IP Library Granted Patent US 12700716
Granted Patent B2
US 12700716 · App. 17/779,681 · Granted Aug 4, 2026

Optical transmitter

Inventors: Satoshi Yoshimura (Osaka, JP); Masanobu Kawamura (Yokohama, JP); Kazushige Oki (Yokohama, JP); Kuniyuki Ishii (Yokohama, JP); Fumihiro Nakajima (Yokohama, JP); Kazunobu Kobayashi (Osaka, JP)
H01S5/0683H01S5/0239
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Quick Facts
Patent No.
US 12700716
App. No.
17/779,681
Granted
Aug 4, 2026
Kind
B2
Abstract

An optical transmitter according to one embodiment includes: a plurality of light emitting elements; a plurality of light receiving elements that monitor output lights from the respective plurality of light emitting elements; a housing that mounts the plurality of light emitting elements and the plurality of light receiving elements; and a wiring board which is mounted on the housing and which is provided with a first region having a pad electrically connected to the light emitting element and a second region disposed at a position lower than the first region and having a pad electrically connected to the light receiving element.

Claims (59)

1 . An optical transmitter comprising:

a plurality of light emitting elements;

a plurality of light receiving elements that monitor output lights from the respective plurality of light emitting elements;

a housing that mounts the plurality of light emitting elements and the plurality of light receiving elements; and

a wiring board which is mounted on the housing and which is provided with a first region having a first pad electrically connected to the light emitting element, a second region having a second pad electrically connected to the light receiving element, and a connection region which connects the first region and the second region to each other,

wherein the plurality of light emitting elements and the plurality of light receiving elements are disposed so as to be aligned along a first direction intersecting the optical axis,

where the first region and the second region are provided so as to interpose the plurality of light emitting elements and the plurality of light receiving elements,

wherein the light receiving element is a surface-incident type light receiving element,

wherein a mounting surface of a carrier that mounts the light receiving element is inclined, and the light receiving surface of the light receiving element is disposed so as to be inclined with respect to the optical axis of the output light, and

wherein the second region is located on the opposite side of the light emitting element as viewed from the carrier.

2 . The optical transmitter according to claim 1 , further comprising:

an optical wave combiner which is mounted on the housing, to which the output lights of the plurality of light emitting elements are input from a plurality of input ends provided on one side, which wave-combines the input output lights, and which outputs the wave-combined light to one output end which is provided on the other side facing the one side and disposed at a position offset from a center on the other side; and

an optical inlet which is provided in the housing, into which the wave-combined light output from the output end of the optical wave combiner is introduced, and which is disposed in a vicinity of the center of the width of the housing.

3 . The optical transmitter according to claim 2 ,

wherein a width of the first direction of the connection region is smaller than a width of the first direction of the first region and a width of the first direction of the second region, and

wherein the connection region of the wiring board is disposed in a region where the plurality of light emitting elements and the plurality of light receiving elements are not disposed on a surface of the housing by offsetting the plurality of light emitting elements and the plurality of light receiving elements at positions corresponding to the input ends of the optical wave combiner.

4 . The optical transmitter according to claim 1 ,

wherein the second region is disposed at a position lower than the first region, and

wherein a thickness of the wiring board in the first region and a thickness of the wiring board in the second region are the same, and

the connection region has a step difference or an inclination.

5 . The optical transmitter according to claim 2 , wherein the optical inlet is disposed on the side of the wiring board where the connection region is located from the center of the width of the housing.

6 . An optical transmitter comprising:

a plurality of light emitting elements;

a plurality of light receiving elements that monitor output lights from the respective plurality of light emitting elements;

a housing that mounts the plurality of light emitting elements and the plurality of light receiving elements;

a wiring board which is mounted on the housing and which is provided with a first region having a first pad electrically connected to the light emitting element, a second region having a second pad electrically connected to the light receiving element, and a connection region which connects the first region and the second region to each other; and

a cover that covers the housing;

wherein the plurality of light emitting elements and the plurality of light receiving elements are disposed so as to be aligned along a first direction intersecting the optical axis,

where the first region and the second region are provided so as to interpose the plurality of light emitting elements and the plurality of light receiving elements,

wherein the housing has a guide pin that determines a position of the cover relative to the housing,

wherein the wiring board has an extension region that is on an extension line of the connection region and extends from the second region along a second direction that intersects the first direction, and

wherein a hole into which the guide pin is inserted is formed in the extension region.

7 . The optical transmitter according to claim 1 , wherein the second pad in the second region of the wiring board is provided at a position deviated from an optical axis of the output light from the light emitting element.

8 . The optical transmitter according to claim 7 , wherein the second pad is provided on an outer side of the first direction of the housing of the optical axis in the second region of the wiring board.

9 . The optical transmitter according to claim 6 ,

wherein the light receiving element is a surface-incident type light receiving element, wherein a mounting surface of a carrier that mounts the light receiving element is inclined, and the light receiving surface of the light receiving element is disposed so as to be inclined with respect to the optical axis of the output light, and

wherein the second region is located on the opposite side of the light emitting element as viewed from the carrier.

10 . An optical device comprising:

a plurality of first optical elements;

a plurality of second optical elements that are optically coupled to the plurality of first optical elements;

a housing that mounts the plurality of first optical elements and the plurality of second optical elements;

a wiring board which is mounted on the housing and which is provided with a first region having a first pad electrically connected to the first optical element, a second region having a second pad electrically connected to the second optical element, and a connection region which connects the first region and the second region to each other;

a receptacle provided in the housing and disposed in a vicinity of a center of the width of the housing; and

an optical component which is mounted on the housing and which has a plurality of first ends which are provided on one side and optically coupled to the plurality of first optical elements and a second end which is provided on other side facing the one side and disposed at a position offset from a center of the other side, and is optically coupled to the receptacle

wherein the plurality of first optical elements and the plurality of second optical elements are disposed so as to be aligned along the first direction intersecting the optical axis, and

wherein the first region and the second region are provided so as to interpose the plurality of first optical elements and the plurality of second optical elements.

11 . The optical device according to claim 10 ,

wherein a width of the first direction of the connection region is smaller than a width of the first direction of the first region and a width of the first direction of the second region, and

wherein the connection region of the wiring board is disposed in a region where the plurality of first optical element and the second optical element are not disposed on a surface of the housing by offsetting the plurality of first optical elements and the second optical elements at positions corresponding to the first ends of the optical component.

12 . The optical transmitter according to claim 6 , further comprising:

an optical wave combiner which is mounted on the housing, to which the output lights of the plurality of light emitting elements are input from a plurality of input ends provided on one side, which wave-combines the input output lights, and which outputs the wave-combined light to one output end which is provided on the other side facing the one side and disposed at a position offset from a center on the other side; and an optical inlet which is provided in the housing, into which the wave-combined light output from the output end of the optical wave combiner is introduced, and which is disposed in a vicinity of the center of the width of the housing.

13 . The optical transmitter according to claim 12 , wherein a width of the first direction of the connection region is smaller than a width of the first direction of the first region and a width of the first direction of the second region, and

wherein the connection region of the wiring board is disposed in a region where the plurality of light emitting elements and the plurality of light receiving elements are not disposed on a surface of the housing by offsetting the plurality of light emitting elements and the plurality of light receiving elements at positions corresponding to the input ends of the optical wave combiner.

14 . The optical transmitter according to claim 6 ,

wherein the second region is disposed at a position lower than the first region, and wherein a thickness of the wiring board in the first region and a thickness of the wiring board in the second region are the same, and

the connection region has a step difference or an inclination.

15 . The optical transmitter according to claim 12 , wherein the optical inlet is disposed on the side of the wiring board where the connection region is located from the center of the width of the housing.

16 . The optical transmitter according to claim 6 , wherein the second pad in the second region of the wiring board is provided at a position deviated from an optical axis of the output light from the light emitting element.

17 . The optical transmitter according to claim 16 , wherein the second pad is provided on an outer side of the first direction of the housing of the optical axis in the second region of the wiring board.