ASMT-QWBC-N0KZE [AVAGO]
Single Color LED, Cool White, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4;型号: | ASMT-QWBC-N0KZE |
厂家: | AVAGO TECHNOLOGIES LIMITED |
描述: | Single Color LED, Cool White, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4 光电 |
文件: | 总10页 (文件大小:150K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
ASMT-QWBC-Nxxxx
Super 0.5W Cool White Power PLCC-4
Surface Mount LED Indicator
Data Sheet
Description
Features
The Super 0.5W Cool White Power PLCC-4 SMT LED is ꢀ Industry Standard PLCC 4 platform (3.2x2.8x1.9mm)
Cool white mid-Power PLCC-4 SMT LEDs using InGaN chip
technology. The package can be driven at high current
due to its superior package design. The product is able to
dissipate the heat more efficiently compared to the Power
ꢀ High reliability package with enhanced silicone resin
encapsulation
ꢀ High brightness with optimum flux performance using
InGaN chip technologies
PLCC-4 SMT LEDs. These LEDs produce higher light output
with better flux performance compared to the Power
PLCC-4 SMT LED.
ꢀ Available in Cool White
ꢀ Available in 8mm carrier tape & 7 inch reel
ꢀ Low Thermal Resistance 40°C/W
ꢀ Wide viewing angle at 120 degree
ꢀ JEDEC MSL 2
The Super 0.5W Cool White Power PLCC-4 SMT LEDs are
designed for higher reliability, better performance, and
operate under a wide range of environmental conditions.
The performance characteristics of these new mid-power
LEDs make them uniquely suitable for use in harsh condi-
tions such as in automotive applications, and in electronics
signs and signals.
Applications
1. Interior automotive
a. Instrument panel backlighting
b. Central console backlighting
c. Navigation and audio system backlighting
d. Dome/Map lighting
e. Push button backlighting
f. Puddle lamp
To facilitate easy pick and place assembly, the LEDs are
packed in EIA-compliant tape and reel. Every reel is
shipped in single intensity and color bin, to provide close
uniformity.
g. Glove compartment illumination
2. Exterior automotive
a. Number plate illumination
3. Electronic signs and signals
a. Decorative lighting
4. Office automation, home appliances, industrial
equipment
a. Panel/button backlighting
b. Display backlighting
CAUTION: ASMT-QWBC-Nxxxx LEDs are Class 2 ESD sensitive. Please observe appropriate precautions
during handling and processing. Refer to Avago Application Note AN-1142 for additional details.
Package Drawing
2.8 ꢀ.2
2.2 ꢀ.2
ꢀ.6 ꢀ.3
1.15 ꢀ.2
1.9 ꢀ.2
A
A
C
C
ꢀ.7
CATHODE
MARKING
Notes:
1. All Dimensions in millimeters.
2. Lead Polarity as shown in Figure 14.
3. Terminal Finish: Ag plating
4. Encapsulation material: Silicone resin
Figure 1. Package Drawing
Table 1. Device Selection Guide (T = 25°C)
J
[1]
Luminous Flux, ꢁ (lm)
V
Min. Flux
(lm)
Typ. Flux
(lm)
Max. Flux
(lm)
Test Current
Color
Part Number
(mA)
150
150
Dice Technology
InGaN
Cool White
ASMT-QWBC-NHJ0E
ASMT-QWBC-NJK0E
25.5
33.0
30.0
38.0
43.0
56.0
InGaN
Notes:
1.
ꢁ is the total luminous flux output as measured with an integrating sphere at mono pulse conditions.
V
2. Tolerance = 12ꢀ
Part Numbering System
ASMT- Q X B C – N X X X X
5
1
2
3
4
Packaging Option
Color Bin Selection
Max. Flux Bin Selection
Min. Flux Bin Selection
Color
W – Cool White
2
Table 2. Absolute Maximum Ratings (T = 25°C)
A
Parameters
ASMT-QWBC-Nxxxx
150 mA
DC Forward Current [1]
Peak Forward Current [2]
Power Dissipation
300 mA
570 mW
Reverse Voltage, VR @ 10 μA
Junction Temperature
Operating Temperature
Storage Temperature
4
125°C
-40°C to +120°C
-40°C to +120°C
Notes:
1. Derate Linearly as shown in Figure 6.
2. Duty Factor = 10ꢀ, Frequency = 1kHz
Table 3. Optical Characteristics (T = 25°C)
J
Viewing
Luminous
Efficiency ꢃ
(lm/W)
Total Flux /
[1]
Typical Chromaticity Angle 2ꢂ
Luminous Intensity
ꢁ (lm) / I (cd)
½
e
Coordinates
(Degrees)
V
V
Dice
Color
Part Number
Technology
x
y
Typ.
Typ.
Typ.
2.50
Cool White ASMT-QWBC-Nxxxx
Notes:
InGaN
0.31
0.31
120
59
1.
ꢂ is the off-axis angle where the luminous intensity is ½ the peak intensity.
½
Table 4. Electrical Characteristics (T = 25°C)
J
Forward Voltage
Thermal
Resistance Rꢂ
V (Volts) @ I = 15ꢀ mA
F
F
J-P
Part Number
Typ.
3.4
Max.
(°C/W)
ASMT-QWBC-NxxxE
3.8
40
3
1.ꢀ
ꢀ.9
ꢀ.8
ꢀ.7
ꢀ.6
ꢀ.5
ꢀ.4
ꢀ.3
ꢀ.2
ꢀ.1
ꢀ.ꢀ
3ꢀꢀ
25ꢀ
2ꢀꢀ
15ꢀ
1ꢀꢀ
5ꢀ
ꢀ
38ꢀ 43ꢀ 48ꢀ 53ꢀ 58ꢀ 63ꢀ 68ꢀ 73ꢀ 78ꢀ
WAVELENGTH - nm
ꢀ
1
2
3
4
FORWARD VOLTAGE - V
Figure 2. Relative Intensity Vs. Wavelength
Figure 3. Forward Current Vs. Forward Voltage.
1.2
1.ꢀ
ꢀ.8
ꢀ.6
ꢀ.4
ꢀ.2
ꢀ.ꢀ
1.8
1.6
1.4
1.2
1.ꢀ
ꢀ.8
ꢀ.6
ꢀ.4
ꢀ.2
ꢀ.ꢀ
ꢀ
5ꢀ
1ꢀꢀ
15ꢀ
2ꢀꢀ
25ꢀ
3ꢀꢀ
-5ꢀ
-25
ꢀ
25
5ꢀ
75
1ꢀꢀ
TJ - JUNCTION TEMPERATURE - °C
DC FORWARD CURRENT - mA
Figure 4. Relative Flux vs. Forward Current
Figure 5. Relative Flux Vs. Temperature
16ꢀ
14ꢀ
16ꢀ
14ꢀ
RꢁJA = 9ꢀ°C/W
RꢁJP = 4ꢀ°C/W
12ꢀ
1ꢀꢀ
8ꢀ
6ꢀ
4ꢀ
2ꢀ
ꢀ
12ꢀ
RꢁJA = 11ꢀ°C/W
1ꢀꢀ
8ꢀ
6ꢀ
4ꢀ
2ꢀ
ꢀ
ꢀ
2ꢀ
4ꢀ
6ꢀ
8ꢀ
1ꢀꢀ
12ꢀ
14ꢀ
ꢀ
2ꢀ
4ꢀ
6ꢀ
8ꢀ
1ꢀꢀ
12ꢀ
14ꢀ
TEMPERATURE (°C)
Figure 6a. Maximum Forward Current Vs. Ambient Temperature. Derated
Figure 6b. Maximum Forward Current Vs. Solder Point Temperature. Derated
Based on TJMAX = 125°C, RꢂJ-A = 11ꢀ°C/W & 9ꢀ°C/W.
Based on TJMAX = 125°C, RꢂJ-P = 4ꢀ°C/W.
4
ꢀ.4ꢀ
ꢀ.3ꢀ
ꢀ.2ꢀ
ꢀ.1ꢀ
ꢀ.ꢀꢀ
ꢀ.4ꢀ
ꢀ.3ꢀ
ꢀ.2ꢀ
ꢀ.1ꢀ
ꢀ.ꢀꢀ
tp
tp
T
D =
IF
D =
ꢀ.ꢀ5
ꢀ.1ꢀ
ꢀ.25
ꢀ.5ꢀ
1
T
D =
ꢀ.ꢀ5
ꢀ.1ꢀ
ꢀ.25
ꢀ.5ꢀ
1
tp
tp
T
D =
IF
T
1.ꢀꢀE-ꢀ5
1.ꢀꢀE-ꢀ3
1.ꢀꢀE-ꢀ1
1.ꢀꢀE+ꢀ1
1.ꢀꢀE-ꢀ5
1.ꢀꢀE-ꢀ3
1.ꢀꢀE-ꢀ1
1.ꢀꢀE+ꢀ1
t
p - Time - (S)
tp - Time - (S)
Figure 7a. Maximum Pulse Current Vs. Ambient Temperature. Derated Based
Figure 7b. Maximum Pulse Current Vs. Ambient Temperature. Derated Based
on TA = 25°C, RꢂJ-A = 11ꢀ°C/W.
on TA = 85°C, RꢂJ-A = 11ꢀ°C/W.
ꢀ.ꢀ1ꢀ
ꢀ.ꢀꢀ5
ꢀ.ꢀꢀꢀ
ꢀ.25
ꢀ.2ꢀ
ꢀ.15
ꢀ.1ꢀ
ꢀ.ꢀ5
ꢀ.ꢀꢀ
-ꢀ.ꢀ5
-ꢀ.1ꢀ
-ꢀ.15
-ꢀ.2ꢀ
Cx
-ꢀ.ꢀꢀ5
Cy
-ꢀ.ꢀ1ꢀ
-ꢀ.ꢀ15
-ꢀ.ꢀ2ꢀ
ꢀ
5ꢀ
1ꢀꢀ
15ꢀ
2ꢀꢀ
25ꢀ
3ꢀꢀ
-5ꢀ
-25
ꢀ
25
5ꢀ
75
1ꢀꢀ
FORWARD CURRENT - mA
TJ - JUNCTION TEMPERATURE - °C
Figure 8. Chromaticity Shift Vs. Forward Current
Figure 9. Forward Voltage Shift Vs. Temperature.
ꢀ.ꢀ15
ꢀ.ꢀ1ꢀ
1.ꢀ
ꢀ.9
ꢀ.8
ꢀ.7
ꢀ.6
ꢀ.5
ꢀ.4
ꢀ.3
ꢀ.2
ꢀ.1
ꢀ.ꢀ
Cy
Cx
ꢀ.ꢀꢀ5
ꢀ.ꢀꢀꢀ
-ꢀ.ꢀꢀ5
-ꢀ.ꢀ1ꢀ
-ꢀ.ꢀ15
-5ꢀ
-25
ꢀ
25
5ꢀ
75
1ꢀꢀ
125
-9ꢀ
-6ꢀ
-3ꢀ
ANGULAR DISPLACEMENT - DEGREES
Figure 11. Radiation Pattern
ꢀ
3ꢀ
6ꢀ
9ꢀ
TJ - JUNCTION TEMPERATURE - °C
Figure 1ꢀ. Chromaticity Shift Vs. Temperature
5
1ꢀ - 3ꢀ SEC.
255 - 26ꢀ°C
3°C/SEC. MAX.
217°C
2ꢀꢀ°C
6°C/SEC. MAX.
15ꢀ°C
3°C/SEC. MAX.
6ꢀ - 12ꢀ SEC.
D
1ꢀꢀ SEC. MAX.
TIME
(Acc. to J-STD-ꢀ2ꢀC)
Note: For detail information on reflow soldering of Avago surface mount
LEDs, do refer to Avago Application Note AN 1060 Surface Mounting
SMT LED Indicator Components.
Note: Diameter "D" should be smaller than 2.2mm
Figure 12. Recommended Pick and Place Nozzle Size
Figure 13. Recommended Pb-free Reflow Soldering Profile
2.4
0.6
0.9 X 6
1.3 x 6
A
C
A
C
0.4
A
C
A
C
1.1
4.6
C
C
0.3
CATHODE
MARKING
SOLDER MASK
ANODE
A
CATHODE
MARKING
MINIMUM 55 mm2 OF CATHODE PAD
CATHODE
C
FOR IMPROVED HEAT DISSIPATION
Figure 14. Recommended Soldering Pad Pattern
6
TRAILER
COMPONENT
LEADER
2ꢀꢀ mm MIN. FOR Ø18ꢀ REEL.
2ꢀꢀ mm MIN. FOR Ø33ꢀ REEL.
48ꢀ mm MIN. FOR Ø18ꢀ REEL.
96ꢀ mm MIN. FOR Ø33ꢀ REEL.
C
A
USER FEED DIRECTION
Figure 15. Tape Leader and Trailer Dimensions
4
0.1
4
0.1
2 0.05
+0.1
–0
1.75 0.1
2.29 0.1
Ø1.5
C
C
3.5 0.05
3.8 0.1
+0.3
–0.1
8
A
A
+0.1
3.05 0.1
Ø1
–0
0.229 0.01
8°
ALL DIMENSIONS IN mm.
Figure 16. Tape Dimensions
USER FEED DIRECTION
CATHODE SIDE
PRINTED LABEL
Figure 17. Reeling Orientation
7
Device Color (X )
Handling Precaution
1
W
Cool White
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.
Flux Bin Select (X X )
2
3
Individual reel will contain parts from one bin only
X2
X3
Min Flux Bin
Max Flux Bin
Moisture Sensitivity
Flux Bin Limits
This product is qualified as Moisture Sensitive Level 2 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.
Bin ID
Min. (lm)
3.40
Max. (lm)
4.30
0
A
B
C
D
E
4.30
5.50
5.50
7.00
7.00
9.00
A. Storage before use
9.00
11.50
15.00
19.50
25.50
33.00
43.00
56.00
73.00
– 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 HIC indicates that
baking is not required, then it is safe to reflow the
LEDs per the original MSL rating.
11.50
15.00
19.50
25.50
33.00
43.00
56.00
F
G
H
J
– It is not recommended to open the MBB prior to
assembly (e.g. for IQC).
K
L
B. Control after opening the MBB
Tolerance of each bin limit = 12ꢀ
– The humidity indicator card (HIC) shall be read
immediately upon opening of MBB.
Color Bin Select (X )
4
– The LEDs must be kept at <30°C / 60ꢀRH at all time
and all high temperature related process including Individual reel will contain parts from one sub bin only.
soldering, curing or rework need to be completed
X4
within 1 year.
ꢀ
Full Distribution
5K and 5L only
C. Control for unfinished reel
A
B
C
D
E
– For any unuse LEDs, they need to be stored in sealed
MBB with desiccant or desiccator at <5ꢀRH.
6K and 6L only
7K and 7L only
D. Control of assembly boards
8K and 8L only
– 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 1 year.
5K and 6K only
5L and 6L only
F
G
H
J
6K and 7K only
6L and 7L only
E. Baking is required if
7K and 8K only
7L and 8L only
– “60ꢀ”HIC indicator is NOT Green.
K
L
– The LEDs are exposed to condition of >30°C/60ꢀ RH
at any time.
5K, 5L, 6K and 6L only
6K, 6L, 7K and 7L only
7K, 7L, 8K and 8L only
Special binning
M
N
Z
– The LEDs floor life exceeded 1 year.
Recommended baking condition: 60 5°C for 20 hours.
8
Color Bin Limits
Bin
ID
Sub Bin
ID
Bin
ID
Sub Bin
ID
Limits (Chromaticity Coordinates)
Limits (Chromaticity Coordinates)
7K
7Ka
7Kb
7Kc
7Kd
7La
7Lb
7Lc
7Ld
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
0.330
0.310
0.330
0.320
0.336
0.320
0.337
0.330
0.330
0.330
0.330
0.339
0.337
0.341
0.337
0.336
0.320
0.337
0.330
0.343
0.331
0.344
0.341
0.337
0.341
0.337
0.349
0.345
0.352
0.346
0.337
0.330
0.337
0.341
0.344
0.341
0.345
0.352
0.337
0.349
0.338
0.358
0.346
0.362
0.347
0.330
0.320
0.330
0.330
0.337
0.330
0.337
0.341
0.330
0.339
0.330
0.347
0.337
0.349
0.338
5K
5L
6K
6L
5Ka
5Kb
5Kc
5Kd
5La
5Lb
5Lc
5Ld
6Ka
6Kb
6Kc
6Kd
6La
6Lb
6Lc
6Ld
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
x
y
0.296
0.259
0.294
0.264
0.304
0.270
0.302
0.276
0.291
0.268
0.288
0.274
0.300
0.281
0.298
0.288
0.313
0.284
0.312
0.291
0.322
0.297
0.321
0.305
0.310
0.297
0.309
0.305
0.320
0.314
0.319
0.322
0.304
0.270
0.302
0.276
0.313
0.284
0.312
0.291
0.300
0.281
0.298
0.288
0.310
0.297
0.309
0.305
0.322
0.297
0.321
0.305
0.330
0.310
0.330
0.320
0.320
0.314
0.319
0.322
0.330
0.330
0.330
0.339
0.302
0.276
0.300
0.281
0.312
0.291
0.310
0.297
0.298
0.288
0.295
0.294
0.309
0.305
0.307
0.312
0.321
0.305
0.320
0.314
0.330
0.320
0.330
0.330
0.319
0.322
0.318
0.329
0.330
0.339
0.330
0.347
0.294
0.264
0.291
0.268
0.302
0.276
0.300
0.281
0.288
0.274
0.285
0.279
0.298
0.288
0.295
0.294
0.312
0.291
0.310
0.297
0.321
0.305
0.320
0.314
0.309
0.305
0.307
0.312
0.319
0.322
0.318
0.329
7L
y
x
y
x
y
x
y
x
y
0.349
0.343
0.331
0.344
0.341
0.351
0.343
0.352
0.354
0.362
0.351
0.343
0.352
0.354
0.360
0.357
0.362
0.369
0.371
0.352
0.354
0.354
0.364
0.362
0.369
0.364
0.380
0.358
0.344
0.341
0.345
0.352
0.352
0.354
0.354
0.364
8K
8Ka
8Kb
8Kc
8Kd
8L
8La
8Lb
8Lc
8Ld
x
y
x
y
x
y
x
y
0.345
0.352
0.346
0.362
0.354
0.364
0.355
0.375
0.354
0.364
0.355
0.375
0.364
0.380
0.366
0.391
0.355
0.375
0.356
0.385
0.366
0.391
0.367
0.401
0.346
0.362
0.347
0.371
0.355
0.375
0.356
0.385
Tolerance of each bin limit = 0.02.
9
ꢀ.41
ꢀ.39
ꢀ.37
ꢀ.35
ꢀ.33
ꢀ.31
ꢀ.29
ꢀ.27
ꢀ.25
8Ld
8Lc
8Kd
8Kc
8Lb
8La
7Ld
7Lc
8Kb
8Ka
7Lb
7La
7Kb
7Kd
7Kc
5ꢀꢀꢀK - 45ꢀꢀK
6Ld
6Lc
6Kd
6Kc
7Ka
6Lb
6La
6Kb
6Ka
56ꢀꢀK - 5ꢀꢀꢀK
5Ld
5Lc
5Kd
5Kc
7ꢀꢀꢀK - 56ꢀꢀK
5Lb
5La
5Kb
5Ka
1ꢀꢀꢀꢀK - 7ꢀꢀꢀK
ꢀ.32
ꢀ.28
ꢀ.3ꢀ
ꢀ.34
ꢀ.36
ꢀ.38
X-COORDINATE
Packaging Option (X )
V Bin Limits
F
5
Option
Test Current
Package Type
Reel Size
Bin ID
S4
Min.
2.90
3.20
3.50
Max.
3.20
3.50
3.80
E
150mA
Top Mount
7 Inch
S5
S6
Tolerance of each bin limit = 0.1V
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.
AV02-1744EN - April 6, 2010
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SINGLE COLOR LED, COOL WHITE, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4
AVAGO
ASMT-QWBC-N0LGE
SINGLE COLOR LED, COOL WHITE, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4
AVAGO
ASMT-QWBC-N0LHE
SINGLE COLOR LED, COOL WHITE, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4
AVAGO
ASMT-QWBC-N0LJE
Single Color LED, Cool White, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4
AVAGO
ASMT-QWBC-N0LKE
Single Color LED, Cool White, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4
AVAGO
ASMT-QWBC-N0LLE
Single Color LED, Cool White, 2.4mm, 3.20 X 2.80 MM, 1.90 MM HEIGHT, ROHS COMPLIANT, SMT, PLASTIC, LCC-4
AVAGO
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