IP Library Patent Application 13630785
Patent Application
App. No. 13/630,785

Quantum Dot-Enhanced Display Having Dichroic Filter

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Patent No.
US None
App. No.
13/630,785
Abstract

A display device is provided. The display device includes a light source emitting a blue light and a light emitting layer including a first group of red quantum dots and a second group of green quantum dots. The light emitting layer is configured to absorb a first portion of the blue light from the light source to emit red light and green light and to transmit a second portion of the blue light. The display device also includes a dichroic filter layer configured to reflect a portion of the transmitted second portion of the blue light such that the reflected portion of the blue light is recycled in the light emitting layer and to transmit a remaining portion of the transmitted second portion of the blue light to output a white light.

Claims (30)

1 . A display device, the device comprising:

a light source emitting a first light of a first color;

a light emitting layer comprising a first group of quantum dots and a second group of quantum dots, the light emitting layer configured to absorb a first portion of the first light from the light source to emit a second light of a second color and a third light of a third color and further configured to transmit a second portion of the first light; and

a dichroic filter layer configured to reflect a portion of the transmitted second portion of the first light such that the reflected portion of the first light is recycled in the light emitting layer, and further configured to transmit a remaining portion of the transmitted second portion of the first light, the second light, and the third light to output a white light.

2 . The display device of claim 1 , further comprising a light guide panel between the light source and the light emitting layer, the light guide panel configured to provide uniform incoming light to the light emitting layer.

3 . The display device of claim 1 , further comprising a liquid crystal display including a front polarizer, a rear polarizer, and a liquid crystal layer between the first polarizer and the second polarizer, a plurality of color filters between the front polarizer and the liquid crystal layer, the liquid crystal display configured to control pass of the white light from the dichroic filter through the color filters arranged in subpixels.

4 . The display device of the claim 3 , further comprising a brightness enhancement layer between the dichroic filter layer and the liquid crystal display configured to recycle the white light that does not pass through the rear polarizer to increase brightness.

5 . The display device of claim 3 , further comprising a prism between the dichroic filter and the liquid crystal display configured to reduce beam angle and to increase the intensity of the white light.

6 . The display device of claim 1 , wherein the quantum dots comprise a material selected from the groups consisting of a group II-VI compound, a group III-V compound, a group IV-VI compound, a group IV compound, and mixtures of these groups.

7 . The display device of claim 6 , wherein the group II-VI compound comprises a material selected from the groups consisting of CdSe, CdTe, ZnS, ZnSe, ZnTe, ZnO, HgS, HgSe, HgTe, CdSeS, CdSeTe, CdSTe, ZnSeS, ZnSeTe, ZnSTe, HgSeS, HgSeTe, HgSTe, CdZnS, CdZnSe, CdZnTe, CdHgS, CdHgSe, CdHgTe, HgZnS, HgZnSe, HgZnTe, CdZnSeS, CdZnSeTe, CdZnSTe, CdHgSeS, CdHgSeTe, CdHgSTe, HgZnSeS, HgZnSeTe, and HgZnSTe.

8 . The display device of claim 6 , wherein the group III-V compound comprises a material selected from the group consisting of GaN, GaP, GaAs, GaSb, AlN, AlP, AlAs, AlSb, InN, InP, InAs, InSb, GaNP, GaNAs, GaNSb, GaPAs, GaPSb, AlNP, AlNAs, AlNSb, AlPAs, AlPSb, InNP, InNAs, InNSb, InPAs, InPSb, GaAlNP, GaAlNAs, GaAlNSb, GaAlPAs, GaAlPSb, GaInNP, GaInNAs, GaInNSb, GaInPAs, GaInPSb, InAlNP, InAlNAs, InAlNSb, InAlPAs, and InAlPSb.

9 . The display device of claim 6 , wherein the group IV-VI compound comprises a material selected from the group consisting of SnS, SnSe, SnTe, PbS, PbSe, PbTe, SnSeS, SnSeTe, SnSTe, PbSeS, PbSeTe, PbSTe, SnPbS, SnPbSe, SnPbTe, SnPbSSe, SnPbSeTe, and SnPbSTe.

10 . The display device of claim 6 , wherein the group IV compound comprises a material selected from the group consisting of Si, Ge, SiC, and SiGe.

11 . A display device, the device comprising:

a light source emitting a first light;

a light emitting layer comprising a first group of quantum dots and a second group of quantum dots, the light emitting layer configured to absorb a first portion of the first light from the light source to emit a second light of a second color and a third light of a third color and further configured to transmit a second portion of the first light;

a dichroic filter layer configured to reflect a portion of the transmitted second portion of the first light such that the reflected portion of the first light is recycled in the light emitting layer and to transmit a remaining portion of the transmitted second portion of the first light, the second light, and the third light to output a white light; and

a liquid crystal display including a front polarizer, a rear polarizer, and a liquid crystal layer between the first polarizer and the second polarizer, a plurality of color filters between the front polarizer and the liquid crystal layer, the liquid crystal display configured to control pass of the white light from the dichroic filter through the color filters arranged in subpixels.

12 . The display device of claim 11 , further comprising a light guide panel between the light source and the light emitting layer, the light guide panel configured to provide uniform incoming light to the light emitting layer.

13 . The display device of the claim 11 , further comprising a brightness enhancement layer between the dichroic filter layer and the liquid crystal display configured to recycle the white light that does not pass through the rear polarizer to increase brightness.

14 . The display device of claim 11 , further comprising a prism between the dichroic filter and the liquid crystal display configured to reduce beam angle and to increase the intensity of the white light.

15 . The display device of claim 11 , wherein the quantum dots comprise a material selected from the groups consisting of a group II-VI compound, a group III-V compound, a group IV-VI compound, a group IV compound, and mixtures of these groups.

16 . The display device of claim 15 , wherein the group II-VI compound comprises a material selected from the groups consisting of CdSe, CdTe, ZnS, ZnSe, ZnTe, ZnO, HgS, HgSe, HgTe, CdSeS, CdSeTe, CdSTe, ZnSeS, ZnSeTe, ZnSTe, HgSeS, HgSeTe, HgSTe, CdZnS, CdZnSe, CdZnTe, CdHgS, CdHgSe, CdHgTe, HgZnS, HgZnSe, HgZnTe, CdZnSeS, CdZnSeTe, CdZnSTe, CdHgSeS, CdHgSeTe, CdHgSTe, HgZnSeS, HgZnSeTe, and HgZnSTe.

17 . The display device of claim 15 , wherein the group III-V compound comprises a material selected from the group consisting of GaN, GaP, GaAs, GaSb, AlN, AlP, AlAs, AlSb, InN, InP, InAs, InSb, GaNP, GaNAs, GaNSb, GaPAs, GaPSb, AlNP, AlNAs, AlNSb, AlPAs, AlPSb, InNP, InNAs, InNSb, InPAs, InPSb, GaAlNP, GaAlNAs, GaAlNSb, GaAlPAs, GaAlPSb, GaInNP, GaInNAs, GaInNSb, GaInPAs, GaInPSb, InAlNP, InAlNAs, InAlNSb, InAlPAs, and InAlPSb.

18 . The display device of claim 15 , wherein the group IV-VI compound comprises a material selected from the group consisting of SnS, SnSe, SnTe, PbS, PbSe, PbTe, SnSeS, SnSeTe, SnSTe, PbSeS, PbSeTe, PbSTe, SnPbS, SnPbSe, SnPbTe, SnPbSSe, SnPbSeTe, and SnPbSTe.

19 . The display device of claim 15 , wherein the group IV compound comprises a material selected from the group consisting of Si, Ge, SiC, and SiGe.

20 . A display device, the device comprising:

a light source emitting a blue light;

a light emitting layer comprising a first group of red quantum dots and a second group of green quantum dots, the light emitting layer configured to absorb a first portion of the blue light from the light source to emit red light and green light and further configured to transmit a second portion of the blue light; and

a dichroic filter layer configured to reflect a portion of the transmitted second portion of the blue light such that the reflected portion of the first blue is recycled in the light emitting layer and to transmit a remaining portion of the transmitted second portion of the blue light, the red light, and the green light to output a white light.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2012
From: YOU, CHENHUA
To: APPLE INC.
Reel/Frame 029348/0197 →