IP Library › Granted Patent US 10,638,586
Granted Patent B2
US 10,638,586 · App. 16/580,148 · Granted Apr 28, 2020

Illumination lighting apparatus, illumination device, and illumination fixture

Inventors: Hirofumi Konishi (Osaka, JP); Teruhito Takeda (Hyogo, JP); Shinji Makimura (Nara, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
H05B47/23H02M3/156H02M3/33507H05B45/37H05B45/50
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,638,586
App. No.
16/580,148
Granted
Apr 28, 2020
Kind
B2
Abstract

An illumination lighting apparatus is configured to light a plurality of light-emitting elements connected in series to each other. The illumination lighting apparatus includes one photosensor and a detector. The one photosensor is configured to detect light emitted from the plurality of light-emitting elements. The detector is configured to perform detection of a light emission defect on the plurality of light-emitting elements based on the light detected by the one photosensor. Moreover, the detector performs the detection process when a quantity of light detected by the one photosensor decreases. The detector includes two or more switches and a processor. The two or more switches are connected in parallel to the plurality of light-emitting elements. When the processor turns on the two or more switches sequentially one-by-one, and the quantity of light detected by the one photosensor does not change, the processor detects a light-emitting element having the light emission defect from the plurality of light-emitting elements.

Claims (50)

1. An illumination lighting apparatus configured to light a plurality of light-emitting elements connected in series to each other, the illumination lighting apparatus comprising:

one photosensor configured to detect light emitted from the plurality of light-emitting elements; and

a detector configured to perform a detection process of detecting a light emission defect in the plurality of light-emitting elements based on the light detected by the one photosensor,

the detector being configured to perform the detection process when a quantity of the light detected by the one photosensor decreases,

the plurality of light-emitting elements being divided into two or more groups each including at least one light-emitting element, and

the detector including

two or more switches connected in parallel to the plurality of light-emitting elements, the two or more switches corresponding to the two or more groups on a one-to-one basis, each of the two or more switches being connected in parallel to a corresponding one of the two or more groups, and

a processor configured to, when the quantity of light detected by the one photosensor remains unchanged while the two or more switches are turned on sequentially one by one during the detection process, detect a light-emitting element having the light emission defect from the plurality of light-emitting elements.

2. The illumination lighting apparatus of claim 1 , wherein

the two or more switches correspond to the plurality of light-emitting elements on a one-to-one basis and are each connected in parallel to a corresponding one of the plurality of light-emitting elements.

3. The illumination lighting apparatus of claim 1 , wherein

when the processor detects a light-emitting element having the light emission defect, the processor causes a switch of the two or more switches which corresponds to the light-emitting element having the light emission defect to remain on during operation after the detection process to short-circuit both ends of the light-emitting element having the light emission defect.

4. The illumination lighting apparatus of claim 3 , wherein

when the processor detects the light-emitting element having the light emission defect, the processor causes the switch corresponding to the light-emitting element having the light emission defect to remain on during operation after the detection process to short-circuit the both ends of the light-emitting element having the light emission defect and increases a current to be supplied to the plurality of light-emitting elements except for the light-emitting element having the light emission defect.

5. The illumination lighting apparatus of claim 1 , wherein

the detector is configured to perform the detection process at an initial stage of lighting of the plurality of light-emitting elements.

6. The illumination lighting apparatus of claim 1 , wherein

the processor turns on the two or more switches sequentially one by one, and

when any of the two or more switches is switched between an OFF state and an ON state but a quantity of light remains larger than or equal to a threshold, the processor detects a light-emitting element having the light emission defect, and

the threshold is a value smaller than the quantity of light detected most recently by the one photosensor.

7. The illumination lighting apparatus of claim 1 , further comprising

a lighting section having a dimming function of turning on and dimming the plurality of light-emitting elements, wherein

the detector is configured to stop the detection process while the lighting section performs dimming control on the plurality of light-emitting elements.

8. The illumination lighting apparatus of claim 1 , further comprising

a lighting section having a dimming function of turning on and dimming the plurality of light-emitting elements, wherein

the lighting section is configured to forgo dimming control on the plurality of light-emitting elements while the detector performs the detection process.

9. The illumination lighting apparatus of claim 1 , wherein

the processor turns on the two or more switches sequentially one by one at a switching interval shorter than or equal to 100 ms.

10. The illumination lighting apparatus of claim 1 , wherein

each of the plurality of light-emitting elements is a laser diode.

11. The illumination lighting apparatus of claim 5 , wherein

the initial stage of lighting of the plurality of light-emitting elements is a period within ten minutes of a time point at which the power supply is turned on or dimming is performed.

12. An illumination device, comprising:

the illumination lighting apparatus of claim 1 ;

the plurality of light-emitting elements; and

an optical component configured to guide the light emitted from the plurality of light-emitting elements.

13. The illumination device of claim 12 , wherein

the one photosensor is configured to detect part of the light emitted from the plurality of light-emitting elements.

14. The illumination device of claim 13 , wherein

the one photosensor is configured to detect light which is included in the light emitted from the plurality of light-emitting elements and which is reflected off the optical component.

15. An illumination fixture, comprising:

the illumination device of claim 12 ; and

a light outputting section configured to output the light guided from the optical component of the illumination device.

16. The illumination fixture of claim 15 , further comprising optical fiber configured to guide the light from the optical component of the illumination device to the light outputting section.

17. The illumination lighting apparatus of claim 1 , wherein

each of the two or more switches is a semiconductor relay.

18. The illumination lighting apparatus of claim 1 , wherein

the processor is configured to perform, on each of the plurality of light-emitting elements, detection of an oscillation defect as the light emission defect in the plurality of light-emitting elements, and in the oscillation defect, the light-emitting element emitting no light although a current continues to flow through the light-emitting element.

19. The illumination lighting apparatus of claim 2 , wherein

when the processor detects a light-emitting element having the light emission defect, the processor causes a switch of the two or more switches which corresponds to the light-emitting element having the light emission defect to remain on during operation after the detection process to short-circuit both ends of the light-emitting element having the light emission defect.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2020
From: KONISHI, HIROFUMI; TAKEDA, TERUHITO; MAKIMURA, SHINJI
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 051806/0278 →
Priority Claims (1)
JP 2018-186014 · Sep 28, 2018 · national
Continuity (1)
Related Publication 20200107421A1 · Apr 2, 2020