SAMSUNG LED Package

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1 SAMSUNG LED Package

2 Your LED Business Solution Partner Division

3 Light up your imagination with new LED lighting! A new light with a bright future. Long lasting, energy efficient lighting. Light up with new Samsung LED lighting. CONTENTS Why SAMSUNG LED Product Lineup - High Power - Mid Power Full Lineup Packing Standard Network

4 Samsung s trusted and reliable technology with years of experience in the industry make all the difference. Semiconductors from Samsung are world-class. Using the same technology from its semiconductor business, Samsung manufactures world-class, competitive LED products. *Samsung headquarters replaced its lighting completely with LED lighting

5 LEDs with the world s best semiconductor technology! Samsung is the name to trust. With broad and deep know-how in the semiconductor industry and strong research and development, Samsung produces world-class LED products that light up the future. World-class technology and manufacturing capacity to provide a complete solution World-class LED manufacturing capacity Samsung LED manufactures the best quality products available with world-class technology in thermal management, optics, power supplies and lighting controls. Samsung LED is recognized worldwide for its superb manufacturing capability of LED chips and packages. Optical Technology Glareless & Optimized Distribution Thermal Management High Efficiency & High-tech Cooling System Light source Lighting Controls Intelligent Lighting Control System Power Supplies Customized Driver IC & Intelligent Power System Expanding investment in R&D every year Samsung LED aggressively invests by recruiting new and experienced experts for its LED business and R&D personnel every year to open up a new future in the bright world of LEDs. Samsung LED lighting, R&D recruitment 3,7 4,9 5,5 1,5 1, global Top 1 LED Chip makers' Chip # capacity share (28 ~ 211) 15 1% R&D 14% R&D 17% R&D 16% R&D By November 211

6 Samsung LED Manufactures all the LED products for your business needs. Samsung LED has the technology to manufacture custom LED products to suit your Specific needs and requirements. Samsung LED operates its own state-of-the-art supply chain system to manufacture LED products that perfectly matches for your business requirements. Reliable and stable product supply from basic wafer-led materials to finished products The global network of Samsung LED makes products available according to your needs. Samsung operates an SCM network to track stock and product information with real-time status updates to provide you with the right products at the right time. * SCM (Supply Chain Management) Samsung LED s exclusive management system to monitor manufacturing, demand, and supply of LED products in real time. Samsung LED has a vertical and integrated manufacturing system from wafers to finished products and a proven track record of reliable supply of LED products to customers worldwide. LED Light Engine Integrator, Samsung LED Samsung s global network provides the best service available. Samsung LED always delivers the best service with its prompt and effective global service. Chip PKG Module Light Engine Online Service

7 Product Lineup High Power Mid Power

8 Product Lineup High Power CR35H HD4C HD36J HD72M HA4C

9 High Power l Mid Power 17 High Power LED Lighting LM8 approved for high reliability, high efficacy (129lm/W), and quality color rendering for broad usage. CR35H Series Features Operates at a maximum of up to 1.5 A 3.5 mm 3.5 mm 1.89 mm Great performance at high temperatures rated up to 85 in real life environments Excellent color rendering under any beam angle Completed 6, hours for LM8 certification Part Number SPHWHTL3D35E6WF5 Color (K) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min 2,7K SPHWHTL3D35E6VF5 3,K SPHWHTL3D35E6UF5 3,5K SPHWHTL3D35E6TF5 4,K SPHWHTL3D33E6RH5 5,K SPHWHTL3D33E6QH5 5,7K SPHWHTL3D33E6PG6 6,5K SPHWHTL3D33E6NG5 7,6K Applications Indoor Lighting Spot light Downlight Ceiling light High/Low-bay light Outdoor Lighting Street light Security light Tunnel light Parking lot light Consumer Lighting Retrofit lamp Torch The reduced form factor allows for PCB optimization - resulting in more uniform light output, reduced overall system cost and dramatically improved heat dissipation. CR35H Luminous flux High efficacy Cool 135 lm 129 lm/w Warm 11 lm 15 lm/w Spot light Security light Retrofit lamp

10 y High Power l Mid Power 19 High Power LED Lighting CR35H l SPHWHTL3D3 Absolute Maximum Ratings Ta = 25 Package Outline Beam Distribution Item IF (ma) TJ ( ) Tstg ( ) Topr ( ) SPHWHTL3D3 1, ~ -4 ~ 85 Electrical Characteristics Ta = 25 Ø2.69 Ceramic substrate Thermal pad (+) (-) Normalized Vaue Item Symbol Condition Rank Min. Typ. Max. Unit Cathode Mark Silicone lens Forward Voltage Vf IF = 35 ma E V Radiation Angle [ ] Tape Recommended Soldering Pattern Chromaticity Coordinate Ta = 25, IF = 35mA Rank CCT CCx CCy W 2,7K V 3,K U 3,5K T 4,K Ø CATHODE MARK R 5,K Q 5,7K P 6,5K N 7,6K Optical & Electrical Characteristics Product List Part Number Dimension (mm 3 ) CCT SPHWHTL3D35E6WF5 2,7K Luminous Flux Min(lm) Typ(lm) Max(lm) Ta = 25 Condition CRI Viewing Angle Relative luminous flux Forward Current [A] Relative Luminous Flux vs. Forward Current Forward Current [A] Forward Voltage [V] Forward Current vs. Forward Voltage Normalized Value Wave length [nm] Spectrum Distribution Forward Current [A] Rj-a = 3 /W.4 Rj-a = 21 /W 12.2 Rj-a = /W Ambrent [ C] Derating Curve SPHWHTL3D35E6VF5 3,K 3.5X3.5X1.89t 9-14 IF = 35mA Min SPHWHTL3D35E6UF5 3,5K SPHWHTL3D35E6TF5 4,K SPHWHTL3D33E6RH5 5,K 3.5X3.5X1.89t IF = 35mA Min SPHWHTL3D33E6QH5 5,7K SPHWHTL3D33E6PG6 6,5K X3.5X1.89t - IF = 35mA Min SPHWHTL3D33E6NG5 7,6K 15 Relative luminous flux Ts [ C ] Relative Luminous Flux vs. Substrate Forward Voltage [V] Ts [ C ] Substrate vs. Forward Voltage Blackbody.39 Locus WO VO 27K.37 UO 3K ANSI 35K C78,377A.35 TO 4K.33 SO RO 45K.31 QO 5K 57K PO.29 NO 65K 76K x x CIE Coordinate

11 High Power l Mid Power mm in diameter with a strong, compact source of illumination and high luminous efficacy up to 1, lm. High Power LED Lighting HD4C Series Features Chip on Board (COB) solution Easy to design-in Low thermal resistance High reliability Simple assembly Low cost solution High Efficiency Available from 65lm to 1,lm in a single LED package Small 11mm diameter light emitting surface size 18. mm 13.5 mm 6.4 mm Part Number Color (K) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min SPHWWTHDD835 2,7K SPHCWTHDD833 5,K Applications Indoor Lighting Spot light Downlight High/Low-bay light Outdoor Lighting Security light Parking lot light Consumer Lighting Retrofit lamp Spot light Low-bay light Retrofit lamp

12 y High Power l Mid Power 23 High Power LED Lighting HD4C l SPHCWTHDD833 Cool Absolute Maximum Ratings Ta = 25 Package Outline Beam Distribution Item IF (ma) *IFP (ma) TJ ( ) Tstg ( ) Topr ( ) SPHCWTHDD ~ 12-4 ~ 8 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit Forward Voltage Vf IF = 175mA V Ta = 25 Cathode(-) R Cathode(-) Ø R R R Normalized value Angle Chromaticity Coordinate Ta = 25, IF = 175mA Tray 3-Ø Rank CCT CCx CCy R 5,K MCP-WMC-R1 5pcs Product List Ta = P Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min (lm) Typ (lm) Max (lm) SPHCWTHDD X13.5X6.4t IF = 175mA Min.7 12 Optical & Electrical Characteristics 15. lm Forward Current [A] Luminous Flux vs. Forward Current CCT [ X] Forward Current [ A ] CCT vs. Forward Current Color Value.45 x.4 y Foward Current [A] Color x,y vs. Forward Current Relative emission Wave Length(nm) Spectrum Distribution K 57K 5K 45K 4K TO 35K SO.33 RO.31 QO PO x UO 3K VO CIE Coordinate WO 27K Blackbody Locus ANSI C78,377A

13 y y y High Power l Mid Power 25 High Power LED Lighting HD4C l SPHCWTHDD835 Warm Absolute Maximum Ratings Ta = 25 Package Outline Beam Distribution Item IF (ma) *IFP (ma) TJ ( ) Tstg ( ) Topr ( ) SPHWWTHDD ~ 12-4 ~ 8 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit Forward Voltage VF IF = 175mA V Ta = 25 Cathode(-) R Cathode(-) Ø R R R Normalized value Angle Chromaticity Coordinate Ta = 25, IF = 175mA Tray 3-Ø Normalized value Angle.9 Rank CCT CCx CCy W 2,7K MCP-WMC-R1 Normalized Value pcs Normalized value Product List Ta = Forward P Current [ma] Angle Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPHWWTHDD X13.5X6.4t IF = 175mA Min Optical & Electrical Characteristics lm Relative emission Forward Current [A] Luminous Flux vs. Forward Current Wave Length(nm) Spectrum Distribution Color Value CCT [ X] Relative emission Foward Current [A] x K 27K K Blackbody.3 45K.4 4K Locus K WO Forward Current [ A VO ] 57K.37 UO ANSI C78,377A TO 65K.35 SO.33 RO QO PO x CCT vs. Forward Current 27K.43 3K. 35K K 4K Blackbody Locus K Wave Length(nm) VO WO 57K.37 UO ANSI TO C78,377A 65K.35 SO.33 RO.31 QO.9 PO x x y CIE Coordinate p CCT [ X] Color Value Normalized Value 41/43p Forward Current [ma].45 x.4 y Foward Current [A] Relative emission Color x,y vs. Forward Current Forward Current [ A ] Wave Length(nm)

14 High Power l Mid Power 27 High Power LED Lighting HD36J Series mm Features 1.5 mm Chip on Board (COB) solution Easy to design-in Low thermal resistance High reliability Simple assembly Low cost solution Available from 2lm to 1,4lm in a single LED package Small 13mm diameter light emitting surface size 2.25 mm Luminous flux Forward Voltage Viewing CRI Part Number Color (K) IF (ma) Angle Min(Im) Max(Im) Typ(V) Max(V) Min SPHWWTHDNA45 3,K 95 TBD SPHCWTHDNA45 5,K 1,5 TBD Applications Indoor Lighting Spot light Downlight High/Low-bay light Outdoor Lighting Security light Parking lot light Consumer Lighting Retrofit lamp 13 mm in diameter with a strong, compact source of illumination and high luminous efficacy up to 1,4 lm. Downlight Security light Retrofit lamp

15 High Power l Mid Power 29 High Power LED Lighting HD36J l SPHWWTHDNA45 Absolute Maximum Ratings Ta = 25 Package Outline Beam Distribution Item IF (ma) TJ ( ) Tstg ( ) Topr ( ) SPHWWTHDNA ~ 12-4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit Forward Voltage Vf IF = 35mA YH V Chromaticity Coordinate Rank CCT CCx CCy Ta = 25 Ta = 25, IF = 35mA Tray 3-Ø Ø3 56 Tc Point-Ø Ø ± Ø3 Tc Point-Ø ± Ø Ø Ø hole ± ± ±.25 ± ±.25 ± Ø2.2 hole Cathode(-) Cathode(-) Tc Point-Ø Cathode(-) Ø Ø15 3-Ø Ø2.2 hole 6.85 Relative Intensity TC = 25 C 12% % 8% 6% 4% 2% % Angula Displacement [ Degree ] T = 25 C VT VB VC VD VE 3,K VF ± ± ± ± VG VH Optical & Electrical Characteristics Product List Ta = 25 Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPHWWTHDNA x 2.25 x 1.5t JC 95 - TBD 35mA Min.8 12 Relative Luminous Flux 14% 12% % 8% 6% 4% 2% TC = 25 C % Forward Voltage [V] TC = 25 C Relative Spectral Emission TC = 25 C, lf = 35mA 12% % 8% 6% 4% 2% % Current [ma] Rth j-a = 3.21 C/W Forward Current [A] Forward Current [A] Wavelength [nm] Ambient Termperature [ C] Relative Luminous Intensity vs. Forward Current Forward Current vs. Forward Voltage Spectrum Distribution Derating Curve 12% lf = 35mA 4 lf = 35mA.44 Relative Luminous Flux % 8% 6% 4% 2% Voltage [V] y K 345K 287K VF VE VD VB B.B Locus VC VH VG % Tc [ C ] Tc [ C ] x Relative Luminous Flux vs. Forward Voltage vs. CIE Coordinate

16 High Power l Mid Power 31 High Power LED Lighting HD36J l SPHCWTHDNA45 Absolute Maximum Ratings Ta = 25 Package Outline Beam Distribution Item IF (ma) TJ ( ) Tstg ( ) Topr ( ) SPHCWTHDNA ~ 12-4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit Forward Voltage Vf IF = 35mA YH V Chromaticity Coordinate Rank CCT CCx CCy Ta = 25 Ta = 25, IF = 35mA Tray 3-Ø Ø3 56 Tc Point-Ø Ø ± Ø3 Tc Point-Ø ± Ø Ø Ø hole ± ± ±.25 ± ±.25 ± Ø2.2 hole Cathode(-) Cathode(-) Tc Point-Ø Cathode(-) Ø Ø15 3-Ø Ø2.2 hole 6.85 Relative Intensity TC = 25 C 12% % 8% 6% 4% 2% % Angula Displacement [ Degree ] T = 25 C RT RW RX ,K RY RZ ± ± ± ± Product List Ta = 25 Optical & Electrical Characteristics Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPHCWTHDNA x 2.25 x 1.5t MC 1,5 - TBD 35mA Min.8 12 Relative Luminous Flux 14% 12% % 8% 6% 4% 2% TC = 25 C % Forward Current [A] Forward Voltage [V] Forward Current [A] TC = 25 C Relative Spectral Emission TC = 25 C, lf = 35mA 12% % 8% 6% 4% 2% % Wavelength [nm] Current [ma] Rth j-a = 3.21 C/W Ambient Termperature [ C] Relative Luminous Intensity vs. Forward Current Forward Current vs. Forward Voltage Spectrum Distribution Derating Curve Relative Luminous Flux 12% % 8% 6% 4% 2% lf = 35mA Voltage [V] lf = 35mA y K 528K 4745K RY RW RZ RX B.B Locus % Tc [ C ] Tc [ C ] x Relative Luminous Flux vs. Forward Voltage vs. CIE Coordinate

17 High Power l Mid Power 33 Up to 2,6 lm and low heat resistance for a wide range of high-power lighting applications. High Power LED Lighting HD72M Series Features Chip on Board (COB) solution Easy to design-in Low thermal resistance High reliability Simple assembly Low cost solution Available from 4lm to 2,6lm in a single LED package Small 17mm diameter light emitting surface size 21. mm 31. mm 1.4 mm Luminous flux Forward Voltage Viewing CRI Part Number Color (K) IF (ma) Angle Min(Im) Max(Im) Typ(V) Max(V) Min SPHWWTHDNC45 3,K 1, SPHCWTHDNC45 5,K 2, Applications Indoor Lighting Spot light Downlight indoor Lighting High/Low-bay light Outdoor Lighting Security light Parking lot light Downlight Low-bay light Outdoor lighting

18 High Power l Mid Power 35 High Power LED Lighting HD72M l SPHWWTHDNC45 Absolute Maximum Ratings Ta = 25 Package Outline Beam Distribution Item IF (ma) TJ ( ) Tstg ( ) Topr ( ) SPHWWTHDNC ~ 12-4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit Forward Voltage Vf IF = 72mA YH V Chromaticity Coordinate Ta = 25 Ta = 25, IF = 72mA Tray Ø2.2 hole (15.5) 25.5 Ø19. 4-Ø2.2 Ts hole point-ø1.5 (15.5) Ø19. Ts point-ø1.5 3-Ø ±.2.9 Ø ±.2 Ø ± ± ± Cathode(-) Cathode(-) ±.25 ±.25 3-Ø ±.2 Cathode(-) ± Ø Ø2.2 hole Ts point-ø1.5 Relative Intensity (15.5) Ø19. 3-Ø2.2 12% % 8% 6% 31. 4% 2% TC = 25 C % Angula Displacement [ Degree ] Rank CCT CCx CCy VB ± ±.25 ± ±.25 ±.25 VT VC VD VE 3,K VF VG ± VH Optical & Electrical Characteristics Product List Ta = 25 Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPHWWTHDNC x 21. x 1.4t 2F 1, mA Min.8 12 Relative Luminous Flux 14% 12% % 8% 6% 4% 2% TC = 25 C % Forward Voltage [V] TC = 25 C Relative Spectral Emission TC = 25 C, lf = 72mA 12% % 8% 6% 4% 2% % Current [ma] Rth j-a = 2.58 C/W Forward Current [A] Forward Current [A] Wavelength [nm] Ambient Termperature [ C] Relative Luminous Intensity vs. Forward Current Forward Current vs. Forward Voltage Spectrum Distribution Derating Curve Relative Luminous Flux 12% % 8% 6% 4% 2% lf = 72mA Voltage [V] lf = 72mA y VC VG 322K 345K 287K VF VE VD VB B.B Locus VH % Tc [ C ] Tc [ C ] x Relative Luminous Flux vs. Forward Voltage vs. CIE Coordinate

19 High Power l Mid Power 37 High Power LED Lighting HD72M l SPHCWTHDNC45 Absolute Maximum Ratings Ta = 25 Package Outline Beam Distribution Item IF (ma) TJ ( ) Tstg ( ) Topr ( ) SPHCWTHDNC ~ 12-4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit Forward Voltage Vf IF = 72mA YH V Chromaticity Coordinate Ta = 25 Ta = 25, IF = 72mA Tray Ø2.2 hole (15.5) 25.5 Ø19. 4-Ø2.2 Ts hole point-ø1.5 (15.5) Ø19. Ts point-ø1.5 3-Ø ±.2.9 Ø ±.2 Ø ± ± ± Cathode(-) Cathode(-) ±.25 ±.25 3-Ø ±.2 Cathode(-) ± Ø Ø2.2 hole Ts point-ø1.5 Relative Intensity (15.5) Ø19. 3-Ø2.2 12% % 8% 6% 31. 4% 2% TC = 25 C % Angula Displacement [ Degree ] Rank CCT CCx CCy RW ± ±.25 ± ±.25 ±.25 RT RX ,K RY RZ ± Product List Ta = 25 Optical & Electrical Characteristics Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPHWWTHDNC x 21. x 1.4t 2F 2, mA Min.8 12 Relative Luminous Flux 14% 12% % 8% 6% 4% 2% TC = 25 C % Forward Current [A] Forward Voltage [V] Forward Current [A] TC = 25 C Relative Spectral Emission TC = 25 C, lf = 72mA 12% % 8% 6% 4% 2% % Wavelength [nm] Current [ma] Rth j-a = 2.58 C/W Ambient Termperature [ C] Relative Luminous Intensity vs. Forward Current Forward Current vs. Forward Voltage Spectrum Distribution Derating Curve Relative Luminous Flux 12% % 8% 6% 4% 2% lf = 72mA Voltage [V] lf = 72mA y K 528K 4745K RY RW RZ RX B.B Locus % Tc [ C ] Relative Luminous Flux vs Tc [ C ] Forward Voltage vs x CIE Coordinate

20 High Power l Mid Power 39 High Power LED Lighting HA4C Series 12.4 mm 4.38 mm Features AC/DC Converter-less Suitable for retrofit lamps Simple system Longer life time, eco friendly, Longer lifetime, minimizes need for PSU Compact footprint (12x11mm) Available from 36lm to 46lm in a single LED package 11.4 mm Part Number SPHWHTHAD65 Color (K) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min(Im) Max(Im) Typ(Vac) Max(Vac) Min 2,7K 36 TBD SPHWHTHAD63 5,K 46 TBD (rms*) 58 (rms*) 29 (rms*) 58 (rms*) 8 7 * rms : root mean square Applications Indoor Lighting Downlight Outdoor Lighting Security light Street light Consumer Lighting Small size retrofit lamp (Candle light, GU1, Small bulb) Direct AC powered LED operated minimizes the need for a power supply unit with a longer life and ideally suited in small LED lamps. Downlight Street light Small size retrofit lamp

21 y High Power l Mid Power 41 High Power LED Lighting HA4C l SPHWHTHAD6 Voltage [V] Vac (Input) V (LED) V (Resisor) Current Current dc[ma] Vac AC Power Source Angle Absolute Maximum Ratings Ta = 25 Package Outline Pad Function Bipolarity Bipolarity Thermal Bipolarity Bipolarity Current [ ma ] Without Resistor With Resistor (22 Vac) With Resistor (23 Vac) Elecrical Wave Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit Forward Voltage VF IF = 22mA (rms) Chromaticity Coordinate W Item VF (V) PO (W) TJ ( ) Tstg ( ) Topr ( ) SPHWHTHAD63 SPHWHTHAD65 F F F Rank CCT CCx CCy W1 25(rms) ~ 12-4 ~ 85 Ta = 25 W4 2,7K W Vac (rms) Ta = 25, IF = 22mA (rms) / 22vac W W W W Tape Ø Pad Function Bipolarity Bipolarity Thermal 2. Bipolarity Bipolarity Ø1.5 Current [ma] Relative Luminous Efficacy Relative Luminous Flux Voltage [ V ac ] Voltage [V] Without Resistor With Resistor ( Vac) With Resistor (11 Vac) With Resistor (12Vac) Voltage[V ac] Vac (Input) V (LED) V (Resisor) Current 3 Thermal Bipolarity18 22Vac AC Power Source Angle 5 Bipolarity Pad Function Bipolarity Bipolarity Cool- Warm- Recommended Soldering Pattern Operating Current [ ma rms ] Operating Current [ ma rms ] Current dc[ma] R Product List W R R R R4 5,K R R R R CCT Part Number Dimension (mm 3 ) Rank 2,7K SPHWHTHAD x11.4x4.38t 5,K SPHWHTHAD x11.4x4.38t Luminous Flux Min(lm) Typ(lm) Max(lm) U V W X M N P Q Condition CRI Viewing Angle IF = 22mA (rms) / 22Vac IF = 44mA (rms) / 11Vac IF = 22mA (rms) / 22Vac IF = 44mA (rms) / 11Vac Min.8 Min.7 Ta = Current [ ma ] Relative Luminous Efficacy Optical & Electrical Characteristics Ø Without Resistor 12.7 With Resistor (22 Vac) With Resistor (23 Vac) Voltage [ V ac ] Cool- Warm Operating Current [ ma rms ] Optical characteristic (operating in AC voltage, Ta = 25 ) Current [ma] Normalized Luminous Efficacy Ø Without Resistor 16 With Resistor ( Vac) 14 With Resistor (11 Vac) 12 With Resistor (12Vac) Voltage[V ac] IV characteristic (operating in AC voltage, Ta = 25 ) Warm-.4 Cool Temp[ C ] Normalized Luminous Efficacy Relative Luminous Flux CIE Y Warm- Ø Cool Temp[ C ] Operating Current [ ma rms ] CIE Coordinate CIE X.45 27K.43 3K 35K.41 45K 4K Blackbody Locus.39 5K W 57K V.37 U ANSI 65K C78.377A T S R.31 Q P x Ø1.5

22 Product Lineup Mid Power MP56L MP23L MP52L

23 High Power l Mid Power 45 Mid Power LED Lighting MP56L Series 5.6 mm.9 mm Features Suitable for retrofit lamps and L-tubes Over CRI8 Available in white (2,7K to 6,5K 3. mm Part Number Power Consumption (W) Color (K) Brightness (cd) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min SPMWHT5225N , K 12 5 SPMWHT5225D Applications Indoor Lighting LED tubes Area lighting Retrofit lamp LED for Linear fluorescent replacement tubes and flat panel lighting. LED s available from 2,7 K to 6,5 K. Area lighting LED tubes

24 -. High Power l Mid Power 47 Mid Power LED Lighting MP56L CRI7 l SPMWHT5225N3 Absolute Maximum Ratings Ts = 25 Package Outline Beam Distribution Item IF (ma) *IFP (ma) Tstg ( ) Topr ( ) Value ~ -4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit AZ Ts = Anode Cathode Relative Luminous Intensity (%) Radiation Angle [ ] A Forward Voltage* VF IF = 5mA 6A A A V Carrier Tape A Reverse Voltage** VR IF = 5mA Ø ±.5 4.± ±.1 Chromaticity Coordinate Ts = 25, IF = 5mA 5.5±.5 12±.3 Rank CCT CCx CCy V 3,K ±.1 Ø1.5 Min T 4,K R 5,K P 6,5K Optical & Electrical Characteristics Product List Ts = 25 Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPMWHT5225N3 5.6X3.X.9t mA Min.7 12 Luminous Flux(%) 1 1 Forward Current [ma] Relative Luminous Flux vs. Forward Current Forward Current IF[mA] Forward Voltage VF [V] Forward Current vs. Forward Voltage Relative Emission Intensity(%) Wave length [nm] Spectrum Distribution Color value Forward Current (ma) Forward Current vs. Color x, y x y Forward Voltage [%] Ts [ C ] Relative Luminous Flux [%] Ts [ C ] Ts vs. Forward Voltage Ts vs. Relative Luminous Flux

25 -. High Power l Mid Power 49 Mid Power LED Lighting MP56L CRI8 l SPMWHT5225D5 Absolute Maximum Ratings Ts = 25 Package Outline Beam Distribution Item IF (ma) *IFP (ma) Tstg ( ) Topr ( ) Value ~ -4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit A A Ts = Anode Cathode Relative Luminous Intensity (%) Radiation Angle [ ] Forward Voltage* VF IF = 5mA WA A A V Carrier Tape A Reverse Voltage** VR IF = 5mA Ø ±.5 4.± ±.1 Chromaticity Coordinate Ts = 25, IF = 5mA 5.5±.5 12±.3 Rank CCT CCx CCy W 2,7K ±.1 Ø1.5 Min V 3,K U 3,5K T 4,K Optical & Electrical Characteristics S 4,5K R 5,K Q 5,7K P 6,5K Relative Luminous Flux(%) Forward Current [ma] Forward Current [ma] Forward Voltage [V] Relative Emission Intensity(%) Wave length [nm] Forward Current [ma] Rth(j-a)= 65 /W 6 Rth(j-a)= /W 4 Rth(j-a)= 15 /W Rth(j-a)= 2 /W Ambient [ C] Product List Ts = 25 Relative Luminous Flux vs. Forward Current Forward Current vs. Forward Voltage Spectrum Distribution Derating Curve Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPMWHT5225D 5.6X3.X.9t mA Min.8 12 Relative Luminous Flux(%) Ts[ C ] Forward Voltage [%] Ts [ C ] Ts vs. Relative Luminous Flux Ts vs. Forward Voltage

26 High Power l Mid Power 51 Mid Power LED Lighting An LM8 certified, reliable LED that delivers high efficacy at 133 lm/w in an extraordinarily compact 2.3x2.3 mm package for superior space savings. MP23L Series Features 2.3 mm.7 mm Suitable for retrofit lamps and L-tubes 2.3 mm CRI8 Available in white (2,7K to 6,5K LM8-backed reliability Small footprint : easy application in downlights and retrofit lamps 2.3 mm Reduce system cost while increasing luminous efficacy Part Number Power Consumption (W) Color (K) Brightness (cd) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min SPMWHT221MD5.2 3,K ,K Applications Indoor Lighting LED tubes Area lighting Consumer Lighting Downlight With a luminous efficacy of 133 lm/w and a compact size of 2.3mm x 2.3mm, the MP23L allows you to do more with less! The reduced form factor allows for PCB optimization - resulting in more uniform light output, reduced overall system cost and dramatically improved heat dissipation. LED tubes Area lighting Downlight

27 High Power l Mid Power 53 Mid Power LED Lighting MP23L l SPMWHT221MD5 Absolute Maximum Ratings Ts = 25 Package Outline Beam Distribution Item IF (ma) *IFP (ma) Tstg ( ) Topr ( ) Value ~ -4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit A A Ts = Relative Luminous Intensity (%) Radiation Angle [ ] Forward Voltage* VF IF = 65mA WA A V A A Reverse Voltage** VR IF = 5mA Chromaticity Coordinate Rank CCT CCx CCy Ts = 25, IF = 65mA Carrier Tape 2.52 Ø Ø Relative Luminous Flux vs. Forward Current Relative Luminous Flux(%) Forward Current [ma] W 2,7K V 3,K U 3,5K T 4,K S 4,5K R 5,K Q 5,7K P 6,5K Relative Luminous Flux (%) Optical & Electrical Characteristics Forward Current (ma) Foward Current (ma) Foward Voltage VF[V] Forward Current vs. Forward Voltage Relative Emission Intensity (%) Forward Current [ma] Rth(j-a) = 15K/W Rth(j-a) = 2K/W Wave Length(nm) Foward Current (ma) Rth(j-a) = 65K/W 6 Rth(j-a) = K/W Forward Voltage [V] Ambient Temp ( ) Product List Ts = 25 Relative Luminous Flux vs. Forward Current Forward Current vs. Forward Voltage Spectrum Distribution Derating Curve Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPMWHT221MD5 2.3X2.3X.7t S mA Min.8 12 Color x, y.5.4 X Y x Forward Current (ma) Forward Current vs. Color x, y Relative Luminous Flux (%) Spectrum Distribustion Ts( ) Ts vs. Relative Luminous Flux Relative Emission Intensity(%) Wave length [nm] A] 16 14

28 High Power l Mid Power 55 Mid Power LED Lighting MP52L Series 5.2 mm 1.3 mm Features Suitable for retrofit lamps and L-tubes Over CRI8 Available in white (2,7K to 6,5K High Reliability 6. mm Part Number Power Consumption (W) Color (K) Brightness (cd) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min(Im) Max(Im) Typ(V) Max(V) Min SPMWHT521MD5.2 3,K ,K Applications Indoor Lighting LED tubes Area lighting LED with low power consumption and high efficiency available from 2,7 K to 6,5 K. LED tubes Area lighting

29 High Power l Mid Power 57 Mid Power LED Lighting MP52L l SPMWHT221MD5 Absolute Maximum Ratings Ts = Package Outline Beam Distribution Item IF (ma) *IFP (ma) Tstg ( ) Topr ( ) Value ~ -4 ~ 85 Electrical Characteristics Item Symbol Condition Rank Min. Typ. Max. Unit A A Ts = Relative Luminous Intensity (%) Radiation Angle [ ] Forward Voltage* VF IF = 65mA WA A V A A Reverse Voltage** VR IF = 5mA Chromaticity Coordinate Rank CCT CCx CCy Ts = 25, IF = 65mA Carrier Tape Relative Luminous Flux vs. Forward Current Relative Luminous Flux(%) Forward Current [ma] W 2,7K V 3,K U 3,5K T 4,K S 4,5K R 5,K Q 5,7K P 6,5K Relative Luminous Flux (%) Optical & Electrical Characteristics Forward Current(mA) Forward Current vs. Forward Voltage Wave Length(nm) Forward Current(mA) Forward Voltage(V) Relative Eemission Intensity (%) Forward Current [ma] Foward Current IF [ma] Forward Voltage [V] Ambient Temp [ deg ] Product List Ts = 25 Relative Luminous Intensity vs. Forward Current Forward Current vs. Forward Voltage Spectrum Distribution Forward Current Derating Curve Luminous Flux Part Number Dimension (mm 3 ) Rank Condition CRI Viewing Angle Min(lm) Typ(lm) Max(lm) SPMWHT521MD5 5.2X6.X1.3t S mA Min.8 12 Color x, y x Forward Current (ma) Forward Current vs. Color x, y X Y Relative Luminous Flux (%) Spectrum Distribustion Ts( ) Ts vs. Relative Luminous Flux Relative Emission Intensity(%) Wave length [nm] A] 16 14

30 Full Lineup 59 Full Lineup High Power Mid Power CR35 Part Number SPHWHTL3D35E6WF5 Color (K) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min 2,7K SPHWHTL3D35E6VF5 3,K MP56L Part Number Power Consumption (W) Color (K) Brightness (cd) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min SPMWHT5225N ,K 12 5 SPMWHT5225D SPHWHTL3D35E6UF5 3,5K SPHWHTL3D35E6TF5 4,K SPHWHTL3D33E6RH5 5,K SPHWHTL3D33E6QH5 5,7K SPHWHTL3D33E6PG6 6,5K SPHWHTL3D33E6NG5 7,6K HD MP23L Part Number Color (K) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min Part Number Power Consumption (W) Color (K) Brightness (cd) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min (Im) Max (Im) Typ (V) Max (V) Min HD4C SPHWWTHDD835 2,7K SPHCWTHDD833 5,K SPMWHT221MD5.2 3,K ,K HD36J SPHWWTHDNA45 3,K 95 TBD SPHCWTHDNA45 5,K 1,5 TBD HD72M SPHWWTHDNC45 3,K 1, SPHCWTHDNC45 5,K 2, HA MP52L Part Number SPHWHTHAD65 Color (K) Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min(Im) Max(Im) Typ(Vac) Max(Vac) Min 2,7K 36 TBD SPHWHTHAD63 5,K 46 TBD (rms*) 58 (rms*) 29 (rms*) 58 (rms*) 8 7 * rms : root mean square Part Number Power Consumption (W) Color SPMWHT521MD5.2 (K) Brightness (cd) 3,K ,K Luminous flux Forward Voltage Viewing CRI IF (ma) Angle Min(Im) Max(Im) Typ(V) Max(V) Min

31 Part Numbers 61 Part Numbers High Power LED Part Numbers Mid Power LED Part Numbers SAMSUNG LED SAMSUNG LED LED Package LED Package PKG Category PKG Category PKG color information PKG color information PKG product version PKG product version PKG from factor PKG from factor 18 DIGITS S P H PKG drive current 18 DIGITS S P M PKG drive current PKG special specifications PKG special specifications CRI CRI Forward Voltage Forward Voltage CIE Coordination, Wavelength CIE Coordination, Wavelength Luminous Intensity, Luminous Flux Luminous Intensity, Luminous Flux

32 LED Packing Standard 63 LED Packing Standard Reel Packing Structure Label Structure Reel SPHWHTL3D33E6RK3 SPHWHTL3D33E6RK3 SPHWHTL3D33E6RK3 Denoted rank is only an example Rank Code a b c Forward Voltage (VF) Rank Chromaticity Coordinate Rank Luminous Intensity(IV) Rank Aluminum Vinyl Bag SPHWHTL3D33E6RK3 Lot Number SPHWHTL3D33E6RK3 Production Site (S:S-LED, G:Tianjin China) L (LED) Product State (A:Normality, B: Bulk, C:First Production, R:Reproduction, S:Sample) Year (Q:26, R:27, S:28...) Month (1 ~ 9, A, B) Day (1 ~ 9, A, B ~ V) S-LED. Product number (1 ~ 999) Reel Number (1 ~ 999) SIDE SPHWHTL3D33E6RK3 / I / PCS Material : Paper(SW3B(B)) TYPE SIZE (mm) L W H 7inch

33 LED Packing Standard 65 LED Packing Standard Notice Aluminum Vinyl Bag Soldering Conditions 1) Recommended Reflow soldering Conditions Preheating to C Max. for 2 minute Max. Soldering heat to C Max. for 5 seconds Max. 2) For Iron Soldering No more than 5 C, under Soldering iron. Precaution for use 1. This device should not be used in any type of fluid such as water, oil, organic solvent, etc. When washing is required, IPA should be used. 2. When the LEDs are illuminating, operating current should be decided after considering the ambient maximum temperature. 3. LEDs must be stored to maintain a clean atmosphere. If the LEDs are stored for 3months or more after being shipped from Samsung LED, a sealed container with a nitrogen atmosphere should be used for storage. 4. The LEDs should be used within a year. The LEDs must be used within seven days after opening the moisture proof packing. Repack unused Products with anti-moisture packing, fold to close any opening and then store in a dry place. 5. The appearance and specifications of the product may be modified for improvement without notice. 6. This LEDs is sensitive to the static electricity and surge. It is recommended to use a wrist band or anti-electrostatic glove when handling the LEDs. If over voltage which exceeds the absolute maximum rating is applied to LEDs, it will cause damage LEDs and result in destruction. Damaged LEDs will show some unusual characteristics such as leak current remarkably increase, turn-on voltage becomes lower and the LEDs get unlighted at low current.

34 Network Samsung LED s global network across the world With production bases in 2 countries and regional headquarters in 6 countries, the world is getting smaller. Samsung LED is a global company and we are growing everyday. Worldwide Samsung Headquarter / Suwon Business Center in Korea Suwon Business Center (HQ) is responsible for R&D and functions as Engineering Center for the entire range of our products. We have a pilot production line for prototype products and performs diverse HQ functions sales, purchasing, research and management support - playing the role of integrated network center for a global base. Production Facilities Giheung Office : San #24 Nongseo-Dong, Giheung-Gu, Yongin-City, Gyeonggi-Do, Korea TEL Tienjin Office in China Tianjin Samsung LED Co., Ltd. Weisi(4th) Rd., Micro-Electronics Industrial Park, Xiqing District, Tianjin 3385, China TEL Overseas sales branch Korea Samsung Electronics Samsung2ro, Giheung-Gu, Yongin-City, Gyeonggi-Do, Korea TEL China 上海, 上海市長寧區中山西路 155 號 B 棟 SOHO 中山廣場 2F TEL Japan 日本サムスン, 東京都港区六本木 六本木ティーキューブ 18F TEL Southeast Asia Samsung Asia Pte. Ltd., 3 Church Street #26-1/2 Samsung Hub Singapore US 3655 North 1st Street San Jose, CA TEL Europe Samsung Semiconductor Europe GmbH, Kolner Straße 12, 6576 Eschborn (Germany) TEL. +49-() (Reception) +49-() (Credit control)

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