IP Library Patent Application 18432025
Patent Application
App. No. 18/432,025

DRIVE DEVICE, DISTANCE MEASUREMENT APPARATUS, AND LIGHT EMITTING APPARATUS

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Quick Facts
Patent No.
US None
App. No.
18/432,025
Abstract

A drive device drives a light emitting device including a first light emitting section and a second light emitting section, in which each of the first light emitting section and the second light emitting section has predetermined plural light emitting periods, and the drive device is configured to: cause the light emitting device to perform pulse light emission 500 times or more in the light emitting period; and drive the light emitting device such that the second light emitting section has a light emitting period in a light non-emitting period during which the first light emitting section does not emit light between a light emitting period and a next light emitting period of the first light emitting section.

Claims (34)

1 . A drive device that drives a light emitting device including a first light emitting section and a second light emitting section,

wherein each of the first light emitting section and the second light emitting section has a predetermined plurality of light emitting periods, and

the drive device is configured to:

cause the light emitting device to perform pulse light emission 500 times or more in the light emitting period; and

drive the light emitting device such that the second light emitting section has a light emitting period in a light non-emitting period during which the first light emitting section does not emit light between a light emitting period and a next light emitting period of the first light emitting section.

2 . The drive device according to claim 1 ,

wherein the light emitting device is driven such that with respect to one light emitting section group including the first light emitting section and the second light emitting section included in the light emitting device, and another light emitting section group including another light emitting section, after the predetermined plurality of light emitting periods of the one light emitting section group, the other light emitting section group has a light emitting period.

3 . The drive device according to claim 2 ,

wherein the light emitting device is driven such that light emitting sections belonging to the one light emitting section group are adjacent to each other.

4 . The drive device according to claim 1 ,

wherein the light non-emitting period is defined by the number of times of unit time, by using a time corresponding to the light emitting period as the unit time, and

with respect to one light emitting section group including the first light emitting section and the second light emitting section included in the light emitting device, and another light emitting section group including another light emitting section, the number of light emitting sections belonging to the one light emitting section group coincides with the number of times of unit time defined as the light non-emitting period.

5 . The drive device according to claim 1 ,

wherein the light emitting device is driven such that a light emitting period of a third light emitting section that is not adjacent to the first light emitting section included in the light emitting device overlaps with the light emitting period of the first light emitting section.

6 . A distance measurement apparatus comprising:

a light emitting unit that includes a first light emitting section and a second light emitting section;

a drive unit that drives the light emitting unit such that each of the first light emitting section and the second light emitting section has a predetermined plurality of light emitting periods;

a light receiving unit that receives light emitted from the light emitting unit and reflected by a target object; and

a calculation unit that calculates a distance to the target object based on a result of light reception by the light receiving unit,

wherein the drive unit drives the light emitting unit such that the second light emitting section has a light emitting period in a light non-emitting period during which the first light emitting section does not emit light between a light emitting period and a next light emitting period of the first light emitting section.

7 . The distance measurement apparatus according to claim 6 ,

wherein the light emitting unit includes one light emitting section group including the first light emitting section and the second light emitting section, and another light emitting section group including another light emitting section, and

after all light emitting sections belonging to the one light emitting section group complete a light emitting period once, the calculation unit acquires a result of light reception by the light receiving unit from a start of the light emitting period of the light emitting section at a head to an end of the light emitting period of the light emitting section at a tail in the one light emitting section group.

8 . The distance measurement apparatus according to claim 6 ,

wherein the light receiving unit includes a first light receiving section that receives the light reflected by the target object in the light emitting period of the first light emitting section, and a second light receiving section that receives the light reflected by the target object in the light emitting period of the second light emitting section, and

the calculation unit acquires a result of the light reception for each light receiving section included in the light receiving unit.

9 . The distance measurement apparatus according to claim 8 ,

wherein the drive unit drives the light emitting unit such that the second light emitting section has the light emitting period in a period during which the calculation unit acquires a result of light reception in the first light receiving section.

10 . A light emitting apparatus comprising:

a light emitting unit that includes a first light emitting section and a second light emitting section; and

a drive unit that drives the light emitting unit such that each of the first light emitting section and the second light emitting section has a predetermined plurality of predetermined light emitting periods,

wherein the drive unit is configured to:

cause the light emitting unit to perform pulse light emission 500 times or more in the light emitting period; and

drive the light emitting unit such that the second light emitting section has a light emitting period in a light non-emitting period during which the first light emitting section does not emit light between a light emitting period and a next light emitting period of the first light emitting section.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2024
From: FUJIFILM CORPORATION
To: FUJIFILM BUSINESS INNOVATION CORP.
Reel/Frame 068049/0567 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2024
From: IGUCHI, DAISUKE; HAYAKAWA, JUNICHIRO; TAKEYAMA, KEI
To: FUJIFILM BUSINESS INNOVATION CORP.; FUJIFILM CORPORATION
Reel/Frame 066387/0644 →