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DATA SHEET : DomiLED DomiLED With the intense colors that seem to glow with energy and its significant brightness, DomiLED white LED is a highly reliable design device. Its dynamic nature makes it perfect choice for lighthing applications, office and home applications and standard industrial applications. Features: > High brightness surface mount LED. > 120 viewing angle. > Small package outline (LxWxH) of 3.2 x 2.8 x 1.8mm. > Qualified according to JEDEC moisture sensitivity Level 2. > Compatible to both IR reflow soldering. > Environmental friendly; RoHS compliance. > Compliance to automotive standard; AEC-Q101. > Superior Corrosion Resistant. Applications: > Automotive: Interior application: eg: Switches, telematics, climate control system, dashboard. 2005 DomiLED is a trademark of. All rights reserved. Product specifications are subject to change without notice. 1

Optical Characteristics at Tj=25 0 C Part Ordering Number DDZB-HKG-V2W-2R3T DDZB-HKG-WX1-4R6T Viewing Angle 120 120 Luminous Intensity @ 20mA IV (mcd) Min. Typ. Max. 900.0 1400.0 1800.0 1125.0 1800.0 2240.0 Appx. 1.1 Electrical Characteristics at Tj=25 0 C Part Number Appx. 3.1 Vf @ If = 20 ma Vr @ Ir = 10 µa Min. (V) Typ. (V) Max. (V) Min. (V) DDZB-HKG 2.75 3.0 3.3 5.0 Absolute Maximum Ratings DC forward current Maximum Value 50 Unit ma Peak pulse current; (tp 1ms, Duty cycle = 0.1) 125 ma Reverse voltage; Ir max = 10µA 5 V ESD threshold (HBM) 2000 V LED junction temperature 125 C Operating temperature -40 +115 C Storage temperature -40 +125 C Power dissipation (at room temperature) 165 mw Thermal resistance - Real Thermal Resistance Junction / ambient, R th JA real Junction / solder point, R th JS real - Electrical Thermal Resistance Junction / ambient, R th JA el Junction / solder point, R th JS el (Mounting on FR4 PCB, pad size >= 16 mm2 per pad) 300 140 260 120 K/W K/W K/W K/W 2

DDZB-HKG, Sapphire Blue Color Grouping Appx. 2.1 Color Bin Structure 0.230 0.210 6R 6S 6T 0.190 5R 5S 5T 0.170 4R 4S 4T 0.150 3R 3S 3T 0.130 2R 2S 2T 0.110 0.150 0.160 0.170 0.180 0.190 0.200 0.210 Bin 2R 2S 2T 3R 3S 3T 4R 4S 4T 5R 5S 5T 1 2 3 4 0.1690 0.1437 0.1737 0.1421 0.1809 0.1399 0.1744 0.1632 0.1789 0.1617 0.1859 0.1595 0.1744 0.1632 0.1789 0.1617 0.1859 0.1595 0.1798 0.1827 0.1841 0.1813 0.1909 0.1791 0.1737 0.1421 0.1809 0.1399 0.1854 0.1386 0.1789 0.1617 0.1859 0.1595 0.1902 0.1581 0.1789 0.1617 0.1859 0.1595 0.1902 0.1581 0.1841 0.1813 0.1909 0.1791 0.1950 0.1778 0.1685 0.1225 0.1759 0.1203 0.1806 0.1191 0.1737 0.1421 0.1809 0.1399 0.1854 0.1386 0.1841 0.1813 0.1909 0.1791 0.1950 0.1778 0.1893 0.2008 0.1958 0.1988 0.1998 0.1975 0.1636 0.1242 0.1685 0.1225 0.1759 0.1203 0.1690 0.1437 0.1737 0.1421 0.1809 0.1399 0.1798 0.1827 0.1841 0.1813 0.1909 0.1791 0.1852 0.2021 0.1893 0.2008 0.1958 0.1988 3

Bin 6R 6S 6T 1 2 3 4 0.1852 0.2021 0.1893 0.2008 0.1958 0.1988 0.1893 0.2008 0.1958 0.1988 0.1998 0.1975 0.1945 0.2204 0.2007 0.2184 0.2046 0.2172 0.1906 0.2216 0.1945 0.2204 0.2007 0.2184 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. 4

Luminous Intensity Group at Tj=25 C Brightness Group V2 W1 W2 X1 Luminous Intensity IV (mcd) 900.0... 1125.0 1125.0... 1400.0 1400.0... 1800.0 1800.0... 2240.0 Appx. 1.1 5

, Forward Current I F (ma) Forward Current I F (ma) Allowable Forward Current I F ( ma ) TM Relative Luminous Intensity I rel Forward Current I F (ma) Relative Relative Luminous Luminous Intensity Intensity I rel I rel Relative Luminous Intensity Vs Forward Current Relative Luminous Intensity Vs Forward Current I V /I V (20mA) = f(i F ); Tj = 25 C I V /I V (20mA) = f(i F ); T j = 25 C 2.4 2.4 Relative Luminous Intensity Vs Forward Current 2.2 2.2 I V /I V (20mA) = f(i F ); T j = 25 C 2.4 2.0 2.0 2.2 1.8 1.8 2.0 1.6 1.6 1.8 1.4 1.4 1.6 1.2 1.2 1.4 1.0 1.0 1.2 0.8 0.8 1.0 0.6 0.6 0.8 0.4 0.4 0.6 0.2 0.2 0.4 0.0 0.0 0.2 0 0 5 5 10 10 15 15 20 20 25 25 30 30 35 35 40 40 45 45 50 50 Forward Forward Current Current I F (ma) I F (ma) Forward Current I F (ma) 0.0 Forward Current I F (ma) 0 5 10 15 20 25 30 35 40 45 50 Maximum Current Vs Temperature Forward I Maximum Current F = Current f (T) I Vs Temperature F (ma) 60 Maximum Current Vs Vs Temperature I F I=f(T) F F = f (T) f (T) 60 60 50 50 50 40 40 40 30 30 30 T a 20 T a 20 20 10 T a = Ambient Temperature 10 T s = Solder Point Temperature 10 T0 a = Ambient T a = Ambient Temperature Temperature T s = 0 Solder T 15 30 45 60 75 90 105 120 s = Solder Point Point Temperature Temperature 0 0 Temperature T( C) 0 010 20 15 30 3040 50 45 60 6070 80 75 90 90100 105 110 120 120 Temperature T( C) T a Temperature T( C) T( C) T s T s T s Relative Luminous Intensity I Relative Relative Luminous Luminous Intensity Intensity I rel rel I rel Forward Forward Current Current I F (ma) I F (ma) Relative Luminous Intensity I rel 50 45 50 40 45 35 40 30 35 25 30 20 25 15 20 10 15 5 10 Forward Current Vs Forward Voltage Forward Current Vs Forward Voltage I F = f(v F ); T j = 25 C I F = f(v F ); T j = 25 C 0 5 2.5 2.6 2.7 2.8 2.9 3.0 3.1 3.2 3.3 3.4 3.5 0.8 0.9 0.7 0.8 0.6 0.7 0.5 0.6 0.4 0.5 0.3 0.4 0.2 0.3 0.1 0.2 Forward Current Vs Forward Voltage I F = f(v F ); T j = 25 C Forward Voltage V F (V) F (V) 0 2.5 2.6 2.7 2.8 2.9 3.0 3.1 3.2 3.3 3.4 3.5 Relative Spectral Emission I rel = f(λ); Forward T j = 25 C; Voltage I F = V20mA F (V) Relative Spectral Emission 1.0 Relative Spectral Emission I rel = f(λ); T I 0.9 rel = f(λ); j = 25 C; I T j = 25 C; F = 20mA = 20mA 1.0 0.0 0.1 350 400 450 500 550 600 650 700 750 800 850 0.0 Wavelength λ (nm) 350 400 450 500 550 600 650 700 750 800 850 Wavelength λ (nm) Wavelength λ (nm) Chromaticity Coordinate Shift Vs Forward Current, = f(i F );T j = 25 C 0.050 0.040 F j 1000 Allowable Forward Current Vs Duty Ratio ( T j = 25 C; t p 1ms ) 0.030 0.020 0.010 0.000-0.010-0.020-0.030-0.040-0.050 0 5 10 15 20 25 30 35 40 45 50 Forward Current I F (ma) 100 10 0.1 1 10 100 Duty Ratio, % 6

, Relative Forward Voltage V F (V) TM 30 20 Radiation Pattern 10 0 1.0 Relative Forward Voltage Vs Junction Temperature V F = V F - V F (25 C) = f(t j ); I F =20mA 0.5 0.4 40 50 60 70 80 90 0.8 0.6 0.4 0.2 0 0.3 0.2 0.1 0.0-0.1-0.2-0.3-0.4-0.5-50 -30-10 10 30 50 70 90 110 130 Junction Temperature T j ( C) Relative Luminous Intensity Vs Junction Temperature I V /I V (25 C) = f(t j ); I F = 20mA 2.0 1.8 Chromaticity Coordinate Shift Vs Junction Temperature, = f(t j ); I F = 20mA 0.050 0.040 Relative Luminous Intensity I rel 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.030 0.020 0.010 0.000-0.010-0.020-0.030-0.040 0.0-50 -30-10 10 30 50 70 90 110 130 Junction Temperature T j ( C) -0.050-50 -30-10 10 30 50 70 90 110 130 Junction Temperature T j ( C) 7

TM TM DomiLED Package Outlines Note : Primary thermal path is through Cathode lead of LED package Note : Primary thermal path is through Cathode lead of LED package. Material Material Lead-frame Lead-frame Package Package Encapsulant Encapsulant Soldering Leads Soldering Leads Material Material Cu Alloy With Ag Plating Cu Alloy With Au Plating High Temperature Resistant Plastic, PPA High Temperature Resistant Plastic, PPA Silicone Resin Silicone Resin Sn-Sn Plating Au Plating 8

TM TM Recommended Solder Pad 9

M Taping and orientation Taping and orientation Reels come in quantity of 2000 units. Reels come in quantity of 2000 units. Reel diameter is 180 mm. Reel diameter is 180 mm. TM InGaN InGaN Warm Warm White: White: DDF-LJG 12 10 08/12/2016 V7.0

TM Packaging Specification InGaN Warm White: DDF-LJG Packaging Specification 11 13 08/12/2016 V7.0

Packaging Specification Moisture sensitivity level Barcode label (L) Lot No : lotno (P) Part No : partno (C) Cust No : partno ML TEMP 2 260 C RoHS Compliant (Q) Quantity : quantity (G) Grouping : group (D) D/C : date code Made in Malaysia (S) S/N : serial no Moisture absorbent material + Moisture indicator Reel Label The reel, moisture absorbent material and moisture indicator are sealed inside the moisture proof foil bag Average 1pc DomiLED/Multi DomiLED 1 completed bag (2000pcs) Weight (gram) 0.034 190 240 ± 10 TM Cardboard Box For DomiLED Cardboard Box Size Dimensions (mm) Empty Box Weight (kg) Reel / Box Super Small 325 x 225 x 190 0.38 9 reels MAX Small 325 x 225 x 280 0.54 15 reels MAX Medium 570 x 440 x 230 1.46 60 reels MAX Large 570 x 440 x 460 1.92 120 reels MAX 12

Recommended Pb-free Soldering Profile Classification Reflow Profile (JEDEC J-STD-020C) 300 275 255-260 C 10-30s 250 225 217 C Ramp-up 3 C/sec max. Temperature ( C) 200 175 150 125 100 75 Preheat 60-180s 50 480s max 25 0 50 100 150 200 Time (sec) 60-150s Rampdown 6 C/sec max. 13

Revision History Page - Subjects Initial release Date of Modification 08 Dec 2017 NOTE All the information contained in this document is considered to be reliable at the time of publishing. However, does not assume any liability arising out of the application or use of any product described herein. reserves the right to make changes to any products in order to improve reliability, function or design. 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. 14

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 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

About Us is a dynamic company that is amongst the world s leading automotive LED manufacturers. With an extensive industry experience and relentless pursuit of innovation, s state-of-art manufacturing and development capabilities have become a trusted and reliable brand across the globe. More information about, a ISO/TS 16949 and ISO 14001 certified company, can be found under http://www.dominant-semi.com. Please contact us for more information: 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