ASMT-MWE0-NLLZ0 [AVAGO]

SINGLE COLOR LED, COOL WHITE, 5.26mm, ROHS COMPLIANT PACKAGE-2;
ASMT-MWE0-NLLZ0
型号: ASMT-MWE0-NLLZ0
厂家: AVAGO TECHNOLOGIES LIMITED    AVAGO TECHNOLOGIES LIMITED
描述:

SINGLE COLOR LED, COOL WHITE, 5.26mm, ROHS COMPLIANT PACKAGE-2

光电
文件: 总12页 (文件大小:178K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
ASMT- Mx2x / ASMT- MxEx  
?
Moonstone 3W Power LED Light Source  
Data Sheet  
Description  
Features  
?
The Moonstone 3W Power LED Light Source is a high Available in Cool White & Warm White color  
performance energy efficient device which can handle  
high thermal and high driving current. The exposed pad  
design has excellent heat transfer from the package to the  
Energy efficient  
Exposed pad for excellent heat transfer  
motherboard.  
Suitable for reflow soldering process  
High current operation  
Long operation life  
The Cool White Power LED is available in various color  
temperature ranging from 4000K to 10000K and Warm  
White Power LED ranging from 2600K to 4000K.  
Wide viewing angle  
The low profile package design is suitable for a wide variety  
of applications especially where height is a constraint.  
Silicone encapsulation  
Non-ESD sensitive (threshold > 16KV)  
MSL 4 products  
The package is compatible with reflow soldering. This  
will give more freedom and flexibility to the light source  
designer.  
Available in both electrically isolated and non-isolated  
metal heat slug  
Applications  
Specifications  
Sign backlight  
InGaN Technology  
Safety, exit and emergency sign lightings  
3.5V (max) at 350mA  
Specialty lighting such as task lighting and reading  
110° viewing angle  
lights  
Retail display  
Commercial lighting  
Accent or marker lightings, strip or step lightings  
Portable lightings, bicycle head lamp, torch lights.  
Decorative lighting  
Architectural lighting  
Pathway lighting  
Street lighting  
Pedestrian street lighting  
Tunnel lighting  
Package Dimensions  
10.00  
1
2
3
Anode  
Cathode  
Heat Sink  
3.30  
8.50  
1.27  
Metal Slug  
3
LED  
+
Ø 5.26  
ZENER  
10.60  
8.50  
Ø 8.00  
2.00  
5.25  
1.30  
2
1
0.81  
5.08  
Figure 1. ASMT-Mx2x / ASMT-MxEx package outline drawing.  
Notes:  
1. All dimensions are in millimeters.  
2. Unless otherwise stated, the tolerance for dimension is 0.1mm.  
3. Metal slug is connected to anode for electrically non-isolated option.  
2
Part Numbering System  
ASMT – M x1 x2 x3 – N x4 x5 x6 x7  
Packaging Option  
Color Bin Selection  
Max Flux Bin Selection  
Min Flux Bin Selection  
Heat Sink  
0 – Electrically Non-isolated  
2 – Electrically Isolated  
Silicone Type  
2 – Non-diffused  
E – Diffused  
Color  
W – Cool White  
Y – Warm White  
Note:  
1. Please refer to Page 8 for selection details.  
Device Selection Guide (T = 25°C)  
J
[1,2]  
Luminous Flux, ꢁ  
(lm)  
v
Test Current  
(mA)  
Die  
Technology  
Electrically  
Isolated Metal Slug  
Part Number  
Color  
Min.  
Typ.  
Max.  
ASMT-MW20-NLN00  
ASMT-MW22-NLN00  
ASMT-MY20-NLM00  
Cool White  
73.0  
73.0  
73.0  
56.0  
85.0  
161.0  
124.0  
124.0  
124.0  
350  
350  
350  
350  
InGaN  
InGaN  
InGaN  
InGaN  
No  
Yes  
No  
Yes  
No  
Yes  
No  
Yes  
Warm White  
75.0  
80.0  
70.0  
ASMT-MY22-NLM00  
ASMT-MWE0-NLM00  
ASMT-MWE2-NLM00  
ASMT-MYE0-NKM00  
ASMT-MYE2-NKM00  
Notes:  
Cool White  
Diffused  
Warm White  
Diffused  
1.  
is the total luminous flux output as measured with an integrating sphere at 25ms mono pulse condition.  
V
2. Flux tolerance is 10ꢀ.  
3
Absolute Maximum Ratings  
Parameter  
DC Forward Current [1]  
Peak Pulsing Current [2]  
ASMT-Mx2x / ASMT-MxEx  
700  
Units  
mA  
mA  
mW  
°C  
1000  
Power Dissipation  
3010  
LED Junction Temperature  
Operating Metal Slug Temperature Range at 350 mA  
Operating Metal Slug Temperature Range at 700 mA  
Storage Temperature Range  
Soldering Temperature  
125  
-40 to +120  
-40 to +95  
-40 to +120  
Refer to Figure 11  
Not recommended  
°C  
°C  
°C  
Reverse Voltage [3]  
Note:  
1. Derate linearly based on Figure 9.  
2. Pulse condition: duty factor = 10ꢀ, Frequency = 1 kHz.  
3. Not designed for reverse bias operation.  
Optical Characteristics at 350 mA (T = 25°C)  
J
Correlated Color Temperature,  
CCT (Kelvin)  
Viewing Angle  
Luminous Efficiency  
(lm/W)  
[1]  
2ꢂ  
(°)  
½
Typ.  
110  
Part Number  
Color  
Min.  
Max.  
Typ.  
ASMT-MW20-NLN00  
ASMT-MW22-NLN00  
ASMT-MY20-NLM00  
ASMT-MY22-NLM00  
ASMT-MWE0-NLM00  
ASMT-MWE2-NLM00  
ASMT-MYE0-NKM00  
ASMT-MYE2-NKM00  
Notes:  
Cool White  
4000  
10000  
76  
Warm White  
2600  
4000  
2600  
4000  
10000  
4000  
110  
110  
110  
67  
71  
63  
Cool White Diffused  
Warm White Diffused  
1.  
is the off-axis angle where the luminous intensity is ½ the peak intensity.  
½
4
Electrical Characteristic at 350 mA (T = 25°C)  
J
Temperature Coefficient of  
Forward Voltage (mV/°C),  
V /T  
Forward Voltage,  
Thermal Resistance,  
[1]  
R(°C/W)  
j-ms  
V
(Volts)  
F
F
J
Dice Type  
InGaN  
Note:  
Min.  
Typ.  
Max.  
Typ.  
Typ.  
2.8  
3.2  
3.5  
10  
-1.5 to -3.5  
1. Rꢂ  
is the Thermal Resistance from LED junction to metal slug.  
j-ms  
Optical and Electrical Characteristic at 700 mA (T = 25°C)  
J
Luminous Flux,  
Φ (lm)  
V
Forward Voltage,  
V (Volts)  
F
Part Number  
Color  
Typ.  
Typ.  
ASMT-MW20-NLN00  
ASMT-MW22-NLN00  
ASMT-MY20-NLM00  
ASMT-MY22-NLM00  
ASMT-MWE0-NLM00  
ASMT-MWE2-NLM00  
ASMT-MYE0-NKM00  
ASMT-MYE2-NKM00  
Cool White  
155  
3.6  
Warm White  
135  
145  
130  
3.6  
3.6  
3.6  
Cool White Diffused  
Warm White Diffused  
5
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.0  
2
1.8  
1.6  
1.4  
1.2  
1
WARM WHITE  
COOL WHITE  
0.8  
0.6  
0.4  
0.2  
0
380 430 480 530 580 630 680  
WAVELENGTH - nm  
730 780  
0
100  
200  
300  
400  
500  
600  
700  
MONO PULSE CURRENT - mA  
Figure 2. Relative Intensity vs. Wavelength.  
Figure 3. Relative Luminous Flux vs. Forward Current.  
1
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0
700  
650  
600  
550  
500  
450  
400  
350  
300  
250  
200  
150  
100  
50  
0
-90  
-60  
-30  
0
30  
60  
90  
0
0.5  
1
1.5  
2
2.5  
3
3.5  
4
ANGULAR DISPLACEMENT - DEGREES  
FORWARD VOLTAGE - V  
Figure 4. Forward Current vs. Forward Voltage.  
Figure 5. Radiation Pattern.  
1.4  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0.0  
tp  
D =  
tp  
T
1.2 D =  
IF  
0.05  
0.10  
0.25  
0.50  
1.00  
T
D =  
1.0  
0.8  
0.6  
0.4  
0.2  
0.0  
0.05  
0.10  
0.25  
0.50  
1.00  
tp  
tp  
T
D =  
IF  
T
0.00001 0.0001 0.001 0.01  
0.1  
1
10  
100  
0.00001 0.0001 0.001 0.01  
0.1  
1
10  
100  
PULSE DURATION, tp - sec  
PULSE DURATION, tp - sec  
Figure 6. Maximum pulse current vs. ambient temperature.  
Derated based on TA = 25°C, RJ-A = 30°C/W.  
Figure 7. Maximum pulse current vs. ambient temperature.  
Derated based on TA = 85°C, RJ-A = 30°C/W.  
6
1.2  
1.1  
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.0  
WARM WHITE  
COOL WHITE  
-50  
-25  
0
25  
50  
75  
100  
125  
JUNCTION TEMPERATURE, TJ - °C  
Figure 8. Relative Light Output vs. Junction Temperature.  
800  
700  
600  
500  
800  
700  
600  
500  
400  
300  
200  
100  
0
400  
RJ-A = 20°C/W  
RJ-MS = 1C/W  
300  
200  
100  
0
RJ-A = 25°C/W  
RJ-A = 30°C/W  
0
20  
40  
60  
80  
100  
120  
140  
0
20  
40  
60  
80  
100  
120  
140  
TA - AMBIENT TEMPERATURE - °C  
TMS - METAL SLUG TEMPERATURE - °C  
Figure 9. Maximum Forward Current vs. Ambient Temperature.  
Derated based on TJMAX = 125°C, RθJ-A = 20°C/W, 25°C/W and 30°C/W.  
Figure 10. Maximum Forward Current vs. Metal Slug Temperature.  
Derated based on TJMAX = 125°C, RθJ-MS = 10°C/W.  
10.70 0.10  
10 - 30 SEC.  
255 - 260°C  
8.40 0.10  
3.1 0.10  
3°C/SEC. MAX.  
217°C  
17.00 0.20  
200°C  
6°C/SEC. MAX.  
150°C  
1.00 0.10  
3°C/SEC. MAX.  
60 - 120 SEC.  
100 SEC. MAX.  
5.08 0.10  
TIME  
(Acc. to J-STD-020C)  
Figure 11. Recommended Reflow Soldering.  
Figure 12. Recommended soldering land pattern.  
Note:  
For detail information on reflow soldering of Avago surface mount LEDs, do refer to Avago Application Note AN1060 Surface Mounting SMT LED  
Indicator Components.  
7
Flux Bin Limit [x x ]  
Option Selection Details  
4, 5  
Luminous Flux (lm) at I = 350mA  
F
ASMT – M x x x – N x x x x  
1 2 3  
4 5 6 7  
Bin  
K
Min.  
56.0  
73.0  
95.0  
124.0  
Max.  
73.0  
x – Minimum Flux Bin  
4
x – Maximum Flux Bin  
5
x – Color Bin Selection  
L
95.0  
6
x – Packaging Option  
7
M
N
124.0  
161.0  
Tolerance for each bin limits is 10ꢀ.  
Color Bin Selections [x ]  
3
Individual reel will contain parts from one color bin selection only.  
Cool White  
Warm White  
Selection  
Bin ID  
Selection  
Bin ID  
0
Full Distribution  
A only  
0
Full Distribution  
A only  
A
B
C
D
E
A
B
C
D
E
B only  
B only  
C only  
C only  
D only  
D only  
E only  
E only  
F
F only  
F
F only  
G
H
L
G only  
N
P
A and C only  
B and D only  
E and C only  
F and D only  
E and F only  
C and D only  
A and B only  
A, B, C and D only  
C, D, E and F only  
H only  
A and G only  
B and H only  
A and C only  
B and D only  
E and C only  
F and D only  
G and H only  
E and F only  
C and D only  
A and B only  
A, B, C and D only  
G, H, A and B only  
C, D, E and F only  
Q
R
U
W
Z
1
M
N
P
Q
R
S
4
U
W
Z
1
2
4
8
Color Bin Limit  
Cool  
White  
Color Limits  
(Chromaticity Coordinates)  
Warm  
White  
Color Limits  
(Chromaticity Coordinates)  
Bin A  
Bin B  
Bin C  
Bin D  
Bin E  
Bin F  
Bin G  
Bin H  
X
Y
0.367  
0.400  
0.362  
0.372  
0.329  
0.345  
0.329  
0.369  
Bin A  
Bin B  
Bin C  
Bin D  
Bin E  
Bin F  
X
Y
0.452  
0.434  
0.488  
0.447  
0.470  
0.414  
0.438  
0.403  
X
Y
0.362  
0.372  
0.356  
0.330  
0.329  
0.302  
0.329  
0.345  
X
Y
0.438  
0.403  
0.470  
0.414  
0.452  
0.384  
0.424  
0.376  
X
Y
0.329  
0.369  
0.329  
0.345  
0.305  
0.322  
0.301  
0.342  
X
Y
0.407  
0.393  
0.418  
0.422  
0.452  
0.434  
0.438  
0.403  
X
Y
0.329  
0.345  
0.329  
0.302  
0.311  
0.285  
0.305  
0.322  
X
Y
0.395  
0.362  
0.407  
0.393  
0.438  
0.403  
0.424  
0.376  
X
Y
0.303  
0.333  
0.307  
0.311  
0.283  
0.284  
0.274  
0.301  
X
Y
0.381  
0.377  
0.387  
0.404  
0.418  
0.422  
0.407  
0.393  
X
Y
0.307  
0.311  
0.311  
0.285  
0.290  
0.265  
0.283  
0.284  
X
Y
0.373  
0.349  
0.381  
0.377  
0.407  
0.393  
0.395  
0.362  
Tolerance: 0.01  
X
Y
0.388  
0.417  
0.379  
0.383  
0.362  
0.372  
0.367  
0.400  
X
Y
0.379  
0.383  
0.369  
0.343  
0.356  
0.330  
0.362  
0.372  
Tolerance: 0.01  
0.44  
0.42  
0.40  
0.38  
0.36  
0.34  
0.32  
0.30  
0.28  
0.26  
0.24  
0.48  
0.46  
0.44  
0.42  
0.40  
0.38  
0.36  
0.34  
0.32  
G
A
A
4.0k  
4.5k  
C
2.6k  
C
H
B
3.0k  
E
B
5.6k  
3.5k  
Black Body Curve  
D
7k  
D
4.0k  
E
F
F
Black Body Curve  
10k  
0.24 0.26 0.28 0.30 0.32 0.34 0.36 0.38 0.40 0.42 0.44  
0.34 0.36 0.38 0.40 0.42 0.44 0.46 0.48 0.50 0.52  
X - COORDINATE  
X - COORDINATE  
Figure 13. Color bins (Cool White).  
Figure 14. Color bins (Warm White).  
Packaging Option [x ]  
Example  
7
Selection  
Option  
ASMT-MW20-NLNZ0  
0
1
Tube  
ASMT-MW20-Nxxxx – Cool White, Electrically Non-isolated  
Heat Sink, Non-diffused  
Tape and Reel  
x = L  
– Minimum Flux Bin L  
– Maximum Flux Bin N  
– Color Bin A and B only  
– Tube Option  
4
x = N  
5
x = Z  
6
x = 0  
7
9
Packing Tube – Option 0  
1.00  
5.80  
4.65  
5.50  
37.00  
5.45  
10.10  
535.00  
8.30  
SIDE VIEW  
TOP VIEW  
Figure 15. Tube dimensions  
Tape & Reel – Option 1  
A
Dim  
AO  
BO  
KO  
E
Value  
8.80 0.10  
16.45 0.10  
3.60 0.1  
1.75 0.10  
11.50 0.10  
24.0 0.10  
16.0 0.10  
B
B
F
W
P
A
Ko  
P
Q'ty/Reel 250 units  
SECTION A  
All dimensions in millimeters.  
Ao  
SECTION B  
Figure 16. Carrier tape dimensions  
10  
END  
START  
MINIMUM OF 390 mm OF EMPTY COMPONENT  
POCKETS SEALED WITH COVER TAPE.  
MINIMUM OF 160 mm  
MOUNTED WITH  
COMPONENTS  
OF EMPTY COMPONENT  
POCKETS SEALED WITH  
COVER TAPE.  
Figure 17. Carrier tape leader and trailer dimensions.  
Reel Dimension  
+1.00  
0.00  
24.0  
2.30  
2.30  
2.50 0.50  
#268.00  
#330.00 1.00  
120.0º  
Figure 18. Reel dimensions.  
11  
Handling Precaution  
B. Control after opening the MBB  
The encapsulation material of the product is made of  
silicone for better reliability of the product. As silicone is  
a soft material, please do not press on the silicone or poke  
a sharp object onto the silicone. These might damage the  
product and cause premature failure. During assembly or  
handling, the unit should be held on the body only. Please  
refer to Avago Application Note AN 5288 for detail infor-  
mation.  
– The humidity indicator card (HIC) shall be read  
immediately upon opening of MBB.  
– The LEDs must be kept at <30°C/60ꢀRH at all time  
and all high temperature related process including  
soldering, curing or rework need to be completed  
within 72 hours.  
C. Control for unfinished reel  
Moisture Sensitivity  
– For any unused LEDs, they need to be stored in  
sealed MBB with desiccant or desiccator at <5ꢀRH.  
This product is qualified as Moisture Sensitive Level 4 per  
Jedec J-STD-020. Precautions when handling this moisture  
sensitive product is important to ensure the reliability of  
the product. Do refer to Avago Application Note AN5305  
Handling of Moisture Sensitive Surface Mount Devices for  
details.  
D. Control of assembly boards  
– If the PCB soldered with the LEDs is to be subjected to  
other high temperature processes, the PCB need to  
be stored in sealed MBB with desiccant or desiccator  
at <5ꢀRH to ensure no LEDs have exceeded their  
floor life of 72 hours.  
A. Storage before use  
– Unopen moisture barrier bag (MBB) can be stored at  
<40°C/90ꢀRH for 12 months. If the actual shelf life  
has exceeded 12 months and the humidity indicator  
card (HIC) indicates that baking is not required, then  
it is safe to reflow the LEDs per the original MSL  
rating.  
E. Baking is required if  
– HIC “10ꢀ” indicator is not blue and “5ꢀ” indicator is  
pink.  
– The LEDs are exposed to condition of >30°C/60ꢀ RH  
at any time.  
– The LEDs floor life exceeded 72hrs.  
– It is not recommended to open the MBB prior to  
assembly (e.g. for IQC).  
Recommended baking condition: 60 5°C for 20hrs.  
DISCLAIMER:Avago’s products and software are not specifically designed, manufactured or authorized for sale  
as parts, components or assemblies for the planning, construction, maintenance or direct operation of a nuclear  
facility or for use in medical devices or applications. Customer is solely responsible, and waives all rights to make  
claims against avago or its suppliers, for all loss, damage, expense or liability in connection with such use.  
For product information and a complete list of distributors, please go to our web site: www.avagotech.com  
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries.  
Data subject to change. Copyright © 2005-2010 Avago Technologies. All rights reserved.  
AV02-1452EN - October 5, 2010  

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