Abstract:
A multilayer wiring board includes a multilayer wiring substrate having a concave portion which accommodates an electronic component. The multilayer wiring substrate has multiple insulation layers, multiple conductive circuits, multiple vias and an electromagnetic shielding layer. The conductive circuits are separated by the insulation layers and electrically connected through the vias. The electromagnetic shielding layer has a roughened surface and formed along one of a bottom surface and side surfaces of the concave portion in the multilayer wiring substrate.
Abstract:
A method for manufacturing a multilayered printed circuit board including forming a first insulating resin substrate having a metal layer substantially corresponding to dimensions of a semiconductor device, forming a second insulating resin substrate, forming a recess extending to the metal layer of the first insulating resin substrate such that a surface of the metal layer is exposed, accommodating the semiconductor device in the recess such that the semiconductor device is mounted on the surface of the metal layer, and forming a resin insulating layer on the first insulating resin substrate such that the semiconductor device accommodated in the recess is covered.
Abstract:
A wiring board includes an insulating board, a wiring sub board having a wiring layer, and an insulating layer. The insulating layer has a via hole in which a conductor is formed by plating. The insulating board and the wiring sub board are horizontally laid out. The insulating layer is laid out to cover a boundary portion between the insulating board and the wiring sub board and continuously extends from the insulating board to the wiring sub board. A resin which constitutes the insulating layer is filled in the boundary portion. The conductor is electrically connected to the wiring layer.
Abstract:
A multilayered printed circuit board or a substrate for mounting a semiconductor device includes a semiconductor device, a first resin insulating layer accommodating the semiconductor device, a second resin insulating layer provided on the first resin insulating layer, a conductor circuit provided on the second resin insulating layer, and via holes for electrically connecting the semiconductor device to the conductor circuit, wherein the semiconductor device is accommodated in a recess provided in the first resin insulating layer, and a metal layer for placing the semiconductor device is provided on the bottom face of the recess. A multilayered printed circuit board in which the installed semiconductor device establishes electrical connection through the via holes is provided.
Abstract:
A flex-rigid wiring board includes an insulative substrate, a flexible wiring board positioned beside the insulative substrate, and an insulation layer positioned over the insulative substrate and the flexible wiring board and exposing at least a portion of the flexible wiring board. The flexible wiring board has a tapered portion which is made thinner toward the insulative substrate at an end portion of the flexible wiring board positioned beside the insulative substrate.
Abstract:
A wiring board and method of forming a wiring board including a first substrate, a second substrate having a smaller mounting area than a mounting area of the first substrate, and a base substrate laminated between the first substrate and the second substrate, such that the first substrate extends beyond an edge of the second substrate. An IVH (Interstitial Via Hole) or through hole penetrates the base substrate and vias are formed in at least one of the first substrate or the second substrate.
Abstract:
A multilayer printed circuit board, wherein, on a resin-insulating layer that houses a semiconductor element, another resin-insulating layer and a conductor circuit are formed with conductor circuits electrically connected through a via hole, wherein an electromagnetic shielding layer is formed on a resin-insulating layer surrounding a concave portion for housing a semiconductor element or on the inner wall surface of the concave portion, and the semiconductor element is embedded in the concave portion.
Abstract:
A flex-rigid wiring board includes a first rigid substrate, a second rigid substrate arranged at a distance from the first rigid substrate to provide a space between the first and second rigid substrates and a flexible substrate. The flexible substrate includes a first tip portion connected to the first rigid substrate, and a second tip portion connected to the second rigid substrate such that the first and second rigid substrates are connected to each other by way of the flexible substrate. At least one bending portion is formed between the first and second tip portions of the flexible substrate, each of the at least one bending portions is provided in the space between the first and second rigid substrates.
Abstract:
A wiring board assembly and a method of making a wiring board assembly. The wiring board assembly includes a first wiring board having a first substrate, a non-pliable second substrate having a smaller mounting area than a mounting area of the first substrate and a base substrate laminated between the first substrate and the second substrate such that the first substrate extends beyond an edge of the second substrate. At least one via formed in at least one of the first substrate or the second substrate. A second wiring board includes a pliable member connecting the first wiring board to the second wiring board.
Abstract:
A method for manufacturing a multilayered printed circuit board including forming a first insulating resin substrate having a metal layer substantially corresponding to dimensions of a semiconductor device, forming a second insulating resin substrate, forming a recess extending to the metal layer of the first insulating resin substrate such that a surface of the metal layer is exposed, accommodating the semiconductor device in the recess such that the semiconductor device is mounted on the surface of the metal layer, and forming a resin insulating layer on the first insulating resin substrate such that the semiconductor device accommodated in the recess is covered.