Z-Power LED X10490
Z-Power LED X10490
Technical Data Sheet
<080407> Rev. 1.6
Specification
HR310
SSC
Drawn
Approval
Customer
Approval
Rev. 00
December 2007
www.ZLED.com
Document No. : SSC-QP-7-07-24 (Rev.00)
Z-Power LED X10490
Z-Power LED X10490
Technical Data Sheet
Contents
1. Features
2. Absolute Maximum Ratings
3. Electric-Optical Characteristics
4. Reliability Tests
5. Characteristic Diagrams
6. Color & Binning
7. Outline Dimensions
8. Packing
9. Soldering
10. Precaution for use
Rev. 00
December 2007
www.ZLED.com
<080407> Rev. 1.6
Document No. : SSC-QP-7-07-24 (Rev.00)
Z-Power LED X10490
Z-Power LED X10490
Technical Data Sheet
HR310
Description
사진
This revolutionary package design allows
the lighting designer to reduce the
number of LEDs required and provide
a more uniform and unique illuminated
appearance than with other LED solutions.
This package LEDs are designed for high
current operation and high flux output
application. But the package’s design
features better thermal management
characteristics than other LED solutions.
Because of these advantages, this product
have many applications. Such as
automotive tail, stop and turn signal lamps,
and electronic signs etc.
HR310
Features
• High flux output and
high luminance
• Designed for
high current operation
• Uniform color
• Low profile and
low thermal resistance
• Packaged in tubes
for use with automatic
insertion equipment
Applications
• Automotive
exterior lighting
• Electronic signs
and signals
• Channel letter / lighting
• Decorative lighting
• Specialty Lighting
Rev. 00
December 2007
www.ZLED.com
<080407> Rev. 1.6
Document No. : SSC-QP-7-07-24 (Rev.00)
Z-Power LED X10490
Z-Power LED X10490
Technical Data Sheet
2. Absolute Maximum Ratings (
T
a
= 25ºC )
Item
DC Forward Current
Forward Peak Pulse Current
Reverse Voltage
Power Dissipation
Operating Temperature
Storage Temperature
Solder Temperature
Symbol
I
F
I
FP
[1]
V
R
P
D
T
opr
T
stg
T
S
Value
70
100
5
224
-40 ~ 100
-50 ~ 105
260ºC for 5second
[2]
Unit
mA
mA
V
mW
ºC
ºC
ºC
Notes :
[1]
t
≤
0.1ms,
D
= 1/10
[2] No closer than 1.5mm from the base of the stopper.
3. Electro-Optical Characteristics (
T
a
= 25ºC,
I
F
=70mA )
Item
Luminous Flux
[3]
Luminous Intensity
Dominant Wavelength
[5]
Forward Voltage
[6]
View Angle
Thermal Resistance
Optical Efficiency
Reverse Current (at
V
R
=
5V)
Symbol
Ф
V
[4]
I
V
Value
Min.
4.4
-
615
-
Typ.
6.0
10000
625
2.6
40
120
-
-
33
-
-
5
Max.
-
-
630
3.0
Unit
lm
mcd
nm
V
deg.
ºC
/W
lm/W
λ
d
V
F
2
θ
½
R
θ
J-P
ŋ
opt
I
R
µ
A
Notes :
[3] SSC maintains a tolerance of
±10%
on flux and power measurements.
[4]
Ф
V
is the total luminous flux output as measured with an integrated sphere.
[5] Dominant wavelength is derived from the CIE 1931 Chromaticity diagram.
A tolerance of
±0.5nm
for dominant wavelength.
[6] A tolerance of
±0.05V
on forward voltage measurements.
Rev. 00
December 2007
www.ZLED.com
<080407> Rev. 1.6
Document No. : SSC-QP-7-07-24 (Rev.00)
Z-Power LED X10490
Z-Power LED X10490
Technical Data Sheet
4. Reliability Tests
Item
Life Test
High Temperature Operating
Low Temperature Operating
Thermal Shock
Resistance to soldering Heat
ESD
(Human Body Model)
High Temperature Storage
Low Temperature Storage
Temperature Humidity
Storage
Temperature Humidity
Operating
Condition
T
a
= RT,
I
F
= 70mA
T
a
= 100ºC,
I
F
= 20mA
T
a
= -40ºC,
I
F
= 70mA
T
a
= -50ºC (30min) ~ 105º (30min)
(Transfer time : 5sec, 1Cycle = 1hr)
T
s
= 255
±
5ºC,
t
= 4
±
1sec
1kV, 1.5kΩ ; 100pF
T
a
= 105ºC
T
a
= -50ºC
T
a
= 85ºC,
RH
= 85%
T
a
= 85ºC,
RH
= 85%,
I
F
= 40mA
Note
1000hrs
1000hrs
1000hrs
100
cycles
1 time
1 time
1000hrs
1000hrs
1000hrs
500hrs
Failures
0/22
0/22
0/22
0/40
0/22
0/22
0/22
0/22
0/22
0/22
< Judging Criteria For Reliability Tests >
V
F
I
R
Ф
V
Notes :
[1] USL : Upper Standard Level
[2] LSL : Lower Standard Level.
USL
[1]
X 1.2
USL X 2.0
LSL
[2]
X 0.7
Rev. 00
December 2007
www.ZLED.com
<080407> Rev. 1.6
Document No. : SSC-QP-7-07-24 (Rev.00)