DOMINANT
Innovating Illumination
TM
DATA SHEET:
Opto Technologies
Right Angle DomiLED
TM
AlInGaP : DSx-NSS
DomiLED
TM
TM
Synonymous with function and performance, the
DomiLED
series is
perfectly suited for a variety of cross-industrial applications due to its
small package outline, durability and superior brightness.
Features:
>
>
>
>
>
>
High brightness surface mount LED.
Designed for sideway illumination.
120° viewing angle.
Small package outline.
Qualified according to JEDEC moisture sensitivity Level 2.
Compatible to IR reflow soldering.
Applications:
>
Automotive:
Interior applications, eg: switches, telematics, climate control system,
dash board, etc.
Consumer Appliances: Backlighting illumination as in PDAs, LCD TV.
Lighting: channel light.
>
>
© 2005 DomiLED is a trademark of DOMINANT Opto Technologies.
All rights reserved. Product specifications are subject to change without notice.
1
10/09/2013 V7.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
AllnGaP : DSx-NSS
Optical Characteristics at Tj=25˚C
Part Ordering
Number
DSS-NSS-T2U-1
DSR-NSS-T2U-1
DSA-NSS-UV1-1
DSO-NSS-UV1-1
DSY-NSS-UV1-1
Color
Super red, 632nm
Red, 625nm
Amber, 615nm
Orange, 605nm
Yellow, 587nm
Viewing
Angle˚
120
120
120
120
120
Luminous Intensity @ IF = 20mA IV (mcd)
Min.
Typ.
Max.
355.0
355.0
450.0
450.0
450.0
420.0
420.0
600.0
600.0
600.0
715.0
715.0
900.0
900.0
900.0
NOTE
1. All part number above comes in a quantity of 2500 units per reel.
2. Luminous intensity is measured with an accuracy of ± 11%.
3. Wavelength binning is carried for all units as per the wavelength-binning table. Only one wavelength group is allowed for each reel.
Electrical Characteristics at Tj=25˚C
Vf @ If = 20mA
Part Number
DSx-NSS
Forward voltage, Vf is measured with an accuracy of ± 0.1 V.
Vr @ Ir = 10uA
Max. (V)
2.6
Min. (V)
1.8
Typ. (V)
2.1
Min. (V)
12
Absolute Maximum Ratings
Maximum Value
DC forward current
Peak pulse current
Reverse voltage
ESD threshold (HBM)
LED junction temperature
Operating temperature
Storage temperature
Power dissipation (at room temperature)
Thermal resistance
- Junction / ambient, R
th JA
- Junction / solder point, R
th JS
630
350
K/W
K/W
30
200
12
2
125
-40 … +100
-40 … +100
80
Unit
mA
mA
V
kV
˚C
˚C
˚C
mW
(Mounting on FR4 PCB, pad size >= 5 mm2 per pad)
2
10/09/2013 V7.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
AllnGaP : DSx-NSS
Characteristics
Symbol
Temperature coefficient of
dom (typ)
I
F
= 20mA; 0 ˚C <= T <= 85 ˚C
TC
dom (typ)
Part Number
DSS-NSS
DSR-NSS
DSA-NSS
DSO-NSS
DSY-NSS
Value
0.06
0.07
0.07
0.08
0.09
-3.9
-2.3
-2.2
-2.0
-1.9
-0.6
-0.6
-0.7
-0.9
-1.1
Unit
nm / K
Temperature coefficient of V
F (typ)
I
F
= 20mA; 0 ˚C <= T <= 85 ˚C
TC
V
DSS-NSS
DSR-NSS
DSA-NSS
DSO-NSS
DSY-NSS
DSS-NSS
mV / K
Temperature coefficient of I
V (typ)
I
F
= 20mA; 0 ˚C <= T <= 85 ˚C
%/K
TC
IV
DSR-NSS
DSA-NSS
DSO-NSS
DSY-NSS
Wavelength Grouping at Tj=25˚C
Color
DSS; Super red
DSR; Red
DSA; Amber
Group
Full
Full
Full
W
X
Wavelength distribution (nm)
625 - 640
620 - 630
610 - 621
610 - 615
615 - 621
600 - 612
600 - 603
603 - 606
606 - 609
609 - 612
582 - 594
582 - 585
585 - 588
588 - 591
591 - 594
DSO; Orange
Full
W
X
Y
Z
DSY; Yellow
Full
W
X
Y
Z
Dominant wavelength is measured with an accuracy ± 1nm
3
10/09/2013 V7.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
AllnGaP : DSx-NSS
Luminous Intensity Group at Tj=25˚C
Brightness Group
T2
U1
U2
V1
Luminous intensity is measured with an accuracy of ± 11%.
Luminous Intensity
IV (mcd)
355.0...450.0
450.0...560.0
560.0...715.0
715.0...900.0
Vf Bining (Optional)
Vf @ If = 20mA
V1
V2
V3
V4
V5
V6
1.80 ... 1.95
1.95 ... 2.10
2.10 ... 2.25
2.25 ... 2.40
2.40 ... 2.55
2.55 ... 2.70
Forward voltage, Vf is measured with an accuracy of ± 0.1V.
Please consult sales and marketing to incorporate special part number to incorporate Vf binning.
4
10/09/2013 V7.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
AllnGaP : DSx-NSS
Relative Luminous Intensity Vs Forward Current
Relative Intensity Vs Forward Current
Relative Intensity Vs Forward Current
2.4
Forward Current Vs Forward Voltage
Current
Forward Voltage Vs Forward
Forward Voltage Vs Forward Current
50
Relative Intensity; Normalized at 20mA
Relative Intensity, Normalized at 20mA
Relative Intensity; Normalized at 20mA
Relative Intensity
2.2
3
2
1.6
2.4
2.8
Forward Current, mA
1.8
2.5
2
40
2
1.4
1.2
1.6
1.2
Forward Voltage, V
V
Forward Voltage;
30
20
10
0
2
2.2
2.4
1.5
1
1
2
2
1.8
0.8
0.8
0.6
0.4
0.4
0.5
0.2
1.6
1.6
0
0
2.5
10
0
0
0
0
0
0
10
20
10
10
20
20
30
30
30
40
40
40
50
50
50
60
10
20
3
30
30
20
3.5
50
4
40
50
60
70
70
80
80
40
60
Forward Current, mA
Forward Current; mA
Forward Current, mA
Forward Voltage, V
Forward Current; mA
Forward Current, mA
Maximum Current Vs Ambient Temperature
Maximum Forward Current Vs Ambient Temperature
Forward Current Vs Ambient Temperature
60
35
25
1
0.9
0.8
Relative Intensity Vs. Wavelength
Relative Intensity Vs Wavelength
Relative Intensity Vs Wavelength
1
1
0.9
0.9
0.8
0.8
0.7
0.7
0.6
0.6
0.5
0.5
0.4
0.4
0.3
0.3
0.2
0.2
0.1
0.1
0
0
400
450 500
550
550
500
Forward Current; mA
Forward Current, mA
Forward Current, If
50
40
30
30
25
20
15
10
Orange
Yellow
Yellow
Relative Intensity
20
Amber
Red
Amber
Relative Intensity
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0
Super Red
Red
Super Red
15
20
10
10
5
5
0
0
0 10
20 30
40 50 60 70 80
80
90
90 100
20 30
40 50 60 70
100
0
0
10
10
20 30 40 50 60 70 80 90 100
500
550
600 650
650
700
600
600
750 800
650
700
700
750
800
750
Ambient Temperature
Ambient Temperature
Ambient temperature
Wavelength, nm
Wavelength; nm
Wavelength; nm
Maximum Pulse Current Vs Duty Cycle
30°
20°
10°
0°
Radiation Pattern
1.0
1000
Maximum Pulse Current; mA
40°
0.8
50°
0.6
100
60°
70°
0.4
0.2
80°
10
90°
0
1
10
100
5
10/09/2013 V7.0
Duty (%); Tp<=10us