EVERLIGHT 19-337-R6GHBHC-A01-2T

Technical Data Sheet
0.35mm Height Chip LED with Full Color
19-337/R6GHBHC-A01/2T
Features
․Package in 8mm tape on 7〞diameter reel.
․Compatible with automatic placement equipment.
․Compatible with infrared and vapor phase reflow
solder process.
․Full-color type.
․Pb-free
․The product itself will remain within RoHS
compliant version.
Descriptions
․The 19-337 SMD LED is much smaller
than lead frame type components, thus
enable smaller board size, higher packing
density, reduced storage space and finally
smaller equipment to be obtained.
․Besides, lightweight makes them ideal for
miniature applications. etc.
Applications
․Backlighting in dashboard and switch.
․Telecommunication: indicator and backlighting in
telephone and fax.
․Flat backlight for LCD, switch and symbol.
․General use.
Device Selection Guide
Chip
Revision
Type
Material
Emitted Color
R6
AlInGaN
Brilliant Red
GH
InGaN
Brilliant Green
BH
InGaN
Blue
Resin Color
Water Clear
Everlight Electronics Co., Ltd.
http://www.everlight.com
Device No. : DSE-0002657
Prepared date: 07-May-2010
:2
LifecyclePhase:
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19-337/R6GHBHC-A01/2T
Package Outline Dimensions
1.6
1.6
B
1
4
2
5
3
6
G
R
Cathode mark
1.1
0.35
1.0
0.4
0.2
0.5
0.2
0.6
0.5
0.35
0.15
0.6
0.15
0.35
0.8
0.4
0.6
0.8
0.6
Note: The tolerances unless mentioned is ±0.1mm,Unit = mm
Revision
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Device No. : DSE-0002657
Prepared date: 07-May-2010
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Rev. 2
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19-337/R6GHBHC-A01/2T
Absolute Maximum Ratings (Ta=25℃)
Parameter
Symbol
Rating
Unit
Reverse Voltage
VR
5
V
R6:25
Forward Current
GH:25
IF
mA
BH:25
R6:60
Peak Forward Current
IFP
GH:100
(Duty 1/10 @1KHz)
mA
BH:100
R6:60
Power Dissipation
GH:95
Pd
mW
BH:95
R6:2000
Electrostatic Discharge(HBM)
ESD
GH:150
V
BH:150
Operating Temperature
Topr
-40 ~ +85
℃
Storage Temperature
Tstg
-40 ~ +90
℃
Reflow Soldering : 260 ℃ for 10 sec.
Soldering Temperature
Revision
Tsol
Hand Soldering : 350 ℃ for 3 sec.
Everlight Electronics Co., Ltd.
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Device No. : DSE-0002657
Prepared date: 07-May-2010
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19-337/R6GHBHC-A01/2T
Electro-Optical Characteristics (Ta=25℃)
Parameter
Luminous Intensity
Viewing Angle
Symbol
Iv
Min.
Typ.
R6
72
100
GH
112
180
BH
28.5
50
-----
120
2θ1/2
Dominant Wavelength
Spectrum Radiation
Bandwidth
Forward Voltage
λp
λd
GH
518
468
R6
624
-----
525
BH
470
R6
20
△λ GH
VF
-----
BH
GH
Unit
-----
mcd
-----
deg
-----
nm
-----
nm
-----
nm
35
-----
BH
35
R6
2.0
2.4
3.3
3.9
3.3
3.9
GH
-----
BH
IR
GH
IF=20mA
V
10
R6
Reverse Current
Condition
632
R6
Peak Wavelength
Max.
-----
-----
50
μA
VR=5V
50
BH
Notes:
1.Tolerance of Luminous Intensity ±11%
2.Tolerance of Dominant Wavelength ±1nm
3.Tolerance of Forward Voltage ±0.1V
Revision
Everlight Electronics Co., Ltd.
http://www.everlight.com
Device No. : DSE-0002657
Prepared date: 07-May-2010
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LifecyclePhase:
Rev. 2
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19-337/R6GHBHC-A01/2T
Typical Electro-Optical Characteristics Curves
R6
Forward Current vs.
Forward Voltage
Spectrum Distribution
Ta=25°C
Relative luminous intensity (%)
Forward Current FI (mA)
Ta=25°C
Forward Voltage VF (V)
Wavelength λ (nm)
Luminous Intensity vs.
Forward Current
Luminous Intensity vs.
Ta=25°C
Relative luminous intensity (% )
Relative luminous intensity (% )
Ambient Temperature
Ambient Temperature Ta (°C)
Radiation Diagram
Ta=25°C
Forward Current FI (mA)
Forward Current Derating Curve
Ambient Temperature Ta (°C)
Revision
Everlight Electronics Co., Ltd.
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Device No. : DSE-0002657
Prepared date: 07-May-2010
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Typical Electro-Optical Characteristics Curves
GH
I (mA)
40
F
75
50
25
0
400
450
500
550
30
25
20
10
0
2.6
600
Luminous Intensity vs.
Relative luminous intensity (%)
Ambient Temperature
1000
100
10
1
-60 -40 -20
0
3.0
3.4
20 40 60 80 100
1000
f=1KHz
Duty=1/10
10
1
10
10
IF(mA)
Forward Current
10
Forward Current IF(mA)
Ta=25°C
Radiation Diagram
0°
50
10°
20°
30°
40
40°
30
25
1.0
20
0.9
50°
0.8
60°
10
70°
0.7
0
0
20
40
60
85
80°
90°
100
0.5
Ambient Temperature Ta (°C)
Everlight Electronics Co., Ltd.
http://www.everlight.com
Device No. : DSE-0002657
Prepared date: 07-May-2010
LifecyclePhase:
4.5
100
Forward Current Derating Curve
:2
4.2
Luminous Intensity vs
Forward Current
Ta=25°C
Ambient Temperature Ta (°C)
Revision
3.8
Forward Voltage V F (V)
Wavelength λ (nm)
Relative luminous intensity (%)
Forward Current vs.
Forward Voltage
Ta=25°C
50
100
Forward Current
Relative luminous intensity (%)
Spectrum Distribution
Ta=25°C
0.3
0.1
0.2
0.4
0.6
Rev. 2
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19-337/R6GHBHC-A01/2T
Typical Electro-Optical Characteristics Curves
BH
Forward Current vs.
Forward Voltage
Ta=25°C
100
Forward Current IF (mA)
Relative luminous intensity (%)
Spectrum Distribution
75
50
25
0
400
450
500
550
40
30
25
20
10
0
2.6
600
Wavelength λ (nm)
Relative luminous intensity (%)
Relative luminous intensity (%)
10
20 40 60 80 100
1000
Forward Current IF (mA)
Ta=25°C
10
1
10
2
1
10
10
Forward Current IF (mA)
Radiation Diagram
0° 10°
50
Ta=25°C
20°
30°
40
40°
30
25
1.0
0.9
50°
20
0.8
60°
10
0
70°
0.7
0
20
40
60
85
80°
90°
100
0.5
Ambient Temperature Ta (°C)
Everlight Electronics Co., Ltd.
http://www.everlight.com
Device No. : DSE-0002657
Prepared date: 07-May-2010
LifecyclePhase:
4.5
100
Forward Current Derating Curve
:2
4.2
f=1KHz
Duty=1/10
Ambient Temperature Ta (°C)
Revision
3.8
Forward Current
100
0
3.4
Luminous Intensity vs.
Ambient Temperature
1
-60 -40 -20
3.0
Forward Voltage V F (V)
Luminous Intensity vs.
1000
Ta=25°C
50
0.3
0.1
0.2
0.4
0.6
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19-337/R6GHBHC-A01/2T
Label Explanation
CAT: Luminous Intensity Rank
HUE: Dom. Wavelength Rank
Pb
EVERLIGHT
CPN :
P N : XXXXXXXXXXXXX
RoHS
XXXXXXXXXXXXX
REF: Forward Voltage Rank
CAT : XXX
HUE : XXX
REF : XXX
QTY : XXX
LOT NO : XXXXXXXXXX
Reference : XXXXXXXX
MADE IN TAIWAN
Reel Dimensions
Note: The tolerances unless mentioned is ±0.1mm ,Unit = mm
Revision
Everlight Electronics Co., Ltd.
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Device No. : DSE-0002657
Prepared date: 07-May-2010
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Carrier Tape Dimensions: Loaded quantity 2000 PCS per reel
Note: The tolerances unless mentioned is ±0.1mm ,Unit = mm
Moisture Resistant Packaging
Label
Revision
Aluminum moisture-proof bag
Desiccant
Everlight Electronics Co., Ltd.
http://www.everlight.com
Device No. : DSE-0002657
Prepared date: 07-May-2010
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Label
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19-337/R6GHBHC-A01/2T
Reliability Test Items And Conditions
The reliability of products shall be satisfied with items listed below.
Confidence level:90%
LTPD:10%
Ac/Re
Items
Test Condition
1
Reflow Soldering
Temp. : 260℃±5℃
Max. 10sec.
6 Min.
22 PCS.
0/1
Temperature Cycle
H : +100℃ 15min
∫ 5 min
L : -40℃ 15min
300 Cycles
22 PCS.
0/1
Thermal Shock
H : +100℃ 5min
∫ 10 sec
L : -10℃ 5min
300 Cycles
22 PCS.
0/1
Temp. : 100℃
1000 Hrs.
22 PCS.
0/1
Temp. : -40℃
1000 Hrs.
22 PCS.
0/1
2
3
High Temperature
Storage
Low Temperature
Storage
4
5
Revision
Test
Sample
Hours/Cycles
Size
No.
6
DC Operating Life
IF = 20 mA
1000 Hrs.
22 PCS.
0/1
7
High Temperature /
High Humidity
85℃/ 85%RH
1000 Hrs.
22 PCS.
0/1
Everlight Electronics Co., Ltd.
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Device No. : DSE-0002657
Prepared date: 07-May-2010
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LifecyclePhase:
Rev. 2
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Precautions For Use
1. Over-current-proof
Customer must apply resistors for protection, otherwise slight voltage shift will cause big
current change ( Burn out will happen ).
2. Storage
2.1 Do not open moisture proof bag before the products are ready to use.
2.2 Before opening the package: The LEDs should be kept at 30℃ or less and 90%RH or less.
2.3 After opening the package: The LED's floor life is 1 year under 30℃ or less and 60% RH or less.
If unused LEDs remain, it should be stored in moisture proof packages.
2.4 If the moisture absorbent material (silica gel) has faded away or the LEDs have exceeded the
storage time, baking treatment should be performed using the following conditions.
Baking treatment : 60±5℃ for 24 hours.
3. Soldering Condition
3.1 Pb-free solder temperature profile
2 6 0°C M ax .
1 0sec. M ax .
A b o ve2 5 5°C
30 se c.M ax .
3 °C /sec.M ax.
6°C /sec.M ax.
P re-h eatin g
A b o v e 2 1 7 °C
6 0~ 1 5 0 sec.
1 5 0 ~ 2 0 0 °C
6 0 ~ 1 2 0 sec.
3.2 Reflow soldering should not be done more than two times.
3.3 When soldering, do not put stress on the LEDs during heating.
3.4 After soldering, do not warp the circuit board.
Revision
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Device No. : DSE-0002657
Prepared date: 07-May-2010
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4.Soldering Iron
Each terminal is to go to the tip of soldering iron temperature less than 350℃ for 3 seconds within
once in less than the soldering iron capacity 25W. Leave two seconds and more intervals, and do
soldering of each terminal. Be careful because the damage of the product is often started at the time of the
hand solder.
5.Repairing
Repair should not be done after the LEDs have been soldered. When repairing is unavoidable, a
double-head soldering iron should be used (as below figure). It should be confirmed beforehand whether
the characteristics of the LEDs will or will not be damaged by repairing.
EVERLIGHT ELECTRONICS CO., LTD.
Office: No 25, Lane 76, Sec 3, Chung Yang Rd,
Tucheng, Taipei 236, Taiwan, R.O.C
Revision
Tel: 886-2-2267-2000, 2267-9936
Fax: 886-2267-6244, 2267-6189, 2267-6306
http://www.everlight.com
Everlight Electronics Co., Ltd.
http://www.everlight.com
Device No. : DSE-0002657
Prepared date: 07-May-2010
:2
LifecyclePhase:
Rev. 2
Page: 12 of 12
Prepared by : Ashley Kuo
Release Date:2010-05-10 15:44:31.0
Expired Period: Forever