Abstract:
A stacked packaging assembly for a plurality of integrated circuit devices (76) employs a web (61) of flexible interconnect material folded into a 'layered' arrangement of parallel web fingers (61) onto which a plurality of integrated circuit devices (76) are surface-mounted. The leads (71, 73) of the integrated circuit devices (76) are attached to interconnect links (81, 83) of the flexible interconnect web (61). A plurality of heat sink plates (115) are interleaved with the folded web fingers (61) of the stack, as so to engage the integrated circuit devices (76) mounted on the web fingers (61). The heat sink plates (115) are retained by thermally conductive spacer blocks (131, 133) along their edges. The spacer blocks (131, 133) are clamped together in a compact laminate structure, so as to form a rigid support which relieves mechanical stresses at the folds of the web fingers (61).
Abstract:
본 발명의 과제는 고신뢰성을 실현하면서 적층형 전지의 각 단전지의 전압의 모니터를 가능하게 하는 배선 기판을 제공하는 것이다. 적층형 전지의 각 단전지의 집전 박 사이에 삽입시키는 배선 기판(100)은, 복수의 치(110)와 하나의 손잡이(130)를 갖는 빗살 형상을 갖는 절연 기판(141)과, 절연 기판 상에 형성되고 상기 복수의 치(110)의 선단부(111)로부터 상기 손잡이(130)의 단부까지 각각 신장하는 것에 의해 복수의 치(110)의 선단부(111)에 접촉하는 도전체의 전위를 상기 손잡이(130)의 단부까지 개별로 전도하는 복수의 배선으로 이루어지는 배선층(143)을 갖는다. 치, 선단부, 배선층, 배선 기판, 단전지
Abstract:
PURPOSE: An electro-optic device, a method for manufacturing the same, and an electronic apparatus are provided to obtain a small size by opposing electronic parts of a protruding portion of an interface substrate each other and reduce the manufacturing cost by using one interface substrate. CONSTITUTION: An electro-optic device is made by connecting an interface substrate(20) to an electro-optic panel having an image display portion(11) through a connecting portion(22). The interface substrate includes a folding portion folded from the connecting portion to the other side of the electro-optic panel and protruding portions(23,24) extended from the folding portion positioned at the other side of the folding portion. The protruding portion is folded to the surface of the electro-optic panel, and an electronic part(28) of the protrusion portion is arranged to oppose the surface of the electro-optic panel.
Abstract:
A biocompatible, micro-fabricated ribbon cable is described in which at least one set of conductors diverges laterally into a bypass wing that forms an aperture through the ribbon cable. The bypass wing is folded in a line through the aperture and over a central portion of the ribbon cable, resulting in a ribbon cable with a narrow, stacked region. The narrow region can fit through small incisions in membranes, such as through an incision in a sclera of an eyeball. The ribbon cable can have an integrally-formed electrode array for attaching to a retina of an eyeball and other electronics for sending signals to the electrode array.
Abstract:
An FPC of a capacitive touchscreen and a method for mounting the FPC. The FPC comprises a sensing circuit and a driving circuit which respectively matches with a sensing circuit layer and a driving circuit layer of a capacitive touchscreen panel and have several contacts for matching the sensing circuit layer and the driving circuit layer for corresponding connection; an IC driving chip, disposed between the sensing circuit and the driving circuit. The sensing circuit and the driving circuit are disposed in parallel or on the same line. The sensing circuit or the driving circuit is provided with a bending area, and the sensing circuit or the driving circuit is able to be turned towards the driving circuit or the sensing circuit, so as to allow the sensing circuit to match the sensing circuit layer and allow the driving circuit to match the driving circuit layer. According to the present invention, the FPCs of the capacitive touchscreen can be compactly arranged on a substrate, so that the utilization rate of the substrate is greatly increased and the cost is reduced.