IP Library › Granted Patent US 12,206,218
Granted Patent B2
US 12,206,218 · App. 17/507,123 · Granted Jan 21, 2025

Optical module

Inventors: Daisuke Noguchi (Tachikawa, JP); Takayuki Nakao (Yokohama, JP)
Assignee: CIG PHOTONICS JAPAN LIMITED
H01S5/02345H01S5/0231H01S5/02315H01S5/02415
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Quick Facts
Patent No.
US 12,206,218
App. No.
17/507,123
Granted
Jan 21, 2025
Kind
B2
Abstract

The metallization pattern includes a pair of first metal films on the respective pair of first surfaces, and a second metal film on the pair of second surfaces to connect the pair of first metal films. The support block includes a connection conductor connecting the pair of first metal films, the connection conductor being a castellation conductor and/or a via conductor, the castellation conductor being on the pair of third surfaces of the ceramic body, the via conductor being through the ceramic body between the pair of first surfaces. The mounting substrate is mounted on one of the pair of first surfaces. One end of the first wire is bonded to a corresponding one of the pair of first metal films or the connection conductor, at a position adjacent to or overlapping with the connection conductor, on another of the pair of first surfaces.

Claims (54)

1. An optical module comprising:

a stem from which a pedestal portion integrally protrudes;

a photoelectric device configured to convert an optical signal and an electrical signal from at least one to another;

a mounting substrate on which the photoelectric device is mounted;

a support block with a ceramic body, the support block having a metallization pattern on a surface of the ceramic body, the mounting substrate overlapping with the metallization pattern and being mounted on the support block; and

a first wire electrically connecting the pedestal portion and the metallization pattern,

wherein the surface of the ceramic body includes a pair of first surfaces facing in opposite directions along a first direction, the surface of the ceramic body including a pair of second surfaces facing in opposite directions along a second direction intersecting with the first direction, the surface of the ceramic body including a pair of third surfaces facing in opposite directions along a third direction intersecting with both the first direction and the second direction,

wherein the metallization pattern includes a pair of first metal films on the respective pair of first surfaces, the metallization pattern including a second metal film on at least one of the pair of second surfaces to connect the pair of first metal films,

wherein the support block includes at least one connection conductor connecting the pair of first metal films, the at least one connection conductor being at least one of a castellation conductor and a via conductor, the castellation conductor being on at least one of the pair of third surfaces of the ceramic body, and the via conductor being through the ceramic body between the pair of first surfaces,

wherein the pair of third surfaces includes a region not covered with the metallization pattern,

wherein the mounting substrate is mounted on one of the pair of first surfaces, and

wherein one end of the first wire is bonded to a corresponding one of the pair of first metal films or the at least one connection conductor, at a position adjacent to or overlapping with the at least one connection conductor, on another of the pair of first surfaces.

2. The optical module according to claim 1 ,

wherein the position at which the one end of the first wire is bonded is at an edge of a corresponding one of the pair of first surfaces, the edge being adjacent to one of the pair of third surfaces.

3. The optical module according to claim 2 ,

wherein the support block has the via conductor, and

wherein the via conductor is at the edge of the corresponding one of the pair of first surfaces.

4. The optical module according to claim 3 ,

wherein the one end of the first wire is positioned outer than the via conductor along the third direction.

5. The optical module according to claim 3 ,

wherein the pair of first metal films overlap with the via conductor.

6. The optical module according to claim 3 ,

wherein the via conductor includes some via conductors,

wherein at least one of the via conductors is at the edge of the corresponding one of the pair of first surfaces, and

wherein at least another one of the via conductors is at another edge opposite to the edge along the third direction.

7. The optical module according to claim 1 ,

wherein the pair of first surfaces and the pair of second surfaces are entirely covered with the metallization pattern.

8. The optical module according to claim 1 ,

wherein the one end of the first wire overlaps with the at least one connection conductor.

9. The optical module according to claim 1 ,

wherein the first wire includes some first wires,

wherein at least one of the first wires is bonded to and overlaps with the at least one connection conductor, and

wherein at least another one of the first wires is bonded to the at least one connection conductor without overlap.

10. The optical module according to claim 1 ,

wherein the first wire includes some first wires, and

wherein all of the first wires are bonded to the at least one connection conductor without overlap.

11. The optical module according to claim 1 ,

wherein the support block is disposed to have one of the pair of third surfaces opposed to the pedestal portion.

12. An optical module comprising:

a stem from which a pedestal portion integrally protrudes;

a photoelectric device configured to convert an optical signal and an electrical signal from at least one to another;

a mounting substrate on which the photoelectric device is mounted;

a support block with a ceramic body, the support block having a metallization pattern on a surface of the ceramic body, the mounting substrate overlapping with the metallization pattern and being mounted on the support block;

a first wire electrically connecting the pedestal portion and the metallization pattern;

a thermoelectric cooler containing a Peltier device; and

a second wire electrically connecting the pedestal portion and the metallization pattern,

wherein the surface of the ceramic body includes a pair of first surfaces facing in opposite directions along a first direction, the surface of the ceramic body including a pair of second surfaces facing in opposite directions along a second direction intersecting with the first direction, the surface of the ceramic body including a pair of third surfaces facing in opposite directions along a third direction intersecting with both the first direction and the second direction,

wherein the metallization pattern includes a pair of first metal films on the respective pair of first surfaces, the metallization pattern including a second metal film on at least one of the pair of second surfaces to connect the pair of first metal films,

wherein the support block includes at least one connection conductor connecting the pair of first metal films, the at least one connection conductor being at least one of a castellation conductor and a via conductor, the castellation conductor being on at least one of the pair of third surfaces of the ceramic body, the via conductor being through the ceramic body between the pair of first surfaces,

wherein the mounting substrate is mounted on one of the pair of first surfaces,

wherein one end of the first wire is bonded to a corresponding one of the pair of first metal films or the at least one connection conductor, at a position adjacent to or overlapping with the at least one connection conductor, on another of the pair of first surfaces,

wherein the second metal film includes a pair of second metal films on both of the pair of second surfaces,

wherein the thermoelectric cooler is fixed to one of the pair of second metal films, and

wherein one end of the second wire is bonded to another of the pair of second metal films.

Assignments (2)
CHANGE OF ADDRESS Recorded Jul 19, 2024
From: CIG PHOTONICS JAPAN LIMITED
To: CIG PHOTONICS JAPAN LIMITED
Reel/Frame 068436/0287 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2021
From: NOGUCHI, DAISUKE; NAKAO, TAKAYUKI
To: CIG PHOTONICS JAPAN LIMITED
Reel/Frame 057866/0302 →
Priority Claims (1)
JP 2020-200298 · Dec 2, 2020 · national
Continuity (1)
Related Publication 20220173571A1 · Jun 2, 2022
References Cited (7)
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JP 2011108939A · 2011 [cited by applicant]
JP 2015088641A · 2015 [cited by applicant]
Japanese Office Action received in corresponding Japanese Application No. 2020-200298 dated May 28, 2024. [cited by applicant]