Abstract:
A multilayer printed wiring board including insulating layers, conductor layers stacked alternately over the insulating layers, respectively, and viaholes formed in the insulation layers and electrically connecting the conductor layers through the insulation layers. The viaholes include a first group of viaholes and a second group of viaholes. The viaholes in the first group are tapered toward the viaholes in the second group, and the viaholes in the second group are tapered toward the viaholes in the first group. The viaholes in the first group and the the viaholes in the second group are formed in the insulating layers, respectively, and the viaholes are formed by plating openings formed after lamination of respective ones of the insulating layers, and each of the insulating layers is about 100 μm or less in thickness.
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 method of manufacturing a wiring board including forming a base substrate, forming a first insulation layer on a first surface of the base substrate and a second insulating layer on a second surface of the substrate opposing the first surface, forming an IVH (Interstitial Via Hole) that penetrates the base substrate, and cutting the first insulating layer in a first area and cutting the second insulating layer in a second area offset from said first area to form a first substrate laminated to a second substrate with the base layer interposed therebetween, the second substrate having a smaller mounting area than that of the first substrate such that the first substrate extends beyond an edge of the second substrate.
Abstract:
A wiring board and method of forming the wiring board. The wiring board includes a first substrate, and a second substrate having a smaller mounting area than a mounting area of the first substrate. A base substrate is laminated between the first substrate and the second substrate such that the first substrate extends beyond an edge of the second substrate, and at least one via formed in at least one of the first substrate or the second substrate. A thickness of a portion of the base substrate that is sandwiched between the first substrate and the second substrate is greater than a thickness of a portion of the base substrate that is not sandwiched between the first substrate and the second substrate.
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 flex-rigid wiring board includes a flexible board including a flexible substrate and a conductor pattern formed over the flexible substrate, a non-flexible substrate disposed adjacent to the flexible board, an insulating layer including an inorganic material and covering the flexible board and the non-flexible substrate, the insulating layer exposing at least one portion of the flexible board, a conductor pattern formed on the insulating layer, and a plating layer connecting the conductor pattern of the flexible board and the conductor pattern on the insulating layer.
Abstract:
In a method of manufacturing a multilayer printed circuit board, a first insulating resin base material is formed. A resin surface of a second insulating resin base material formed by attaching copper foil on a surface of a resin-insulating layer is unified with the first insulating resin base material. A conductor circuit is formed on the second insulating resin base material and a via hole electrically connecting to the conductor circuit. A concave portion is formed from a resin-insulating layer surface in a conductor circuit non-formation area of the first insulating resin base material. A semiconductor element is housed within the concave portion and adhered with an adhesive. A resin-insulating layer is formed by coating the semiconductor element and a via hole.
Abstract:
A printed wiring board includes an insulation layer having a surface, electrodes embedded in the insulation layer, a resistor formed on the surface of the insulation layer and electrically connected to the electrodes, and an external connection conductive pattern formed over the surface of the insulation layer and electrically connected to one or more electrodes. The insulation layer and the electrodes form a component-mounting surface on the surface of the insulation layer, the component-mounting surface is substantially leveled with the surface of the insulation layer and includes a resistor forming region on which the resistor is formed, and the external connection conductive pattern is separated by a space from the resistor.
Abstract:
An electronic parts substrate includes a base substrate, a plurality of insulating resin layers provided on the base substrate, at least one conductive circuit, and at least one filled via provided in the plurality of insulating resin layers. The at least one conductive circuit is sandwiched between the plurality of insulating resin layers and/or between the base substrate and the plurality of insulating resin layers. At least one opening is formed in at least one of the plurality of insulating resin layers.
Abstract:
A printed wiring board including a rigid multilayer board, a first substrate having multiple conductors, and a second substrate having multiple conductors electrically connected to the conductors of the first substrate. The conductors of the second substrate have an existing density which is set higher than an existing density of the conductors of the first substrate, and the first substrate and/or the second substrate is embedded in the rigid multilayer board.