IP Library Patent Application 18861411
Patent Application
App. No. 18/861,411

TRANSMITTING APPARATUS AND SIGNAL GENERATION METHOD

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Quick Facts
Patent No.
US None
App. No.
18/861,411
Abstract

A transmitting apparatus includes a direct modulation laser, a branching unit, a first signal generation unit, a second signal generation unit, and a polarized wave multiplexing unit. The branching unit branches continuous phase frequency shift keying signal light having been generated by the direct modulation laser by applying a first modulation signal into first branch light and second branch light. The first signal generation unit generates first polarized wave signal light obtained by removing an intensity modulation component having been generated by the direct modulation laser by applying the first modulation signal from the first branch light. The second signal generation unit generates second polarized wave signal light obtained by removing the intensity modulation component from the second branch light and adding an intensity modulation component to the second branch light by applying a second modulation signal, the second polarized wave being orthogonal to the first polarized wave. The polarized wave multiplexing unit multiplexes the signal light for the first polarized wave and the signal light for the second polarized wave.

Claims (26)

1 . A transmitting apparatus comprising:

a direct modulation laser;

a branching circuitry that branches continuous phase frequency shift keying signal light, that have been generated by applying a first modulation signal to the direct modulation laser, into first branch light and second branch light;

a first signal generator that generates first polarized wave signal light obtained by removing a first intensity modulation component from the first branch light, the first intensity modulation component having been generated by applying the first modulation signal to the direct modulation laser;

a second signal generator that generates second polarized wave signal light obtained by removing the first intensity modulation component from the second branch light and adding a second intensity modulation component to the second branch light caused by applying a second modulation signal to the second branch light, the second polarized wave being orthogonal to the first polarized wave; and

a polarized wave multiplexer that multiplexes the first polarized wave signal light and the second polarized wave signal light.

2 . The transmitting apparatus according to claim 1 , wherein

the branching circuitry branches the continuous phase frequency shift keying signal light of the first polarized wave into the first branch light and the second branch light, and

the second signal generator removes the first intensity modulation component from the second branch light, adds the second intensity modulation component to the second branch light caused by applying the second modulation signal to the second branch light, and then converts the second branch light into the second polarized wave signal light.

3 . The transmitting apparatus according to claim 1 , wherein

the branching circuitry branches the continuous phase frequency shift keying signal light of the second polarized wave into the first branch light and the second branch light, and

the first signal generator removes the first intensity modulation component from the first branch light and then converts the first branch light into the first polarized wave signal light.

4 . The transmitting apparatus according to claim 1 , wherein

the branching circuitry branches the continuous phase frequency shift keying signal light into the first branch light of the first polarized wave and the second branch light of the second polarized wave,

the first signal generator removes the first intensity modulation component from the first branch light to generate the first polarized wave signal light, and

the second signal generator removes the first intensity modulation component from the second branch light and adds the second intensity modulation component to the second branch light caused by applying the second modulation signal to the second branch light to generate the second polarized wave signal light.

5 . The transmitting apparatus comprising:

a light source that performs direct modulation by being applied first modulation signal and outputs first continuous phase frequency shift keying signal light in a first direction and second continuous phase frequency shift keying signal light in a second direction;

a first signal generator that generates first polarized wave signal light obtained by removing first intensity modulation component from the first continuous phase frequency shift keying signal light, the first intensity modulation component having been generated by applying the first modulation signal to the light source;

a second signal generator that generates second polarized wave signal light obtained by removing the first intensity modulation component from the second continuous phase frequency shift keying signal light and adding a second intensity modulation component to the second continuous phase frequency shift keying signal light caused by applying a second modulation signal to the second continuous phase frequency shift keying signal light, the second polarized wave being orthogonal to the first polarized wave; and

a polarized wave multiplexer that multiplexes the first polarized wave signal light and the second polarized wave signal light.

6 . A signal generation method comprising:

branching continuous phase frequency shift keying signal light, that have been generated by applying a first modulation signal to a direct modulation laser, into first branch light and second branch light;

generating first polarized wave signal light obtained by removing a first intensity modulation component from the first branch light, the first intensity modulation component having been generated by applying the first modulation signal to the direct modulation laser;

generating second polarized wave signal light obtained by removing the fir intensity modulation component from the second branch light and adding a second intensity modulation component to the second branch light caused by applying a second modulation signal to the second branch light, the second polarized wave being orthogonal to the first polarized wave; and

multiplexing the first polarized wave signal light and the second polarized wave signal light.

Assignments (2)
CHANGE OF NAME Recorded Oct 3, 2025
From: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
To: NTT, INC.
Reel/Frame 072998/0094 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2024
From: KOMA, RYO; HARA, KAZUTAKA; KANI, JUNICHI
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 069059/0151 →