IP Library Patent Application 18717514
Patent Application
App. No. 18/717,514

Phosphor Converted LEDS With Improved Light Uniformity Including Discrete Light-Scattering Layers

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Quick Facts
Patent No.
US None
App. No.
18/717,514
Abstract

Light emitting devices comprise: one or more light emitting diode (LED) dies in a reflector cup; a first light-scattering layer contacting side surfaces of the LED dies, and a bottom wall and a sidewall of the reflector cup, the first light-scattering layer comprising light-scattering particles and a first binder material; and a second light-scattering layer contacting at least a top surface of the LED dies, and the first light-scattering layer at an interface, the second light-scattering layer comprising phosphor particles and a second binder material.

Claims (42)

1 . A light emitting device comprising:

a light emitting diode (LED) die in a reflector cup;

a first light-scattering layer contacting a side surface of the LED die, and a bottom wall and a sidewall of the reflector cup, the first light-scattering layer comprising light-scattering particles and a first binder material; and

a second light-scattering layer contacting at least a top surface of the LED die and the first light-scattering layer at an interface, the second light-scattering layer comprising phosphor particles and a second binder material.

2 . The light emitting device of claim 1 , wherein a combination of the first light-scattering layer and the second light-scattering layer fills the reflector cup around the LED die.

3 . The light emitting device of claim 1 , wherein the first light-scattering layer and the second light-scattering layer differ with respect to one or more of the following characteristics:

kinematic viscosity at 25° C.;

refractive index;

type of particles: the light-scattering particles of the first light-scattering layer and the phosphor particles of the second light-scattering layer are different materials;

type of binder material: the first binder of the first light-scattering layer and the second binder material of the second light-scattering layer are different materials; and

particles loading: a first weight or volume ratio of the light-scattering particles of the first light-scattering layer to the first binder material differs from a second weight or volume ratio of the phosphor particles of the second light-scattering layer to the second binder material.

4 . The light emitting device of claim 1 , wherein the light-scattering particles of the first light-scattering layer and the phosphor particles of the second light-scattering layer are the same material, and a first concentration of the particles of the first light-scattering layer is less than a concentration of the particles of the second light-scattering layer.

5 . The light emitting device of claim 1 , wherein the reflector cup has an aspect ratio (width to height) of in a range of 2.5:1 to 60:1.

6 . The light emitting device of claim 1 , wherein the second light-scattering layer contacts the side surface of the LED die.

7 . The light emitting device of claim 1 , wherein the first and second binder materials are the same material.

8 . The light emitting device of claim 1 , wherein the first and second binder materials independently comprises a silicone polymer.

9 . The light emitting device of claim 1 , wherein the light-scattering particles of the first light-scattering layer and the phosphor particles of the second light-scattering layer are different materials.

10 . The light emitting device of claim 9 , wherein the light-scattering particles of the first light-scattering layer comprise one or more of: silica, titania, sapphire, and alumina; and the phosphor particles of the second light-scattering layer comprise yellow-emitting wavelength converting material, or green and red emitting wavelength converting materials.

11 . The light emitting device of claim 1 , wherein the LED die emits blue light and wherein the phosphor particles of the second light-scattering composition emits a light that, combined with the blue light, creates a white light.

12 . A light source comprising:

one or more light emitting diode (LED) dies in a reflector cup;

a first light-scattering layer contacting side surfaces of the one or more LED dies, and a bottom wall and a sidewall of the reflector cup, the first light-scattering layer comprising light-scattering particles and a first binder material; and

a second light-scattering layer spanning a width of the reflector cup, and the first light-scattering layer at an interface, the second light-scattering layer comprising phosphor particles and a second binder material;

wherein a combination of the first light-scattering layer and the second light-scattering layer fills the reflector cup around the one or more LED dies; and the light-scattering particles of the first light-scattering layer and the phosphor particles of the second light-scattering layer are the same material, and a first concentration of the particles of the first light-scattering layer is less than a concentration of the particles of the second light-scattering layer.

13 . The light source of claim 12 , wherein the reflector cup has an aspect ratio (width to height) of in a range of 2.5:1 to 60:1.

14 . The light source of claim 12 further comprising a mount to which the reflector cup is affixed; and a drive circuit in communication with the mount, the drive circuit configured to provide current to the mount to illuminate the LED dies.

15 . The light source of claim 13 , wherein the second light-scattering layer is in contact with at least a top surface of the one or more LED dies.

16 . The light source of claim 13 , wherein the first light-scattering layer is in contact with at least a top surface of the one or more LED dies.

17 . A method of manufacturing a light emitting device comprising:

positioning one or more light emitting diode (LED) dies in a reflector cup;

dispensing a first light-scattering composition into the reflector cup, contacting side surfaces of the one or more LED dies, and a bottom wall and a sidewall of the reflector cup, the first light-scattering layer comprising light-scattering particles and a first binder material;

partially curing the first light-scattering composition to form an intermediate first light-scattering formation;

dispensing a second light-scattering composition into the reflector cup, the second light-scattering composition comprising phosphor particles and a second binder material; and

curing the intermediate first light-scattering formation and the second light-scattering composition to form a first light-scattering layer and a second light-scattering layer, respectively, and an interface therebetween.

18 . The method of claim 17 , wherein the light-scattering particles of the first light-scattering composition and the phosphor particles of the second light-scattering composition are the same material, and a first concentration of the particles of the first light-scattering composition is less than a concentration of the particles of the second light-scattering composition.

19 . The method of claim 17 , wherein the reflector cup has an aspect ratio (width to height) of in a range of 2.5:1 to 60:1.

20 . The method of claim 17 , wherein the first light-scattering layer and the second light-scattering layer differ with respect to one or more of the following characteristics:

kinematic viscosity at 25° C.;

refractive index;

type of particles: the light-scattering particles of the first light-scattering layer and the phosphor particles of the second light-scattering layer are the same material;

type of binder material; and

particles loading: a first weight or volume ratio of the light-scattering particles of the first light-scattering layer to the first binder material differs from a second weight or volume ratio of the phosphor particles of the second light-scattering layer to the second binder material.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2025
From: LUMILEDS LLC
To: LUMILEDS SINGAPORE PTE. LTD.
Reel/Frame 071888/0086 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2024
From: MASUI, HISASHI
To: LUMILEDS LLC
Reel/Frame 067670/0542 →