract:
A flexible circuit board includes a first connection section and a second connection section between which a stretchable extension section is connected and has at least a portion that is shapeable by a shapeable material layer to form a spiral section. The spiral section is stretchable in the extension direction. The spiral section provides the flexible circuit board with characteristics of better flexibility, stretchability, capability of eliminating stresses induced in multiple directions.