IP Library › Granted Patent US 10,971,891
Granted Patent B2
US 10,971,891 · App. 16/525,075 · Granted Apr 6, 2021

Light source device

Inventors: Tadaaki Miyata (Yokohama, JP); Hideaki Takeda (Kawasaki, JP)
Assignee: NICHIA CORPORATION
H01S5/02248H01S5/02276H01S5/02292H01S5/0425H01S5/06825H01S5/3013H01S5/4093H01S5/02216
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Quick Facts
Patent No.
US 10,971,891
App. No.
16/525,075
Granted
Apr 6, 2021
Kind
B2
Abstract

A light source device includes at least one first wiring, a plurality of second wirings, a plurality of light emitting elements each having a lower-surface-side electrode connected to a respective one of the at least one first wiring, a plurality of protective elements each having a lower-surface-side electrode connected to a respective one of the plurality of second wirings each corresponding to a respective one of the plurality of light emitting elements, each of the plurality of protective elements connected to a respective one of the plurality of light emitting elements, a plurality of first wirings each connecting an upper-surface-side electrode of each of the plurality of light emitting elements and a respective one of the plurality of second wirings, a plurality of second wires each connecting the upper-surface-side electrodes of two adjacent ones of the protective elements; and a plurality of third wires each connecting an upper-surface-side electrode of a respective one of the plurality of protective elements and a corresponding one of the at least one first wiring. The upper-surface-side electrodes of the plurality of light emitting elements and the upper-surface-side electrodes of the plurality of protective elements are of a same polarity, and the plurality of first wires are disposed below the plurality of second wires.

Claims (25)

1. A light source device comprising:

at least one first wiring;

a plurality of second wirings;

a plurality of light emitting elements each having a lower-surface-side electrode connected to a respective one of the at least one first wiring;

a plurality of protective elements each having a lower-surface-side electrode connected to a respective one of the plurality of second wirings each corresponding to a respective one of the plurality of light emitting elements, each of the plurality of protective elements connected to a respective one of the plurality of light emitting elements;

a plurality of first wires each connecting an upper-surface-side electrode of each of the plurality of light emitting elements and a respective one of the plurality of second wirings;

a plurality of second wires each connecting the upper-surface-side electrodes of two adjacent ones of the protective elements; and

a plurality of third wires each connecting an upper-surface-side electrode of a respective one of the plurality of protective elements and a corresponding one of the at least one first wiring;

wherein the upper-surface-side electrodes of the plurality of light emitting elements and the upper-surface-side electrodes of the plurality of protective elements are of a same polarity; and

the plurality of first wires are disposed below the plurality of second wires.

2. The light source device according to claim 1 , wherein the at least one first wiring and the plurality of second wirings are disposed on substantially a same plane.

3. The light source device according to claim 1 , wherein the upper-surface-side electrodes of the plurality of protective elements corresponding to the plurality of light emitting elements having a same emission wavelength range are connected through the second wires.

4. The light source device according to claim 1 , wherein the upper-surface-side electrodes of the plurality of protective elements corresponding to the plurality of light emitting elements with different semiconductor materials are connected through the second wires.

5. The light source device according to claim 1 comprising:

a further plurality of light emitting elements each having a lower-surface-side electrode connected to a respective one of the at least one first wiring;

a further plurality of protective elements each having a lower-surface-side electrode connected to a respective one of the plurality of second wirings each corresponding to a respective one of the plurality of light emitting elements, each of the plurality of protective elements connected to a respective one of the plurality of light emitting elements;

and further, a plurality of discrete wirings each corresponding to a respective one of the further plurality of light emitting elements;

wherein the upper-surface-side electrodes of the further plurality of light emitting elements and the upper-surface-side electrodes of the further plurality of protective elements have different polarities, and the upper-surface-side electrode of each of the further plurality of light emitting elements, the upper-surface-side electrode of each of the further plurality of protective elements respectively corresponding to each of the further plurality of light emitting elements, and corresponding one of the plurality of discrete wirings are connected by wires.

6. The light source device according to claim 1 , wherein the light emitting elements include a light emitting element that emits light in a blue wavelength range, a light emitting element that emits light in a green wavelength range, and a light emitting element that emits light in a red wavelength range.

7. The light source device according to claim 6 , wherein the light emitting element that emits light in a green wavelength range is a nitride semiconductor laser element and the light emitting element that emits light in a red wavelength range is a GaAs-based semiconductor laser element.

8. The light source device according to claim 1 , wherein at least one of the light emitting elements has a plurality of electrodes.

9. The light source device according to claim 1 , wherein the light emitting elements are laser diodes.

10. The light source device according to claim 1 , wherein an upward-reflecting mirror is disposed at a light-emitting side of the plurality of light emitting elements, and at least some of the protective elements are disposed at a lateral side with respect to the upward-reflecting mirror.

11. The light source device according to claim 1 , wherein step portions each having an upper surface located higher than the upper surface of the substrate are provided at both lateral sides in the width direction, and the second wirings are disposed on the upper surfaces of the step portions.

12. The light source device according to claim 1 , wherein in addition to the protective element mounted on the second wiring, a further protective element having a lower-surface-side electrode connected to the first wiring is provided, and an upper-surface-side electrode of the further protective element and the upper-surface-side electrode of the light emitting element are connected with a fourth wire.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2019
From: MIYATA, TADAAKI; TAKEDA, HIDEAKI
To: NICHIA CORPORATION
Reel/Frame 049903/0528 →
Priority Claims (1)
JP JP2018-142221 · Jul 30, 2018 · national
Continuity (1)
Related Publication 20200036158A1 · Jan 30, 2020