DSX-DSS DOMINANT | Alldatasheet

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03/10/2016 V6.01 Features: > High brightness surface mount LED. > Designed for sideway illumination. > 120° viewing angle. > Small package outline. > Qualified according to JEDEC moisture sensitivity Level 2. > Compatible to IR reflow soldering. > Environmental friendly; RoHS compliance. > Compliance to auntomotive standard; AEC-Q101. > Passed Corrosion Resistant Test. Appx. 4.1 DomiLED Synonymous with function and performance, the DomiLED TM series is perfectly suited for a variety of cross-industrial applications due to its small package outline, durability and superior brightness. DATA SHEET: Right Angle DomiLED InGaN : DSx-DSS © 2005 DomiLED is a trademark of DOMINANT Opto Technologies. All rights reserved. Product specifications are subject to change without notice. Applications: > Automotive: Interior applications, eg: switches, telematics, climate control system, dash board, etc. > Consumer Appliances: LCD illumination as in PDAs, LCD TV. > Display: full color display video notice board. > Industry: white goods (eg: Oven, microwave, etc.). DOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.02 DSB-DSS-ST2-1 DST-DSS-WX1-1 DST-DSS-VW1-1 Blue, 470nm True Green, 525nm True Green, 525nm 120 120 120 180.0 1125.0 715.0 InGaN : DSx-DSS Part Ordering Number Color Viewing Angle˚ Luminous Intensity @ IF = 20mA IV (mcd) Appx. 1.1 Min. Typ. Max. 220.0 1700.0 950.0 450.0 2240.0 1400.0 Optical Characteristics at Tj=25˚C Typ. (V) Vf @ If = 20mA Appx. 3.1 Electrical Characteristics at Tj=25˚C Max. (V) Vr @ Ir = 10uA Min. (V)Part Number DSx-DSS 3.2 3.8 5.0 Min. (V) 2.9 Unit Absolute Maximum Ratings Maximum Value DC forward current Peak pulse current; (tp ≤ 10µs, Duty cycle = 0.005) Reverse voltage; Ir (max) = 10uA ESD threshold (HBM) LED junction temperature Operating temperature Storage temperature Power dissipation (at room temperature) Thermal resistance - Junction / ambient, R th JA - Junction / solder point, R th JS (Mounting on FR4 PCB, pad size >= 5 mm 2 per pad) 100 1000 120 -40 … +100 -40 … +100 460 240 mA mA V V mW K/W K/W DOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.03 InGaN : DSx-DSS Group Wavelength Grouping Wavelength distribution (nm) Appx. 2.2Color DSB;Blue DST; True Green Full A B Full A B C 465 - 475 465 - 470 470 - 475 520 - 535 520 - 525 525 - 530 530 - 535 Vr @ Ir = 10uA DOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.04 InGaN : DSx-DSS Brightness Group Luminous Intensity Appx. 1.1 IV (mcd) Luminous Intensity Group at Tj=25˚C DOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.05 InGaN : DSx-DSS DOMINANT Opto Technologies Innovating Illumination TM Forward Current Vs Forward Voltage IF = f(VF); Tj = 25°C Forward Voltage VF (V)Forward Current IF (mA) Forward Current I F (mA) Relative Luminous Intensity I rel Relative Luminous Intensity Vs Forward Current IV/IV(20mA) = f(IF); Tj = 25°C Forward Current I F (mA) Temperature T(°C) Maximum Current Vs Temperature IF=f(T) Relative Spectral Emission Irel = f(λ); Tj = 25°C; IF = 20mA Relative Luminous Intensity I rel Wavelength λ (nm) Allowable Forward Current I F( mA ) Duty Ratio, % Allowable Forward Current Vs Duty Ratio ( Tj = 25°C; tp ≤ 10μs) Forward Current IF (mA) Relative Wavelength Shift Vs Forward Current λdom = f(IF); Tj = 25°C Relative Wavelength λrel (nm) 0.0 0.2 0.4 0.6 0.8 1.0 1.2 0 5 10 15 20 Forward Current IF (mA) Forward Current IF (mA) Forward Current Vs Forward Voltage IF = f(VF); Tj = 25°C Forward Voltage VF (V) 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 350 400 450 500 550 600 650 700 750 800 850 TrueGreenBlue Wavelength Ȝ(nm) Forward Current IF (mA) Maximum Current Vs Temperature IF = f (T) Temperature T(°C) Ta 0 10 20 30 40 50 60 70 80 90 100 110 Ts Ta=AmbientTemperature Ts=SolderPointTemperature Allowable Forward Current IF( mA ) Allowable Forward Current Vs Duty Ratio ( Tj = 25°C; tp ” 10ȝs ) Duty Ratio, % 100 1000 0.1 1 10 100 Relative Luminous Intensity Vs Forward Current IV/IV(20mA) = f(IF); Tj = 25°C Relative Luminous Intensity Irel Relative Luminous Intensity Irel Relative Spectral Emission Irel = f(Ȝ); Tj = 25°C; IF = 20mA 0.0 0.2 0.4 0.6 0.8 1.0 1.2 0 5 10 15 20 Forward Current IF (mA) Forward Current IF (mA) Forward Current Vs Forward Voltage IF = f(VF); Tj = 25°C Forward Voltage VF (V) 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 350 400 450 500 550 600 650 700 750 800 850 TrueGreenBlue Wavelength Ȝ(nm) Forward Current IF (mA) Maximum Current Vs Temperature IF = f (T) Temperature T(°C) Ta 0 10 20 30 40 50 60 70 80 90 100 110 Ts Ta=AmbientTemperature Ts=SolderPointTemperature Allowable Forward Current IF( mA ) Allowable Forward Current Vs Duty Ratio ( Tj = 25°C; tp ” 10ȝs ) Duty Ratio, % 100 1000 0.1 1 10 100 Relative Luminous Intensity Vs Forward Current IV/IV(20mA) = f(IF); Tj = 25°C Relative Luminous Intensity Irel Relative Luminous Intensity Irel Relative Spectral Emission Irel = f(Ȝ); Tj = 25°C; IF = 20mA 0.0 0.2 0.4 0.6 0.8 1.0 1.2 0 5 10 15 20 Forward Current IF (mA) Forward Current IF (mA) Forward Current Vs Forward Voltage IF = f(VF); Tj = 25°C Forward Voltage VF (V) 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 350 400 450 500 550 600 650 700 750 800 850 TrueGreenBlue Wavelength Ȝ(nm) Forward Current IF (mA) Maximum Current Vs Temperature IF = f (T) Temperature T(°C) Ta 0 10 20 30 40 50 60 70 80 90 100 110 Ts Ta=AmbientTemperature Ts=SolderPointTemperature Allowable Forward Current IF( mA ) Allowable Forward Current Vs Duty Ratio ( Tj = 25°C; tp ” 10ȝs ) Duty Ratio, % 100 1000 0.1 1 10 100 Relative Luminous Intensity Vs Forward Current IV/IV(20mA) = f(IF); Tj = 25°C Relative Luminous Intensity Irel Relative Luminous Intensity Irel Relative Spectral Emission Irel = f(Ȝ); Tj = 25°C; IF = 20mA 0.0 0.2 0.4 0.6 0.8 1.0 1.2 0 5 10 15 20 Forward Current IF (mA) Forward Current IF (mA) Forward Current Vs Forward Voltage IF = f(VF); Tj = 25°C Forward Voltage VF (V) 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 350 400 450 500 550 600 650 700 750 800 850 TrueGreenBlue Wavelength Ȝ(nm) Forward Current IF (mA) Maximum Current Vs Temperature IF = f (T) Temperature T(°C) Ta 0 10 20 30 40 50 60 70 80 90 100 110 Ts Ta=AmbientTemperature Ts=SolderPointTemperature Allowable Forward Current IF( mA ) Allowable Forward Current Vs Duty Ratio ( Tj = 25°C; tp ” 10ȝs ) Duty Ratio, % 100 1000 0.1 1 10 100 Relative Luminous Intensity Vs Forward Current IV/IV(20mA) = f(IF); Tj = 25°C Relative Luminous Intensity Irel Relative Luminous Intensity Irel Relative Spectral Emission Irel = f(Ȝ); Tj = 25°C; IF = 20mA 0.0 0.2 0.4 0.6 0.8 1.0 1.2 0 5 10 15 20 Forward Current IF (mA) Forward Current IF (mA) Forward Current Vs Forward Voltage IF = f(VF); Tj = 25°C Forward Voltage VF (V) 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 350 400 450 500 550 600 650 700 750 800 850 TrueGreenBlue Wavelength Ȝ(nm) Forward Current IF (mA) Maximum Current Vs Temperature IF = f (T) Temperature T(°C) Ta 0 10 20 30 40 50 60 70 80 90 100 110 Ts Ta=AmbientTemperature Ts=SolderPointTemperature Allowable Forward Current IF( mA ) Allowable Forward Current Vs Duty Ratio ( Tj = 25°C; tp ” 10ȝs ) Duty Ratio, % 100 1000 0.1 1 10 100 Relative Luminous Intensity Vs Forward Current IV/IV(20mA) = f(IF); Tj = 25°C Relative Luminous Intensity Irel Relative Luminous Intensity Irel Relative Spectral Emission Irel = f(Ȝ); Tj = 25°C; IF = 20mA -0.020 -0.015 -0.010 -0.005 0.000 0.005 0.010 0.015 0.020 0 5 10 15 20 25 30 35 40 45 50 -2.00 -1.00 0.00 1.00 2.00 3.00 4.00 5.00 6.00 7.00 8.00 0 5 10 15 20 Relative Wavelength Ȝrel (nm) Relative Wavelength Shift Vs Forward Current Ȝdom = f(IF); Tj = 25°C Forward Current IF (mA) ¨Cx, ¨Cy Chromaticity Coordinate Shift Vs Forward Current ¨Cx, ¨Cy = f(IF);Tj = 25°C Forward Current IF (mA) TrueGreen Blue

03/10/2016 V6.06 InGaN : DSx-DSS DOMINANT Opto Technologies Innovating Illumination TM Junction Temperature Tj(°C) Relative Forward Voltage ∆V F (V) Relative Forward Voltage Vs Junction Temperature ∆VF = VF - VF(25°C) = f(Tj); IF =20mA Junction Temperature Tj(°C) Relative Luminous Intensity I rel Relative Luminous Intensity Vs Junction Temperature IV/IV(25°C) = f(Tj); IF = 20mA Junction Temperature Tj(°C) Relative Wavelength ∆λdom(nm) Relative Wavelength Vs Junction Temperature ∆λdom = λdom - λdom (25°C) = f(Tj); IF =20mA Radiation Pattern 0.270° 90° 80° 60° 50° 40° 30° 20° 0.6 0.4 1.0 0.8 10° 0° -0.5 -0.4 -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 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 -50 -30 -10 10 30 50 70 90 110 130 Relative Forward Voltage ¨VF (V) Relative Forward Voltage Vs Junction Temperature ¨VF = VF - VF(25°C) = f(Tj); IF = 20mA Junction Temperature Tj(°C) Junction Temperature Tj(°C) Relative Luminous Intensity Vs Junction Temperature IV /IV (25°C) = f(Tj); IV = 20mA Relative Luminous Intensity Irel TrueGreen Blue TrueGreen Blue -0.5 -0.4 -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 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 -50 -30 -10 10 30 50 70 90 110 130 Relative Forward Voltage ¨VF (V) Relative Forward Voltage Vs Junction Temperature ¨VF = VF - VF(25°C) = f(Tj); IF = 20mA Junction Temperature Tj(°C) Junction Temperature Tj(°C) Relative Luminous Intensity Vs Junction Temperature IV /IV (25°C) = f(Tj); IV = 20mA Relative Luminous Intensity Irel TrueGreen Blue TrueGreen Blue -10.0 -8.0 -6.0 -4.0 -2.0 0.0 2.0 4.0 6.0 8.0 10.0 -50 -30 -10 10 30 50 70 90 110 130 ¨Cx ¨Cy -0.030 -0.025 -0.020 -0.015 -0.010 -0.005 0.000 0.005 0.010 0.015 0.020 0.025 0.030 -50 -30 -10 10 30 50 70 90 110 130 Relative Wavelength ¨Ȝdom(nm) Relative Wavelength Vs Junction Temperature ¨Ȝdom = Ȝdom - Ȝdom (25°C) = f(Tj); IF = 20mA ¨Cx, ¨Cy Chromaticity Coordinate Shift Vs Junction Temperature ¨Cx, ¨Cy = f(Tj); IF = 20mA Junction Temperature Tj(°C) Junction Temperature Tj(°C) TrueGreen Blue

03/10/2016 V6.07 DomiLED TM

  • InGaN : DSx-DSS Package Outlines InGaN : DSx-DSS Material Material Lead-frame Package Encapsulant Soldering Leads Cu Alloy With Ag Plating High Temperature Resistant Plastic, PPA Epoxy Sn-Sn Plating DOMINANT Opto Technologies Innovating Illumination TM Note : Primary thermal path is through Cathode lead of LED package.

03/10/2016 V6.08 InGaN : DSx-DSS Recommended Solder Pad DOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.09 Taping and orientation

  • Reels come in quantity of 2500 units.
  • Reel diameter is 180 mm. InGaN : DSx-DSSDOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.010 Packaging Specification InGaN : DSx-DSSDOMINANT Opto Technologies Innovating Illumination TM 28/10/2010 V8.010 Packaging Specification AllnGaP : DDx-xRSDOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.011 InGaN : DSx-DSSDOMINANT Opto Technologies Innovating Illumination TM Packaging Specification Average 1pc Right Angle DomiLED 1 completed bag (2500pcs) 0.034 190 ± 10Weight (gram) Cardboard Box Dimensions (mm) Empty Box Weight (kg) Super Small Small Medium Large For Right Angle DomiLED Reel / BoxCardboard Box Size Weight (gram) 0.010 240 ± 10 DOMINANT TM Moisture sensitivity level Moisture absorbent material + Moisture indicator The reel, moisture absorbent material and moisture indicator are sealed inside the moisture proof foil bag Reel Barcode label Label (L) Lot No : lotno (P) Part No : partno (C) Cust No : partno (G) Grouping : group (Q) Quantity : quantity (D) D/C : date code (S) S/N : serial no DOMINANT Opto Technologies ML TEMP 2 260˚C RoHS Compliant Made in Malaysia DOMINANT Opto Technologies DRND-008 Issue No : 1 Page 1 of 3 Product & Process Change Notice (PCN) PCN No: D140157 Date: 21-Nov -2014 1. Describe present process / product: All SMD LEDs that are currently shipped in the reel form . Please refer to section 3 for the details; comparing current packing and label specification versus change proposed. 2. Product type affected: All SMD LEDs that are currently shipped in the reel form. 3. Describe changes (to be): Existing barcode printed label (BPL) used is as shown below. Existing BPL size - 87mm x 45mm. As part of improvement and also in response to customer s’ request; BPL format will be changed to the following. New BPL size - 110mm x 55mm. Additional information are now included in the label. 2D and 3D barcode data are implemented now for every data field. 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

03/10/2016 V6.012 Time (sec) 0 50 100 150 200 300 250 225 200 175 150 125 100 275Temperature (˚C) Classification Reflow Profile (JEDEC J-STD-020C) Ramp-up 3˚C/sec max. 255-260˚C 10-30s 60-150s Ramp- down 6˚C/sec max. Preheat 60-180s 480s max 217˚C Recommended Pb-free Soldering Profile InGaN : DSx-DSSDOMINANT Opto Technologies Innovating Illumination TM

03/10/2016 V6.013 InGaN : DSx-DSSDOMINANT Opto Technologies Innovating Illumination TM 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). 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). 4) Corrosion Robustness: 4.1 Test conditions: 40 °C / 90 % rh / 15 ppm H2S / 336 h. = Stricter than IEC 60068-2-43 (H2S) [25 °C / 75% rh / 10 ppm H2S / 21 days].

Revision History

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 . Page 1, 9 1, 6, 8, 10 5, 6, 7, 13 Subjects Initial release - Update product photo - Error in carrier tape Update Application Add new partno: DST-DSS-WX1-1 Add Thermal Resistance Add Fetures Add Notes in Packaging Outline Update Carrier Tape Update Packaging Specification Update Features Update Graph Update Package Outline Add Appendix Date of Modification

04 Aug 2010

21 Jun 2012

13 Sep 2013

25 Oct 2013

10 Mar 2016

03 Oct 2016

InGaN : DSx-DSS 03/10/2016 V6.014 DOMINANT Opto Technologies Innovating Illumination TM

InGaN : DSx-DSS About Us DOMINANT Opto Technologies is a dynamic Malaysian Corporation that is among the world’s leading SMT LED Manufacturers. An excellence – driven organization, it offers a comprehensive product range for diverse industries and applications. Featuring an internationally certified quality assurance acclaim, DOMINANT’s extra bright LEDs are perfectly suited for various lighting applications in the automotive, consumer and communications as well as industrial sectors. With extensive industry experience and relentless pursuit of innovation, DOMINANT’s state-of-art manufacturing, research and testing capabilities have become a trusted and reliable brand across the globe. More information about DOMINANT Opto Technologies can be found on the Internet at http://www.dominant-semi.com. DOMINANT Opto Technologies Innovating Illumination TM 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