IP Library Granted Patent US 12,613,373
Granted Patent B2
US 12,613,373 · App. 18/327,915 · Granted Apr 28, 2026

Reconfigurable PIC architecture for both phase and amplitude modulation

Inventors: Yao Sun (Shanghai, CN); Po Dong (Fremont, CA); Shanshan Zeng (Shanghai, CN); Linjie Zhou (Jiaxing, CN); Liangjun Lu (Jiaxing, CN)
Assignee: Finisar Shanghai Incorporation
G02B6/12004G02B2006/12142G02B2006/12145
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Quick Facts
Patent No.
US 12,613,373
App. No.
18/327,915
Granted
Apr 28, 2026
Kind
B2
Abstract

A photonics integrated circuit (PIC) chip includes: an input unit, including at least one optical input (IN) and a number of optical outputs (ISO); a modulation unit (MU) including a number of light modulators (M) having optical inputs(S) coupled to cal outputs ISO of the input unit, and optical outputs (T); a first stage optical switch unit (1SOSU) including a number of optical inputs (I) optically coupled to optical outputs T of the MU, and optical outputs (P), a first subset of which define a first subset of optical outputs (O) of the PIC chip; and a second stage optical switch unit (2SOSU) including a number of optical inputs I and optical outputs (O) that define second subset of the optical outputs O of the PIC chip. Each optical switch of 1SOSU and 2SOSU may be configured in a coupler mode; a bar mode; and/or a cross mode.

Claims (132)

1 . A photonics integrated circuit (PIC) chip comprising:

a substrate;

an input unit formed on the substrate and including at least one optical input IN 1 and optical outputs ISO 1 -ISO 4 ;

a modulation unit (MU) formed on the substrate, the MU including modulators M 1 -M 4 having optical inputs S 1 -S 4 and optical outputs T 1 -T 4 , wherein the optical inputs S 1 -S 4 are optically coupled to optical outputs ISO 1 -ISO 4 of the input unit, wherein each modulator is operative for modulating light received at the optical input of the modulator and for outputting the modulated light on the optical output of the modulator;

a first stage optical switch unit (1SOSU) formed on the substrate, the 1SOSU including:

a first optical switch unit (OSU 1 ) including optical inputs I 1 and I 2 and optical outputs P 1 /O 1 and P 2 , wherein the optical inputs I 1 and I 2 are optically coupled to the optical outputs T 1 and T 2 of the modulators M 1 and M 2 , and

a second optical switch unit (OSU 2 ) including optical inputs I 3 and I 4 and optical outputs P 3 and P 4 /O 4 , wherein the optical inputs I 3 and I 4 are optically coupled to the optical outputs T 3 and T 4 of the modulators M 3 and M 4 ;

and

a second stage optical switch unit (2SOSU) formed on the substrate, the 2SOSU including a third optical switch unit (OSU 3 ) including optical inputs I 5 and I 6 and optical outputs O 2 and O 3 , wherein the optical inputs I 5 and I 6 are optically coupled to optical outputs P 2 and P 3 of OSU 1 and OSU 2 ,

wherein the input unit comprises a plurality of optical inputs (IN 1 -IN 4 ) and the optical outputs (ISO 1 -ISO 4 ), wherein the input unit is configurable by a controller in the following modes:

a coupler mode, wherein at least portions of optical inputs into the plurality of optical inputs IN 1 -IN 4 of the input unit are combined at each optical output ISO 1 -ISO 4 of the input unit;

a bar-bar mode, wherein optical inputs into the plurality of optical inputs IN 1 -IN 4 of the input unit are output directly to the respective optical outputs ISO 1 -ISO 4 of the input unit;

a bar-coupler or cross-coupler mode, wherein a subset of at least portions of the optical inputs into the plurality of optical inputs IN 1 -IN 4 of the input unit are combined and output on a subset optical output ISO 1 -ISO 4 of the input unit; and

bar-cross or a cross-cross mode, wherein a first subset of the optical inputs into the plurality of optical inputs IN 1 -IN 4 of the input unit are crossed and output to optical outputs ISO 4 -ISO 1 of the input unit.

2 . The PIC chip of claim 1 , further including:

a first phase shifter (PS 1 ) formed on the substrate and optically coupled between one of the optical inputs I 1 or I 2 of OSU 1 and a corresponding optical output T 1 or T 2 of the modulator M 1 or M 2 ;

a second phase shifter (PS 2 ) formed on the substrate and optically coupled between one of the optical inputs I 3 or I 4 of OSU 2 and a corresponding optical output T 3 or T 4 of the modulator M 3 or M 4 ;

a polarization rotator (PR) optically coupled between one of the optical outputs P 2 or P 3 of OSU 1 or OSU 2 and one of the optical inputs I 5 or I 6 of OSU 3 .

3 . The PIC chip of claim 2 , wherein:

the first phase shifter (PS 1 ) is optically coupled between the optical output T 2 of modulator M 2 and the optical input I 1 of OSU 1 ;

the second phase shifter (PS 2 ) is optically coupled between the optical output T 4 of modulator M 4 and the optical input I 4 of OSU 2 ; and

the polarization rotator is optically coupled between the optical output P 2 of OSU 1 and the optical input I 5 of OSU 3 or between the optical output P 3 of OSU 2 and the optical input I 6 of OSU 3 .

4 . The PIC chip of claim 1 , wherein the OSUs are configurable in the following modes:

a bar mode including optical inputs I 1 , I 2 , I 3 , and I 4 of OSU 1 and OSU 2 optically coupled to optical outputs P 1 /O 1 , P 2 , P 3 , and P 4 /O 4 of OSU 1 and OSU 2 , and optical inputs I 5 and I 6 of OSU 3 optically coupled to optical outputs O 2 and O 3 of OSU 3 ; or

a cross mode including optical inputs I 1 , I 2 , I 3 , and I 4 of OSU 1 and OSU 2 optically coupled to optical outputs P 2 , P 1 /O 1 , P 4 /O 4 , and P 3 of OSU 1 and OSU 2 , and optical inputs I 5 and I 6 of OSU 3 optically coupled to optical outputs O 3 and O 2 of OSU 3 ; or

a coupler mode including:

optical input I 1 optically coupled to optical outputs P 1 /O 1 and P 2 ,

optical input I 2 optically coupled to optical outputs P 1 /O 1 and P 2 ,

optical input I 3 optically coupled to optical outputs P 3 and P 4 /O 4 ,

optical input I 4 optically coupled to optical outputs P 3 and P 4 /O 4 ,

optical input I 5 optically coupled to optical outputs O 2 and O 3 , and

optical input I 6 optically coupled to optical outputs O 2 and O 3 , wherein, light input into each optical input is split between the corresponding optical outputs.

5 . The PIC chip of claim 4 , wherein:

for a coherent application, all of the OSUs are set to the coupler mode; and

for an Intensity-Modulated Direct Detection (IMDD) application, all of the OSUs are set to either the bar mode or the cross mode.

6 . The PIC chip of claim 5 , wherein in the coherent application, the optical output of the PIC chip is one of the optical outputs O 2 or O 3 .

7 . The PIC chip of claim 5 , wherein in the IMDD application:

in a DR 4 mode of operation, modulated light is output on all of the optical outputs O 1 -O 4 ; and

in a DR 1 mode of operation, modulated light is output on any one of the optical outputs O 1 -O 4 .

8 . A photonics integrated circuit (PIC) chip comprising:

a substrate;

an input unit formed on the substrate and including at least one optical input IN 1 and optical outputs ISO 1 -ISO 4 ;

a modulation unit (MU) formed on the substrate, the MU including modulators M 1 -M 4 having optical inputs S 1 -S 4 and optical outputs T 1 -T 4 , wherein the optical inputs S 1 -S 4 are optically coupled to optical outputs ISO 1 -ISO 4 of the input unit, wherein each modulator is operative for modulating light received at the optical input of the modulator and for outputting the modulated light on the optical output of the modulator;

a first stage optical switch unit (1SOSU) formed on the substrate, the 1SOSU including:

a first optical switch unit (OSU 1 ) including optical inputs I 1 and I 2 and optical outputs P 1 /O 1 and P 2 , wherein the optical inputs I 1 and I 2 are optically coupled to the optical outputs T 1 and T 2 of the modulators M 1 and M 2 , and

a second optical switch unit (OSU 2 ) including optical inputs I 3 and I 4 and optical outputs P 3 and P 4 /O 4 , wherein the optical inputs I 3 and I 4 are optically coupled to the optical outputs T 3 and T 4 of the modulators M 3 and M 4 ;

and

a second stage optical switch unit (2SOSU) formed on the substrate, the 2SOSU including a third optical switch unit (OSU 3 ) including optical inputs I 5 and I 6 and optical outputs O 2 and O 3 , wherein the optical inputs I 5 and I 6 are optically coupled to optical outputs P 2 and P 3 of OSU 1 and OSU 2 , wherein the input unit comprises:

a fourth optical switch unit (OSU 4 ) including optical inputs IN 2 and IN 3 and optical outputs IO 2 and IO 3 ,

a fifth optical switch unit (OSU 5 ) including the optical input IN 1 , an optical input IN 5 coupled to the optical output IO 2 of OSU 4 , and the optical outputs ISO 1 and ISO 2 , and

a sixth optical switch unit (OSU 6 ) including an optical input IN 4 , an optical input IN 6 coupled to the optical output IO 3 of OSU 4 , and the optical outputs ISO 3 and ISO 4 .

9 . The PIC chip of claim 8 , wherein OSU 4 -OSU 6 of the input unit are configurable in the following modes:

a bar mode including the optical inputs IN 1 -IN 4 optically coupled to the optical outputs ISO 1 -ISO 4 ; or

a cross mode including the optical inputs IN 1 , IN 2 , IN 3 , and IN 4 optically coupled to the optical outputs ISO 2 , ISO 4 , ISO 1 , and ISO 3 ; or

a coupler mode including:

the optical input IN 1 optically coupled to the optical outputs ISO 1 and ISO 2 ,

the optical input IN 2 optically coupled to the optical outputs ISO 1 -ISO 4 ,

the optical input IN 3 optically coupled to the optical outputs ISO 1 -ISO 4 ,

the optical input IN 4 optically coupled to the optical outputs ISO 3 and ISO 4 ,

the optical input IN 5 optically coupled to the optical outputs ISO 1 and ISO 2 , and

the optical input IN 6 optically coupled to the optical outputs ISO 3 and ISO 4 , wherein, light input into each optical input is split between the corresponding optical outputs.

10 . The PIC chip of claim 9 , wherein, when OSU 4 -OSU 6 of the input unit are in the coupler mode, light input into the optical inputs IN 1 -IN 4 is split evenly between the optical outputs ISO 1 -ISO 4 .

11 . The PIC chip of claim 8 , wherein:

OSU 4 is configured in a bar mode wherein the optical inputs IN 2 and IN 3 are optically coupled to the optical outputs IO 2 and IO 3 ; and

at least one of the following:

OSU 5 is configured in a coupler mode wherein the optical input IN 1 is optically coupled to the optical outputs ISO 1 and ISO 2 and the optical input IN 5 , which is optically coupled to the optical output IO 2 of OSU 4 , is optically coupled to the optical outputs ISO 1 and ISO 2 , whereupon the optical signal output on each of the optical outputs ISO 1 and ISO 2 is a combination of the optical signals input into the optical inputs IN 1 and IN 2 ;

and

OSU 6 is configured in a coupler mode wherein the optical input IN 4 is optically coupled to the optical outputs ISO 3 and ISO 4 and the optical input IN 5 , which is optically coupled to the optical output IO 3 of OSU 4 , is optically coupled to the optical outputs ISO 3 and ISO 4 , whereupon the optical signal output on each of the optical outputs ISO 3 and ISO 4 is a combination of optical signals input into the optical inputs IN 3 and IN 4 .

12 . The PIC chip of claim 8 , wherein:

OSU 4 is configured in a cross mode wherein the optical inputs IN 2 and IN 3 are optically coupled to the optical outputs IO 3 and IO 2 ; and

at least one of the following:

OSU 5 is configured in a coupler mode wherein the optical input IN 1 is optically coupled to the optical outputs ISO 1 and ISO 2 and the optical input IN 5 , which is optically coupled to the optical output IO 2 of OSU 4 , is optically coupled to the optical outputs ISO 1 and ISO 2 , whereupon the optical signal output on each of the optical outputs ISO 1 and ISO 2 is a combination of optical signals input into the optical inputs IN 1 and IN 3 ;

and

OSU 6 is configured in a coupler mode wherein the optical input IN 4 is optically coupled to the optical outputs ISO 3 and ISO 4 and the optical input IN 5 , which is optically coupled to the optical output IO 3 of OSU 4 , is optically coupled to the optical outputs ISO 3 and ISO 4 , whereupon the optical signal output on each of the optical outputs ISO 3 and ISO 4 is a combination of optical signals input into the optical inputs IN 2 and IN 4 .

13 . The PIC chip of claim 8 , wherein:

OSU 4 is configured in a bar mode wherein the optical inputs IN 2 and IN 3 are optically coupled to the optical outputs IO 2 and IO 3 ; and

at least one of the following:

OSU 5 is configured in a bar mode wherein the optical input IN 1 is optically coupled to the optical output ISO 1 and the optical input IN 5 , which is optically coupled to the optical output IO 2 of OSU 4 , is optically coupled to the optical output ISO 2 , whereupon the optical signals output on the optical outputs ISO 1 and ISO 2 are the optical signals input into the optical inputs IN 1 and IN 2 ;

and

OSU 6 is configured in a bar mode wherein the optical input IN 4 is optically coupled to the optical output ISO 4 and the optical input IN 3 , which is optically coupled to the optical output IO 3 of OSU 4 , is optically coupled to the optical output ISO 3 , whereupon the optical signals output on the optical outputs ISO 3 and ISO 4 are the optical signals input into the optical inputs IN 3 and IN 4 .

14 . The PIC chip of claim 8 , wherein:

OSU 4 is configured in a bar mode wherein the optical inputs IN 2 and IN 3 are optically coupled to the optical outputs IO 2 and IO 3 ; and

at least one of the following:

OSU 5 is configured in a cross mode wherein the optical input IN 1 is optically coupled to the optical output ISO 2 and the optical input IN 5 , which is optically coupled to the optical output IO 2 of OSU 4 , is optically coupled to the optical output ISO 1 , whereupon the optical signals output on the optical outputs ISO 1 and ISO 2 are the optical signals input into the optical inputs IN 2 and IN 1 ;

and

OSU 6 is configured in a cross mode wherein the optical input IN 4 is optically coupled to the optical output ISO 3 and the optical input IN 6 , which is optically coupled to the optical output IO 3 of OSU 4 , is optically coupled to the optical output ISO 4 , whereupon the optical signals output on the optical outputs ISO 3 and ISO 4 are the optical signals input into the optical inputs IN 4 and IN 3 .

15 . The PIC chip of claim 8 , wherein:

OSU 4 is configured in a cross mode wherein the optical inputs IN 2 and IN 3 are optically coupled to the optical outputs IO 3 and IO 2 ; and

at least one of the following:

OSU 5 is configured in a bar mode wherein the optical input IN 1 is optically coupled to the optical output ISO 1 and the optical input IN 5 , which is optically coupled to the optical output IO 2 of OSU 4 , is optically coupled to the optical output ISO 2 , whereupon the optical signals output on the optical outputs ISO 1 and ISO 2 are the optical signals input into the optical inputs IN 1 and IN 3 ;

and

OSU 6 is configured in a bar mode wherein the optical input IN 4 is optically coupled to the optical output ISO 4 and the optical input IN 6 , which is optically coupled to the optical output IO 3 of OSU 4 , is optically coupled to the optical output ISO 3 , whereupon the optical signals output on the optical outputs ISO 3 and ISO 4 are the optical signals input into the optical inputs IN 2 and IN 4 .

16 . The PIC chip of claim 8 , wherein:

OSU 4 is configured in a cross mode wherein the optical inputs IN 2 and IN 3 are optically coupled to the optical outputs IO 3 and IO 2 ; and

at least one of the following:

OSU 5 is configured in a cross mode wherein the optical input IN 1 is optically coupled to the optical output ISO 2 and the optical input IN 5 , which is optically coupled to the optical output IO 2 of OSU 4 , is optically coupled to the optical output ISO 1 , whereupon the optical signals output on the optical outputs ISO 1 and ISO 2 are the optical signals input into the optical inputs IN 3 and IN 1 ;

and

OSU 6 is configured in a cross mode wherein the optical input IN 4 is optically coupled to the optical output ISO 3 and the optical input IN 6 , which is optically coupled to the optical output IO 3 of OSU 4 , is optically coupled to the optical output ISO 4 , whereupon the optical signals output on the optical outputs ISO 3 and ISO 4 are the optical signals input into the optical inputs IN 4 and IN 2 .

17 . A photonics integrated circuit (PIC) chip comprising:

a substrate;

an input unit formed on the substrate and including at least one optical input (IN) and a plurality of optical outputs (ISO);

a modulation unit (MU) formed on the substrate, the MU including a plurality of modulators (M) having optical inputs(S) and optical outputs (T), wherein the plurality of optical inputs S of the MU are optically coupled to the plurality of optical outputs ISO of the input unit, wherein each modulator M is operative for modulating light received at the optical input S of the modulator M and for outputting the modulated light on the optical output T of the modulator M;

a first stage optical switch unit (1SOSU) formed on the substrate and including a plurality of optical inputs (I) and first and second subsets of optical outputs, wherein:

the plurality of optical inputs I of the 1SOSU are optically coupled to the plurality of optical outputs T of the MU, and

the first subset of the optical outputs of the 1SOSU define a first subset of optical outputs of the PIC chip;

and

a second stage optical switch unit (2SOSU) formed on the substrate and including a plurality of optical inputs I and a second subset of the optical outputs of the PIC chip, wherein the plurality of optical inputs I of the 2SOSU are optically coupled to the second subset of the optical outputs of the 1SOSU;

wherein the 1SOSU and the 2SOSU are each configurable by a controller in the following modes:

a coupler mode, wherein at least portions of the optical outputs T of the plurality of modulators M are combined at each optical output of the 1SOSU and the 2SOSU;

a bar mode, wherein a first subset of the optical outputs T of the plurality of modulators M is output directly on the first subset of the optical outputs of the PIC chip and a second subset of the optical outputs T of the plurality of modulators M is output on the second subset of the optical outputs of the PIC chip via the 2SOSU; and

a cross mode, wherein a first subset of the optical outputs T of the plurality of modulators M is crossed by the 1SOSU and output on the first subset of the optical outputs of the PIC chip and a second subset of the optical outputs T of the plurality of modulators M is crossed by the 2SOSU and is output on the second subset of the optical outputs of the PIC chip,

wherein the input unit comprises a plurality of optical inputs (IN 1 -INx) and the plurality of optical outputs (ISO 1 -ISOx), wherein the input unit is configurable by a controller in the following modes:

a coupler mode, wherein at least portions of optical inputs into the plurality of optical inputs IN 1 -INx of the input unit are combined at each optical output ISO 1 -ISOx of the input unit;

a bar-bar mode, wherein optical inputs into the plurality of optical inputs IN 1 -INx of the input unit are output directly to the respective optical outputs ISO 1 -ISOx of the input unit;

a bar-coupler or cross-coupler mode, wherein a subset of at least portions of the optical inputs into the plurality of optical inputs IN 1 -INx of the input unit are combined and output on a subset optical output ISO 1 -ISOx of the input unit; and

bar-cross or a cross-cross mode, wherein a first subset of the optical inputs into the plurality of optical inputs IN 1 -INx of the input unit are crossed and output to optical outputs ISOx-ISO 1 of the input unit.

18 . The PIC chip of claim 17 , wherein:

the 1SOSU includes optical inputs I 1 -Ix and optical outputs P 1 -Px, wherein at least part of the optical outputs P 1 -Px define optical outputs O 1 -Ox of the PIC chip; and

the 2SOSU includes optical inputs I 1 ′-Ix′ and optical outputs O 1 ′-Ox′ of the PIC chip;

when the 1SOSU is in the bar mode, the optical inputs I 1 -Ix of the 1SOSU are coupled to the respective optical outputs P 1 -Px of the 1SOSU;

when the 2SOSU is in the bar mode, the optical inputs I 1 ′-Ix′ of the 2SOSU are coupled to the respective optical outputs O 1 ′-Ox′ of the PIC chip;

when the 1SOSU is in the coupler mode, at least portions of the optical inputs I 1 -Ix of the 1SOSU are combined at each of the optical outputs P 1 -Px of the 1SOSU;

when the 2SOSU is in the coupler mode, at least portions of the optical inputs I 1 ′-Ix′ of the 2SOSU are combined at each of the optical outputs O 1 ′-Ox′ of the PIC chip;

when the 1SOSU is in the cross mode, the optical inputs I 1 -Ix of the 1SOSU are coupled to the respective optical outputs Px-P 1 of the 1SOSU; and

when the 2SOSU is in the cross mode, the optical inputs I 1 ′-Ix′ of the 2SOSU are coupled to the respective optical outputs Ox′-O 1 ′ of the PIC chip.

19 . The PIC chip of claim 17 , further including a phase shifting unit formed on the substrate between the MU and the 1SOSU, the phase shifting unit including:

a first phase shifter optically coupled between the optical output T of a first of the plurality of modulators M and a first of the plurality of optical inputs I of the 1SOSU; and

a second phase shifter optically coupled between the optical output T of a second of the plurality of modulators M and a second of the plurality of optical inputs I of the 1SOSU.

20 . The PIC chip of claim 17 , further including polarization rotator formed on the substrate between one of the optical outputs P the 1SOSU and one of the optical inputs I′ of the 2SOSU.

21 . The PIC chip of claim 17 , wherein the input unit comprises at least one of the following:

a 1:4 splitter; and

a 2:4 splitter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2023
From: SUN, YAO; DONG, PO; ZENG, SHANSHAN; ZHOU, LINJIE; LU, LIANGJUN
To: FINISAR SHANGHAI INCORPORATION
Reel/Frame 063835/0873 →
Priority Claims (1)
CN 202310547879.0 · May 16, 2023 · national
Continuity (1)
Related Publication 20240385368A1 · Nov 21, 2024
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