DOMINANT D6RTB-YJG Multi domiled Datasheet

DOMINANT
Opto Technologies
Innovating Illumination
TM
DATA SHEET
Multi DomiLED
D6RTB-YJG
Multi DomiLED
Synonymous with function and performance, the Multi DomiLED series
is perfectly suited for a variety of cross-industrial applications due to its
small package outline, durability and superior brightness.
Features:
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High brightness tri-color surface mount LED.
Each color can be individually controlled
120° viewing angle.
Small package outline (LxWxH) of 3.2 x 3.0 x 1.7mm.
Qualified according to JEDEC moisture sensitivity Level 2.
Compatible to IR reflow soldering.
Environmental friendly; RoHS compliance.
Compliance to automotive standard; AEC-Q101.
Applications:
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Automotive: Interior applications, eg: switches, telematics,
climate control system, dashboard, etc.
Signs: full color video
Consumer & Communication: backlighting of LCDs
General Lighting: architectural lighting, decorative lighting
© 2005 DomiLED is a trademark of DOMINANT Opto Technologies.
All rights reserved. Product specifications are subject to change without notice.
1
16/01/2018 V2.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Optical Characteristics at Tj=25˚C
Part Ordering
Number
D6RTB-YJG-U3V3+U4V4+S3T3-1
Color, λdom (nm)
Chip #3
Chip #1 Chip #2
Red
True Green
Blue
625nm
528nm
452nm
Luminous Intensity @ If = 20mA IV (mcd) Appx. 1.1
Chip #1
Chip #2
Chip #3
500.0-900.0 650.0-1200.0 200.0-350.0
Electrical Characteristics at Tj=25˚C
Vr @ Ir = 10uA
Vf @ If = 20mA Appx. 3.1
Min. (V)
Typ. (V)
Max. (V)
Red
1.80
2.10
2.40
12
True Green
2.80
3.10
3.40
5
Blue
2.80
3.20
3.50
5
2
Min. (V)
16/01/2018 V2.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Absolute Maximum Ratings
Maximum Value
DC forward current
Red; AlInGaP=50;
Unit
mA
True Green, Blue; InGaN=50
Peak pulse current; (tp ≤ 10µs, Duty cycle = 0.005)
Red ; AlInGaP=200
Reverse voltage
True Green, Blue; InGaN=200
mA
Red; AlInGaP=12;
V
True Green, Blue; InGaN= 5
ESD threshold (HBM)
2000
V
LED junction temperature
125
˚C
Operating temperature
-40 … +115
˚C
Storage temperature
-40 … +125
˚C
Thermal resistance (1 chips on)
- Real Thermal Resistance
Junction / ambient, Rth JA real
Red
300
K/W
Blue
350
K/W
True Green
400
K/W
Junction / solder point, Rth JS real
Red
120
K/W
Blue
180
K/W
True Green
220
K/W
(Mounting on DOMINANT standard PCB)
Wavelength Grouping
Color
Group
Wavelength distribution (nm) Appx. 2.2
Red
Full
623.0 - 632.0
True Green
Full
520.0 - 535.0
Blue
A
520.0 - 525.0
B
525.0 - 530.0
C
530.0 - 535.0
Full
A
447.0 - 456.0
B
451.5 - 456.0
447.0 - 451.5
3
16/01/2018 V2.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Luminous Intensity Group at Tj=25˚C
Color
Red
True Green
Blue
Brightness Group
Luminous Intensity Appx. 1.1
IV (mcd)
U3
500.0 ... 700.0
V3
700.0 ... 900.0
U4
650.0 ... 900.0
V4
900.0 ... 1200.0
S3
200.0 ... 275.0
T3
275.0 ... 350.0
4
16/01/2018 V2.0
Opto Technologies
Innovating
Illumination
0.5
20
10
0.5
Relative Luminous Intensity Vs Forward Current
(Red)
0.0
Luminous
Vs Forward
0.0 Relative
Relative
Luminous
IntensityIntensity
Vs Forward
CurrentCurrent
0
10 (20mA)
20 f(I= f(I
30
40
50
Tj == 25°C
25°C
IV10
/IV(20mA)
0IVIV/I
30 (Red) 40
50
F); Tj (Red)
/IVV(20mA)
= f(I=
=);25°C
F
F); Tj20
2.0
1.0
2.0
1.0
1.5
1.5
0.5
0.5
1.0
0.0
0.5 0
10
20
0.0
0.5 0 10
10
20
20
30
30
40
40
50
Forward ICurrent
Forward
Current
(mA)I (mA)
Forward Current FI (mA) F
0
101.6
1.8
2.0
20
40
30
1.0
2.0
1.5
0.5
1.5
1.0
10
30
20
0.0
0.0
0
1.0 1.0
0.5
10
0.5 0
Relative Luminous Intensity
Irel Luminous Intensity Irel
Relative
30
40
50
30
40
50
Forward Current IF (mA)
Forward Current IF (mA)
0.0 Relative Luminous Intensity Vs Forward Current
0.5 0.5
0.0
Relative
Current
IV/IV(20mA)
= f(IF20
);Vs
Tj Forward
= 25°C30
(True
Green)
0 Luminous
10 Intensity
40
50
0
10
20
30
40
50
3.0 IV/IV(20mA) = f(IF); Tj = 25°C (True Green)
Forward Current IF (mA)
3.0
Forward
Current
IF (mA)
Forward Current
IF (mA)
0.0 0.0
0 2.5 0 10
10 20
20 30
30 40
40 50
50
2.5
Relative
Luminous Intensity Vs Forward Current
Forward
Current
I (mA)IF (mA)
Forward
Current
(Blue) F
2.0 Relative
Relative
Luminous
Intensity
Vs Forward
CurrentCurrent
Luminous
Intensity
Forward
IVI/I/IV(20mA)
= );f(I=TFf(I=);25°C
Tj =Vs
25°C
2.0
(20mA)
= f(I
I /I (20mA)
); T =(Blue)
25°C (Blue)
V V
3.0
3.0
1.5
1.5
2.5
10
20
20
V V
F
j
F
j
2.5
1.0
1.0
2.0
0.5
2.0
1.5
0.0
1.5
0.0
0
1.0 0 1.0
10
10
20
30
20
30
40
Forward Current IF (mA)
Forward Current IF (mA)
40
50
50
0.0
0
10
10 20
20 30
30 40
40 50
3050
2040
020
2.4
0
50
Forward
Current
IF (mA)
Forward
Current
IF (mA)
Forward
Current
I (mA)
2.5
2.5
el
l
3.0
2.4
2.6
2.6
ForwardForward
Current
VsVForward
Forward
VF (V) Voltage
VoltageVoltage
F (V)
(True Green)
Vs Forward
ForwardForward
CurrentCurrent
Forward
VoltageVoltage
=FVs
TGreen)
=
25°C
=IF
f(V
);f(V
Tj (True
=F);
25°C
j (True Green)
I = f(V I);F T
= 25°C
F
F
3.8
j
Forward Current Vs Forward Voltage
Forward Current Vs Forward Voltage
= 25°C
IF = f(VFI); T
=j f(V
); T (Red)
= 25°C (Red)
F
F
j
20
30
40
10
20
30
0
102.6
20 2.8
30
50
2.8
3.0
Forward
CurrentCurrent
Vs Forward
Voltage Voltage
Forward
Forward
f(V
); Vs
T
= 25°C
T
= 25°C
IF = f(VIFFI);F=
=j f(V
= j25°C
(Blue)
F Tj (Blue)
F);
20
40
10
30
0
202.4
2.6
0
2.6
2.6
2.8
2.8
3.0
3.2
3.0
3.2
3.4(V)
Forward Voltage V
Forward Voltage VF (V)
10
F
Relative
Luminous
Intensity
Vs Forward
Relative
Luminous
Intensity
Vs Forward
CurrentCurrent
IV/IV(20mA)
); Tj =(True
25°CGreen)
(True Green)
IV/IV(20mA)
= f(IF); =
Tj f(I
= F25°C
3.0
2.2
2.4
(Blue)
10
0
2.0
2.2
(V)
Forward
VoltageVV (V)
Forward
Voltage
Forward Voltage V (V) FF
3.0
3.2
3.4
3.6
3.8
3.2
3.4
3.6
3.8
Forward Voltage VF (V)
Forward Voltage VF (V)
Forward Current Vs Forward Voltage
0
10
10 Forward Current
0
Voltage
); TForward
Green)
j = 25°C
2.4
2.6IF = f(VFVs
2.8
3.0(True
3.2
3.4
3.6
2.4 50 2.6
3.0(True Green)
3.2
3.4
3.6
IF = f(VF2.8
); Tj = 25°C
Forward
Voltage
V
(V)
F
50
Forward
Voltage
Forward
Voltage
VF (V) VF (V)
0
0
1.6
1.8
1.8 2.0
2.0 2.2
2.2 2.4
2.42.6
2.6
40 1.6
Forward Current Vs Forward Voltage
40
ForwardForward
VoltageVoltage
VF (V) VF (V)
0.5
0.5
30
40
50
0
20
10
2.6
1030
0.5
Forward
Forward Current
IF Current
Forward
IF Current IF
1.0
30
50
40
Forward Current IF
1.5
0.5
50
Forward Current IF (mA)
1.5
j
1.8
2.0
Current Vs Forward Voltage
0 ForwardForward
Current
Voltage
f(VForward
25°C
(Blue)
I =Vs
F); Tj =3.2
2.6
3.4
3.6
2.8 IF =2.8
3.0
3.4
3.6
3.8
f(VF);F Tj 3.0
= 3.2
25°C
(Blue)
40
50
Forward Current IF (mA)
2.0
2.0
1.0
F
Forward
ForwardIFCurrent
IF Current IF
Forward Current
1.5
V V
2.5
1.5
2.6
40
50
Forward Current IF
2.5
2.5
j
10
20
50
Relative
Luminous
Intensity
Forward
Relative
Intensity
Vs);Forward
CurrentCurrent
2.5
ILuminous
/I (20mA)
= f(I
Tj Vs
= 25°C
V IVV/IV(20mA)
F = 25°C
(True Green)
IV/IV(20mA)
= f(IF); T=j =f(I25°C
Green)
F); Tj (True
3.0
2.0
Relative
Luminous Intensity Vs Forward Current
Relative Luminous Intensity Vs Forward Current
IV/IV(20mA)
= f(IF); =
Tj f(I
= 25°C
I /I (20mA)
); T =(Red)
25°C (Red)
2.5
F
F
0
Forward Current IF
Relative Luminous Intensity
Irel Luminous Intensity I
Relative
Relative Luminous
Intensity Irel
rel
RelativeIntensity
Luminous
Irel
Relative
Luminous
IrelIntensity
Irel
Luminous
Relative
Luminous
Intensity
IIntensity
Relative
rel
2.0
F
20
30
F
2.5
3.0
2.6
ForwardForward
VoltageVoltage
VF (V) V (V)
F
ForwardForward
CurrentCurrent
Vs Forward
VoltageVoltage
Vs Forward
= 25°C
IF = f(VFI); T
=j f(V
); T (Blue)
= 25°C (Blue)
30
40
0
10
1.6
50
(True Green)
Relative Luminous Intensity Irel
40
50
20
30
0.0 Relative Luminous Intensity Vs Forward Current
Relative Luminous
Intensity
Vs);Forward
Current
/IV(20mA)
=20
f(I
= 25°C
(Blue) 40 50
IV10
0 10
30 40
50
0
30 Tj(Blue)
F
IV/IV(20mA)
=20
f(IF); Tj = 25°C
3.0
Relative
Luminous
Intensity
Vs
Forward
Current
3.0
ForwardForward
CurrentCurrent
IF (mA) IF (mA)
Relative
Luminous Intensity
Irel I
Intensity
Luminous
Relative
rel
40
50
30
40
1.0
0.0
0.0
50
Forward
Forward Current
IF Current IF
1.5
2.5
1.6
Forward Current IF (mA)
2.5
1.5
D6RTB-YJG
Forward Current Vs Forward Voltage
(Red)
Vs Forward
Current Current
Vs Forward
Voltage Voltage
0 ForwardForward
1.8 IF = f(VFI2.0
2.4
2.6
=j =f(V
); );
T2.2
=T25°C
(Red)
IF T
=
f(V
= 25°C
F
);
25°C
1.6
1.8 F
2.0
2.2
2.4
F j(Red)
j
50
Forward
Forward Current
IF Current IF
Relative Intensity
Luminous
Relative Luminous
IrelIntensity Irel
Irel
RelativeLuminous
Luminous
Intensity
Irel
Intensity
Relative
Luminous
Intensity Irel
Relative
2.0
3.0
ForwardForward
CurrentCurrent
IF (mA) I (mA)
F
RelativeRelative
Luminous
Intensity
Vs Forward
CurrentCurrent
Luminous
Intensity
Vs Forward
IV/IV(20mA)
= f(IF); T=j =f(I25°C
(Blue)
IV/IV(20mA)
F); Tj = 25°C (Blue)
2.0
3.0
20
10
0
2.5
2.5
Forward Cu
TM
Forward Current IF
Relative Lu
Forward
Relative Lumi
1.0
1.0
DOMINANT
2.6
2.8
2.8
3.0
3.0
3.2
3.2
3.4
F
3.4
3.6
Forward
Voltage
VF F(V)
(V)
ForwardForward
VoltageVoltage
V (V) V
3.4
3.6
3.6
3.8
3.6
3.8
F
5
50
50
Forward
Vs Forward
Forward
CurrentCurrent
Vs Forward
Voltage Voltage
= f(V
F); Tj = 25°C (True Green)
IF = f(VFI);F T
j = 25°C (True Green)
16/01/2018 V2.0
TM
D6RTB-YJG
Maximum Current Vs Temperature
Opto Technologies
Innovating Illumination IF = f (T) (True Green)
Maximum Current Vs Temperature
IF = f (T) (Red)
60
Maximum
Temperature
Maximum Current
Current Vs Vs
Temperature
Ts
Maximum
Current
Vs
Temperature
Maximum
Vs Temperature
I(Red)
(Red)
IF=f(T)
F = f (T)Current
IF = f (T)IF(Red)
Ts
= f (T) (Red)
50
60
T
120
30
40
20
30
30
10
0
30
0.4
30
0.3
20
20
0.2
80
0 20
020
100
80
Temperature T(°C)
40
60
80
100
40
20
4060
6080
80100
Temperature T(°C)
Temperature
T(°C)
Temperature
T(°C) T(°C)
Temperature
120
120
120
100
120
Maximum
Current
Vs Temperature
Relative
Spectral
Emission
Maximum
=Vs
f (T)ITemperature
(Blue)
Irel Current
= f(λ); Tj =IF25°C;
F = 20mA
Current Vs
Temperature
60 Maximum
(Blue)
IF=f(T)
Maximum
Vs
Temperature
Maximum
Vs Temperature
IFCurrent
= f (T) Current
(Blue)
IF = f (T)I (Blue)
F = f (T) (Blue)
Ts
60
50
TTs
Red
Blue
True Green
Tsa
50
40
TTa
a
40
30
rel
Ta
20
10
120
120
Allowable Forward Current Vs Duty Ratio
Allowable
Vs Duty Ratio
( Tj =Forward
25°C;Current
t ≤ 10μs)
( T = 25°C; tp ≤ 10μs )
1000
p
Allowable Forward Current IF( mA )
∆Cx,∆Cx,
∆Cy ∆Cy
Chromaticity Coordinate Shift Vs Forward Current
∆Cx, ∆Cy =Vs
f(IF);Tj = 25°C
Chromaticity
Coordinate
Chromaticity
Coordinate Shift
Shift Vs Forward
ForwardCurrent
Current
0.005 Chromaticity
Coordinate
Shift Vs Forward Current
∆Cx,
∆Cx, ∆Cy
∆Cy==f(I
f(IFF);T
);Tj j== 25°C
25°C
∆Cx,
∆Cy
=
f(I
);T
=
25°C
0.005
F
j
0.005
0.005
0.004
0.004
0.004
0.004
0.003
∆Cy
0.003
0.003
0.003
0.002
∆Cy
∆Cy ∆Cy
0.002
0.002
100 0.002
0.001
Red, Blue and True Green
0.001
0.001
0.001
0.000
0.000
0.000
0.000
-0.001
∆Cx
-0.001
∆Cx
-0.001
∆Cx
-0.001
∆Cx
-0.002
-0.002
-0.002
-0.002
-0.003
-0.003
-0.003
10-0.003
-0.004
1
10
100
-0.004
-0.004 0.1
-0.004
-0.005
Duty
Ratio,
%
Duty Ratio, %
-0.005
-0.005
20
40
60
80
100
120
-0.005 020
00
40
60
80
100
120
20
40
60
80
100
120
0
20
40
60
80
100
120
Forward Current IF (mA)
Forward
(mA)
ForwardCurrent
CurrentIIFF (mA)
Forward Current
IF (mA)
∆Cx, ∆Cy
∆Cy Current I ( mA )
Forward
Allowable ∆Cx,
F
1.2
1.0
0.8
0.6
0.4
0.2
0.0
-50
Relative Spectral Emission
Relative Spectral Emission
I
= f(λ);
Tj =Vs
25°C;
I =20mA
20mA
Relative
rel Wavelength
I = f(λ);
T =Junction
25°C; I F =Temperature
30
20
j
T = Ambient Temperature
1.4
Junction Temperature T j(°C)
Ts
0.1
Ta = Ambient Temperature
10
10
10 Ts = Solder Point Temperature
T
=
Ambient
Temperature
0.0 Taa =0Ambient
Temperature
TPoint
Temperature
a = Ambient
TTs ==Solder
Temperature
Temperature
350
400
450
500
65080 700 100
750
0 TsPoint
20Point
40550 600
60
s Solder
= Solder
Temperature
00
0 20
Temperature
T(°C)100
00
40
60
80
120
Wavelength
λ
(nm)
120
020
2040
4060
6080
80100
100
Temperature
T(°C)
Temperature
T(°C)
Temperature
T(°C)
Temperature T(°C)
Red Blue
a
10-0.1
Ts = Solder Point Temperature
10
100
Ta = Ambient
Temperature
Ambient
Temperature
0TaPoint
20Temperature
40
60
80
100
120
-0.2TTsa==Solder
= Ambient
Temperature
T
=
Solder
Point
Temperature
s
True
Green
T
=
Solder
Point Temperature
0
s
Temperature
T(°C)
00
0 20
40
60
80
100
120
-0.3
0
120 120
0 20
2040
4060
6080
80100 100
Temperature T(°C)
Temperature
T(°C) T(°C)
Temperature
T(°C)
Temperature
-0.4
-50
-25
0
25
50
75
100
125
120
100
20
10
1.6
j
F
∆λRelative
- λdom (25°C)
= f(Tj); IF = 20mA
Spectral
Emission
1.0
dom = λdom
Relative
Spectral
Emission
Spectral
Emission
Irel = f(λ);Relative
Tj = 25°C;
IF = 20mA
8.0
Irel = f(λ);
T
=
25°C;
I
=
20mA
Irel =j f(λ); Tj = F25°C; IF = 20mA
1.0
0.9
1.0
1.0
0.9 6.00.8
0.9
Red
Blue
True Green
0.9
0.8 4.00.7
Red
0.8 Blue
True Green
0.8
Blue
True Green
Red
Blue
True GreenRed
0.7
0.6
0.7
0.7
2.0
0.6
0.5
0.6
Blue
0.6
0.0
0.5
0.4
0.5
0.5
0.4
-2.0
0.3
0.4
0.4
True Green
0.3
Red
0.2
0.3
0.3
-4.0
0.2
0.2
0.1
0.2
-6.0
0.1
0.1
0.0
0.1
350
400
450 500
550
600 650
700 750
0.0
-8.0
0.0
0.0400
350
450
500
550
600
650
700
750
Wavelength
λ
(nm)
Wavelength
λ
(nm)
-25
0
25 60050 650 75 700 100
350 -50
400
550
750 125
350 450
400 500
450 500
550
600 650
700
750
Wavelength
λλ (nm)
Wavelength
(nm)
(°C)
Junction
Temperature
T
j
Wavelength λ (nm)
rel
Forward
Current
Forward
Current
IF (mA)IF (mA)
Forward Current IF (mA)
Forward
Current
(mA)
Relative
Luminous
Intensity Irel
Forward
Current
IFIF(mA)
60
0.9
60
0.6
40
40
0.5
Ta = Ambient Temperature
Ts =20
Solder Point
40Temperature
60
0
Ta = Ambient
Temperature
Temperature T(°C)
Ambient
Temperature
0 TPoint
20 Temperature
40
60
TTs a==Solder
Temperature
a = Ambient
Ts = SolderTsPoint
Temperature
= Solder
Point Temperature
1.0
0.8
50
50
0.7
10
1.8
Ta
Irel
0
s
RelativeLuminous
LuminousIntensity
IntensityIrel
Irel
Relative
10
10
20 0.0
20
T20
a = Ambient Temperature
10
T = Solder Point Temperature
2.0
Ts
30
300.1 30
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thermal
profile
Low
thermal
thermal
Note
:Plating
Primary
Note
:With
Primary
:Resistant
Primary
thermal
thermal
thermal
path
path
isPlastic,
path
through
is through
is through
Catho
Ca
 height
Ultra
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low
 – Lead-frame
Ultra
height
low
height
low
height
profile
0.8
profile
mm.
0.8
mm.
0.8
mm.
Cu
Alloy
Cu
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With
Cu
Ag
Alloy
With
Plating
Ag
With
Plating
Ag
Plating
Lead-frame
Lead-frame

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
Ultra
low

Ultra
height
low
low
profile
profile
0.8
profile
0.8
–mm.
0.8
mm.
Cu Alloy
Cu Alloy
With
Cu Note
Ag
Alloy
With
Plating
Ag
With
Ag
Plating
Lead-frame
Lead-frame
Lead-frame
Material
Material
Material
Material
Material
Material
Cu
Alloy
Cu
Alloy
With
Cu
Ag
Alloy
With
Pl
Lead-frame
Lead-frame
Lead-frame
Cu
Alloy
Cu
Alloy
With
Cu through
Ag
Alloy
With
Plating
Ag
With
Plating
Ag Cath
Plating
Lead-frame
Lead-frame
Cu
Alloy
Cu
Alloy
With
Cu Ag
Alloy
With
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Ag
With
Plating
Ag
Plating
Lead-frame
Lead-frame
Note
Note
:mm.
Primary
Note
:mm.
Primary
: Primary
thermal
thermal
thermal
path
path
is
path
through
is
through
is
Cathode
Cathod
le
TM
TM mm.
TM –mm.
 Lead-frame
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profile
Ultra

low
Ultra
height
low
height
low
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height
profile
–3.5
0.8
profile
0.8
–
0.8
Ultra
 outline
Ultra

low
Ultra
height
low
height
low
height
profile
–
0.8
profile
–Lead-frame
0.8
–
mm.
0.8
TM
TM
TM
 package
Compact
 outline
Compact
 outline
Compact
package
package
outline
package
(LxW)
outline
(LxW)
of
3.7
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of
xmm.
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3.5
of
x
mm.
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3.5
xmm.
mm.
TM
TM
TM

Compact

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 Material
Compact
package
package
(LxW)
(LxW)
ofMaterial
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x
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mm.
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x
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Cu
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Cu
Alloy
With
Cu Ag
Alloy
With
Plating
Ag
With
Plating
Ag Plating
Lead-frame
Lead-frame
Lead-frame
Material
Material
Material
CuMaterial
Alloy
CuMaterial
Alloy
With
CuMaterial
Ag
Alloy
With
Plating
Ag
With
Plating
Ag
Plating
Lead-frame
Lead-frame
Lead-frame
TM
TM
TM
Material
Material
Material
Material
Material
Material
Material 
Multi DomiLED : D6RTB-YJG Package Outlines
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
InGaN
InGaN
White
InGaN
White
: InG
W
NP
Material
Material
Material
DOMINANT
DOMINANT
DOMINANT
Material
Material
Material
Note
Note
:outline
Primary
Note
:Technologies
Primary
: of
Primary
thermal
thermal
thermal
path
path
is
path
through
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through
is
through
Cathode
Cathode
lead
lead
of
lead
LED
of
LED
of
package
LED
pack
pN
Opto
Technologies
Technologies
InGaN
angle.
Compact
 Opto
Compact
 Opto
Compact
package
package
package
outline
(LxW)
(LxW)
of
(LxW)
3.7
ofmm.
x3.7
3.5
of
x3.7
mm.
3.5
xmm.
3.5
mm.Cathode
InGaN
InGaN
White
InGaN
White
:Materia
Whit
NPW
:M
Compact
 angle.
Compact
 angle.
Compact
package
package
package
outline
(LxW)
outline
(LxW)
(LxW)
3.7
ofoutline
x
3.7
3.5
ofoutline
x3.7
mm.
3.5
xmm.
3.5
Material
Opto
Opto
Technologies
Opto
Technologies
Technologies
Opto
Opto
Technologies
Opto
Technologies
Technologies
 angle.
120
 angle.
120
viewing
angle.
120
viewing
viewing

120

120
viewing

120
viewing
viewing
InGaN
InGaN
Warm
InGaN
Warm
White:
Warm
White:
DDF-LJG
White:
DDF-LJG
DDF-LJG
Material
Material
Material
Material
Material
Material
Material
Material
Material
Opto
Opto
Technologies
Opto
Technologies
Technologies
Material
Material
Material
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
Material
Material
Material
Material
Material
Material
Material
Material
Material
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
Material
Material
Material Super

120

120

viewing
120
viewing
angle.
viewing
angle.
angle.
120
high
120

viewing
120
viewing
angle.
viewing
angle.
angle.

Super
high
Super
brightness
high
brightness
brightness
surface
surface
mount
surface
mount
LED.
mount
LED.
LED.
Material
Material
Material

Super

Super
high
Super
high
brightness
high
brightness
brightness
surface
surface
mount
surface
mount
LED.
mount
LED.
LED.
Material
Material
Material
Material
Material
Material
TM
TM
TM
SPNova
SPNova
•Super
InGaN
• SPNova
InGaN
•White
InGaN
White
:LED
White
NPW-RSZ
NPW-RSZ
:White
NPW-RSZ
Package
Package
Package
Outlines
Outlines
Outlines
DOMINANT
DOMINANT
DOMINANT
Material
Material
Material
Material
Material
Material

Super

Super

high
brightness
high
brightness
brightness
surface
surface
surface
mount
LED
mount
LED
for
automotive
LED
for
automotive
for
automotive
applications.
applications.
applications.
SPNova
SPNova
• LED
InGaN
•DDF-LJG
InGaN
•:mount
White
InGaN
:Outlines
White
NPW-RSZ
:Outlines
NPW-RSZ
:Outlines
NPW-RSZ
Package
Package
Package
Outlines
Outlines
Outlines
 DomiLED
Super
 DomiLED
Super
•high
Super
brightness
brightness
brightness
surface
surface
surface
mount
for
automotive
LED
for
automotive
for
automotive
applications.
applications.
applications.
SPNova
SPNova
SPNova
•SPNova
InGaN
•high
InGaN
•mount
White
InGaN
White
: mount
White
NPW-RSZ
:Package
NPW-RSZ
:Package
NPW-RSZ
Package
Package
Package
Outlines
Outlines
DomiLED
InGaN
•high
InGaN
•high
Warm
InGaN
Warm
White:
Warm
White:
DDF-LJG
White:
DDF-LJG
Package
Outlines
175
175
InGaN
175
InGaN
White:
InGaN
White:
MBWW-FSC
White:
MBWW-FSC
MBWW-FSC
PRELIMINARY
PRELIMINARY
PRELIMINARY
OptoOpto
Technologies
Opto
Technologies
Technologies
TM
TM
TM
TM
TM
TM
TM
TM
TM
PrimaxPlus
100mA
White:
MAF-PSC
PrimaxPlus
100mA
WarmWarm
White:
MAF-PSC
TM
TM
TM
DOMINANT
DOMINANT
DOMINANT
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
UNDER
DEVELOPMENT
UNDER
DEVELOPMENT
DEVELOPMENT
PRELIMINARY
PRELIMINARY
PRELIMINARY UNDER
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
InGaN
InGaN
White:
InGaN
White:
PQW-SSG
White:
PQW-SSG
PQW-SSG
OptoOpto
Technologies
Opto
Technologies
Technologies
UNDER
UNDER
DEVELOPMENT
UNDER
DEVELOPMENT
DEVELOPMENT
Note
Note
: Primary
Note
: Primary
Primary
thermal
path
is through
path
is
through
isCathode
through
Cathode
lead
of
LED
lead
of LED
package.
of LED
package.
package.
Note
Note
: Primary
Note
: Primary
:Opto
thermal
Primary
thermal
path
thermal
path
is:thermal
through
path
is thermal
through
ispath
Cathode
through
Cathode
lead
Cathode
lead
of
LED
lead
ofCathode
LED
package.
oflead
LED
package.
package.
DOMINANT
DOMINANT
DOMINANT
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
DOMINANT
DOMINANT
DOMINANT
Opto
Technologies
Opto
Technologies
Technologies
TM
TM
TM
350
350
InGaN
350
InGaN
Yellow:
InGaN
Yellow:
Yellow:
MAZY-YZHG
Note
Note
: Primary
Note
: Primary
:thermal
Primary
thermal
path
thermal
path
is through
path
is
through
isCathode
through
Cathode
lead
of
LED
lead
of
LED
package.
of
LED
package.
NoteNote
: Primary
Note
: Primary
:thermal
Primary
thermal
path
thermal
path
is
through
path
is
through
is
Cathode
through
Cathode
lead
Cathode
lead
of
LED
lead
ofCathode
LED
package.
oflead
LED
package.
package.
Engineering
Engineering
Engineering
reference
reference
reference
data
data
are
not
data
are
verified.
not
are
verified.
not
The
verified.
specifications
Thepackage.
specifications
The
specifications
are
subject
are
subject
are
tosubject
to MAZY-YZHG
to MAZY-YZ
Opto
Opto
Technologies
Opto
Technologies
Technologies
Engineering
Engineering
Engineering
reference
reference
reference
data
data
are
not
are
data
verified.
not
are
verified.
not
The
verified.
specifications
The
specifications
The
specifications
are
subject
are notice.
subject
are
to
subject
to
to
change
change
without
change
without
without
notice.
notice.
Illumination
Innovating
Illumination
Illumination
Note
Note
: Primax
Primary
Note
: Primax
Primary
Primary
thermal
path
thermal
path
is through
path
is
through
is
Cathode
through
Cathode
lead
Cathode
lead
of
LED
lead
of
LED
package
of
LED
package
package
NoteNote
: Primary
Note
: Primary
:thermal
Primary
thermal
path
thermal
path
is:thermal
through
is
through
is
Cathode
through
Cathode
lead
Cathode
lead
of
LED
lead
of
LED
package
of
LED
package
package
Primax
• path
175
• Innovating
175
InGaN
• Innovating
175
InGaN
White:
InGaN
White:
MBWW-FSC
White:
MBWW-FSC
MBWW-FSC
Package
Package
Package
Outlines
Outlines
Outlines
PrimaxPlus
PrimaxPlus
PrimaxPlus
100 100
InGaN
100
InGaN
White:
InGaN
White:
PQW-SSG
White:
PQW-SSG
PQW-SSG
Package
Package
Package
Outlines
Outlines
Outlines
change
change
without
change
without
notice.
without
notice.
notice.
PrimaxPlus
PrimaxPlus
PrimaxPlus
350mA
350mA
350mA
White:
White:
White:
MAW-YZHG
MAW-YZHG
MAW-YZHG
PrimaxPlus
PrimaxPlus
PrimaxPlus
• 350
• 350
InGaN
• 350
InGaN
Yellow:
InGaN
Yellow:
Yellow:
MAZY-YZHG
MAZY-YZHG
MAZY-YZHG
Package
Package
Package
Outlines
Outlines
Outlines
PrimaxPlus
PrimaxPlus
PrimaxPlus
100mA
100mA
100mA
Warm
Warm
Warm
White:
White:
White:
MAF-PSC
MAF-PSC
MAF-PSC
TM
TM
TM
TM
TM
TM
TM
TM
DOMINANT
DOMINANT
DOMINANT
DOMINANT
Opto
Technol
ogies
Opto
Technol
o
gi
e
s
Opto
Technol
o
gi
e
s
Innovating
Illumination
Opto
Technol
o
gi
e
s
Innovating
Illumination
DOMINANT
DOMINANT
Opto
Technol
Opto
Technol
gies Innovating
Opto
Technol
oIllumination
giesogies
OptoInnovating
Technol
oIllumination
giesoInnovating
Illumination
Innovating
Illumination
lairetlaiMretaM
lairetlaiMretaM
lairetlaiMretaM
PrimaxPlus
PrimaxPlus
PrimaxPlus
• 180
• 180
InGaN
• 180
InGaN
White:
InGaN
White:
MBWW-KZHG
White:
MBWW-KZHG
MBWW-KZHG
Package
Package
Package
Outlines
Outlines
Outline
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
PrimaxPlus
PrimaxPlus
PrimaxPlus
100mA
100mA
100mA
Warm
Warm
Warm
White:
White:
White:
MAF-PSC
MAF-PSC
MAF-PSC
Opto
Opto
Technologies
Opto
Technologies
Technologies
PrimaxPlus
PrimaxPlus
PrimaxPlus
100mA
100mA
100mA
Warm
Warm
Warm
White:
White:
MAF-PSC
MAF-PSC
MAF-PSC
180 180
InGaN
180
InGaN
Wh
In
•InGaN
350
•White:
350
InGaN
•MAZY-YZHG
350
InGaN
Yellow:
InGaN
Yellow:
Yellow:
MAZY-YZHG
MAZY-YZHG
MAZY-YZHG
Package
Package
Package
Outlines
Outlines
Outlines
PrimaxPlus
PrimaxPlus
PrimaxPlus
•PrimaxPlus
350
•PrimaxPlus
350
InGaN
•PrimaxPlus
350
InGaN
Yellow:
Yellow:
Yellow:
MAZY-YZHG
MAZY-YZHG
Package
Package
Package
Outlines
Outlines
Outlines
PrimaxPlus
PrimaxPlus
PrimaxPlus
350mA
350mA
350mA
White:
White:
White:
MAW-YZHG
MAW-YZHG
MAW-YZHG
PrimaxPlus
PrimaxPlus
PrimaxPlus
350mA
350mA
350mA
White:
White:
White:
MAW-YZHG
MAW-YZHG
MAW-YZHG
DOMINANT
DOMINANT
DOMINANT
PrimaxPlus
PrimaxPlus
PrimaxPlus
100mA
100mA
100mA
Warm
Warm
Warm
White:
White
WhM
PrimaxPlus
PrimaxPlus
PrimaxPlu
35
TM
TM
TM
PrimaxPlus
PrimaxPlus
PrimaxPlus
• 350
• 350
•InGaN
350
InGaN
InGaN
Yellow:
Yellow:
Yellow:
MAZY
MA
change
change
without
change
without
notice.
without
notice.
notice.
change
change
without
change
without
notice.
without
notice.
notice.
PrimaxPlus
PrimaxPlus
PrimaxPlus
100
100
InGaN
100
InGaN
White:
InGaN
White:
PQW-SSG
White:
PQW-SSG
PQW-SSG
Package
Package
Package
Outlines
Outlines
Outlines
PrimaxPlus
PrimaxPlus
PrimaxPlus
100
100
InGaN
100
InGaN
White:
InGaN
White:
PQW-SSG
White:
PQW-SSG
PQW-SSG
Package
Package
Package
Outlines
Outlines
Outlines
Primax
•InGaN
175
• Innovating
175
InGaN
•not
175
InGaN
White:
InGaN
White:
MBWW-FSC
White:
MBWW-FSC
MBWW-FSC
Package
Package
Package
Outlines
Outlines
Outlines
Primax
Primax
Primax
• 175
•:Primax
175
InGaN
•:Primax
175
InGaN
White:
White:
MBWW-FSC
White:
MBWW-FSC
MBWW-FSC
Package
Package
Package
Outlines
Outlines
Outlines
Note
Note
Primary
Note
Primary
:thermal
Primary
thermal
path
thermal
path
is
through
path
is
through
is
Cathode
through
Cathode
lead
Cathode
lead
of
LED
lead
of
LED
package
of
LED
package
package
Innovating
Illumination
Innovating
Illumination
Illumination
change
change
without
change
without
without
notice.
notice.
Engineering
Engineering
Engineering
reference
reference
reference
data
data
are
not
are
data
verified.
not
are
verified.
not
The
verified.
specifications
The
specifications
The
specifications
are
subject
are
subject
are
to
subject
to
to
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
change
change
without
change
without
notice.
without
notice.
notice.
Engineering
Engineering
Engineering
reference
reference
reference
data
data
are
are
data
verified.
not
are
verified.
not
The
verified.
specifications
The
specifications
The
specifications
are
subject
are
subject
are
to
subject
to
to notice.
Opto
Opto
Technologies
Opto
Technologies
Technologies
OptoOpto
Technologies
Opto
Technologies
Technologies
Engineering
Engineering
Engineering
reference
reference
reference
data
data
are
not
data
are
verified.
not
are
verified.
not
The
verified.
specifications
The
specifications
The
specifications
are
subject
are
subject
are
tosubject
to MAZY-YZHG
to MAZY-YZ
Engineering
Engineering
Engineering
reference
reference
reference
data
are
data
are
verified.
not
are
verified.
not
The
verified.
specifications
The
specifications
The
specifications
are
subject
are
subject
are
to
subject
to
to
Note
Note
: Primary
Note
: Primary
:thermal
Primary
thermal
path
thermal
path
isdata
through
path
isnot
through
is
Cathode
through
Cathode
lead
Cathode
lead
of
LED
lead
of
LED
package.
of
LED
package.
package.
350
350
InGaN
350
InGaN
Yellow:
InGaN
Yellow:
Yellow:
MAZY-YZHG
350
350
InGaN
350
InGaN
Yellow:
InGaN
Yellow:
Yellow:
MAZY-YZHG
MAZY-YZHG
MAZY-YZHG
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
Note
Note
: Primary
Note
: Primary
:thermal
Primary
thermal
path
thermal
path
is
through
path
is
through
is
Cathode
through
Cathode
lead
Cathode
lead
of
LED
lead
of LED
package.
of LED
package.
package.
UNDER
UNDER
DEVELOPMENT
UNDER
DEVELOPMENT
DEVELOPMENT
UNDER
UNDER
DEVELOPMENT
UNDER
DEVELOPMENT
DEVELOPMENT
TM
TM
TM
OptoOpto
Technologies
Opto
Technologies
Technologies
TM
TM
TM
OptoOpto
Technologies
Opto
Technologies
Technologies
InGaN
InGaN
White:
InGaN
White:
PQW-SSG
White:
PQW-SSG
PQW-SSG
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
InGaN
InGaN
White:
InGaN
White:
PQW-SSG
White:
PQW-SSG
PQW-SSG
change
change
change
without
without
without
notice.
notice.
notice.
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
PrimaxPlus
PrimaxPlus
PrimaxPlus
100
100
InGaN
100
InGaN
InGaN
White:
White:
White:
PQW-SSG
PQW-SSG
PQW-SSG
Package
Package
Package
Outline
Outli
O
PRELIMINARY
PRELIMINARY
PRELIMINARY
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UNDER
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UNDER
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DEVELOPMENT
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Innovating
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Innovating
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UNDER
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UNDER
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DEVELOPMENT
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Innovating
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Innovating
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DOMINANT
DOMINANT
DOMINANT
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Primax
Primax
Primax
•PRELIMINARY
175
•PRELIMINARY
175
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175
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175
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Anode True Green
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Innovating
Innovating
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DomiLED
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175
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Opto
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Opto
Technologies
Technologies
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Opto
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Opto
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TM
Materials
24/09/13
24/09/13
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08/12/2016
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31/05/2013
31/05/2013
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-pv3.docx
-pv3.docx
-pv3.docx Page 1
Page
of 14
1Page
of 14
1 of 14
09/05/14
09/05/14
09/05/14
PrimaxPlus
PrimaxPlus
PrimaxPlus
350 InGaN
350 InGaN
350
White
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-pv3.docx
-pv3.docx
-pv3.docx
Page Page
1 ofSoldering
91
Page
ofSolderin
91 of
9 L
Lead
18/04/2016
18/04/2016
V1.018/04/2016
V1.0
V1.0 Soldering
8
8
8
7
Materials
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12/10/2016
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Opto
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Technologies
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Opto
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Technologies
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DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
High temperature resistant plastic, PPA
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Lead Frame
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8
16/01/2018 V2.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Recommended Solder Pad
9
16/01/2018 V2.0
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Package
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corrosion
corrosion
corrosion
robustness.
robustness.
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Package
Package
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 Low
 Low
thermal
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thermal
resistance.
resistance.
Package
Package
Package
TM
TM Plating
TM Platin
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Cu Alloy
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Cu High
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low
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height
low height
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package
package
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package
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TM
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DOMINANT
DOMINANT
DOMINANT S
DomiLED
DomiLED
DomiLED
• InGaN
• InG
•
Opto
Opto
Technologies
Opto
Technologies
Technologies
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
Material
Mater
M
DOMINANT
DOMINANT
DOMINANT
Innovating
Innovating
Innovating
Illumination
Illumination
Illumination
Opto
Opto
Technologies
Opto
Technologies
Opto
Technologies
Technologies
Technologies
Technologies
Compact
 Opto
Compact
 Opto
Compact
package
package
package
outline
outline
(LxW)
outline
(LxW)
of
(LxW)
3.7
of
x3.7
3.5
of
x3.7
mm.
3.5
xm
3
Opto
Opto
Technologies
Opto
Technologies
Technologies
 Opto
120
 Technologies
120
viewing
 Opto
120
viewing
angle.
viewing
angle.
angle.
InGaN
InGaN
Warm
InGaN
War
W
In
Opto
Opto
Technologies
Technologies
Material
Material
Material
DOM
DO
Opto
Technologies
Opto
Technologies
Technologies
Opto
Opto
Technologies
Opto
Technologies
Technologies
PrimaxPlus
PrimaxP
Prima
Material
Material
Material
Innovating
120
Innovating
120
viewing
120
viewing
angle.
viewing
angle.
angle. DOMINAN
DOMIN
DOMI
Material
Material
Material
 Super
 Super
high
Super
high
brightness
high
brightness
brightness
surface
surface
mount
surface
mount
LED.
mount
LED.
LED.
Material
Material
Material
Innovating
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Illumination
Illumination
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Opto
Tech
Tec
T
Material
Material
Material
Taping and orientation
SPNova
SPNova
SPNova
• InGaN
• InGaN
•White
InGaN
White
:brightness
White
NPW-RSZ
:high
NPW-RSZ
:brightness
Package
Package
Package
Outlines
Outlines
Outli
DOMINANT
DOMINANT
DOMINANT
SPNova
SPNova
SPNova
•Super
InGaN
• SPNova
InGaN
•White
InGaN
White
:surface
White
NPW-RSZ
NPW-RSZ
:White
NPW-RSZ
Package
Packa
P
DOMINANT
DOMINANT
DOMINANT
E
Material
Material
Material
Opto
Opto
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Techno
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Super
Super
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high
high
brightness
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surface
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for
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for
a
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InGaN
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White
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White
NPW-RSZ
:Outlin
NPW:MB
N
DomiLED
DomiLED
• InGaN
• InGaN
•Warm
InGaN
Warm
White:
Warm
White:
DDF-LJG
White:
DDF-LJG
Package
Package
Package
Outlines
Outlines
Outlines
175
175
InGaN
175
InGaN
White:
InGaN
White:
MBWW
White
DomiLED
DomiLED
DomiLED
• InGaN
•InGaN
•Warm
InGaN
Warm
White:
Warm
White:
DDF-LJG
White:
DDF-LJG
Package
Package
Package
Outlines
Ou
175
175
InGaN
175
InG
PRELIM
P
OptoOpto
Technologies
Opto
Technologies
Technologies
OptoDomiLED
Opto
Technologies
Opto
Technologies
Technologies
Engineering
Engineering
Engineering
reference
reference
referenc
data
d
Innovating
Innovating
Innovating
Illumina
Illum
Primax
Primax
Primax
•
175
•
175
•
InGaN
175
InGaN
InGaN
White
Wh
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
UNDER
UNDE
DEV
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Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
PRELIMINARY
PRELIMINARY
PRELIMINARY
PRELIMINARY
PRELIMINARY
PRELIMINA
PrimaxPlus
PrimaxPlus
PrimaxPlus
100
100
InGaN
100
InGaN
InGaN
White:
White:
Wh
PQ
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
InGaN
InGaN
White:
InGaN
White:
PQW-SSG
White:
PQW-S
PQ
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
InGaN
InGaN
White
InGa
W
OptoOpto
Technologies
Opto
Technologies
Technologies
OptoOpto
Technologies
Opto
Technologies
Technologies
UNDER
UNDER
DEVELOPMENT
UNDER
DEVELOPMENT
DEVELOPMENT
UNDER
UNDER
DEVELOPMENT
UNDER
DEVELOPME
DEVEL
Note
Note
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Primary
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Primary
:
thermal
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thermal
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thermal
path
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path
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is
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through
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lead
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lead
of
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lead
of
LED
packag
of
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DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
DOMINANT
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
DOMINANT
DOMINANT
DOMINANT
Opto
Opto
Technologies
Opto
Technologies
Technologies
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
TM
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MT
MT
TM
TM
TM
PrimaxPlus
PrimaxPlus
PrimaxPl
1
DOMINANT
DOMINANT
DOMINANT
PrimaxPlus
PrimaxPlus
PrimaxPlus
350mA
350mA
350mA
White:
White:
White:
MAW-YZHG
MAW-YZ
MAW
PrimaxPlus
PrimaxPlus
PrimaxPlus
350mA
350mA
350mA
White:
White
Wh
M
PrimaxPlus
PrimaxPlus
PrimaxPlus
•PrimaxPlus
350
•PrimaxPlus
350
InGaN
•PrimaxPlus
350
InGaN
Yellow:
Yellow:
Yellow:
MAZY-YZHG
MAZY-YZHG
Package
Package
Package
Outlines
Outlines
Outline
•InGaN
350
•White:
350
InGaN
•MAZY-YZHG
350
InGaN
Yellow:
InGaN
Yellow:
Yellow:
MAZY-YZHG
MAZY-YZHG
MAZY-YZHG
Package
Packag
Pac
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PrimaxPlus
PrimaxPlus
PrimaxPlus
100mA
100mA
100mA
Warm
Warm
Warm
White:
White:
MAF-PSC
MAF-PSC
MAF-PSC
Opto
Opto
Technologies
Opto
Technologies
Technologies
PrimaxPlus
PrimaxPlus
PrimaxPlus
100mA
100mA
100mA
Warm
Warm
Warm
White:
White:
White:
MAF-PSC
MAF-PSC
MAF-PSC
TM
TM
TM
Innovating
Innovating
Illumination
Innovating
Illumination
Illumination
PrimaxPlus
PrimaxPlus
PrimaxPlus
• 180
• 180
InGaN
• 180
InGaN
White:
InGaN
White
MB
W
MT
MT
MT
MT
TNATNIAMNOIMDOD
TseNigoATsloeNnighIoAclMeoNTnhOoIctMpeDTOOTotNpDOATNIAMNOIMDOD
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350
350
InGaN
350
InGa
Y
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Note
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Primary
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path
thermal
path
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through
path
isnot
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is
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lead
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Engineering
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reference
reference
data
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Opto
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Opto
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Opto
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approval to Primax
change
the
design
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new
proposal
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Innovating
Innovating
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Innovating
Illumination
Innovating
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Note
Note
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Note
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:thermal
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thermal
path
thermal
path
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through
path
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through
is
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lead
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lead
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lead
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LED
package
of
LED
package
package
Primax
Primax
• 175
•:Primax
175
InGaN
•:Primax
175
InGaN
White:
White:
MBWW-FSC
White:
MBWW-FSC
MBWW-FSC
Package
Package
Package
Outlines
Outlines
Outlines
Primax
•InGaN
175
• Innovating
175
InGaN
•not
175
InGaN
White:
InGaN
White:
MBWW-FSC
White:
MBWW-FSC
MBWW-FSC
Package
Package
Package
Outlines
Outlines
Outlines
PrimaxPlus
PrimaxPlus
PrimaxPlus
100
100
InGaN
100
InGaN
White:
InGaN
White:
PQW-SSG
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Package
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Outlines
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PrimaxPlus
PrimaxPlus
PrimaxPlus
100
100
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100
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White:
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White:
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24/09/13
24/09/13
24/09/13
PrimaxPlus
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100 InGaN
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24/09/13
24/09/13
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Encapsulant
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09/05/14
09/05/14
09/05/14
PrimaxPlus
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-pv3.docx
-pv3.docx
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09/05/14
09/05/14
09/05/14
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18/04/2016
18/04/201
V1.01
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Note
: Prima
Note
: Pr
Soldering
Soldering
Leads
Soldering
Leads
Leads
7
7
7
7
7
7
Note: This
Note:
product
This
Note:
product
isThis
Pb free
product
is Pb free
is Pb free
Note:Note:
ThisNote:
product
This product
This
is product
Pbisfree
Pb is
free
Pb free
Note:Note:
ThisNote:
product
This product
This
is product
Pbisfree
Pb is
free
Pb free
Soldering
Solder
So
10
Note:Note:
ThisNote:
product
This product
This
is pr
Pb
16/01/2018 V2.0
Material
Material
Material 
 Super
Super
Super
highhigh
brightness
high
brightne
brigh
DOMINANT
Opto
Technologies
DOMINANT
Innovating Illumination
TM
D6RTB-YJG
AllnGaP : DDx-xRS
TM
Opto Technologies
Innovating Illumination
Packaging Specification
Packaging Specification
11
10
16/01/2018
V2.0
28/10/2010
V8.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Packaging Specification
Moisture sensitivity level
Barcode label
DOMINANT Opto Technologies
(L) Lot No : lotno
ML TEMP
2 260˚C
RoHS Compliant
(P) Part No : partno
(C) Cust No : partno
(Q) Quantity : quantity
(G) Grouping : group
(D) D/C : date code
Made in Malaysia
(S) S/N : serial no
Reel
Label
Moisture absorbent material +
Moisture indicator
The reel, moisture absorbent material and moisture indicator are
sealed inside the moisture proof foil bag
Weight
Weight(gram)
(gram)
Average 1pc DomiLED/Multi DomiLED
1 completed bag (1000pcs)
0.034
0.034
240 ± 10
190
10
Cardboard
Box
DOMINANT TM
For Multi DomiLED
Cardboard Box
Size
Dimensions (mm)
Empty Box
Weight (kg)
Reel / Box
Super Small
325 x 225 x 190
0.38
7 reels MAX
Small
325 x 225 x 280
0.54
11 reels MAX
Medium
570 x 440 x 230
1.46
48 reels MAX
Large
570 x 440 x 460
1.92
96 reels MAX
12
16/01/2018 V2.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Recommended Pb-free Soldering Profile
Classification Reflow Profile (JEDEC J-STD-020C)
300
255-260˚C
10-30s
275
250
217˚C
225
Temperature (˚C)
Ramp-up
3˚C/sec max.
200
60-150s
175
150
125
Rampdown
6˚C/sec
max.
100
75
Preheat 60-180s
50
25
480s max
0
50
100
150
200
Time (sec)
13
16/01/2018 V2.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Revision History
Page
Subjects
Date of Modification
-
Initial release
01 Nov 2017
2
Typo Error on True Green Vf (Max)
16 Jan 2018
NOTE
All the information contained in this document is considered to be reliable at the time of publishing. However, DOMINANT
Opto Technologies does not assume any liability arising out of the application or use of any product described herein.
DOMINANT Opto Technologies reserves the right to make changes to any products in order to improve reliability, function
or design.
DOMINANT Opto Technologies products are not authorized for use as critical components in life support devices or systems
without the express written approval from the Managing Director of DOMINANT Opto Technologies.
14
16/01/2018 V2.0
DOMINANT
TM
D6RTB-YJG
Opto Technologies
Innovating Illumination
Appendix
1)
Brightness:
1.1
Luminous intensity is measured with an internal reproducibility of ± 8 % and an expanded uncertainty of
± 11 % (according to GUM with a coverage factor of k=3).
1.2
Luminous flux is measured with an internal reproducibility of ± 8 % and an expanded uncertainty of ± 11 %
(according to GUM with a coverage factor of k=3).
1.3
Radiant intensity is measured with an internal reproducibility of ± 8 % and an expanded uncertainty of
± 11 % (according to GUM with a coverage factor of k=3).
1.4
Radiant flux is measured with an internal reproducibility of ± 8 % and an expanded uncertainty of ± 11 %
(according to GUM with a coverage factor of k=3).
2)
Color:
2.1
Chromaticity coordinate groups are measured with an internal reproducibility of ± 0.005 and an expanded
uncertainty of ± 0.01 (accordingly to GUM with a coverage factor of k=3).
2.2
DOMINANT wavelength is measured with an internal reproducibility of ± 0.5nm and an expanded uncertainty
of ± 1nm (accordingly to GUM with a coverage factor of k=3).
3)
Voltage:
3.1
Forward Voltage, Vf is measured with an internal reproducibility of ± 0.05V and an expanded uncertainty of
± 0.1V (accordingly to GUM with a coverage factor of k=3).
15
16/01/2018 V2.0
DOMINANT
TM
Opto Technologies
D6RTB-YJG
Innovating Illumination
About Us
DOMINANT Opto Technologies is a dynamic company that is amongst the world’s leading automotive LED manufacturers. With an extensive industry experience and relentless pursuit of innovation, DOMINANT’s state-of-art
manufacturing and development capabilities have become a trusted and reliable brand across the globe. More information about DOMINANT Opto Technologies, a ISO/TS 16949 and ISO 14001 certified company, can be found
under http://www.dominant-semi.com.
Please contact us for more information:
DOMINANT Opto Technologies Sdn. Bhd.
Lot 6, Batu Berendam, FTZ Phase III, 75350 Melaka, Malaysia
Tel: (606) 283 3566 Fax: (606) 283 0566
E-mail: [email protected]
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