IP Library › Granted Patent US 11,003,044
Granted Patent B2
US 11,003,044 · App. 16/799,770 · Granted May 11, 2021

Electro-optic device

Inventors: Hiroki Hara (Tokyo, JP); Shinji Iwatsuka (Tokyo, JP); Takashi Kikukawa (Tokyo, JP); Toshinori Matsuura (Tokyo, JP); Yasuhiro Ohmori (Kanagawa, JP); Masaharu Doi (Kanagawa, JP); Shintaro Takeuchi (Kanagawa, JP); Yoshinobu Kubota (Kanagawa, JP)
Assignees: TDK CORPORATION; FUJITSU OPTICAL COMPONENTS LIMITED
G02F1/2255G02F1/0356G02F1/225G02F1/212G02F2201/063G02F2202/20
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Quick Facts
Patent No.
US 11,003,044
App. No.
16/799,770
Granted
May 11, 2021
Kind
B2
Abstract

An electro-optic device is provided with a Mach-Zehnder optical waveguide including at least one linear section and at least one curved section and a differential RF signal electrode provided along the Mach-Zehnder optical waveguide. Optical input/output ports of the Mach-Zehnder optical waveguide are provided at one end side in a first direction in which the linear section extends. The differential RF signal electrode is provided in both the linear and curved sections.

Claims (29)

1. An electro-optic device comprising:

a Mach-Zehnder optical waveguide including at least one linear section and at least one curved section; and

a differential RF signal electrode provided along the Mach-Zehnder optical waveguide, wherein

Optical input/output ports of the Mach-Zehnder optical waveguide are provided at one end side in a first direction in which the linear section extends, and

the differential RF signal electrode is provided along both the linear and curved sections and constitutes an interaction part of a Mach-Zehnder modulating element together with the Mach-Zehnder optical waveguide.

2. The electro-optic device as claimed in claim 1 , wherein an RF signal input port of the differential RF signal electrode is provided at the other end side in the first direction.

3. The electro-optic device as claimed in claim 1 , wherein

the Mach-Zehnder optical waveguide includes 1st to (2m+2)th linear sections (m is a positive integer) and 1st to (2m+1)th curved sections, and

the differential RF signal electrode is continuously provided along at least a (2n)th linear section of the Mach-Zehnder optical waveguide (n is a positive integer equal to or less than m), a (2n)th curved section, and a (2n+1)th linear section.

4. The electro-optic device as claimed in claim 3 , wherein

a multiplexer of the Mach-Zehnder optical waveguide is provided at the end portion of a (2m+1)th linear section of the Mach-Zehnder optical waveguide.

5. The electro-optic device as claimed in claim 1 comprising a plurality of the Mach-Zehnder optical waveguides and each of the Mach-Zehnder optical waveguides are provided parallel to one another.

6. The electro-optic device as claimed in claim 5 , wherein a plurality of the curved sections located at a same section in the plurality of the Mach-Zehnder optical waveguides is formed into concentric half circles.

7. The electro-optic device as claimed in claim 1 , wherein a ground electrode is provided neither between two signal electrodes constituting the differential RF signal electrode nor thereoutside.

8. The electro-optic device as claimed in claim 1 , wherein the Mach-Zehnder optical waveguide is a ridge waveguide of a lithium niobate film formed on a substrate.

9. An electro-optic device comprising:

a Mach-Zehnder optical waveguide including at least one linear waveguide section and at least one curved waveguide section; and

a differential RF signal electrode provided along the Mach-Zehnder optical waveguide, wherein

optical input/output ports of the Mach-Zehnder optical waveguide are provided at one end side in a first direction in which the linear waveguide section extends, and

the differential RF signal electrode includes a linear electrode section provided along the linear waveguide section and a curved electrode section provided along the curved waveguide section.

10. The electro-optic device as claimed in claim 9 , wherein an RF signal input port of the differential RF signal electrode is provided at the other end side in the first direction.

11. The electro-optic device as claimed in claim 9 , wherein

the Mach-Zehnder optical waveguide includes 1st to (2m+2)th linear waveguide sections (m is a positive integer) and 1st to (2m+1)th curved waveguide sections, and

the differential RF signal electrode is continuously provided along at least a (2n)th linear waveguide section (n is a positive integer equal to or less than m), a (2n)th curved waveguide section, and a (2n+1)th linear waveguide section.

12. The electro-optic device as claimed in claim 11 , wherein a multiplexer of the Mach-Zehnder optical waveguide is provided at the end portion of a (2m+1)th linear waveguide section of the Mach-Zehnder optical waveguide.

13. The electro-optic device as claimed in claim 9 , further comprising a plurality of the Mach-Zehnder optical waveguides and each of the Mach-Zehnder optical waveguides are provided parallel to one another.

14. The electro-optic device as claimed in claim 13 , wherein a plurality of the curved waveguide sections located at a same section in the plurality of the Mach-Zehnder optical waveguides is formed into concentric half circles.

15. The electro-optic device as claimed in claim 9 , wherein a ground electrode is provided neither between two signal electrodes constituting the differential RF signal electrode nor thereoutside.

16. The electro-optic device as claimed in claim 9 , wherein the Mach-Zehnder optical waveguide is a ridge waveguide of a lithium niobate film formed on a substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2020
From: HARA, HIROKI; IWATSUKA, SHINJI; KIKUKAWA, TAKASHI; MATSUURA, TOSHINORI; OHMORI, YASUHIRO; DOI, MASAHARU; TAKEUCHI, SHINTARO; KUBOTA, YOSHINOBU
To: TDK CORPORATION; FUJITSU OPTICAL COMPONENTS LIMITED
Reel/Frame 052101/0549 →
Priority Claims (1)
JP JP2019-031797 · Feb 25, 2019 · national
Continuity (1)
Related Publication 20200272021A1 · Aug 27, 2020
Cited By (3)
US 12,259,631 US 12,607,897 US 12,656,654