Thin film capacitor and electronic apparatus

US10679794B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10679794-B2
Application numberUS-201816190696-A
CountryUS
Kind codeB2
Filing dateNov 14, 2018
Priority dateJul 29, 2016
Publication dateJun 9, 2020
Grant dateJun 9, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A plurality of first and second capacitor parts and second capacitor parts are formed on opposed main surfaces of a foil shaped conductive substrate to sandwich the conductive substrate. The first and second capacitor parts are respectively coated with insulative protection layers. Terminal electrodes are respectively formed on main surfaces of the protection layers. The terminal electrodes and conductive parts of the first and second capacitor parts are respectively electrically connected via first via conductors and the terminal electrodes and the conductive substrate 1 are electrically connected to second via conductors.

First claim

Opening claim text (preview).

The invention claimed is: 1. A thin film capacitor comprising: (a) first and second capacitor parts located on first and second opposed main surfaces of a foil shaped conductive substrate so as to sandwich the conductive substrate; (b) the first capacitor part including: (1) a first conductive porous base having first pores on a surface thereof; (2) a first dielectric layer covering at least some of the first pores; and (3) a first conductive part located on the first dielectric layer; (c) the second capacitor part including: (1) a second conductive porous base having second pores on a surface thereof; (2) a second dielectric layer covering at least some of the second pores; and (3) a second conductive part located on the second dielectric layer; (d) first and second insulating protection layers located on the first and second conductive parts, respectively; (e) first and second terminal electrodes located on a main surface of the first and second insulating protection layers, respectively; (f) a first via conductor electrically connecting the first terminal electrode and the first conductive part; and (g) a second via conductor electrically connecting the first terminal electrode and the conductive substrate, wherein: the first terminal electrode is divided into a plurality of electrode pads which are electrically insulated from each other; the plurality of electrode pads includes a first electrode pad connected to the first via conductor and a second electrode pad connected to the second via conductor; and a pad distance from the first electrode pad to the first conductive part is different than a pad distance from the second electrode pad to the first main surface of the foil shaped conductive substrate. 2. The thin film capacitor according to claim 1 , wherein the first and second conductive porous base materials are metallic and are integrally formed with the conductive substrate. 3. The thin film capacitor according to claim 1 , wherein the first and second conductive parts fill the first and second pores that are covered by the first and second dielectric layers, respectively. 4. The thin film capacitor according to claim 1 , wherein the first and second conductive parts are formed of a metal material. 5. The thin film capacitor according to claim 1 , wherein the first and second conductive parts are formed of a conductive compound. 6. The thin film capacitor according to claim 5 , wherein the conductive compound includes a metal nitride and a metal oxynitride. 7. The thin film capacitor according to claim 1 , wherein the first and second dielectric layers have a variation in its respective film thicknesses of not more than 10% in an absolute value conversion in which an average film thickness is a reference. 8. A thin film capacitor comprising: (a) first and second foil shaped conductive substrates layered one on top of the other with an insulating layer there between, each of the conductive substrates having opposed top and bottom main surfaces, the top main surface of the second conductive substrate facing the insulating layer, the bottom main surface of the first main surface facing the insulating layer; (b) a first capacitor part located on the upper main surface of the first conductive substrate; (c) a second capacitor part located on the lower main surface of the second conductive substrate; (d) the first capacitor part including: (4) a first conductive porous base having first pores on a surface thereof, (5) a first dielectric layer covering at least some of the first pores, and (6) a first conductive part located on the first dielectric layer; (e) the second capacitor part including: (4) a second conductive porous base having second pores on a surface thereof, (5) a second dielectric layer covering at least some of the second pores, and (6) a second conductive part located on the second dielectric layer; (f) first and second insulating protection layers formed on the first and second conductive parts, respectively; and (g) first and second terminal electrodes formed on a main surface of the first and second protection layers, respectively; (h) a first via conductor electrically connecting the first terminal electrode and the first conductive part; (i) a second via conductor electrically connecting the first terminal electrode and the second conductive substrate; (j) a third via conductor electrically connecting the second terminal electrode and the second conductive part; and (k) a forth via conductor electrically connecting the second terminal electrode and the first conductive substrate. 9. An electronic apparatus comprising: an electronic component; a wiring substrate; an intermediate connection layer interposed between the electronic component and the wiring substrate, the intermediate connection layer including a thin film capacitor according to claim 1 . 10. An electronic apparatus comprising: an electronic component; a wiring substrate; an intermediate connection layer is interposed between the electronic component and the wiring substrate, the intermediate connection layer including a thin film capacitor according to claim 8 . 11. A thin film capacitor comprising: (a) first and second capacitor parts located on first and second opposed main surfaces of a foil shaped conductive substrate so as to sandwich the conductive substrate; (b) the first capacitor part including: (i) a first conductive porous base having first pores on a surface thereof; (ii) a first dielectric layer covering at least some of the first pores; and (iii) a first conductive part located on the first dielectric layer; (c) the second capacitor part including: (i) a second conductive porous base having second pores on a surface thereof; (ii) a second dielectric layer covering at least some of the second pores; and (iii) a second conductive part located on the second dielectric layer; (d) first and second insulating protection layers located on the first and second conductive parts, respectively; (e) first and second terminal electrodes located on a main surface of the first and second insulating protection layers, respectively; (f) a first via conductor electrically connecting the first terminal electrode and the first conductive part; and (g) a second via conductor electrically connecting the first terminal electrode and the conductive substrate, wherein: the first terminal electrode is divided into a plurality of electrode pads which are electrically insulated from each other; the plurality of electrode pads includes a first electrode pad connected to the first via conductor and a second electrode pad connected to the second via conductor; and a pad distance from the first electrode pad to the first main surface of the foil shaped conductive substrate is different than a pad distance from the second electrode pad to the second main surface of the foil shaped conductive substrate. 12. A thin film capacitor comprising: (a) first and second capacitor parts located on first and second opposed main surfaces of a foil shaped conductive substrate so as to sandwich the conductive substrate; (b) the first capacitor part including: (i) a first conductive porous base having first pores on a surface thereof; (ii) a first dielectric layer covering at least some of the first pores; and (iii) a first conductive part located on the first dielectric layer; (c) the second capacitor part including: (i) a second conductive porous base having second pores on a surface thereof; (ii) a second dielectric layer covering at least some of the second pores; and (iii) a second conductive part located

Assignees

Inventors

Classifications

  • Multiple capacitors, i.e. structural combinations of fixed capacitors · CPC title

  • Form of self-supporting electrodes · CPC title

  • leading through the housing, i.e. lead-through · CPC title

  • incorporating printed capacitors · CPC title

  • Etched foil electrodes · CPC title

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What does patent US10679794B2 cover?
A plurality of first and second capacitor parts and second capacitor parts are formed on opposed main surfaces of a foil shaped conductive substrate to sandwich the conductive substrate. The first and second capacitor parts are respectively coated with insulative protection layers. Terminal electrodes are respectively formed on main surfaces of the protection layers. The terminal electrodes and…
Who is the assignee on this patent?
Murata Manufacturing Co
What technology area does this patent fall under?
Primary CPC classification H01G4/33. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jun 09 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).