SEOUL SEMICONDUCTOR C8WT728 Specification

Technical Data Sheet
Z-Power LED X10490Z-Power LED X10490
C8WT728
SSC
CUSTOMER
ApprovalApprovalDrawn
Rev. 03
Rev. 03
June 2009
June 2009
www.
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SSC-QP-7-07-24 (Rev.00)
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Technical Data Sheet
Z-Power LED X10490Z-Power LED X10490
1. Description
2. Absolute Maximum Ratings
3. Electro-Optical Characteristics
4. Optical characteristics
5. Reliability Test
CONTENTS
6. Color & Binning
7. Bin Code Description
8. Outline Dimension
9. Reel Structure
10. Packing
11. Soldering
12. Precaution for use
13. Handling of Silicone Resin LEDs
Rev. 03
Rev. 03
June 2009
June 2009
www.
www.
SSC-QP-7-07-24 (Rev.00)
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Technical Data Sheet
Z-Power LED X10490Z-Power LED X10490
C8WT728
1. Description
TOP VIEW LED is designed for
high current operation and
high flux output applications.
Furthermore, its thermal management characteristic
is better than other LED solutions by package SMD
design and good thermal emission material.
According to these advantages, it enables to apply
various lighting applications and design solution,
automotive lighting etc.
C8WT728
Features
White & Warm colored
SMT package.
•High CRI PKG
Pb-free Reflow Soldering
Application
Suitable for all SMT
assembly methods ;
Suitable for all soldering
methods
RoHS Compliant
•MSL LEVEL 2a
Applications
Interior lighting
General lighting
Indoor and out door
displays
Architectural / Decorative
lighting
Rev. 03
Rev. 03
June 2009
June 2009
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SSC-QP-7-07-24 (Rev.00)
Technical Data Sheet
Z-Power LED X10490Z-Power LED X10490
2. Absolute maximum ratings
UnitValueSymbolParameter
Power Dissipation
Forward Current
Peak Forward Current
(Per die)
Reverse Voltage (per die)
Operating Temperature
Storage Temperature
*1 Care is to be taken that power dissipation does not exceed the absolute maximum rating of the product. *2 IFM was measured at TW≤ 1msec of pulse width and D ≤ 1/10 of duty ratio.
FM
d
F
*2
R
opr
stg
mW324P
mA90I
mA100I
V5V
ºC-40 ~ +85T
ºC-40 ~ +100T
3. Electric & Optical characteristics
UnitMaxTypMinConditionSymbolParameter
Forward Voltage (per die)
Reverse Current (per die)
Luminance Intensity
*1
[4,700 ~ 7,000 K]
Luminance Intensity
*1
[2,600 ~ 4,700 K ]
V
F
I
R
I
V
I
V
IF=20mA
VR=5V
IF=60mA
IF=60mA
10--
V3.63.33.0
µA
cd-5.24.0
cd-5.04.0
Luminance Flux
[CIE X = 0.31, Y = 0.31]
Optical Efficiency
Viewing Angle
*2
Φ
V
Ŋ
elc
2
θ
½
RaColor Rendering Index
*1. The luminous intensity IV was measured at the peak of the spatial pattern which may not be aligned with the mechanical axis of the LED package. Luminous Intensity Measurement allowance is ±10% *2. 2θ½ is the off-axis where the luminous intensity is 1/2 of the peak intensity.
[Note] All measurements were made under the standardized environment of SSC.
IF=60mA
IF=60mA
IF=60mA
IF=60mA
83
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lm/W-83-
deg-120-
June 2009
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SSC-QP-7-07-24 (Rev.00)
lm-16.5-
K7,0002,600CCTColor Temperature
Rev. 03
Rev. 03
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Technical Data Sheet
Z-Power LED X10490Z-Power LED X10490
4. Optical characteristics
Forward Voltage
vs. Forward Current (Per die)
10
Forward Current [mA]
1
2.0 2.5 3.0 3.5 4.0
Forward Voltage[V]
Forward Current
vs. Relative Luminous Intensity
2.5
2.0
1.5
1.0
Relative luminouce Flux [lm]
0.5
0.0
0 50 100 150 200
Forward Current IF[mA]
Ambient Temperature
vs. Maximum Forward Current (per die)
35
30
25
[mA]
F
20
15
10
Forward Current I
5
0
-25 0 25 50 75 100
Ambient temperature Ta(OC)
-90
-60
Directivity
-30
0
30
60
90
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June 2009
June 2009
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SSC-QP-7-07-24 (Rev.00)
Technical Data Sheet
Z-Power LED X10490Z-Power LED X10490
5. Reliability Test
Thermal Shock
High Temperature
Storage
High Temp. High
Humidity Storage
Low Temperature
Storage
Operating
Endurance Test
High Temperature
High Humidity Life
Test
High Temperature Life Test
Low Temperature Life Test
ESD(HBM)
EIAJ
ED-4701
EIAJ
ED-4701
EIAJ
ED-4701
EIAJ
ED-4701
Internal
Reference
Internal
Reference
Internal
Reference
Internal
Reference
MIL-STD-
883D
Test ConditionsReferenceItem
T
=-40oC(30min) ~
a
o
100
C(30min)
=100oC
a
=60oC, RH=90%
a
=-40oC
a
=25oC, IF=60mA
a
T
=60oC, RH=90%, IF=60mA
a
=85oC, IF=60mA
a
=-40oC, IF=60mA
a
Duration /
Cycle
1000 Cycle
500
Hours
Number
of
Damaged
0/22
0/221000 HoursT
0/221000 HoursT
0/221000 HoursT
0/221000 HoursT
0/22
0/221000 HoursT
0/221000 HoursT
0/223 Time1KV at 1.5k; 100pF
CRITERIA FOR JUDGING THE DAMAGE
Forward Voltage
Reverse Current
Luminous Intensity
Note : *1 USL : Upper Standard Level
*2 LSL : Lower Standard Level
V
F
R
I
V
ConditionSymbolItem
I
=60mA
F
(20mA per die)
=5VI
R
I
=60mA
F
(20mA per die)
Criteria for Judgment
MAXMIN
*1
USL
USL
www.
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*1
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LSL
*2
-
-V
× 0.5
SSC-QP-7-07-24 (Rev.00)
× 1.2
× 2.0
-
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June 2009
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