H05K1/188

Method for manufacturing device embedded substrate, and device embedded substrate

In a method for manufacturing a device embedded substrate, a conductive via that penetrates a first insulating layer and a second insulating layer from an outer metal layer to reach a second terminal of an IC device is formed after forming the outer metal layer.

Optoelectronic component and method of production thereof
09825204 · 2017-11-21 · ·

An optoelectronic component includes a carrier having an upper side which includes a first subarea and a second subarea, wherein the first subarea and the second subarea have different optical properties, and a method of producing an optoelectronic component includes providing a carrier having an upper side which includes a first subarea and a second subarea, and changing an optical property in the first subarea or in the second subarea.

EMI SHIELDING STRUCTURE AND MANUFACTURING METHOD THEREFOR
20170295679 · 2017-10-12 ·

An electromagnetic interference (EMI) shielding structure and a method for manufacturing are provided. The EMI shielding structure includes a printed circuit board (PCB) on which a plurality of elements are mounted, an insulation molding member configured to cover the plurality of elements, a conductive shielding dam formed along a side surface of the insulation molding member, and a conductive shielding member formed on a top surface of the insulation molding member.

CURABLE RESIN COMPOSITION, DRY FILM, RESIN-CLAD COPPER FOIL, CURED PRODUCT, AND ELECTRONIC COMPONENT

To provide a curable resin composition, from which a cured product having high heat resistance, a low dielectric loss tangent, high adhesion to a conductor can be obtained. A dry film, a resin-clad copper foil, a cured product, and an electronic component containing the curable resin composition are to be provided. A curable resin composition containing (A) an epoxy resin and (B) a compound having an active ester group is obtained, which has ratio of the total amount of epoxy group(s) in (A) the epoxy resin/the total amount of active ester group(s) in (B) the compound having an active ester group in the composition in the range of 0.2 to 0.6. A dry film, a resin-clad copper foil, a cured product, and an electronic component containing the curable resin composition are also obtained.

Semi-finished product for the production of a printed circuit board and method for producing the same

In a semi-finished product for the production of a printed circuit board, the semi-finished product comprising a plurality of having multiple insulating layers of a prepreg material and conductive layers (2, 2′) of a conductive material and further comprising having at least one electronic component embedded in at least one insulating layer the at least one electronic component is attached to a corresponding conductive layer by the aid of an Anisotropic Conductive Film and the Anisotropic Conductive Film as well as the prepreg material are in an unprocessed state. The method for producing a printed circuit board comprises the following steps: Providing at least one conductive layer (2), Applying an Anisotropic Conductive Film on the conductive layer, Affixing at least one electronic component on the Anisotropic Conductive Film, Embedding the electronic component in at least one insulating layer of prepreg material to obtain a semi-finished product, Laminating the semi-finished product to process the prepreg material and the Anisotropic Conductive Film.

Flexible printed circuit board with embedded electronic element

Provided is a printed circuit board including a laminate that is formed by vertically stacking a plurality of insulating layers including a rigid insulating layer, a flexible insulating layer having a first region in vertical contact with at least one of the plurality of insulating layers and a second region located on an outer side of the laminate, and a first electronic element embedded in the flexible insulating layer.

PRINTED WIRING BOARD
20170231087 · 2017-08-10 · ·

A printed wiring board includes an insulating sheet, a conductive layer formed on one main surface of the insulating sheet, and an insulating film laminated with an adhesive layer on the main surface of the insulating sheet formed with the conductive layer. The position of an end part of the insulating film is located outside the position of an end part of the adhesive layer.

Active chip package substrate and method for preparing the same

An active chip package substrate and a method for preparing the same. The active chip package substrate includes: a core board; at least one upper active chip, embedded in the core board and having an active surface facing toward a lower surface of the core board, the upper active chip being an active bare chip; and at least one lower active chip, embedded in the core board and having an active surface facing toward an upper surface of the core board, the lower active chip being an active bare chip.

Poly-supported copper foil
11453204 · 2022-09-27 · ·

A method of manufacturing a supported copper product is disclosed. The method includes: providing a thin copper foil and a poly-based film containing polyimide and polytetrafluoroethylene, the poly-based film having an adhesive applied to a surface of the poly-based film; thermally treating the thin copper foil and the poly-based film along their respective lengths, the thermal treatment being adjustable to vary an amount of heat applied to the thin copper foil and the poly-based film; and attaching the thermally treated thin copper foil and the thermally treated poly-based film using the adhesive applied at the surface of the poly-based film.

Electronic component mounting device and semiconductor device including the same

An electronic component mounting device includes an insulating substrate having a metal pattern formed thereon and a MELF electronic component. The MELF electronic component is fitted into a first receiving portion configured with the metal pattern and the insulating substrate exposed from a lacking portion of the metal pattern. The electronic component mounting device further includes a conductive member formed between the MELF electronic component and the metal pattern, and the conductive member is not formed between the MELF electronic component and the insulating substrate.