CN204596824U - A kind of arc Magen David bores graphical LED substrate and LED chip - Google Patents

A kind of arc Magen David bores graphical LED substrate and LED chip Download PDF

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Publication number
CN204596824U
CN204596824U CN201520276105.XU CN201520276105U CN204596824U CN 204596824 U CN204596824 U CN 204596824U CN 201520276105 U CN201520276105 U CN 201520276105U CN 204596824 U CN204596824 U CN 204596824U
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arc
magen david
substrate
bores
cone
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李国强
龚振远
韩晶磊
钟立义
王凯诚
林志霆
王海燕
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South China University of Technology SCUT
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South China University of Technology SCUT
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Abstract

The utility model discloses a kind of arc Magen David and bore graphical LED substrate, the pattern of substrate is bored by the arc Magen David that the multiple shapes being arranged in substrate surface are identical and is formed; Any level cross section of described arc Magen David cone is all arc Magen David; Described arc Magen David is by six sections of end to end closed figures surrounded of circular arc.The invention also discloses and comprise arc Magen David and bore graphical LED substrate.The utility model substantially increases the light extraction efficiency of LED, thus improves the external quantum efficiency of LED.

Description

A kind of arc Magen David bores graphical LED substrate and LED chip
Technical field
The utility model relates to LED chip field, and particularly a kind of arc Magen David bores graphical LED substrate and LED chip.
Background technology
Light-emitting diode (Light Emitting Diode, LED) is one of ligthing paraphernalia of efficient environmental protection.The light extraction efficiency of LED depends on internal quantum efficiency and light extraction efficiency.Because the manufacturing technology of current LED is comparatively ripe, its internal quantum efficiency has reached higher level, and the space relatively promoted is less.But the refractive index difference due to GaN epitaxial layer and Sapphire Substrate limits greatly light extraction efficiency, and to result in the light extraction efficiency of LED low, therefore will contribute to the lifting of LED light recovery rate the light extraction efficiency improving LED.
The patterned substrate technology proposed in recent years can improve the light extraction efficiency of Sapphire Substrate GaN base LED effectively.Underlay pattern is the key of patterned substrate technology, and on the one hand, light changes the track of light by pattern scattering/reflection, makes light can be less than the cirtical angle of total reflection then transmission and going out, raising light extraction efficiency in the incidence angle of interface outgoing; On the other hand, pattern follow-up GaN growth can also be made to occur side direction builds brilliant effect, reduce crystal defect, improve crystal mass, thus improve internal quantum efficiency.Along with the development of technology, the design several kinds of renewals of pattern, the design of pattern from initial grooved to hexagon, taper, prismatic table shape etc., the effect of patterned substrate technology is approved.
Therefore the key of patterned substrate technology is the pattern of substrate, plays conclusive effect to the light extraction efficiency of LED.At present, the pattern of patterned substrate just has the geometric figure such as hexagonal pyramid etc. of simple geometric shape, although this raising that light extraction efficiency can be made to obtain to a certain extent, but along with the progress of science and technology and people are to the raising of the demand of throwing light on, the pattern of simple geometric shape can not meet the needs of people.
Utility model content
In order to overcome the above-mentioned shortcoming of prior art with not enough, the purpose of this utility model is to provide a kind of arc Magen David to bore graphical LED substrate, substantially increases the light extraction efficiency of LED, thus improves the external quantum efficiency of LED.
Another object of the present utility model is to provide a kind of LED chip.
The purpose of this utility model is achieved through the following technical solutions:
A kind of arc Magen David bores graphical LED substrate, and the pattern of substrate is bored by the arc Magen David that the multiple shapes being arranged in substrate surface are identical and formed; Any level cross section of described arc Magen David cone is all arc Magen David; Described arc Magen David is by six sections of end to end closed figures surrounded of circular arc.
Six sides of described arc Magen David cone are six concave curved surfaces that shape is identical.
Described six sections of circular shapes are identical; Central angle corresponding to every section of circular arc is 32.25 °.
The circumradius R of the bottom surface of described arc Magen David cone is 0.5 ~ 2 μm; The height H of described arc Magen David cone is 1.0 ~ 1.5 μm.
The arc Magen David cone that described multiple shape is identical adopts rectangle or hexagonal arrangement mode.
The center distance d of adjacent arc Magen David cone is 4 ~ 6 μm.
A kind of LED chip, comprises above-mentioned arc Magen David and bores graphical LED substrate.
Described LED chip comprises the arc Magen David be arranged in order and bores graphical LED substrate, N-type GaN layer, MQWs quantum well layer and P type GaN layer
Compared with prior art, the utility model has the following advantages and beneficial effect:
(1) the utility model bores graphical LED substrate by adopting arc Magen David, side is curved surface, the incidence angle of light can be allowed to be less than the angle of total reflection, to be conducive to allowing ght transmission and going out more, have more obvious effect to the raising of the light extraction efficiency of LED.
(2) the utility model is by the tapered graph substrate of arc Magen David, substantially increase the ability that reflects photons arrives LED chip top and bottom, thus make more light reflections to chip top, bottom, considerably increase the effective sunlight that can be fully used, strengthen the light extraction efficiency of graphical sapphire substrate GaN base LED, thus improve the external quantum efficiency of LED.Compare common pattern-free substrate LED, total light flux increases to 2.4 ~ 2.6 times, and top light flux increases to 2.9 ~ 3.1 times, and bottom light flux increases to 2.5 ~ 2.7 times.
(3) arc Magen David of the present utility model bores graphical LED substrate, is conducive to forming core, is conducive to epitaxial growth high-quality GaN crystal.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of the LED chip of embodiment 1 of the present utility model.
Fig. 2 is the schematic diagram that the arc Magen David of embodiment 1 of the present utility model bores graphical LED substrate.
Fig. 3 is the schematic diagram of the arc Magen David cone monomer of embodiment 1 of the present utility model.
Fig. 4 is the arrangement mode schematic diagram that the arc Magen David cone of embodiment 1 of the present utility model adopts.
Fig. 5 is the arrangement mode schematic diagram that the arc Magen David cone of embodiment 2 of the present utility model adopts.
Embodiment
Below in conjunction with embodiment, the utility model is described in further detail, but execution mode of the present utility model is not limited thereto.
Embodiment 1
As shown in Figure 1, the present embodiment LED chip bores graphical LED substrate 11 by the sapphire arc Magen David be arranged in order, N-type GaN layer 12, MQWs quantum well layer 13, P type GaN layer 14 forms.
As shown in Figure 2, the arc Magen David of the present embodiment bores graphical LED substrate 11, and the pattern of substrate is bored 15 by the arc Magen David that the multiple shapes being arranged in substrate surface are identical and formed.As shown in Figure 3, any level cross section of described arc Magen David cone is all arc Magen David; Described arc Magen David is by six sections of end to end closed figures surrounded of circular arc; Described six sections of circular shapes are identical; The central angle that every section of circular arc is corresponding is 32.25 °.Six sides of described arc Magen David cone are six concave curved surfaces that shape is identical; The circumradius R of bottom surface is 1.0 μm; Height H is 1.4 μm.The arc Magen David cone that described multiple shape is identical adopts rectangular arrangement pattern as shown in Figure 4, and the center distance d of adjacent arc Magen David cone is 4 μm.
Embodiment 2
The arc Magen David of the present embodiment bores graphical LED substrate, and the pattern of substrate is bored by the arc Magen David that the multiple shapes being arranged in substrate surface are identical and formed.Any level cross section of described arc Magen David cone is all arc Magen David; Described arc Magen David is by six sections of end to end closed figures surrounded of circular arc; Described six sections of circular shapes are identical; The central angle of every section of circular arc is 32.25 °.Six sides of described arc Magen David cone are six concave curved surfaces that shape is identical; The circumradius R of bottom surface is 0.5 μm; Height H is 1.5 μm.The arc Magen David cone that described multiple shape is identical adopts hexagonal array mode as shown in Figure 5, and the center distance d of adjacent arc Magen David cone is 4 μm.
Embodiment 3
The arc Magen David of the present embodiment bores graphical LED substrate, and the pattern of substrate is bored by the arc Magen David that the multiple shapes being arranged in substrate surface are identical and formed.Any level cross section of described arc Magen David cone is all arc Magen David; Described arc Magen David is by six sections of end to end closed figures surrounded of circular arc; Described six sections of circular shapes are identical; The central angle of every section of circular arc is 32.25 °.Six sides of described arc Magen David cone are six concave curved surfaces that shape is identical; The circumradius R of bottom surface is 2 μm; Height H is 1.0 μm.The arc Magen David cone that described multiple shape is identical adopts hexagonal array mode, and the center distance d of adjacent arc Magen David cone is 6 μm.
Test case:
Adopt the graph substrate of optical analysis software TracePro to LED chip of the present utility model to do simulation test, simulation test process is as follows:
(1) substrate builds: the modeling function adopting TracePro to carry realizes the making of substrate, and substrate dimension is 120 μm × 120 μm × 100 μm, in rectangular-shaped.
(2) arc hexagon cone design producing: adopt the Plotting Function of Solidworks to realize the making of arc Magen David diagram cone case, the height H of arc Magen David cone is 1.0 ~ 1.4 μm, arc Magen David cone circumradius is 0.8 ~ 1.2 μm, and the center distance d of adjacent arc Magen David cone is 4.0 ~ 6.0 μm; Arrange in hexagonal, or rectangular arrangement.
(3) epitaxial loayer builds: the modeling function adopting TracePro to carry realizes the making of n-type GaN layer, MQWs quantum well layer, p-type GaN layer, n-type GaN layer is of a size of 120 μm × 120 μm × 4 μm, MQW quantum well layer is of a size of 120 μm × 120 μm × 50nm, and p-type GaN layer is of a size of 120 μm × 120 μm × 3 μm.
(4) target surface builds: the modeling function adopting TracePro to carry realizes the making of six layers of target surface, six layers of target surface are placed in upper and lower, the direction, front, rear, left and right of LED chip respectively, upper and lower target surface is of a size of 120 μm × 120 μm × 3 μm, forward and backward target surface (the long limit of opposite chip) is of a size of 120 μm × 120 μm × 3 μm, and left and right target surface (minor face of opposite chip) is of a size of 120 μm × 120 μm × 3 μm.
(5) n-type GaN layer and graph substrate contact-making surface corresponding pattern build: insert patterned layer that Solidworks sets up on substrate layer, adopt the difference of TracePro to subtract functional realiey n-GaN layer corresponding pattern and build.
(6) setting parameter of each material layer: the refractive index of Sapphire Substrate is 1.67, N-type GaN, MQWs quantum well, P type GaN material refractive index are 2.45, four is all the light of 450nm for wavelength, and temperature is set to 300K, does not consider to absorb the impact with extinction coefficient.
(7) quantum well layer surface source of light setting, quantum well layer upper and lower surface respectively arranges a surface source of light attribute, and transmitting form is luminous flux, rink corner is distributed as the luminous field pattern of Lambertian, luminous flux is 5000a.u., total light number 3000, minimum light number 10.
(8) ray tracing: utilize software subsidiary clear off system, ray tracing is carried out to the LED chip model of above-mentioned structure, obtains the luminous flux data of top, bottom, side respectively.
The test result of embodiment 1 ~ 3 is as follows:
Embodiment 1: top leads to light quantity 2173.a.u., bottom leads to light quantity 2218.9a.u., and side is by bright 3018.9a.u., total light flux 7410.77a.u..Compared with the luminous flux of optimum hexagonal pyramid graphic design substrate, arc Magen David cone substrate LED chip total light flux improves 0.15%.
Embodiment 2: top leads to light quantity 2171.a.u., bottom leads to light quantity 2246.9a.u., and side is by bright 3018.87a.u., total light flux 7436.57a.u..Compared with the luminous flux of optimum hexagonal pyramid graphic design substrate, arc Magen David cone substrate LED chip total light flux improves 0.51%.
Embodiment 3: top leads to light quantity 1565.1.a.u., bottom leads to light quantity 1583.3a.u., and side is by bright 4627.2a.u., total light flux 7775.6a.u..Compared with the luminous flux of optimum hexagonal pyramid graphic design substrate, arc Magen David cone substrate LED chip total light flux improves 5.05%.
Above-described embodiment is the utility model preferably execution mode; but execution mode of the present utility model is not limited by the examples; change, the modification done under other any does not deviate from Spirit Essence of the present utility model and principle, substitute, combine, simplify; all should be the substitute mode of equivalence, be included within protection range of the present utility model.

Claims (8)

1. arc Magen David bores a graphical LED substrate, it is characterized in that, the pattern of substrate is bored by the arc Magen David that the multiple shapes being arranged in substrate surface are identical and formed; Any level cross section of described arc Magen David cone is all arc Magen David; Described arc Magen David is by six sections of end to end closed figures surrounded of circular arc.
2. arc Magen David according to claim 1 bores graphical LED substrate, it is characterized in that, six sides of described arc Magen David cone are six concave curved surfaces that shape is identical.
3. arc Magen David according to claim 1 bores graphical LED substrate, it is characterized in that, described six sections of circular shapes are identical; Central angle corresponding to every section of circular arc is 32.25 °.
4. arc Magen David according to claim 1 bores graphical LED substrate, it is characterized in that, the circumradius R of the bottom surface of described arc Magen David cone is 0.5 ~ 2 μm; The height H of described arc Magen David cone is 1.0 ~ 1.5 μm.
5. arc Magen David according to claim 1 bores graphical LED substrate, it is characterized in that, the arc Magen David cone that described multiple shape is identical adopts rectangle or hexagonal arrangement mode.
6. arc Magen David bores graphical LED substrate according to claim 1 or 5, it is characterized in that, the center distance d of adjacent arc Magen David cone is 4 ~ 6 μm.
7. a LED chip, is characterized in that, the arc Magen David comprised described in any one of claim 1 ~ 6 bores graphical LED substrate.
8. LED chip according to claim 7, is characterized in that, described LED chip comprises the arc Magen David be arranged in order and bores graphical LED substrate, N-type GaN layer, MQWs quantum well layer and P type GaN layer.
CN201520276105.XU 2015-04-30 2015-04-30 A kind of arc Magen David bores graphical LED substrate and LED chip Active CN204596824U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104810443A (en) * 2015-04-30 2015-07-29 华南理工大学 Arc-shaped hexagram cone graphical LED substrate and LED chip

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104810443A (en) * 2015-04-30 2015-07-29 华南理工大学 Arc-shaped hexagram cone graphical LED substrate and LED chip
CN104810443B (en) * 2015-04-30 2018-05-15 华南理工大学 A kind of arc Magen David bores graphical LED substrate and LED chip

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