3mm Lamp InGaN White L3W-U4500-Catalogue-v1

DOMINANT
TM
Opto Technologies
Innovating Illumination
DATA SHEET:
3mm Lamp
InGaN White: L3W-U4500
Lamp Type LED - 3mm
This 3mm LED offer superior light output for excellent readability
in sunlight. These lamps are offering stable light output over
long period of time and high-moisture-resistance performance
in lighting and illumination applications due to the optical-grade
epoxy.
Features:
> High brightness LED lamp.
> Superior resistance to moisture
> Suitable for TTW soldering.
Applications:
> Indicators
> Outdoor displays/signs
All rights reserved. Product specifications are subject to change without notice.
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12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
Optical Characteristics at Tj=25˚C
Part Ordering
Number
Color
L3W-U4500-T2V1-1
White
Luminous Intensity @ 5mA IV (mcd)
Min.
Typ.
Max.
Viewing
Angle˚
45
355.0
560.0
900.0
NOTE
1. Luminous intensity is measured with an accuracy of ± 15%.
2. Wavelength binning is carried for all units as per the wavelength-binning table. Only one wavelength group is allowed for each pack.
Electrical Characteristics at Tj=25˚C
Part Number
L3W-U4500
Vr @ Ir = 10uA
Vf @ If = 5mA
Min. (V)
Typ. (V)
Max. (V)
2.9
3.4
2.6
Min. (V)
5
Forward voltages are measure using a current pulse of 1 ms and with an accuracy of ± 0.1V.
Absolute Maximum Ratings
Maximum Value
Unit
DC forward current
20
mA
Peak pulse current; (tp ≤ 100µs, Duty cycle = 0.10)
100
mA
5
V
ESD threshold (HBM)
2000
V
LED junction temperature
120
˚C
Operating temperature
-40 … +85
˚C
Storage temperature
-40 … +85
˚C
85
mW
Reverse voltage ; Ir (max) = 10µA.
Power dissipation (at room temperature)
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12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
Wavelength Grouping
White Bin Structure
0.40
0.38
0.36
0.34
0.32
0.30
0.28
0.26
0.24
V2
0.22
0.20
0.22
0.24
0.26
0.28
0.30
0.32
0.34
0.36
Chromaticity coordinate groups are measured with an accuracy of ± 0.01.
Bin
V1
V2
V3
V4
A1
A2
A3
A4
C1
C2
C3
C4
Cx
0.2525
0.2650
0.2650
0.2525
Cy
0.2318
0.2525
0.2700
0.2493
Cx
0.2525
0.2650
0.2650
0.2525
Cy
0.2143
0.2350
0.2525
0.2318
Cx
0.2650
0.2775
0.2775
0.2650
Cy
0.2525
0.2732
0.2907
0.2700
Cx
0.2650
0.2775
0.2775
0.2650
Cy
0.2350
0.2557
0.2732
0.2525
Cx
0.2775
0.2900
0.2900
0.2775
Cy
0.2732
0.2939
0.3114
0.2907
Cx
0.2775
0.2900
0.2900
0.2775
Cy
0.2557
0.2764
0.2939
0.2732
Cx
0.2900
0.3025
0.3025
0.2900
Cy
0.2939
0.3146
0.3321
0.3114
Cx
0.2900
0.3025
0.3025
0.2900
Cy
0.2764
0.2971
0.3146
0.2939
Cx
0.3025
0.3150
0.3150
0.3025
Cy
0.3146
0.3354
0.3529
0.3321
Cx
0.3025
0.3150
0.3150
0.3025
Cy
0.2971
0.3179
0.3354
0.3146
Cx
0.3150
0.3275
0.3275
0.3150
Cy
0.3354
0.3561
0.3736
0.3529
Cx
0.3150
0.3275
0.3275
0.3150
Cy
0.3179
0.3386
0.3561
0.3354
Dominant color coordinate is measured with an accuracy of ± 0.01.
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12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
Luminous Intensity Group at Tj=25˚C
Luminous Intensity
IV (mcd)
Brightness Group
T2
355.0...450.0
U1
450.0...560.0
U2
560.0...715.0
V1
715.0...900.0
Luminous intensity is measured with an accuracy of ± 15%.
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12/12/2011 V1.0
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
13
6
3.5
12
5
12
1153
112
10
10
4
2.5
9
4
9
1.6
8
82
37
7
3
1.2
6
6
1.5
5
25
421
0.8
4
3
3
1
12
0.5
0.4
2
1
1
0
0
00
2.4
13
0
Forward Current
Current Vs
Vs Forward
Forward Voltage
Voltage
Forward
Multiple X-Y Plot
Forward
Current
Vs
Forward
Voltage
Forward
Current
Forward
Voltage
Forward
Current
VsVs
Forward
Voltage
35
30
50
25
30
25
30
40
40
20
25
25
20
30
3020
20
15
15
15
15
20
20
10
10
10
10
10
10 5
5
5
5035
Variables
Relative Intensity
Forward Current, mA
Forward
ForwardCurrent,
Current,mA
mA
Current,
mA
Forward
Current;
mA
Relative Normalized
Intensity
Relative
Relative
Intensity;
Normalizedatat
5mA
RelativeIntensity;
Intensity;
Normalized
20mA
Relative
Intensity;
Normalized
at5mA
2mA
Relative
Intensity
vs
Current
Vs
Forward
Current
Relative
Intensity
VsForward
Forward
Current
Relative
Intensity
vs
Forward
Current
Relative
Luminous
Intensity
Vs Forward
Current
Multiple X-Y Plot
2040
30 60
60
000 10 10
20
70
80
100
2 30
4 50
6 40
850 90
10
50 30
60
7015 40
80
90 20
100
10
20
50
000 10 20
5 30 40
10
forward
22
2
21.2
0
2.5
1.42.52.5
2.5 1.6
20
3
3
3
31.8
40
2
3.5
3.5
2.2
603.53.5
Forward
Voltage;
Forward
Voltage,
Forward
Voltage;
Forward
Voltage,
V VV
Forward
Voltage,
VV
80
44
42.44
100
Ambient Temp
Forward Current Vs Forward Voltage
Relative Intensity Vs Forward Current
Relative
Intensity
Vs
Wavelength
Relative
Intensity
Vs
Wavelength
Intensity
Vs.
Wavelength
ForwardCurrent
CurrentVs
VsAmbient
Ambient
Temperature
Forward
Vs
Ambient
Temperature
Forward
Current
Vs
Ambient
Temperature
Maximum
Current
Vs
Ambient
Temperature
Multiple
X-Y
Plot Temperature
3.5
30
25
253
25
25
50 Relative
1
1 1
forward current y
25
2.5
20
20
20
20
2
15
15
1.5
15
15
10
1
10
10
10
0.5
5
555
0
0 0
10
20
30
40
50
60
05
00
0 10 20 30 40 50 60 70 80 90 100
50 60
10 20
20
30
50
70
80
90
100
000 10
30
40
60
70
80
90
100
20 Forward
40 Current;
60 mA80
80
100
0
20
40
60
100
40
0.9
0.90.9
0.8
0.80.8
0.7
30
0.70.7
0.6
0.60.6
0.5
20
0.50.5
0.4
0.40.4
0.3
10
0.30.3
0.2
0.20.2
0.1
0.1 0
0.1
0 2
2.5
3
3.5
4
0
0
400
450
500
550
600
650
700
400
450
500
550
600
650
700
750
800
500
550 Forward
600
650
700
750
Voltage;
V
Forward Current; mA
Variables
Relative Intensity
Relative
RelativeIntensity
Intensity
Forward
Current,
Current,
mA
Forward
Current,
mA
Relative
Intensity;
Normalized
Forward
Current,
IfmA at 20mA
Forward
Current;
Variables
00
0 00
0
ForwardCurrent,
Current;mA
mA
Forward
Current,
Forward
Current;
mA
Forward
Forward
Forward current mA
Wavelength;
Wavelength,
nm nm
Ambient Temperature
AmbientTemperature
temperature
Ambient
Ambient
Temperature
Ambient
Temp
Wavelength; nm
Relative Intensity Vs Wavelength
Radiation
Pattern
Radiation
Pattern
(2Ө=45o)
Plot of R15 vs V15
Plot of R30 vs V30
1
1
0.9
Relative
Intensity
Relative
Intensity
1
1
Relative
Relative
Intensity
Intensity
e Intensity
DOMINANT
0.5
0.5
0.8
0.7
0.6
0.5
0.5
0.4
0.3
0.2
0.1
0
0
0 -90
-90
60
90
0 400
450
500
600
650
700
-60 Viewing
-30 Angle
0
30
60
(Degree)
90
-90
-60
-30
0
30
Wavelength;
nm
60
90
-60
-30
0
30
Viewing Angle (Degree)
Maximum Current Vs Ambient Temperature
5
550
Viewing Angle (Degree)
12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
3mm Lamp • InGaN White: High Brightness Package Outlines
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12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
Packaging Specification
1. Loose pack of 500pcs/pack: Lxx-xxxxx-xxxx-x-x-0
Weight
Weight(gram)
(gram)
Average 1pc 3mm Lamp
1 completed pack (500pcs)
0.12
0.034
70 ±±10
190
10
Barcode label
DOMINANT
LOT NO : lotno
ROHS Compliant
PB Free
PART NO : partno
QTY : product quantity per reel S/N : serial no D/C: date code
GROUP : group
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12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
Packaging Specification
2. Ammopack: Lxx-xxxxx-xxxx-x-x-A
Average 1pc 3mm Lamp
(g)
0.12
Box Dimensions
(mm)
Empty Box
Weight (kg)
335 x 135 x 48
0.14
Quantity / Box (pcs)
1800
1 Completed Box
With Units (kg)
0.40 ± 0.10
Barcode label
+
DOMINANT
LOT NO : lotno
PART NO : partno
ROHS Compliant
PB Free
QTY : product quantity per reel S/N : serial no D/C: date code
GROUP : group
Cat
-
hod
e
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12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
Recommended TTW Soldering Profile (acc. to CECC 00802)
Standard curve
300
Limit Curve
10s
T (˚C)
250
235˚C…260˚C
2nd
1st
200
5˚C/s
ca 200˚C/s
150
2˚C/s
100˚C…130˚C
100
2˚C/s
Forced
cooling
50
0
0
25
50
75
100
125
150
175
200
225
250
T (˚C)
9
12/12/2011 V1.0
DOMINANT
TM
InGaN White: L3W-U4500
Opto Technologies
Innovating Illumination
Revision History
Page
Subjects
Date of Modification
-
Initial Release
12 Dec 2011
NOTE
All the information contained in this document is considered to be reliable at the time of publishing. However, DOMINANT
Opto Technologies does not assume any liability arising out of the application or use of any product described herein.
DOMINANT Opto Technologies reserves the right to make changes to any products in order to improve reliability, function
or design.
DOMINANT Opto Technologies products are not authorized for use as critical components in life support devices or systems
without the express written approval from the Managing Director of DOMINANT Opto Technologies.
10
12/12/2011 V1.0
DOMINANT
TM
Opto Technologies
Innovating Illumination
InGaN White: L3W-U4500
About Us
DOMINANT Opto Technologies is a dynamic Malaysian Corporation that is among the world’s leading SMT LED
Manufacturers. An excellence – driven organization, it offers a comprehensive product range for diverse industries
and applications. Featuring an internationally certified quality assurance acclaim, DOMINANT’s extra bright LEDs
are perfectly suited for various lighting applications in the automotive, consumer and communications as well as
industrial sectors. With extensive industry experience and relentless pursuit of innovation, DOMINANT’s state-of-art
manufacturing, research and testing capabilities have become a trusted and reliable brand across the globe. More
information about DOMINANT Opto Technologies can be found on the Internet at http://www.dominant-semi.com.
Please contact us for more information:
Head Quarter
DOMINANT Opto Technologies Sdn. Bhd.
Lot 6, Batu Berendam, FTZ Phase III, 75350 Melaka, Malaysia
Tel: (606) 283 3566 Fax: (606) 283 0566
E-mail: [email protected]
DOMINANT Opto Technologies Sdn. Bhd. Shanghai Representative Office
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Tel: +86 21 5403 5655, +86 21 5403 5818 Fax: +86 21 5403 6055
E-mail: [email protected]
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Tel: +86 755 8282 1781
E-mail: [email protected]
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DOMINANT Semiconductors Korea Inc.
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Tel: +82-31-701-5203 Fax: +82-31-701-5204
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Tel: (908) 439-9930 Cell: (908) 343-5810 Fax: (908) 439-9929
E-mail: [email protected]
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DOMINANT Semiconductors Europe GmbH
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Tel: +49 (0) 7264-89010-10 / +49 (0) 7264-89010-11 Cell: +49 173-6907370 / +49 173-6907751
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Tel: 91-44-42030616 / 516 Cell: 91-9444920537 Fax: 91-9444920616
E-mail: [email protected]
DOMINANT
Opto Technologies
Innovating Illumination
TM