IP Library › Granted Patent US 10,209,603
Granted Patent B2
US 10,209,603 · App. 15/704,693 · Granted Feb 19, 2019

Switching optical antenna, switching optical antenna array, and optical scanning device

Inventors: Daisuke Inoue (Nagakute, JP); Hiroyuki Matsubara (Nagakute, JP); Tadashi Ichikawa (Nagakute, JP)
Assignee: KABUSHIKI KAISHA TOYOTA CHUO KENKYUSHO
G02F1/2955G02F2001/291G02F2201/30G02F2203/07G02F2203/15G02F2203/28
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Quick Facts
Patent No.
US 10,209,603
App. No.
15/704,693
Granted
Feb 19, 2019
Kind
B2
Abstract

A switching optical antenna that includes: a waveguide including a light input end and a light output end; a ring waveguide coupled with the waveguide through a first directional coupler; a diffraction grating that is disposed within the ring waveguide and that is coupled with the ring waveguide through a second directional coupler; and a refractive index adjusting section that changes a refractive index of at least a portion of the ring waveguide.

Claims (22)

1. A switching optical antenna array comprising:

a scanning array in which a plurality of scanning array units are arrayed in a second direction that intersects with a first direction, each scanning array unit including:

a plurality of switching optical antennas, arrayed in the first direction through a first scanning waveguide configured by waveguides of the plurality of switching optical antennas connected to each other, each switching optical antenna including:

a waveguide including a light input end and a light output end;

a ring waveguide coupled with the waveguide through a first directional coupler;

a diffraction grating that is disposed within the ring waveguide and that is coupled with the ring waveguide through a second directional coupler; and

a refractive index adjusting section that changes a refractive index of at least a portion of the ring waveguide;

a first scanning ring waveguide coupled with the first scanning waveguide by a third directional coupler; and

a first scanning refractive index adjusting section that changes a refractive index of at least a portion of the first scanning ring waveguide;

a plurality of second scanning refractive index adjusting sections configured by refractive index adjusting sections of at least some of the plurality of scanning array units, which are connected to each other in the second direction; and

a second scanning waveguide coupled with each of a plurality of the first scanning ring waveguides through respective fourth directional couplers.

2. The switching optical antenna array of claim 1 , wherein:

each of the diffraction gratings is a polarized light separating diffraction grating; and

the switching optical antenna array further comprises:

a plurality of third scanning waveguides that are each coupled with each ring waveguide of the plurality of switching optical antennas, which are arrayed in the second direction, through respective fifth directional couplers;

a plurality of second scanning ring waveguides that are respectively coupled with the plurality of third scanning waveguides through respective sixth directional couplers; and

a fourth scanning waveguide that is coupled with each of the plurality of second scanning ring waveguides through respective seventh directional couplers.

3. An optical scanning device comprising:

the switching optical antenna array of claim 1 ; and

a lens provided above at least some of the plurality of switching optical antennas.

4. The optical scanning device of claim 3 , wherein the lens includes a microlens array that includes a plurality of microlenses disposed so as to respectively correspond to the plurality of switching optical antennas.

5. The optical scanning device of claim 4 , wherein an array pitch of the plurality of microlenses is greater than an array pitch of the plurality of switching optical antennas.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2017
From: INOUE, DAISUKE; MATSUBARA, HIROYUKI; ICHIKAWA, TADASHI
To: KABUSHIKI KAISHA TOYOTA CHUO KENKYUSHO
Reel/Frame 043593/0135 →
Priority Claims (1)
JP 2016-185875 · Sep 23, 2016 · national
Continuity (1)
Related Publication 20180088439A1 · Mar 29, 2018
Cited By (1)
US 12,313,953