DOMINANT
Innovating Illumination
TM
DATA SHEET :
Opto Technologies
Primax
TM
AlInGaP : NAx-PHG
Primax
TM
Synonymous with function and performance, enter the Primax, the new
era of high intensity illumination in LED. With its high flux output and high
luminous intensity, Primax transcends today LED lightings technology and
how we perceive it. The small package outline (3.5 x 3.5 x 1.2 mm) and
high intensity make it an ideal choice for backlighting, signage, exterior
automotive lighting and decorative lighting.
Features:
>
>
>
>
>
>
>
Super high brightness surface mount LED
120° viewing angle.
Compact package outline (LxW) of 3.5 x 3.5 mm.
Ultra low height profile - 1.2mm.
Low thermal resistance.
Compatible to IR reflow soldering.
Environmental friendly; RoHS compliance.
Applications:
> Lighting: garden light, architecture lighting, general lighting. etc
> Backlighting (TFT LCD display), flash light, architectural lighting.
> Automotive: interior applications, eg: switches, telematics, climate control
system, dashboard, etc.
> Automotive: exterior applications, eg: signal lighting, Center High Mounted
Stop Light (CHMSL).
All rights reserved. Product specifications are subject to change without notice.
1
16/10/2013 V.1.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
AlInGaP: NAx-PHG
Optical Characteristics at Tj=25
0
C
Part Ordering
Number
NAA-PHG-Z1AB-1
NAY-PHG-Y2AA-1
Color
Amber
Yellow
Viewing
Angle˚
120
120
Luminous Intensity @ 140mA (mcd)
Min.
Typ.
Max.
4500.0
3550.0
7500.0
6000.0
11250.0
9000.0
NOTE
1. Luminous intensity is measured with an accuracy of ± 11%.
2. 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
0
C
Part Number
NAx-PHG
Vf @ If = 140 mA
Min. (V)
2.05
Vr @ Ir = 10 uA
Max. (V)
2.65
Typ. (V)
2.20
Min. (V)
12
Forward Voltages are tested using a current pulse of 1 ms and has an accuracy of ± 0.1 V.
Absolute Maximum Ratings
Maximum Value
DC forward current
Peak pulse current (tp<=10ms, Duty cycle=0.10)
Reverse Voltage
ESD threshold (HBM)
LED junction temperature
Operating temperature
Storage temperature
Thermal resistance
- Junction / ambient, R
th JA
- Junction / solder point, R
th JS
(Mounted on dual-sided FR4 in-house PCB)
100
50
K/W
K/W
200
1000
12
2000
125
-40 … +115
-40 … +125
Unit
mA
mA
V
V
˚C
˚C
˚C
2
16/10/2013 V.1.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
AlInGaP: NAx-PHG
Characteristics
Temperature coefficient of
dom (typ)
I
F
= 140mA; 0
˚C <= T <= 100 ˚C
Symbol
TC
dom (typ)
Part Number
NAA-PHG
NAY-PHG
Value
0.06
0.09
Unit
nm / K
Temperature coefficient of V
F (typ)
I
F
= 140mA; 0
˚C <= T <= 100 ˚C
TC
V
NAA-PHG
NAY-PHG
-3.3
-4.1
mV / K
Temperature coefficient of I
V (typ)
I
F
= 140mA; 0
˚C <= T <= 100 ˚C
TC
IV
NAA-PHG
NAY-PHG
-0.7
-0.9
%/K
Wavelength Grouping at Tj=25
0
C
Color
NAA; Amber
Group
Full
W
X
Y
Wavelength distribution (nm)
612 - 624
612 - 616
616 - 620
620 - 624
585 - 594
585 - 588
588 - 591
591 - 594
NAY; Yellow
Full
X
Y
Z
Dominant wavelength is measured with an accuracy of ± 1 nm at a drive current of 140mA
Luminous Intensity at Tj=25
0
C
Brightness Group
Y2
Z1
Z2
AA
AB
Luminous intensity is measured with an accuracy of ± 11%.
Luminous Intensity
If = 140mA (mcd)
3550.0 ... 4500.0
4500.0 ... 5600.0
5600.0 ... 7150.0
7150.0 ... 9000.0
9000.0 ... 11250.0
3
16/10/2013 V.1.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
AlInGaP: NAx-PHG
Vf Binning (Optional)
Vf Bin @ 140mA
V2
V3
V4
V5
Forward voltage, Vf is measured with an accuracy of ± 0.1 V.
Please consult sales and marketing for special part number to incorporate Vf binning.
Group
Forward Voltage (V)
Wavelength distribution (nm)
2.05 ... 2.20
2.20 ... 2.35
2.35 ... 2.50
2.50 ... 2.65
4
16/10/2013 V.1.0
DOMINANT
Innovating Illumination
TM
Relative Intensity Vs Forward Current
Opto Technologies
1.4
1.2
1.4
1
1.2
0.8
0.6
1
AlInGaP: NAx-PHG
Forward Voltage Vs Forward Current
2.5
Relative Intensity; Normalized at 140mA
Relative Intensity; Normalized at 140mA
Relative Intensity Vs Forward Current
Forward Voltage; V
Forward Voltage; V
Forward Voltage Vs Forward Current
2
2.5
1.5
2
1.5
1
0.8
0.4
0.6
0.2
0.4
0
0.2 0
0
0
50
100
150
200
0.5
1
0.5
0
0
0
50
100
150
200
Forward Current; mA
50
100
150
200
Forward Current; mA
0
50
100
150
200
Forward Current; mA
Forward Current; mA
Relative Intensity Vs Wavelength
Radiation Pattern
30°
20°
10°
0°
1.0
1
0.9
Multiple
Vs Wavelength
Relative Intensity
X-Y Plot
Variables
40°
0.8
50°
0.6
60°
70°
80°
90°
0.4
0.2
0
0.8
1
1
0.7
0.9
0.9
Amber
0.6
0.8
0.8
Yellow
0.5
0.7
0.7
0.4
0.6
0.6
Yellow
0.3
0.5
0.5
0.2
0.4
0.4
0.1
0.3
0.3
0
0.2
0.2
500
550
0.1
0.1
0
0
500
550
500
550
Amber
Red
Amber
Yellow
Relative Intensity
600
650
700
750
Wavelength; nm
600
600
650
650
700
700
750
750
Wavelength; nm
Wavelength
Maximum Current Vs Ambient Temperature
Multiple X-Y Plot
250
Maximum Current vs Solder-Point Temperature
Variables
Forward Current
250
Maximum Current Vs Ambient Temperature
Maximum Current vs Solder-Point Temperature
200
250
150
200
100
150
50
100
50
0
0
0
0
10 20 30 40 50 60 70 80 90 100 110 120
250
150
200
150
Rja=120KW
100
150
100
50
100
50
0
10 20
40 50 60 70 80 90 100 110 120
0
0
10 20 30
30 40 50 60 70 80 90 100 110 120
50
0
Ambient Temperature
Ambient Temperature
10 20 30 40 50 60 70 80 90 100 110 120
Forward Current; mA
Forward Current; mA
Forward Current; mA
Forward Current; mA
200
250
200
Solder-Point Temperature
10 20 30 40 50 60 70 80 90 100 110 120
Ambient Temperature
5
Solder-Point Temperature
16/10/2013 V.1.0