MAW-KZHG-SU2-L1P2 [DOMINANT]

PrimaxPlus;
MAW-KZHG-SU2-L1P2
型号: MAW-KZHG-SU2-L1P2
厂家: DOMINANT SEMICONDUCTORS    DOMINANT SEMICONDUCTORS
描述:

PrimaxPlus

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中文:  中文翻译
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TM  
DATA SHEET :  
DOMINANT  
PrimaxPlus  
250 InGaN White : MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Primax  
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.  
Superior corrosion resistance.  
Compliance to automotive standard; AEC-Q101.  
Applications:  
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Automotive: Exterior application: eg: DRL, Back up Lamp, Position  
Lamp.  
All rights reserved. Product specifications are subject to change without notice.  
09/11/2017 V3.0  
1
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Optical Characteristics at Tj=250C  
Part Ordering  
Color  
Luminous Flux @ 250mA (lm) Appx. 1.2  
Viewing  
Number  
Angle˚  
Min.  
Typ.  
Max.  
White  
51.7  
78.0  
99.4  
120  
MAW-KZHG-SU2-L1P2  
Electrical Characteristics at Tj=250C  
Vf @ If = 250 mA Appx. 3.1  
Part Number  
Min. (V)  
Max. (V)  
Typ. (V)  
MAW-KZHG  
2.9  
3.1  
3.4  
Absolute Maximum Ratings  
Maximum Value  
Unit  
DC forward current  
300  
mA  
Peak pulse current (tp<=10μs, Duty cycle=0.1)  
Reverse voltage  
600  
mA  
V
Not designed for reverse bias  
ESD threshold (HBM)  
4000  
150  
V
LED junction temperature  
Operating temperature  
Storage temperature  
˚C  
˚C  
˚C  
-40 … +125  
-40 … +125  
Thermal resistance  
- Real Thermal Resistance  
Junction / solder point, R  
(typ = 20)  
(typ = 14)  
25  
18  
K/W  
K/W  
th JS real  
- Electrical Thermal Resistance  
Junction / solder point, R  
th JS el  
(Mounted on dual sided FR4 in house PCB, total Cu  
2
area >900mm )  
09/11/2017 V3.0  
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TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
MAW-KZHG-L1P2, Color Grouping Appx. 2.1  
Color Bin Structure  
P2  
P1  
N2  
N1  
M2  
M1  
L2  
L1  
Bin  
1
2
3
4
Cx  
Cy  
Cx  
Cy  
Cx  
Cy  
Cx  
Cy  
Cx  
Cy  
Cx  
Cy  
Cx  
Cy  
Cx  
Cy  
0.3138  
0.2862  
0.3113  
0.2992  
0.3231  
0.3008  
0.3219  
0.3154  
0.3339  
0.3336  
0.3341  
0.3472  
0.3465  
0.3530  
0.3479  
0.3673  
0.3231  
0.3008  
0.3219  
0.3154  
0.3335  
0.3172  
0.3339  
0.3336  
0.3465  
0.3530  
0.3479  
0.3673  
0.3599  
0.3735  
0.3623  
0.3882  
0.3113  
0.2992  
0.3090  
0.3108  
0.3219  
0.3154  
0.3209  
0.3281  
0.3335  
0.3172  
0.3339  
0.3336  
0.3447  
0.3347  
0.3465  
0.3530  
0.3219  
0.3154  
0.3209  
0.3281  
0.3339  
0.3336  
0.3341  
0.3472  
0.3447  
0.3347  
0.3465  
0.3530  
0.3567  
0.3535  
0.3599  
0.3735  
L1  
L2  
M1  
M2  
N1  
N2  
P1  
P2  
InGaN wavelength is very sensitive to drive current. Operating at lower current is not recommended and may yield unpredictable  
performance current pulsing should be used for dimming purposed.  
09/11/2017 V3.0  
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TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Luminous Intensity Group at Tj=250C  
Luminous Flux (lm) Appx. 1.2  
Brightness Group  
S2  
S3  
T2  
T3  
U2  
51.7 ... 59.0  
59.0 ... 67.2  
67.2 ... 76.5  
76.5 ... 87.4  
87.4 ... 99.4  
Vf Binning (Optional)  
Appx. 3.1  
Vf Bin @ 250mA  
ForwardVoltage(V)
V0  
2.70 ... 3.00  
V1  
3.00 ... 3.30  
3.30 ... 3.60  
V2  
Please consult sales and marketing for special part number to incorporate Vf binning.  
09/11/2017 V3.0  
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TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Relative Luminous Flux Vs Forward Current  
Forward Current Vs Forward Voltage  
ФVV(250mA) = f(IF); Tj = 25°C  
IF = f(VF); Tj = 25°C  
330  
300  
270  
240  
210  
180  
150  
120  
90  
1.8  
1.6  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
0.2  
0.0  
60  
30  
0
0
30  
60  
90 120 150 180 210 240 270 300  
2.7 2.8 2.9 3.0 3.1 3.2 3.3 3.4 3.5 3.6 3.7  
Forward Current IF (mA)  
Forward Voltage VF (V)  
Relative Spectral Emission  
Maximum Current Vs Temperature  
Фrel = f(λ); Tj = 25°C; IF = 250mA  
IF=f(T)  
350  
300  
250  
200  
150  
100  
50  
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.0  
TS  
TS = Solder Point Temperature  
0
0
20  
40  
60  
80  
100  
120  
140  
350 400 450 500 550 600 650 700 750 800 850  
Wavelength λ (nm)  
Temperature T(°C)  
Chromaticity Coordinate Shift Vs Forward Current  
Allowable Forward Current Vs Duty Ratio  
∆Cx, ∆Cy = f(IF);Tj = 25°C  
( Tj = 25°C; tp ≤ 10μs )  
F
0.05  
0.04  
0.03  
0.02  
0.01  
0.00  
-0.01  
-0.02  
-0.03  
-0.04  
-0.05  
1000  
∆Cy  
∆Cx  
100  
10  
0.1  
1
10  
100  
0
30  
60  
90 120 150 180 210 240 270 300  
Duty Ratio, %  
Forward Current IF (mA)  
09/11/2017 V3.0  
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TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Radiation Pattern  
Relative Forward Voltage Vs Junction Temperature  
∆VF = VF - VF(25°C) = f(Tj); IF =250mA  
30°  
20°  
10°  
0°  
1.0  
0.5  
0.4  
0.3  
40°  
50°  
0.8  
0.6  
0.2  
0.1  
0.0  
-0.1  
-0.2  
-0.3  
-0.4  
-0.5  
0.4  
0.2  
60°  
70°  
80°  
90°  
0
-50 -30 -10 10  
30  
50  
70  
90 110 130 150  
Junction Temperature Tj(°C)  
Relative Luminious Flux Vs Junction Temperature  
Chromaticity Coordinate Shift Vs Junction Temperature  
ФV/ФV(25°C) = f(Tj); IF = 250mA  
∆Cx, ∆Cy = f(Tj); IF = 250mA  
1.4  
1.3  
1.2  
1.1  
1.0  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.05  
0.04  
0.03  
0.02  
∆Cy  
0.01  
0.00  
∆Cx  
-0.01  
-0.02  
-0.03  
-0.04  
-0.05  
-50 -30 -10 10  
30  
50  
70  
90 110 130 150  
-50 -30 -10 10  
30  
50  
70  
90 110 130 150  
Junction Temperature Tj(°C)  
Junction Temperature Tj(°C)  
09/11/2017 V3.0  
6
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
PrimaxPlus 250 InGaN White: MAW-KZHG-L1P2 Package Outlines  
Notes:  
Primary thermal path is through Cathode lead of LED package.  
General tolerance: +/- 0.1mm.  
Material  
Material  
Lead-frame  
Package  
Cu Alloy With Au Plating  
High Temperature Resistant Plastic  
Encapsulant  
Silicone  
Soldering Leads  
Au Plating  
Note: This product is Pb free  
09/11/2017 V3.0  
7
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Recommended Solder Pad  
09/11/2017 V3.0  
8
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Taping and orientation  
• Reels come in quantity of 1000 units.  
• Reel diameter is 180 mm.  
09/11/2017 V3.0  
9
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Packaging Specification  
09/11/2017 V3.0  
10  
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Packaging Specification  
Moisture sensitivity level  
Barcode label  
DOMINANT Opto Technologies  
ML TEMP  
(L) Lot No : lotno  
2
260˚C  
RoHS Compliant  
(P) Part No : partno  
(C) Cust No : partno  
(Q) Quantity : quantity  
Made in Malaysia  
(D) D/C : date code  
(G) Grouping : group  
(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  
1 completed bag (1000pcs)  
Average 1pc PrimaxPlus  
Weight (gram)  
Weight (gram)  
0.034  
0.034  
230 ± 10  
190 ± 10  
Cardboard  
Box  
TM  
DOMINANT  
For PrimaxPlus  
Cardboard Box  
Size  
Dimensions (mm)  
Empty Box  
Weight (kg)  
Reel / Box  
Super Small  
Small  
325 x 225 x 190  
325 x 225 x 280  
570 x 440 x 230  
570 x 440 x 460  
0.38  
0.54  
1.46  
1.92  
7 reels MAX  
11 reels MAX  
48 reels MAX  
96 reels MAX  
Medium  
Large  
09/11/2017 V3.0  
11  
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Recommended Pb-free Soldering Profile  
Classification Reflow Profile (JEDEC J-STD-020C)  
300  
275  
255-260˚C  
10-30s  
250  
225  
200  
Ramp-up  
3˚C/sec max.  
217˚C  
60-150s  
175  
150  
125  
100  
75  
Ramp-  
down  
6˚C/sec  
max.  
Preheat 60-180s  
480s max  
50  
25  
0
50  
100  
150  
200  
Time (sec)  
09/11/2017 V3.0  
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TM  
DOMINANT  
MAW-KZHG-L1P2  
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  
1.3  
1.4  
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).  
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).  
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).  
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).  
2.2  
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).  
09/11/2017 V3.0  
13  
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
Revision History  
Subjects  
Date of Modification  
Page  
Initial Release  
23 May 2017  
-
Update Thermal Resistance  
Update Graph: Maximum Current Vs Temperature  
05 Jun 2017  
2, 5  
Update Peak Pulse Current  
Update All Maximum Current Graph  
Update Appendix  
09 Nov 2017  
2, 5,13  
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 sys-  
tems without the express written approval from the Managing Director of DOMINANT Opto Technologies.  
09/11/2017 V3.0  
14  
TM  
DOMINANT  
MAW-KZHG-L1P2  
Opto Technologies  
Innovating Illumination  
About Us  
DOMINANT Opto Technologies is a dynamic company that is amongst the world’s leading automotive LED manu-  
facturers. 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 in-  
formation 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: sales@dominant-semi.com  

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