IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0314449
(2008-12-10)
|
등록번호 |
US-8457450
(2013-06-04)
|
우선권정보 |
KR-10-2006-0115391 (2006-11-21) |
발명자
/ 주소 |
- Kim, Sang-Hoon
- Yoo, Je-Gwang
- Kim, Joon-Sung
- Cho, Han Seo
|
출원인 / 주소 |
- Samsung Electro-Mechanics Co., Ltd.
|
인용정보 |
피인용 횟수 :
1 인용 특허 :
8 |
초록
▼
A printed circuit board is disclosed. A printed circuit board, which includes a first board part, a flexible board part which has one side coupled with the first board part and which includes an electrical wiring layer and an optical waveguide to transmit both electrical signals and optical signals,
A printed circuit board is disclosed. A printed circuit board, which includes a first board part, a flexible board part which has one side coupled with the first board part and which includes an electrical wiring layer and an optical waveguide to transmit both electrical signals and optical signals, and a second board part coupled with the other side of the flexible board part, where the electrical wiring layer and the optical waveguide are disposed with a gap in-between, can provide greater bendability and reliability, by having the optical waveguide and electrical wiring layer separated with a gap in-between at the flexible portion of the board, and the optical waveguide can be manufactured with greater precision for even higher reliability, by having the optical waveguide manufactured separately and then inserted during the manufacturing process of the board.
대표청구항
▼
1. A printed circuit board comprising: a first board having a first ledge formed on one side thereof, the first ledge comprising a vertical portion and a horizontal portion extending in a lateral direction;a second board having a second ledge formed on one side thereof and disposed with a gap of a p
1. A printed circuit board comprising: a first board having a first ledge formed on one side thereof, the first ledge comprising a vertical portion and a horizontal portion extending in a lateral direction;a second board having a second ledge formed on one side thereof and disposed with a gap of a predetermined distance with respect to the first board, the second ledge comprising a vertical portion and a horizontal portion extending in a lateral direction;a flexible optical waveguide having either end mounted on each of the first ledge and the second ledge, the flexible optical waveguide being disposed between the vertical portion of the first ledge and the vertical portion of the second ledge; anda first outer board and a second outer board stacked respectively on the first board and the second board such that either end of the flexible optical waveguide is covered. 2. The printed circuit board of claim 1, wherein a groove is formed adjacent to the optical waveguide in the first outer board, the groove configured to have the optical waveguide installed therein, and the groove is exposed to the exterior. 3. The printed circuit board of claim 2, wherein a pad is formed adjacent to the groove on a predetermined position of the optical waveguide, the pad configured to have the optical waveguide mounted thereon. 4. The printed circuit board of claim 3, wherein the pad is buried in the optical waveguide. 5. The printed circuit board of claim 3, wherein a rewiring land is formed on the optical waveguide, the rewiring land electrically connected with the pad. 6. The printed circuit board of claim 5, wherein the rewiring land is buried in the optical waveguide. 7. The printed circuit board of claim 5, wherein the first board part comprises a via configured to interconnect layers, and the rewiring land is electrically connected with the via. 8. A printed circuit board comprising: a first board having a first ledge formed on one side thereof, the first ledge comprising a vertical portion and a horizontal portion extending in a lateral direction;a second board having a second ledge formed on one side thereof and disposed with a gap of a predetermined distance with respect to the first board, the second ledge comprising a vertical portion and a horizontal portion extending in a lateral direction;a flexible optical waveguide having either end mounted on each of the first ledge and the second ledge, both ends of the flexible optical waveguide being supported by the first ledge and the second ledge respectively, the flexible optical waveguide being disposed between the vertical portion of the first ledge and the vertical portion of the second ledge; anda first outer board and a second outer board stacked respectively on the first board and the second board such that either end of the flexible optical waveguide is covered. 9. The printed circuit board of claim 8, wherein a groove is formed adjacent to the optical waveguide in the first outer board, the groove configured to have the optical waveguide installed therein, and the groove is exposed to the exterior. 10. The printed circuit board of claim 9, wherein a pad is formed adjacent to the groove on a predetermined position of the optical waveguide, the pad configured to have the optical waveguide mounted thereon. 11. The printed circuit board of claim 10, wherein the pad is buried in the optical waveguide. 12. The printed circuit board of claim 10, wherein a rewiring land is formed on the optical waveguide, the rewiring land electrically connected with the pad. 13. The printed circuit board of claim 12, wherein the rewiring land is buried in the optical waveguide. 14. The printed circuit board of claim 12, wherein the first board part comprises a via configured to interconnect layers, and the rewiring land is electrically connected with the via.
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