MLchartDataset catalogue

Patent · US9515027B2 · B2 · US

Printed circuit board

(11) Publication number
US9515027B2
(21) Application number
14/353,185
(22) Filing date
2012-12-06
(30) Priority date
2011-12-08
(43) Publication date
2016-12-06
(45) Date of grant
2016-12-06
(51) IPC
H10W 42/20; H10W 44/00; H05K 1/02
(52) CPC
  • H10W Generic packages, interconnections, connectors or other constructional details of devices covered by class H10: 42/20, 44/401, 44/601, 72/00
  • H01L Semiconductor devices; electric solid state devices not otherwise provided for: 23/50, 23/552, 23/642, 23/647, 2924/00, 2924/0002
  • H05K Printed circuits; casings or constructional details of electric apparatus; manufacture of assemblages of electrical components: 1/0225, 1/0227, 1/0231, 1/0234, 2201/09318
(73) Assignee
Canon Inc
(72) Inventors
Hiroto Tamaki
(54) Title
Printed circuit board
(57) Abstract

A printed circuit board includes a printed circuit board, a semiconductor device mounted on the printed circuit board, a capacitor element mounted on the printed circuit board 2, a ground conductor plane to which a ground terminal of the semiconductor device is connected, and first and second power source conductor planes which are arranged so as not to contact with each other. The second power source conductor plane and the ground conductor plane are arranged so as to oppose to each other to form a planar capacitor. The printed circuit board has a first connecting conductor which connects a power source terminal of the semiconductor device with the second power source conductor plane, and a second connecting conductor which connects the first power source conductor plane with the second power source conductor plane through a first terminal of the capacitor element. Thereby, an electromagnetic radiation noise is reduced.

Full text
View on Google Patents

Claims (9)

  1. A printed circuit board comprising: a semiconductor device having a power source terminal and a ground terminal; and a printed wiring board on which the semiconductor device is mounted, wherein the printed wiring board comprises: a first wiring layer formed, as being a first surface layer of the printed wiring board, on which the semiconductor device is mounted; a second wiring layer having a first ground conductor plane to which the ground terminal is connected; a third wiring layer formed from at least one layer having a first power source conductor plane to which a direct power source voltage is applied, and a second power source conductor plane arranged so as to be arranged with a space from the first power source conductor plane in opposition to the first ground conductor plane, such that the second power source conductor plane and the first ground conductor plane form a planner capacitor; a fourth wiring layer formed on the printed wiring board at a second surface layer which is a back side surface of the first surface layer; and a capacitor element mounted on the fourth wiring layer, wherein a first terminal of the capacitor is electrically connected to the power source terminal and a second terminal of the capacitor is electrically connected to the ground terminal, wherein the power source terminal and the second power source conductor plane are connected through a first connecting conductor, the second power source conductor plane and the first power source conductor plane are connected through a second connecting conductor, the first terminal of the capacitor is electrically connected to the second connecting conductor, and the second terminal of the capacitor is electrically connected through a third connecting conductor to the first ground conductor plane, and the ground terminal is electrically connected through a fourth connecting conductor to the first ground conductor plane, and wherein: the first connecting conductor comprises a first via through which the first wiring layer and the second power source conductor plane are connected electrically, the second connecting conductor comprises a second via through which the fourth wiring layer and the second power source conductor plane are connected electrically, a third via through which the fourth wiring layer and the first power source conductor plane are connected electrically, and a wiring pattern formed on the fourth wiring layer for connecting the second via to the third via, the third connecting conductor comprises a fourth via through which the fourth wiring layer and the first ground conductor plane are connected electrically, and the fourth connecting conductor comprises a fifth via through which the first wiring layer and the first ground conductor plane are connected electrically.
  2. The printed circuit board according to claim 1, wherein a dielectric layer arranged between the first ground conductor plane and the second power source conductor plane has a thickness not larger than 200 μm and a dielectric constant of 4.2.
  3. The printed circuit board according to claim 1, wherein the third wiring layer is formed from a single wiring layer, the first power source conductor plane covers a range of a projection image of the semiconductor device projected through the printed wiring board.
  4. The printed circuit board according to claim 1, wherein the first via and the second via are formed into a single via penetrating the printed wiring board.
  5. The printed circuit board according to claim 1, wherein the third via and the fourth via are formed into a single via penetrating the printed wiring board.
  6. A printed wiring board comprising: a first wiring layer, on which a semiconductor device is to be mounted, as being a first surface layer of the printed wiring board, having a land for a first power source terminal of the semiconductor device and a land for a first ground terminal of the semiconductor device; a second wiring layer having a first ground conductor plane to which the land for the first ground terminal is connected; a third wiring layer formed from at least one layer having a first power source conductor plane to which a direct power source voltage is applied, and a second power source conductor plane arranged so as to be arranged with a space from the first power source conductor plane in opposition to the first ground conductor plane, such that the second power source conductor plane and the first ground conductor plane form a planner capacitor; and a fourth wiring layer formed on the printed wiring board at a second surface layer which is a back side surface of the first surface layer, and having a land for a second power source terminal and a land for a second ground terminal formed thereon for mounting a capacitor element or a series circuit of a capacitor element and a resistor element, wherein the land for the first power source terminal and the second power source conductor plane are connected through a first connecting conductor, the second power source conductor plane and the first power source conductor plane are connected through a second connecting conductor, the land for the second power source terminal is electrically connected to the second connecting conductor, the land for the second ground terminal is electrically connected through a third connecting conductor to the first ground conductor plane, and the first ground terminal is electrically connected through a fourth connecting conductor to the first ground conductor plane, and wherein: the first connecting conductor comprises a first via through which the first wiring layer and the second power source conductor plane are connected electrically, the second connecting conductor comprises a second via through which the fourth wiring layer and the second power source conductor plane are connected electrically and a third via through which the fourth wiring layer and the first power source conductor plane are connected electrically, and a wiring pattern formed on the fourth wiring layer for connecting the second via to the third via, the third connecting conductor comprises a fourth via through which the fourth wiring layer and the first ground conductor plane are connected electrically, and the fourth connecting conductor comprises a fifth via through which the first wiring layer and the first ground conductor plane are connected electrically.
  7. The printed wiring board according to claim 6, wherein a dielectric layer arranged between the first ground conductor plane and the second power source conductor plane has a thickness not larger than 200 μm and a dielectric constant of 4.2.
  8. The printed wiring board according to claim 6, wherein the first via and the second via are formed into a single via penetrating the printed wiring board.
  9. The printed wiring board according to claim 6, wherein the third via and the fourth via are formed into a single via penetrating the printed wiring board.

Description

This application is a national stage application under 35 U.S.C. §371 of International Application No. PCT/JP2012/082266, having an International filing date of Dec. 6, 2012, which claims priority to Japan 2012-265210, filed on Dec. 4, 2012 and Japan 2011-268724, filed on Dec. 8, 2011, the contents of each of which are incorporated by reference as if set forth in full herein.

The present invention relates to a printed circuit board to be used in electronic equipment.

In recent years, a requirement for a digital electronic equipment to have a higher performance is boundless, and a semiconductor integrated circuit (IC/LSI) which is mounted on a printed circuit board and is used as a semiconductor device tends to be more highly integrated and use higher frequency. For this reason, the number of simultaneous switching buffers in the IC/LSI tends to increase, a larger electric current tends to be required, and the switching cycle also tends to become higher frequency. In order to stably operate the IC/LSI mounted on this printed circuit board, a charge supplying function which follows a high-speed operation of the IC/LSI needs to be provided on the printed circuit board. This charge supplying function for the IC/LSI is achieved by a capacitative element connected to the IC/LSI through a wiring or a planate conductor formed on the printed circuit board.

Citations (14)

  • US5183972A
  • JPH06244562A
  • US20010035799A1
  • US6596948B1
  • US20030151905A1
  • US7780257B2
  • US7175249B2
  • US20050092520A1
  • US20060151205A1
  • US7594105B2
  • US20070144770A1
  • US20070291459A1
  • US8253025B2
  • US8618632B2
Record as JSON
{
  "publication_number": "US9515027B2",
  "country": "US",
  "kind": "B2",
  "title": "Printed circuit board",
  "abstract": "A printed circuit board includes a printed circuit board, a semiconductor device mounted on the printed circuit board, a capacitor element mounted on the printed circuit board 2, a ground conductor plane to which a ground terminal of the semiconductor device is connected, and first and second power source conductor planes which are arranged so as not to contact with each other. The second power source conductor plane and the ground conductor plane are arranged so as to oppose to each other to form a planar capacitor. The printed circuit board has a first connecting conductor which connects a power source terminal of the semiconductor device with the second power source conductor plane, and a second connecting conductor which connects the first power source conductor plane with the second power source conductor plane through a first terminal of the capacitor element. Thereby, an electromagnetic radiation noise is reduced.",
  "claims": [
    "1. A printed circuit board comprising: a semiconductor device having a power source terminal and a ground terminal; and a printed wiring board on which the semiconductor device is mounted, wherein the printed wiring board comprises: a first wiring layer formed, as being a first surface layer of the printed wiring board, on which the semiconductor device is mounted; a second wiring layer having a first ground conductor plane to which the ground terminal is connected; a third wiring layer formed from at least one layer having a first power source conductor plane to which a direct power source voltage is applied, and a second power source conductor plane arranged so as to be arranged with a space from the first power source conductor plane in opposition to the first ground conductor plane, such that the second power source conductor plane and the first ground conductor plane form a planner capacitor; a fourth wiring layer formed on the printed wiring board at a second surface layer which is a back side surface of the first surface layer; and a capacitor element mounted on the fourth wiring layer, wherein a first terminal of the capacitor is electrically connected to the power source terminal and a second terminal of the capacitor is electrically connected to the ground terminal, wherein the power source terminal and the second power source conductor plane are connected through a first connecting conductor, the second power source conductor plane and the first power source conductor plane are connected through a second connecting conductor, the first terminal of the capacitor is electrically connected to the second connecting conductor, and the second terminal of the capacitor is electrically connected through a third connecting conductor to the first ground conductor plane, and the ground terminal is electrically connected through a fourth connecting conductor to the first ground conductor plane, and wherein: the first connecting conductor comprises a first via through which the first wiring layer and the second power source conductor plane are connected electrically, the second connecting conductor comprises a second via through which the fourth wiring layer and the second power source conductor plane are connected electrically, a third via through which the fourth wiring layer and the first power source conductor plane are connected electrically, and a wiring pattern formed on the fourth wiring layer for connecting the second via to the third via, the third connecting conductor comprises a fourth via through which the fourth wiring layer and the first ground conductor plane are connected electrically, and the fourth connecting conductor comprises a fifth via through which the first wiring layer and the first ground conductor plane are connected electrically.",
    "2. The printed circuit board according to claim 1, wherein a dielectric layer arranged between the first ground conductor plane and the second power source conductor plane has a thickness not larger than 200 μm and a dielectric constant of 4.2.",
    "3. The printed circuit board according to claim 1, wherein the third wiring layer is formed from a single wiring layer, the first power source conductor plane covers a range of a projection image of the semiconductor device projected through the printed wiring board.",
    "4. The printed circuit board according to claim 1, wherein the first via and the second via are formed into a single via penetrating the printed wiring board.",
    "5. The printed circuit board according to claim 1, wherein the third via and the fourth via are formed into a single via penetrating the printed wiring board.",
    "6. A printed wiring board comprising: a first wiring layer, on which a semiconductor device is to be mounted, as being a first surface layer of the printed wiring board, having a land for a first power source terminal of the semiconductor device and a land for a first ground terminal of the semiconductor device; a second wiring layer having a first ground conductor plane to which the land for the first ground terminal is connected; a third wiring layer formed from at least one layer having a first power source conductor plane to which a direct power source voltage is applied, and a second power source conductor plane arranged so as to be arranged with a space from the first power source conductor plane in opposition to the first ground conductor plane, such that the second power source conductor plane and the first ground conductor plane form a planner capacitor; and a fourth wiring layer formed on the printed wiring board at a second surface layer which is a back side surface of the first surface layer, and having a land for a second power source terminal and a land for a second ground terminal formed thereon for mounting a capacitor element or a series circuit of a capacitor element and a resistor element, wherein the land for the first power source terminal and the second power source conductor plane are connected through a first connecting conductor, the second power source conductor plane and the first power source conductor plane are connected through a second connecting conductor, the land for the second power source terminal is electrically connected to the second connecting conductor, the land for the second ground terminal is electrically connected through a third connecting conductor to the first ground conductor plane, and the first ground terminal is electrically connected through a fourth connecting conductor to the first ground conductor plane, and wherein: the first connecting conductor comprises a first via through which the first wiring layer and the second power source conductor plane are connected electrically, the second connecting conductor comprises a second via through which the fourth wiring layer and the second power source conductor plane are connected electrically and a third via through which the fourth wiring layer and the first power source conductor plane are connected electrically, and a wiring pattern formed on the fourth wiring layer for connecting the second via to the third via, the third connecting conductor comprises a fourth via through which the fourth wiring layer and the first ground conductor plane are connected electrically, and the fourth connecting conductor comprises a fifth via through which the first wiring layer and the first ground conductor plane are connected electrically.",
    "7. The printed wiring board according to claim 6, wherein a dielectric layer arranged between the first ground conductor plane and the second power source conductor plane has a thickness not larger than 200 μm and a dielectric constant of 4.2.",
    "8. The printed wiring board according to claim 6, wherein the first via and the second via are formed into a single via penetrating the printed wiring board.",
    "9. The printed wiring board according to claim 6, wherein the third via and the fourth via are formed into a single via penetrating the printed wiring board."
  ],
  "description_excerpt": "This application is a national stage application under 35 U.S.C. §371 of International Application No. PCT/JP2012/082266, having an International filing date of Dec. 6, 2012, which claims priority to Japan 2012-265210, filed on Dec. 4, 2012 and Japan 2011-268724, filed on Dec. 8, 2011, the contents of each of which are incorporated by reference as if set forth in full herein.\n\nThe present invention relates to a printed circuit board to be used in electronic equipment.\n\nIn recent years, a requirement for a digital electronic equipment to have a higher performance is boundless, and a semiconductor integrated circuit (IC/LSI) which is mounted on a printed circuit board and is used as a semiconductor device tends to be more highly integrated and use higher frequency. For this reason, the number of simultaneous switching buffers in the IC/LSI tends to increase, a larger electric current tends to be required, and the switching cycle also tends to become higher frequency. In order to stably operate the IC/LSI mounted on this printed circuit board, a charge supplying function which follows a high-speed operation of the IC/LSI needs to be provided on the printed circuit board. This charge supplying function for the IC/LSI is achieved by a capacitative element connected to the IC/LSI through a wiring or a planate conductor formed on the printed circuit board.",
  "cpc": [
    "H10W 42/20",
    "H01L 23/50",
    "H01L 23/552",
    "H01L 23/642",
    "H01L 23/647",
    "H01L 2924/00",
    "H01L 2924/0002",
    "H05K 1/0225",
    "H05K 1/0227",
    "H05K 1/0231",
    "H05K 1/0234",
    "H05K 2201/09318",
    "H10W 44/401",
    "H10W 44/601",
    "H10W 72/00"
  ],
  "ipc": [
    "H10W 42/20",
    "H10W 44/00",
    "H05K 1/02"
  ],
  "assignees": [
    "Canon Inc"
  ],
  "inventors": [
    "Hiroto Tamaki"
  ],
  "filing_date": "2012-12-06",
  "publication_date": "2016-12-06",
  "grant_date": "2016-12-06",
  "priority_date": "2011-12-08",
  "application_number": "US-201214353185-A",
  "family_id": "47430009",
  "cited_by_count": 3,
  "citations": [
    "US5183972A",
    "JPH06244562A",
    "US20010035799A1",
    "US6596948B1",
    "US20030151905A1",
    "US7780257B2",
    "US7175249B2",
    "US20050092520A1",
    "US20060151205A1",
    "US7594105B2",
    "US20070144770A1",
    "US20070291459A1",
    "US8253025B2",
    "US8618632B2"
  ]
}

Record 4,440 of 8,000 in Patents full text (MLC-0201). Request the full dataset.