HEAT SLUG
Part No.
Features
Highest Flux White High reliability and Very long operating life (up to 100K hours) Low voltage DC operated More Energy Efficient than Incandescent and most Halogen lamps NO UV Superior ESD protection
S30NW6C
Typical Applications
Reading lights(car,bus,aircraft) Portable(flashlight,bicycle) Automotive Exterior(Stop-Tail-Turn, CHMSL,Mirror Side Repeat) Decorative
NOTE:
All dimensions are millimetres. Tolerance is f 0.1mm unless otherivise noted
DIRECTIVITY
1.0 Ta=25¡ ã C IF=20mA
0¡ ã 30¡ ã
Relative Luminous
0.5
60¡ ã
0
90¡ ã
60¡ ã
30¡ ã
0¡ ã
0.5
90¡ ã 1.0
Radiation Angle
Page: 1 of 4
HEAT SLUG
Part No. S30NW6C
Absolute maximum ratings ˜Ta = 25 ¯
Parameter Symbol Test Condition
Value
Min.
Max.
Unit
DC Forward Current DC Forward Maximum Current Power Dissipation
LED Junction Temperature
IF
----
----
350
mA
Imax
-----
----
500
mA
Operating Temperature Storage Temperature ESD Sensitivity Soldering Temperature
Pd Tj Topr Tstr -----
------------HBM -----
----
-25 -40 8000 260
1.4 W 120 +100 +120 --V for 5 Seconds max
Electrical and optical characteristics ˜Ta = 25 ¯
Parameter Symbol Test Condition
Value
Min.
Typ.
Max.
Unit
Forward Voltage Luminous Flux Viewing Angle
VF v 2 '1/2
IF = 350mA IF = 350mA IF = 350mA
---25 ----
3.5 30 30
4.0 ----
V lm Deg.
Color Temperature
CCT
IF = 350mA
----
6000
---
K
Chromaticity Coordinates
X,Y
IF = 350mA
---------
--
Luminous Flux Bins ˜Ta = 25 ¯
Bin Min Max C 10 15 D 15 20 E 20 25 F 25 30 G 30 40
Unit:lm
H 40 50
Dominant Wavelength- ‹ d ˜ Ta = 25 ¯
Bin Min Max B 8000K 10000K C 6500K 8000K D 5000K 6500K
Unit: nm
E 3500K 5000K
Page: 2 of 4
HEAT SLUG
Part No. S30NW6C
Chromaticity Coordinates Ranks (IF=20mA
WA
X 0.240 0.235 0.265 0.270
Ta=25
X
)
0.300 0.330 0.330
Y
0.210
0.248
0.295
0.240
WC
0.300
Y
0.280
0.335
0.360
0.310
WB
X
0.270
0.265
0.300
0.300
Y
0.240
0.295
0.335
0.280
WD
X
0.330
0.330
0.360
0.360
Y 0.310
0.360
0.385
0.345
CIE 1931 Chromaticity diagram
IF=20mA
T a=25¡ ã C
Y
x
Page: 3 of 4
HEAT SLUG
No. S30NW6C
Typical electrical/optical characteristic curves
FORWARD CURRENT Vs FORWARD VOLTAGE
2.5
Relative Light Output(%)
500
Forward Current(mA)
LUMINOUS FLUX Vs. FORWARD CURRENT
400
300
2.0
1.5
200 100 0 2.4 2.8 3.2 3.6 4.0 Forward Voltage(V) 4.4
1.0 0.5 0 0 100 200 300 400 IF-Forward Current (mA) 500
Vs. 500
Forward Current(mA)
FORWARD CURRENT DERATING CURVE
Relative Light Output(%)
AMBIENT TEMPERATURE
2.5 2.0 1.5 1.0 0.5 0 -40 -20 0 20 60 80 40 Ambient Temperature TA (¡ æ ) 100
400
300
200 100 0 20 40 60 80 100
Ambient Temperature T A (¡ æ )
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Page: 4 of 4
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