COB D-Gen.3. High VoltageLED Series Chip on Board. High efficacy COB LED package well-suited for use in spotlight applications. Features & Benefits

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1 Product Family Data Sheet Rev # High VoltageLED Series Chip on Board COB D-Gen.3 High efficacy COB LED package well-suited for use in spotlight applications Features & Benefits Chip on Board (COB) solution makes it easy to design in Simple assembly reduces manufacturing cost Low thermal resistance InGaN/GaN MQW LED with long time reliability Applications Spotlight / Downlight LED Retrofit Bulbs Outdoor Illumination

2 2 Table of Contents 1. Characteristics Product Code Information Typical Characteristics Graphs Outline Drawing & Dimension Reliability Test Items & Conditions Label Structure Packing structure Precautions in Handling & Use

3 3 1. Characteristics a) Absolute Maximum Rating Item Symbol Model Rating Unit Condition Ambient / Operating Temperature Ta ~ +105 ºC - Storage Temperature Tstg ~ +120 ºC - LED Junction Temperature TJ ºC - Case Temperature Tc ºC - LC003D 230 / LC006D 460 / LC009D 6 / LC013D 920 / LC016D 1150 / Forward Current / Power Dissipation IF / PD LC019D 13 / 52.6 ma / W - LC026D 1840 / LC033D 2300 / LC040D 2760 / LC060D 2760 / LC0D 4140 / ESD (HBM) - - ±2 kv - ESD (MM) - - ±0.5 kv -

4 4 b) Electro-optical Characteristics (IF = Sorting Current, TJ = 85 ºC) Item Unit Model Min. Typ. Max. Forward Voltage (VF) V All model Z Color Rendering Index (Ra) - All model Beam Angle º LC003D / - LC006D / 1 - LC009D / LC013D / LC016D / Nominal Power / Sorting Current W / ma LC019D / LC026D / LC033D / 0 - LC040D / 10 - LC060D / 10 - LC0D / LC003D LC006D LC009D LC013D Thermal Resistance (Junction to chip case) /W LC016D LC019D LC026D LC033D LC040D LC060D LC0D Notes: 1) The COB is tested in pulsed condition at rated test current (10 ms pulse width) and rated temperature (T J = T C = T a = 85 C) 2) Samsungmaintains measurement tolerance of: forward voltage = ±5 %, CRI = ±1 3) Refer to the derating curve, 3. Typical Characteristics Graph designed within the range.

5 5 c) Luminous Flux Characteristics (IF = Sorting Current) Model CRI (Ra) Min. Nominal CCT (K) Flux Flux@ TJ = 85 C (lm) Min. Typ. Max. D D D D D LC003D 5700 D D D D D D D D D D D D LC006D 5700 D D D D D D D Notes: 1) The COB is tested in pulsed operating condition at rated test current (10 ms pulse width) and rated temperature (T J = T C = 85 C). 2) Samsungmaintains measurement tolerance of: Luminous flux = ±7 %, CRI = ±1

6 6 Model CRI (Ra) Min. Nominal CCT (K) Flux TJ = 85 C (lm) Min. Typ. Max. D D D D D D D LC009D 5000 D D D D D D D D D D D D D D D LC013D 5000 D D D D D D D D Notes: 2) The COB is tested in pulsed operating condition at rated test current (10 ms pulse width) and rated temperature (T J = T C = 85 C). 2) Samsungmaintains measurement tolerance of: Luminous flux = ±7 %, CRI = ±1

7 7 Model CRI (Ra) Min. Nominal CCT (K) Flux TJ = 85 C (lm) Min. Typ. Max. D D D D D D D LC016D 5000 D D D D D D D D D D D D D D D LC019D 5000 D D D D D D D D Notes: 3) The COB is tested in pulsed operating condition at rated test current (10 ms pulse width) and rated temperature (T J = T C = 85 C). 2) Samsungmaintains measurement tolerance of: Luminous flux = ±7 %, CRI = ±1

8 8 Model CRI (Ra) Min. Nominal CCT (K) Flux TJ = 85 C (lm) Min. Typ. Max. D D D D D D D LC026D 5000 D D D D D D D D D D D D D D D LC033D 5000 D D D D D D D D Notes: 4) The COB is tested in pulsed operating condition at rated test current (10 ms pulse width) and rated temperature (T J = T C = 85 C). 2) Samsungmaintains measurement tolerance of: Luminous flux = ±7 %, CRI = ±1

9 9 Model CRI (Ra) Min. Nominal CCT (K) Flux TJ = 85 C (lm) Min. Typ. Max. D D D D D D D LC040D 5000 D D D D D D D D D D D D D D D LC060D 5000 D D D D D D D D Notes: 5) The COB is tested in pulsed operating condition at rated test current (10 ms pulse width) and rated temperature (T J = T C = 85 C). 2) Samsungmaintains measurement tolerance of: Luminous flux = ±7 %, CRI = ±1

10 10 Model CRI (Ra) Min. Nominal CCT (K) Flux TJ = 85 C (lm) Min. Typ. Max. D D D D D D D LC0D 5000 D D D D D D D D Notes: 6) The COB is tested in pulsed operating condition at rated test current (10 ms pulse width) and rated temperature (T J = T C = 85 C). 2) Samsungmaintains measurement tolerance of: Luminous flux = ±7 %, CRI = ±1

11 11 2. Product Code Information S P H W H A H D N G 2 5 Y Z W 3 D 3 Digit PKG Information Code Specification Samsung Package High Power SPH 4 5 Color WH White 6 Product Version A 7 8 Form Factor HD COB 9 Lens Type N No lens 10 Wattage or Model A B C D E F G H K L M LC003D LC006D LC009D LC013D LC016D LC019D LC026D LC033D LC040D LC060D LC0D 11 Internal Code 2 3 Min. 70 (85 ) 12 CRI & Sorting Temperature 5 Min. (85 ) 7 Min. (85 ) Forward Voltage (V) 31.0~37.0 1Z 46.8~ CCT (K) W V U T R Q P K K K K 5000K 5700K 6500K 16 MacAdam Step 2 MacAdam 2-step 3 MacAdam 3-step Luminous Flux (Lm) D3 COB D-series Gen.3 level

12 12 a) Binning Structure LC003D(IF = ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNA25D3 D3 451 ~ SPHWHAHDNA25D3 SPHWHAHDNA25D3 D3 474 ~ SPHWHAHDNA25D3 SPHWHAHDNA25D3 D3 488 ~ SPHWHAHDNA25D3 SPHWHAHDNA25D3 D3 498 ~ SPHWHAHDNA25D SPHWHAHDNA25R3D3 R3 D3 502 ~ 5700 SPHWHAHDNA25Q3D3 Q3 D3 502 ~ 6500 SPHWHAHDNA25P3D3 P3 D3 498 ~ SPHWHAHDNA27D3 D3 386 ~ SPHWHAHDNA27D3 SPHWHAHDNA27D3 D3 406 ~ SPHWHAHDNA27D3 SPHWHAHDNA27D3 D3 419 ~ SPHWHAHDNA27D3 SPHWHAHDNA27D3 D3 427 ~ SPHWHAHDNA27D SPHWHAHDNA27R3D3 R3 D3 431 ~

13 13 LC006D(IF = 1 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNB25D3 D3 898 ~ SPHWHAHDNB25D3 SPHWHAHDNB25D3 D3 944 ~ SPHWHAHDNB25D3 SPHWHAHDNB25D3 D3 972 ~ SPHWHAHDNB25D3 SPHWHAHDNB25D3 D3 991 ~ SPHWHAHDNB25D SPHWHAHDNB25R3D3 R2 D ~ 5700 SPHWHAHDNB25Q3D3 Q2 D ~ 6500 SPHWHAHDNB25P3D3 P2 D3 991 ~ SPHWHAHDNB27D3 D3 769 ~ SPHWHAHDNB27D3 SPHWHAHDNB27D3 D3 9 ~ SPHWHAHDNB27D3 SPHWHAHDNB27D3 D3 833 ~ SPHWHAHDNB27D3 SPHWHAHDNB27D3 D3 850 ~ SPHWHAHDNB27D SPHWHAHDNB27R3D3 R3 D3 857 ~

14 14 LC009D(IF = 270 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNC23D3 D ~ 70 SPHWHAHDNC23D3 D ~ 5000 SPHWHAHDNC23R3D3 R3 D ~ SPHWHAHDNC25D3 D ~ SPHWHAHDNC25D3 SPHWHAHDNC25D3 D ~ SPHWHAHDNC25D3 SPHWHAHDNC25D3 D ~ SPHWHAHDNC25D3 SPHWHAHDNC25D3 D ~ SPHWHAHDNC25D SPHWHAHDNC25R3D3 R3 D ~ 5700 SPHWHAHDNC25Q3D3 Q3 D ~ 6500 SPHWHAHDNC25P3D3 P3 D ~ SPHWHAHDNC27D3 D ~ SPHWHAHDNC27D3 SPHWHAHDNC27D3 D ~ SPHWHAHDNC27D3 SPHWHAHDNC27D3 D ~ SPHWHAHDNC27D3 SPHWHAHDNC27D3 D ~ SPHWHAHDNC27D SPHWHAHDNC27R3D3 R3 D ~

15 15 LC013D(IF = 360 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDND23D3 D ~ 70 SPHWHAHDND23D3 D ~ 5000 SPHWHAHDND23R3D3 R3 D ~ SPHWHAHDND25D3 D ~ SPHWHAHDND25D3 SPHWHAHDND25D3 D ~ SPHWHAHDND25D3 SPHWHAHDND25D3 D ~ SPHWHAHDND25D3 SPHWHAHDND25D3 D ~ SPHWHAHDND25D SPHWHAHDND25R3D3 R3 D ~ 5700 SPHWHAHDND25Q3D3 Q3 D ~ 6500 SPHWHAHDND25P3D3 P3 D ~ SPHWHAHDND27D3 D ~ SPHWHAHDND27D3 SPHWHAHDND27D3 D ~ SPHWHAHDND27D3 SPHWHAHDND27D3 D ~ SPHWHAHDND27D3 SPHWHAHDND27D3 D ~ SPHWHAHDND27D SPHWHAHDND27R3D3 R3 D ~

16 16 LC016D(IF = 450 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNE23D3 D ~ 70 SPHWHAHDNE23D3 D ~ 5000 SPHWHAHDNE23R3D3 R3 D ~ SPHWHAHDNE25D3 D ~ SPHWHAHDNE25D3 SPHWHAHDNE25D3 D ~ SPHWHAHDNE25D3 SPHWHAHDNE25D3 D ~ SPHWHAHDNE25D3 SPHWHAHDNE25D3 D3 24 ~ SPHWHAHDNE25D SPHWHAHDNE25R3D3 R3 D ~ 5700 SPHWHAHDNE25Q3D3 Q3 D ~ 6500 SPHWHAHDNE25P3D3 P3 D3 24 ~ SPHWHAHDNE27D3 D ~ SPHWHAHDNE27D3 SPHWHAHDNE27D3 D ~ SPHWHAHDNE27D3 SPHWHAHDNE27D3 D ~ SPHWHAHDNE27D3 SPHWHAHDNE27D3 D ~ SPHWHAHDNE27D SPHWHAHDNE27R3D3 R3 D ~

17 17 LC019D(IF = 540 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNF23D3 D ~ 70 SPHWHAHDNF23D3 D ~ 5000 SPHWHAHDNF23R3D3 R3 D ~ SPHWHAHDNF25D3 D ~ SPHWHAHDNF25D3 SPHWHAHDNF25D3 D ~ SPHWHAHDNF25D3 SPHWHAHDNF25D3 D ~ SPHWHAHDNF25D3 SPHWHAHDNF25D3 D ~ SPHWHAHDNF25D SPHWHAHDNF25R3D3 R3 D ~ 5700 SPHWHAHDNF25Q3D3 Q3 D ~ 6500 SPHWHAHDNF25P3D3 P3 D ~ SPHWHAHDNF27D3 D ~ SPHWHAHDNF27D3 SPHWHAHDNF27D3 D ~ SPHWHAHDNF27D3 SPHWHAHDNF27D3 D ~ SPHWHAHDNF27D3 SPHWHAHDNF27D3 D ~ SPHWHAHDNF27D SPHWHAHDNF27R3D3 R3 D ~

18 18 LC026D(IF = 720 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNG23D3 D ~ 70 SPHWHAHDNG23D3 D ~ 5000 SPHWHAHDNG23R3D3 R3 D ~ SPHWHAHDNG25D3 D ~ SPHWHAHDNG25D3 SPHWHAHDNG25D3 D ~ SPHWHAHDNG25D3 SPHWHAHDNG25D3 D ~ SPHWHAHDNG25D3 SPHWHAHDNG25D3 D3 37 ~ SPHWHAHDNG25D SPHWHAHDNG25R3D3 R3 D ~ 5700 SPHWHAHDNG25Q3D3 Q3 D ~ 6500 SPHWHAHDNG25P3D3 P3 D3 37 ~ SPHWHAHDNG27D3 D ~ SPHWHAHDNG27D3 SPHWHAHDNG27D3 D ~ SPHWHAHDNG27D3 SPHWHAHDNG27D3 D ~ SPHWHAHDNG27D3 SPHWHAHDNG27D3 D ~ SPHWHAHDNG27D SPHWHAHDNG27R3D3 R3 D ~

19 19 LC033D(IF = 0 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNH23D3 D ~ 70 SPHWHAHDNH23D3 D ~ 5000 SPHWHAHDNH23R3D3 R3 D ~ SPHWHAHDNH25D3 D ~ SPHWHAHDNH25D3 SPHWHAHDNH25D3 D ~ SPHWHAHDNH25D3 SPHWHAHDNH25D3 D ~ SPHWHAHDNH25D3 SPHWHAHDNH25D3 D3 4834~ SPHWHAHDNH25D SPHWHAHDNH25R3D3 R3 D ~ 5700 SPHWHAHDNH25Q3D3 Q3 D ~ 6500 SPHWHAHDNH25P3D3 P3 D ~ SPHWHAHDNH27D3 D ~ SPHWHAHDNH27D3 SPHWHAHDNH27D3 D ~ SPHWHAHDNH27D3 SPHWHAHDNH27D3 D ~ SPHWHAHDNH27D3 SPHWHAHDNH27D3 D ~ SPHWHAHDNH27D SPHWHAHDNH27R3D3 R3 D ~

20 20 LC040D(IF = 10 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Color Flux Flux Range (Φv, lm) SPHWHAHDNK23D3 D ~ 70 SPHWHAHDNK23D3 D ~ 5000 SPHWHAHDNK23R3D3 R3 D ~ SPHWHAHDNK25D3 D ~ SPHWHAHDNK25D3 SPHWHAHDNK25D3 D ~ SPHWHAHDNK25D3 SPHWHAHDNK25D3 D ~ SPHWHAHDNK25D3 SPHWHAHDNK25D3 D ~ SPHWHAHDNK25D SPHWHAHDNK25R3D3 R3 D ~ 5700 SPHWHAHDNK25Q3D3 Q3 D ~ 6500 SPHWHAHDNK25P3D3 P3 D ~ SPHWHAHDNK27D3 D ~ SPHWHAHDNK27D3 SPHWHAHDNK27D3 D ~ SPHWHAHDNK27D3 SPHWHAHDNK27D3 D ~ SPHWHAHDNK27D3 SPHWHAHDNK27D3 D ~ SPHWHAHDNK27D SPHWHAHDNK27R3D3 R3 D ~

21 21 LC060D(IF = 10 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Chrom. Bin Flux Flux Range (Φv, lm) SPHWHAHDNL231ZD3 1Z D3 42 ~ 70 SPHWHAHDNL231ZD3 1Z D ~ 5000 SPHWHAHDNL231ZR3D3 1Z R3 D ~ SPHWHAHDNL251ZD3 1Z D ~ SPHWHAHDNL251ZD3 SPHWHAHDNL251ZD3 1Z D ~ SPHWHAHDNL251ZD3 SPHWHAHDNL251ZD3 1Z D ~ SPHWHAHDNL251ZD3 SPHWHAHDNL251ZD3 1Z D3 87 ~ SPHWHAHDNL251ZD SPHWHAHDNL251ZR3D3 1Z R3 D ~ 5700 SPHWHAHDNL251ZQ3D3 1Z Q3 D ~ 6500 SPHWHAHDNL251ZP3D3 1Z P3 D3 87 ~ SPHWHAHDNL271ZD3 1Z D ~ SPHWHAHDNL271ZD3 SPHWHAHDNL271ZD3 1Z D ~ SPHWHAHDNL271ZD3 SPHWHAHDNL271ZD3 1Z D ~ SPHWHAHDNL271ZD3 SPHWHAHDNL271ZD3 1Z D ~ SPHWHAHDNL271ZD SPHWHAHDNL271ZR3D3 1Z R3 D ~

22 22 LC0D(IF = 1620 ma, TJ = 85 ºC) CRI(Ra) Min. Nominal CCT(K) Product Code VF Chrom. Bin Flux Flux Range (Φv, lm) SPHWHAHDNM231ZD3 1Z D ~ 70 SPHWHAHDNM231ZD3 1Z D ~ 5000 SPHWHAHDNM231ZR3D3 1Z R3 D3 136 ~ SPHWHAHDNM251ZD3 1Z D ~ SPHWHAHDNM251ZD3 SPHWHAHDNM251ZD3 1Z D ~ SPHWHAHDNM251ZD3 SPHWHAHDNM251ZD3 1Z D ~ SPHWHAHDNM251ZD3 SPHWHAHDNM251ZD3 1Z D ~ SPHWHAHDNM251ZD SPHWHAHDNM251ZR3D3 1Z R3 D ~ 5700 SPHWHAHDNM251ZQ3D3 1Z Q3 D ~ 6500 SPHWHAHDNM251ZP3D3 1Z P3 D ~ SPHWHAHDNM271ZD3 1Z D ~ SPHWHAHDNM271ZD3 SPHWHAHDNM271ZD3 1Z D ~ SPHWHAHDNM271ZD3 SPHWHAHDNM271ZD3 1Z D ~ SPHWHAHDNM271ZD3 SPHWHAHDNM271ZD3 1Z D ~ SPHWHAHDNM271ZD SPHWHAHDNM271ZR3D3 1Z R3 D ~

23 23 b) Chromaticity Region & Coordinates (IF = Sorting Current, TJ = 85 ºC) CIE x,y MacAdam Ellipse (, ) MacAdam Ellipse (, ) Step CIE x CIE y a b Step CIE x CIE y a b 2-step step step step MacAdam Ellipse (, ) MacAdam Ellipse (, ) Step CIE x CIE y a b Step CIE x CIE y a b 2-step step step step MacAdam Ellipse (R3) MacAdam Ellipse (Q3) Step CIE x CIE y a b Step CIE x CIE y a b 3-step step MacAdam Ellipse (P3) Step CIE x CIE y a b 3-step Note: Samsung maintains measurement tolerance of: Cx, Cy = ±0.005

24 24 3. Typical Characteristics Graphs a) Spectrum Distribution (IF = Sorting Current, TJ = 85 ºC) CRI Ra + CRI Ra + CRI Ra 70+

25 Relative Luminous Flux(%) Forward Voltage Relative Luminous Flux(%) Forward Voltage Relative Luminous Flux(%) Forward Voltage 25 b) Forward Current Characteristics (TJ = 85 ºC) 1)LC003D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current ) LC006D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current ) LC009D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current

26 Relative Luminous Flux(%) Forward Voltage Relative Luminous Flux(%) Forward Voltage Relative Luminous Flux(%) Forward Voltage 26 4) LC013D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current ) LC016D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current ) LC019D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current

27 Relative Luminous Flux(%) Forward Voltage Relative Luminous Flux(%) Forward Voltage Relative Luminous Flux(%) Forward Voltage 27 7) LC026D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current ) LC033D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current ) LC040D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current

28 Relative Luminous Flux(%) Forward Voltage Relative Luminous Flux(%) Forward Voltage 28 10) LC060D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current ) LC0D Relative luminous Flux vs. Forward Current Forward Voltage vs. Forward Current

29 Relative Luminous Intensity CIE x, CIE y CIE x, CIE y Relative Luminous Flux(%) Forward Voltage(V) 29 c) Temperature Characteristics(IF = Sorting Current) Relative Luminous Flux vs. Temperature Forward Voltage vs. Temperature Tc( ) Tc( ) d) Color Shift Characteristics (TJ = 85 ºC, IF =Sorting Current, CRI = +) CIE x, CIE y vs. Forward Current CIEx, CIEy vs. Temperature CIE x CIE y 0% 50% 100% 150% 200% 250% 300% ΔCIE x ΔCIE y Tc( ) e) Beam Angle Characteristics (IF = Sorting Current, TJ = 85 ºC) Angle( )

30 If [ ma ] If [ ma ] If [ ma ] If [ ma ] If [ ma ] If [ ma ] 30 f) Derating Characteristics 1) LC003D 2) LC006D 0.25 Derating Curve 0.5 Derating Curve Tc [ ] Tc [ ] 3) LC009D4) LC0013D 0.8 Derating Curve 1.0 Derating Curve Tc [ ] Tc [ ] 5) LC016D 6) LC0019D 1.25 Derating Curve 1.50 Derating Curve Tc [ ] Tc [ ]

31 If [ ma ] If [ ma ] If [ ma ] If [ ma ] If [ ma ] 31 7) LC026D 8) LC0033D 2.0 Derating Curve 2.5 Derating Curve Tc [ ] Tc [ ] 9) LC040D 10) LC060D 3.0 Derating Curve 3.0 Derating Curve Tc [ ] Tc [ ] 11) LC0D 5.0 Derating Curve Tc [ ]

32 xxx...xxxx Outline Drawing & Dimension Model : LC003D, LC006D, LC009D, LC013D Model Description LC013D330 LOT No. T C SAMSUNG 1. Unit: mm 2. Tolerance: ± 0.3 mm Item Dimension Tolerance Unit Length 13.5 ±0.30 mm Width 13.5 ±0.30 mm Height 1.50 ±0.20 mm Light Emitting Surface (LES) Diameter 9.8 ±0.30 mm Note: Denoted product information above is only an example (LC013D330 :LC013D, Gen3, Ra, K)

33 xxx...xxxx 33 Model : LC016D, LC019D, LC026D, LC033D Model Description LC026D330 LOT No. T C SAMSUNG 1. Unit: mm 2. Tolerance: ± 0.3 mm Item Dimension Tolerance Unit Length 19.0 ±0.30 mm Width 19.0 ±0.30 mm Height 1.50 ±0.20 mm Light Emitting Surface (LES) Diameter 14.5 ±0.30 mm Note: Denoted product information above is only an example ( LC026D330 : LC026D, Gen3, CRI+, K )

34 xxx...xxxx 34 Model : LC040D, LC060D, LC0D Model Description LC040D330 LOT No. T C SAMSUNG 1. Unit: mm 2. Tolerance: ± 0.3 mm Item Dimension Tolerance Unit Length 28.0 ±0.30 mm Width 28.0 ±0.30 mm Height 1.50 ±0.20 mm Light Emitting Surface (LES) Diameter 22.0 ±0.30 mm Note: Denoted product information above is only an example ( LC040D330 : LC040D, Gen3, CRI+, K )

35 35 5. Reliability Test Items & Conditions a) Test Items Test Item Test Condition Test Hour / Cycle Wet High Temperature Operating Life Test (WHTOL) 60 ºC, % RH,, DC Derating, IF 1000 h High Temperature Operating Life Test (HTOL) 85 ºC, DC Derating, IF 1000 h Low Temperature Operating Life Test (LTOL) -40 ºC, DC,DeratingIF 1000 h High Temperature Storage Low Temperature Storage 110 ºC 1000 h -40 ºC 1000 h Wet High Temperature Storage Test 85ºC, 85% RH 1000h Temperature Cycling Powered Temperature Cycle (PTC) -45 C / 15min ~ 125 / 15min Temperature change within 5min -40 ºC/ 85 ºC each 10 min, 20 min transfer power on/off each 5 min, DC Derating, IF = max 500 cycle 100 cycles ESD (HBM) R1: 10 MΩ R2: 1.5 kω C: 100 pf V: ±2 kv 5 times ESD (MM) R1: 10 MΩ R2: 0 kω C: 200 pf V: ±0.5 kv 5 times Vibrations Variable Frequency Mechanical Shock Test 20~ Hz (displacement: 0.06 inch, max. 20 g) ~ 2 khz (max. 20 g) min. frequency max. frequency 4 min transfer 1500g, 0.5 ms each of the 6 surfaces (3 axis x 2 sides) 4 times 5 times Hydrogen Sulphide(H2S) 25 C 75%R.H. H2S concentration 15ppm 504h b) Criteria for Judging the Damage Item Symbol Test Condition (Tc = 25 ºC) Min. Limit Max. Forward Voltage VF IF = Sorting Current L.S.L. * 0.9 U.S.L. * 1.1 Luminous Flux Φv IF =Sorting Current L.S.L * 0.7 U.S.L * 1.3

36 36 6. Label Structure a) Label Structure LC026D RA K D3 abcdef SPHWHAHDNG25D3 D3 01 IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII G4AZC4001/1001/ xxxx pcs IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII Lot Number Bin Code Product Code Note: Denoted bincode and product code above is only an example (see description on page 5) Bin Code: ab: Forward Voltage bin (refer to page 9) cd: Chromaticity bin (refer to page 21) ef: Luminous Flux bin (refer to page 5-8) b) Lot Number The lot number is composed of the following characters: LC026D RA K D3 SPHWHAHDNG25D3 D3 01 IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII /1abc/ xxxx pcs IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII / 1abc / xxxx pcs : Production site (S: Giheung, Korea, G: Tianjin, China) : 4(LED) : Product state (A: Normal, B: Bulk, C: First Production, R: Reproduction, S: Sample) : Year (Z: 2015, A: 2016, B: 2017 ) 5 : Month (1~9, A, B, C) 6789 : Day (1~9, A, B~V) abc : Product serial number (001 ~ 999)

37 37 7. Packing Structure Model : L003D, LC006D, LC009D, LC013D Max. quantity Dimension(mm) Packing material in pcs of COB Length Width Height Tolerance Tray Anti-Static Bag 250 (5 trays) /- 0.5 Outer Box (Small) 500 (2 bags) Outer Box (Middle) 1000 (4 bags) a) Packing Structure b) Tray Small Box Middle Box

38 38 Model : LC016D. LC019D, LC026D, LC033D Max. quantity Dimension(mm) Packing material in pcs of COB Length Width Height Tolerance Tray Anti-Static Bag 125 (5 trays) /- 0.5 Outer Box (Small) 250 (2 bags) Outer Box (Middle) 500 (4 bags) a) Packing Structure b) Tray Small Box Middle Box

39 39 Model : LC040D, LC060D, LC0D Max. quantity Dimension(mm) Packing material in pcs of COB Length Width Height Tolerance Tray Anti-Static Bag (5 trays) /- 0.5 Outer Box (Small) 160 (2 bags) Outer Box (Middle) 320 (4 bags) a) Packing Structure Small Box Middle Box b) Tray

40 40 8. Precautions in Handling & Use 1) This device should not be used in any type of fluid such as water, oil, organic solvent, etc. When cleaning is required, IPA is recommended as the cleaning agent. Some solvent-based cleaning agent may damage the silicone resins used in the device. 2) LEDs must be stored in a clean environment. If the LEDs are to be stored for three months or more after being shipped from Samsung, they should be packed with a nitrogen-filled container (shelf life of sealed bags is 12 months at temperature 0~40 ºC, 0~ % RH). 3) After storage bag is opened, device subjected to soldering, solder reflow, or other high temperature processes must be: a. Mounted within 672 hours (28 days) at an assembly line with a condition of no more than 30 ºC / 60 % RH, or b. Stored at <10 % RH 4) Repack unused products with anti-moisture packing, fold to close any opening and then store in a dry place. 5) Devices require baking before mounting, if humidity card reading is >60 % at 23 ± 5 ºC. 6) Devices must be baked for 1 hour at 60 ± 5 ºC, if baking is required. 7) The LEDs are sensitive to the static electricity and surge current. It is recommended to use a wrist band or antielectrostatic glove when handling the LEDs. If voltage exceeding the absolute maximum rating is applied to LEDs, it may cause damage or even destruction to LED devices. Damaged LEDs may show some unusual characteristics such as increase in leakage current, lowered turn-on voltage, or abnormal lighting of LEDs at low current. 8) The thermal management is one of the most critical factors for the LED lighting system. Especially the LED junction temperature should not exceed the absolute maximum rating while operation of LED lighting system. For more information, please refer to Application Note Mechanical & Thermal Guide for COB. 9) In case of driving LEDsaround the minimum current level (If_min), chips might exhibit different brightness due to the variation in I-V characteristics of each one. This is normal and does not adversely affect the performance of product. 10) VOCs (Volatile Organic Compounds) can be generated from adhesives, flux, hardener or organic additives used in luminaires (fixtures). Transparent LED silicone encapsulant is permeable to those chemicals and they may lead to a discoloration of encapsulant when they exposed to heat or light. This phenomenon can cause a significant loss of light emitted (output) from the luminaires. In order to prevent these problems, we recommend users to know the physical properties of materials used in luminaires and they must be carefully selected. 11) The resin area is very sensitive, please do not handle, press, touch, rub, clean, or pick by with tweezers on it. Instead, please pick at the handling area as indicated below.

41 Legal and additional information. About Samsung Electronics Co., Ltd. Samsung Electronics Co., Ltd. inspires the world and shapes the future with transformative ideas and technologies, redefining the worlds of TVs, smartphones, wearable devices, tablets, cameras, digital appliances, printers, medical equipment, network systems and semiconductors. We are also leading in the Internet of Things space through, among others, our Digital Health and Smart Home initiatives. We employ 307,000 people across 84 countries. To discover more, please visit our official website at and our official blog at global.samsungtomorrow.com. Copyright 2015 Samsung Electronics Co., Ltd. All rights reserved. Samsung is a registered trademark of Samsung Electronics Co., Ltd. Specifications and designs are subject to change without notice. Non-metric weights and measurements are approximate. All data were deemed correct at time of creation. Samsung is not liable for errors or omissions. All brand, product, service names and logos are trademarks and/or registered trademarks of their respective owners and are hereby recognized and acknowledged. Samsung Electronics Co., Ltd. 95, Samsung 2-ro Giheung-gu Yongin-si, Gyeonggi-do, KOREA

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