IP Library › Granted Patent US 12,640,816
Granted Patent B2
US 12,640,816 · App. 18/603,992 · Granted May 26, 2026

Optical device and optical module

Inventor: Hiromasa Tanaka (Sapporo, JP)
Assignee: FUJITSU OPTICAL COMPONENTS LIMITED
H04B10/40G02B27/286H04J14/02
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Quick Facts
Patent No.
US 12,640,816
App. No.
18/603,992
Granted
May 26, 2026
Kind
B2
Abstract

A device includes an emitter that emits transmission light with P polarization, a receiver that receives reception light, a transmission port that outputs the transmission light, a reception port that inputs the reception light, and an adjuster that polarizes the reception light received to S polarization. The device includes a filter that outputs the transmission light with P polarization received from the emitter by allowing the transmission light to propagate through inside a propagation path, and that outputs the reception light with S polarization received from the adjuster by allowing the reception light to propagate through inside the path. The device includes a polarizer that is arranged between the filter and the emitter and between the filter and the receiver, outputs the transmission light with P polarization received from the emitter to the filter, and outputs the reception light with S polarization received from the filter to the receiver.

Claims (53)

1 . An optical device comprising:

a light emitter that emits transmission light that is in a first linearly polarized light state;

a light receiver that receives reception light;

a transmission port that outputs the transmission light;

a reception port that inputs the reception light;

a polarization adjuster that polarizes the reception light received from the reception port to a second linearly polarized light state that has an orthogonal relationship with the first linearly polarized light state;

an optical filter that outputs the transmission light that has been received from the light emitter and that is in the first linearly polarized light state by allowing the transmission light to propagate through inside a propagation path, and that outputs the reception light that has been received from the polarization adjuster and that is in the second linearly polarized light state by allowing the reception light to propagate through inside the propagation path; and

a polarizer that is arranged between the optical filter and the light emitter and between the optical filter and the light receiver, that outputs the transmission light that has been received from the light emitter and that is in the first linearly polarized light state to the optical filter, and that outputs the reception light that has been received from the optical filter and that is in the second linearly polarized light state to the light receiver.

2 . The optical device according to claim 1 , wherein

the light emitter

includes a plurality of light emitting elements that differ for each wavelength, and

emits pieces of transmission light that have different wavelengths and that are in the first linearly polarized light state,

the light receiver

includes a plurality of light receiving elements that differ for each wavelength, and

receives pieces of reception light that have different wavelengths,

the optical filter

multiplexes the pieces of transmission light that have different wavelengths received from the plurality of respective light emitting elements and that are in the first linearly polarized light state, and

demultiplexes the pieces of reception light that have different wavelengths received from the polarization adjuster and that are in the second linearly polarized light state, and

the polarizer

includes a plurality of polarization elements that differ for each wavelength,

outputs, by using the polarization elements that are associated with respective corresponding wavelengths and that are arranged between the optical filter and the light emitting elements and between the optical filter and the light receiving elements, the pieces of transmission light that have the respective corresponding wavelengths received from the respective light emitting elements that are in the first linearly polarized light state to the optical filter, and

outputs the pieces of reception light that have the respective corresponding wavelengths received from the optical filter and that are in the second linearly polarized light state to the light receiving elements.

3 . The optical device according to claim 1 , wherein

the light emitter includes

a light emitting element that emits the transmission light that is in the second linearly polarized light state, and

a wavelength plate that converts the transmission light that has been received the light emitting element and that is in the second linearly polarized light state to the transmission light that is in the first linearly polarized light state.

4 . The optical device according to claim 1 , further including:

a transmitting circuit that has the light emitter, the transmission port, the optical filter, and the polarizer built in; and

a receiving circuit that has the light receiver, the reception port, and the polarization adjuster built in.

5 . The optical device according to claim 1 , further including:

a transmitting circuit that has the light emitter, the transmission port, the optical filter, the polarization adjuster, and the polarizer built in; and

a receiving circuit that has the light receiver and the reception port built in.

6 . The optical device according to claim 1 , wherein the polarizer and the optical filter are arranged on a straight line of an optical path between the light emitter and the transmission port.

7 . The optical device according to claim 1 , further including

a wavelength plate that converts the reception light that has been received from the polarization adjuster and that is in the second linearly polarized light state to the reception light that is in the first linearly polarized light state, wherein

the optical filter outputs the transmission light that has been received from the light emitter and that is in the first linearly polarized light state by allowing the transmission light to propagate through inside the propagation path, and outputs the reception light that has been received from the wavelength plate and that is in the second linearly polarized light state by allowing the reception light to propagate through inside the propagation path.

8 . An optical module comprising:

an optical device that includes a transmitting circuit that transmits transmission light and a receiving circuit that receives reception light; and

a control circuit that controls the optical device, wherein

the optical device includes

a light emitter that emits the transmission light that is in a first linearly polarized light state,

a light receiver that receives the reception light,

a transmission port that outputs the transmission light,

a reception port that inputs the reception light;

a polarization adjuster that polarizes the reception light received from the reception port to a second linearly polarized light state that has an orthogonal relationship with the first linearly polarized light state,

an optical filter that outputs the transmission light that has been received from the light emitter and that is in the first linearly polarized light state by allowing the transmission light to propagate through inside a propagation path, and that outputs the reception light that has been received from the polarization adjuster and that is in the second linearly polarized light state by allowing the reception light to propagate through inside the propagation path, and

a polarizer that is arranged between the optical filter and the light emitter and between the optical filter and the light receiver, that outputs the transmission light that has been received from the light emitter and that is in the first linearly polarized light state to the optical filter, and that outputs the reception light that has been received from the optical filter and that is in the second linearly polarized light state to the light receiver.

9 . The optical module according to claim 8 , wherein

the transmitting circuit has the light emitter, the transmission port, the optical filter, and the polarizer built in, and

the receiving circuit has the light receiver, the reception port, and the polarization adjuster built in.

10 . The optical module according to claim 8 , wherein

the transmitting circuit has the light emitter, the transmission port, the optical filter, the polarization adjuster, and the polarizer built in, and

the receiving circuit has the light receiver and the reception port built in.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2024
From: TANAKA, HIROMASA
To: FUJITSU OPTICAL COMPONENTS LIMITED
Reel/Frame 066771/0894 →
Priority Claims (1)
JP 2023-067838 · Apr 18, 2023 · national
Continuity (1)
Related Publication 20240356649A1 · Oct 24, 2024
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