DOMINANT
Innovating Illumination
TM
DATA SHEET :
Opto Technologies
PrimaxPlus
100 InGaN White : MAW-PSC
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 (3.7 x 3.5 x 0.8 mm) and
high intensity make it an ideal choice for backlighting, signage, exterior
automotive lighting and decorative lighting.
Features:
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Super high brightness surface mount LED
120° viewing angle.
Compact package outline (LxW) of 3.7 x 3.5 mm.
Ultra low height profile - 0.8mm.
Low thermal resistance.
Compatible to IR reflow soldering.
Environmental friendly; RoHS compliance.
Applications:
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General lighting.
All rights reserved. Product specifications are subject to change without notice.
1
03/03/2014 V2.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
100 InGaN White: MAW-PSC
Optical Characteristics at Tj=25
0
C
Part Ordering
Number
MAW-PSC-8Q8R-1
Color
White
Viewing
Angle˚
120
CRI
Typ.
82
Luminous Flux @ 100mA (lm)
Min.
Typ.
Max.
34.8
40.0
48.4
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.
3. High color rendering index (CRI). Minimum CRI of 80.
Electrical Characteristics at Tj=25
0
C
Part Number
MAW-FSC
Vf @ If = 100 mA
Min. (V)
2.7
Typ. (V)
3.1
Max. (V)
3.3
V
r
@ I
r
= 10uA
Min. (V)
5
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
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,
total Cu area >900mm2)
90
18
K/W
K/W
180
200
5
2000
150
-40 … +125
-40 … +125
Unit
mA
mA
V
V
˚C
˚C
˚C
2
03/03/2014 V2.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
100 InGaN White: MAW-PSC
MAW-PSC, White Color Grouping
White Bin Structure
0.3700
5700K
0.3600
6500K
0.3500
2A
2C
0.3400
2E
1A
1C
2D
2F
1B
1D
2B
0.3300
1E
0.3200
1F
0.3100
BBL
0.3000
0.2900
0.3000
0.3100
0.3200
0.3300
0.3400
0.3500
Chromaticity coordinate groups are measured with an accuracy of ± 0.01.
Bin
2A
2B
2C
2D
2E
2F
1A
1B
1C
1D
1E
1F
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
Cx
Cy
1
0.3320
0.3565
0.3319
0.3446
0.3263
0.3513
0.3267
0.3399
0.3207
0.3462
0.3215
0.3353
0.3146
0.3422
0.3158
0.3317
0.3087
0.3363
0.3103
0.3263
0.3028
0.3304
0.3048
0.3209
2
0.3376
0.3616
0.3371
0.3493
0.3320
0.3565
0.3319
0.3446
0.3263
0.3513
0.3267
0.3399
0.3206
0.3481
0.3213
0.3371
0.3146
0.3422
0.3158
0.3317
0.3087
0.3363
0.3103
0.3263
3
0.3371
0.3493
0.3366
0.3369
0.3319
0.3446
0.3318
0.3327
0.3267
0.3399
0.3270
0.3285
0.3213
0.3371
0.3221
0.3261
0.3158
0.3317
0.3170
0.3212
0.3103
0.3263
0.3119
0.3162
4
0.3319
0.3446
0.3318
0.3327
0.3267
0.3399
0.3270
0.3285
0.3215
0.3353
0.3222
0.3243
0.3158
0.3317
0.3170
0.3212
0.3103
0.3263
0.3119
0.3162
0.3048
0.3209
0.3068
0.3113
Dominant color coordinate is measured with an accuracy of ± 0.01.
3
03/03/2014 V2.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
100 InGaN White: MAW-PSC
Luminous Intensity Group at Tj=25
0
C
Brightness Group
8Q
9Q
6R
7R
8R
Luminous intensity is measured with an accuracy of ± 11%.
Luminous Flux IV (lm)
34.8 ... 37.3
37.3 ... 39.8
39.8 ... 42.5
42.5 ... 45.2
45.2 ... 48.4
Vf Binning
Vf Bin @ 100mA
V1
V2
V3
V4
V5
V6
Forward voltage, Vf is measured with an accuracy of ± 0.1 V.
Group
Forward Voltage (V)
Wavelength distribution (nm)
2.70 ... 2.80
2.80 ... 2.90
2.90 ... 3.00
3.00 ... 3.10
3.10 ... 3.20
3.20 ... 3.30
4
03/03/2014 V2.0
DOMINANT
Innovating Illumination
TM
Opto Technologies
100 InGaN White: MAW-PSC
Forward Voltage
Forward
Forward
Forward Voltage
Current
Forward
Forward
Voltage
Forward
Current
Current
Current vs Forward
Vs Current
Forward
Vs Forward Current
Total
Voltage Vs
Vs
Current
Forward Voltage Vs
Vs Forward Current
Forward
Flux Vs
Voltage
Voltage
Variables
R Flux Y
Relative Flux Vs Current
Relative Intensity
Flux
Forward Current
Relative
Relative
Forward Current
Intensity
Relative
Vs
Vs
Forward Current
Relative Intensity
Flux
Forward
Current
Current
Relative Intensity
Vs
Vs Forward Current
Relative Intensity
Vs
Vs
Current
Vs Forward
Relative Intensity; Normalized
Relative Flux, Normalized at 100mA
Relative Intensity, Normalized at
at 60mA
Relative Intensity; Normalized at
175mA
Relative Intensity; Normalized at
60mA
60mA
Relative Intensity; Normalized at 150mA
2
2
1.8
1.8
1.6
1.6
1.4
1.4
1.2
1.2
1
Forward Current; mA
1
1.2
1
1
1
1
1
0.8
0.8
0.8
0.8
0.8
0.6
0.6
0.6
0.6
0.6
0.4
0.2
300
0.8
0.8
0.6
0.6
0.4
0.4
0.2
0.2
0
200
1.5
100
1
0.4
0.4
0.4
0.4
0.2
0.2
0.2
0.2
0
0
0
0
0
0
0
50
60
80
200
0
0
100 20
100
200 40
200
300
60
300
400
20
100
40
40
150
60
80
80
20
0
50
100
150
Forward Voltage
Forward
Flux, lm
V
Total
Voltage;
Forward Voltage
Forward Voltage (V)
1.8
1.8
1.8
2
1.8
1.6
1.6
1.8
1.6
1.6
1.4
1.4
1.6
1.4
1.4
1.4
1.2
1.2
1.2
1.2
Variables
R Flux Y
500
4
4
9
4
4
4
Variables
Variabl
400
3.5
3.5
8
3.5
3.5
3.5
3
Fwd Voltage Y
Fwd
2.5
2
0.5
3
7
3
3
3
2.5
6
2.5
2.5
2.5
5
2
2
2
2
4
1.5
1.5
1.5
1.5
3
11
1
1
2
0.5
0.5
0.5
1
0.5
0
0
0
0
0
0
100
100
100
400
0
0
2
0
0
200
Forward Current; mA
Forward Current; mA
Forward
Forward Current; mA
Current; mA
Forward Current, mA
IF (mA)
IF (mA)
0
0
0
20
100
40
3.5
200
60
4
60
80
4.5
80
100
0
40
100
2.5
50
20
20
100
40
60
3
150
300
80
200
400
100
0
50
100
150
200
0
Forward
Voltage; V
Current
Current;
Forward Current;
mA
Forward
(mA)
Forward
Forward
IF (mA)
Current,
mA
mA
Forward
Current; mA
IF (mA)
Relative Intensity Vs Wavelength
Relative Intensity
Forward Voltage
Relative Intensity
Wavelength
Relative Intensity Vs
Vs
Vs
Vs Wavelength
Forward Current
Wavelength
1
0.9
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0
11
350
1
0.9
0.9
0.9
300
0.8
0.8
0.8
0.7
0.7
0.7
250
0.6
0.6
0.6
200
0.5
0.5
0.5
150
0.4
0.4
0.4
0.3
0.3
0.3
100
0.2
0.2
0.2
Maximum Current Vs
Vs Ambient
Temperature
Maximum Current Vs Ambient Temperature
Forward
Maximum Current Vs Ambient
Temperature
Current Vs Ambient Temperature
Maximum Forward Current
Ambient Temperature
200
180
160
140
120
100
Forward Current, mA
Maximum Forward Current, mA
Forward Current, mA
Forward Current, mA
100
100
100
200
90
90
180
90
80
80
160
80
70
70
140
70
60
60
120
60
50
50
100
50
40
40
40
80
30
30
30
60
20
20
20
40
Rja=125K/W
Variables
Rja=90K/W
Relative Intensity
Relative Intensity
Forward Current, mA
Relative Intensity
80
60
40
20
550 500
1.8
700
2
750900
600
800
1.6
500
500
650 700600
600
2.2
1100
700
2.4
700
50
0.1
0.1
0.1
0
0
0
0
400
300
400 500
450
400
1.4
10
10
10
20
0
0
0
0
0
0 10
20 30 40
50 60 70 80 90 100
20 30 40
0 10
0
0
10
30
20
40
30
50
40
60
50
70
60
80
70
90
80
90 100
100
20
10
10 20 30
50 60 70
80
100
90 100
0
40 50 60 70 80 90
Wavelength;
Wavelength, nm
Wavelength; nm nm
nm
Forward Voltage, V
Wavelength,
Ambient Temperature
Ambient Temperature
Ambient Temperature
Ambient Temperature
Ambient Temperature
Max Pulse Current
Vs Wavelength
Max Pulse Current Vs Duty Cycle
Relative
Radiation Pattern
Duty Cycle
Intensity
vs Duty
Max Pulse Current vs
Cycle
300
1
30°
300
300
20°
10°
0°
1.0
Pulse Current; mA
Pulse Current; mA
Pulse Current; mA
0.9
250
250
250
0.8
40°
0.7
200
200
200
0.6
50°
150
0.5
150
150
0.4
60°
100
100
100
0.3
0.2
50
50
50
80°
0.1
0
90°
0
0
0
1
500
1
1
70°
0.8
0.6
0.4
0.2
0
550
600
10
650
10
10
700
750
100
800
100
100
5
03/03/2014 V2.0
Duty Cycle (%); Tp<=10ms
Wavelength,
Tp<=10ms
Duty Cycle
Tp<=10ms
Duty (%);
(%);
nm