LTPL-M02 LITEON | Alldatasheet
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Technical content
Created Date : 05/26/2007 Revison : 1.01, 05/26/2008 LED HIGH POWER CoB Product Series Data Sheet Created Date: 02 / 06 / 2013 Revision: 2.0, 05 / 21/ 2013
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 1. Description The LiteON CoB Product series is a revolutionary, energy efficient and ultra compact new light source, combining the lifetime and reliability advantages of Light Emitting Diodes with the brightness of conventional lighting. It gives you total design freedom and unmatched brightness, creating a new opportunities for solid state lighting to displace conventional lighting technologie s.
1.1 Features
Compact high flux density light source Uniform high quality illumination Streamlined thermal path MacAdam compliant binning structure More energy efficient than incandescent, halogen and fluorescent lamps Instant light with unlimited dimming RoHS compliant and Pb free
1.2 Benefits Features
Enhanced optical control Clean white light without pixilation Uniform consistent white light Significantly reduced thermal resistance and increased operating temperatures Lower operating costs Reduced maintenance costs ESD rating is 8KV in HBM
1.3 Naming Rule
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013
1.4 Product List
3SDCM 5SDCM 7SDCM -8%~+8% -15%~+15% LTPL-M02608ZS27-T0 8 2700K 80 ☆ ☆ LTPL-M02608ZS27-S1 8 2700K 80 ☆ ☆ ☆ LTPL-M02608ZS30-T0 8 3000K 80 ☆ ☆ LTPL-M02608ZS30-S1 8 3000K 80 ☆ ☆ ☆ LTPL-M02608ZS35-T0 8 3500K 80 ☆ ☆ LTPL-M02608ZS35-S1 8 3500K 80 ☆ ☆ ☆ LTPL-M02608ZS40-T0 8 4000K 80 ☆ ☆ LTPL-M02608ZS40-S1 8 4000K 80 ☆ ☆ ☆ LTPL-M02608ZS50-F1 8 5000K 80 ☆ ☆ LTPL-M02608ZS50-S1 8 5000K 80 ☆ ☆ LTPL-M02608QS30-T0 8 3000K 90 ☆ ☆ LTPL-M02608QS30-S1 8 3000K 90 ☆ ☆ ☆ LTPL-M02610ZS27-T0 10 2700K 80 ☆ ☆ LTPL-M02610ZS27-S1 10 2700K 80 ☆ ☆ ☆ LTPL-M02610ZS30-T0 10 3000K 80 ☆ ☆ LTPL-M02610ZS30-S1 10 3000K 80 ☆ ☆ ☆ LTPL-M02610ZS35-T0 10 3500K 80 ☆ ☆ LTPL-M02610ZS35-S1 10 3500K 80 ☆ ☆ ☆ LTPL-M02610ZS40-T0 10 4000K 80 ☆ ☆ LTPL-M02610ZS40-S1 10 4000K 80 ☆ ☆ ☆ LTPL-M02610ZS50-F1 10 5000K 80 ☆ ☆ LTPL-M02610ZS50-S1 10 5000K 80 ☆ ☆ LTPL-M02610QS30-T0 10 3000K 90 ☆ ☆ LTPL-M02610QS30-S1 10 3000K 90 ☆ ☆ ☆ LTPL-M02520ZS27-T0 20 2700K 80 ☆ ☆ LTPL-M02520ZS27-S1 20 2700K 80 ☆ ☆ ☆ LTPL-M02520ZS30-T0 20 3000K 80 ☆ ☆ LTPL-M02520ZS30-S1 20 3000K 80 ☆ ☆ ☆ LTPL-M02520ZS35-T0 20 3500K 80 ☆ ☆ LTPL-M02520ZS35-S1 20 3500K 80 ☆ ☆ ☆ LTPL-M02520ZS40-T0 20 4000K 80 ☆ ☆ LTPL-M02520ZS40-S1 20 4000K 80 ☆ ☆ ☆
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 LTPL-M02520ZS50-F1 20 5000K 80 ☆ ☆ LTPL-M02520ZS50-S1 20 5000K 80 ☆ ☆ LTPL-M02520QS30-T0 20 3000K 90 ☆ ☆ LTPL-M02520QS30-S1 20 3000K 90 ☆ ☆ ☆ LTPL-M02530ZS27-T0 30 2700K 80 ☆ ☆ LTPL-M02530ZS27-S1 30 2700K 80 ☆ ☆ ☆ LTPL-M02530ZS30-T0 30 3000K 80 ☆ ☆ LTPL-M02530ZS30-S1 30 3000K 80 ☆ ☆ ☆ LTPL-M02530ZS35-T0 30 3500K 80 ☆ ☆ LTPL-M02530ZS35-S1 30 3500K 80 ☆ ☆ ☆ LTPL-M02530ZS40-T0 30 4000K 80 ☆ ☆ LTPL-M02530ZS40-S1 30 4000K 80 ☆ ☆ ☆ LTPL-M02530ZS50-F1 30 5000K 80 ☆ ☆ LTPL-M02530ZS50-S1 30 5000K 80 ☆ ☆ LTPL-M02530QS30-T0 30 3000K 90 ☆ ☆ LTPL-M02530QS30-S1 30 3000K 90 ☆ ☆ ☆
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 2. Outline Dimensions
2.1 Form Factor of CoB
10W Product. (Code 4: 8/10) 20W/30W Product. (Code 4: 20/30)
2.2 Internal Equivalent Circuit
2.3 Notes
- All dimensions are in millimeters. 2. Tolerance is ±0.2mm (0.008”) unless otherwise noted. 3. LED of equivalent circuit means all series/parallel in CoB package.
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 3. Rating and Characteristics 3.1 Absolute Maximum Ratings at Ta=25°C. Parameter Symbol Code 4 Rating Unit Power Dissipation Po 08 12.8 W 10 19.2 20 32.0 30 44.8 Forward Current IF 08 320 mA 10 480 20 800 30 1120 Reverse Voltage VR 45 V Junction Temperature Tj 125 °C Thermal Resistance, Junction-Case Rth, J-C 08 2.40 °C / W 10 2.05 20 1.20 30 0.80 Operating Temperature Range Topr -40 to 85 °C Storage Temperature Range Tstg -40 to 100 °C Breakdown Voltage(DC) VB 2.25 KV Electrostatic Discharge ESD 8 KV Notes : 1. The pulse mode condition is 1/10 duty cycl e with 100 msec pulse width. 2. Forbid to operating at reverse voltage condition 3. ESD spec is reference to AEC-Q101-001 HBM. 4. The unit of Rth is °C/W electrical 5. Code 4 means Watt of CoB product. 6. The M02 CoB does not suggest processing the IR-reflow, suggest that manual soldering only, the condition of soldering temperature is under 350degC and could not over 3.5sec.
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013
3.2 Electro-Optical Characteristics
CRI 80 Series Product Dominant CCT Code 4 Current (mA) VF (V) @25°C Flux(lm) @25°C VF (V) @85°C Flux(lm) @85°C Eff.(lm/W) @25°C Eff.(lm/W) @85°C 2700K 08 230 37.8 900 36.7 810 104 96 10 350 37.8 37.8 37.8 37.8 37.5 37.5 4.7 1370 36.7 1233 104 96 20 580 38.0 2250 36.9 2025 102 95 30 840 38.0 3300 36.9 2970 103 96 3000K 08 220 37.8 900 36.7 810 108 100 10 330 37.8 1370 36.7 1233 110 102 20 550 37.8 2250 36.7 2025 108 100 30 800 37.8 3300 36.7 2970 109 101 3500K 08 210 37.7 900 36.6 810 114 105 10 320 37.7 1370 36.6 1233 114 105 20 540 37.7 2250 36.6 2025 111 102 30 780 37.7 3300 36.6 2970 112 104 4000K 08 200 37.4 900 36.4 810 120 111 10 310 37.5 1370 36.4 1233 118 109 20 520 37.5 2250 36.4 2025 115 107 30 750 37.5 3300 36.4 2970 117 109 5000K 08 200 37.4 900 36.3 810 120 111 10 300 37.4 1370 36.3 1233 122 113 20 510 37.4 2250 36.3 2025 118 109 30 730 37.4 3300 36.3 2970 121 112
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 CRI 90 Series Product Dominant CCT Code 4 Current (mA) VF (V) @25°C Flux(lm) @25°C VF (V) @85°C Flux(lm) @85°C Eff.(lm/W) @25°C Eff.(lm/W) @85°C 3000K 08 220 37.8 700 36.7 630 84 78 10 330 37.8 1050 36.7 945 84 78 20 550 37.8 1750 36.7 1575 84 78 30 800 37.8 2600 36.7 2340 86 80 Notes 1. Code 4 means Watt of CoB product. 2. All of VF value are typical, the real range is 33.0 -39.8 volt, please refer page 9 ”VF Binning Parameter”. 3. All of Flux value are typical, the real Bin range please refer page 10 ”Flux Binning Parameter”. 4. Tolerance of flux is ±7%, tolerance of CCX/CCY is ±0.007, tolerance of CRI is ±2. 5. Typical viewing angle is 120deg. 6. R9>0 for CRI80 product, R9>50 for CRI90 product
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 Efficiency Comparison Table (25degC) CRI 80 Series 8W Series Product Current (mA) VF (V) Lumen (lm) 2700K 3000K 3500K 4000K 5000K 140 36.52 576 606 615 643 661 160 36.66 652 687 697 727 748 180 37.07 726 764 775 810 833 200 37.41 794 835 848 886 911 220 37.8 867 912 926 967 994 240 38.18 938 987 1002 1047 1076 260 38.55 1002 1055 1070 1118 1150 280 38.81 1065 1121 1137 1187 1222 300 39.19 1137 1197 1215 1269 1304 10W Series Product Current (mA) VF (V) Lumen (lm) 2700K 3000K 3500K 4000K 5000K 210 36.52 864 909 923 964 991 240 36.66 978 1030 1045 1091 1123 270 37.07 1089 1146 1163 1215 1249 300 37.41 1191 1253 1272 1329 1366 330 37.80 1300 1368 1389 1450 1491 360 38.18 1407 1481 1503 1570 1614 390 38.55 1503 1582 1606 1677 1724 420 38.81 1597 1681 1706 1781 1832 450 39.19 1706 1795 1822 1903 1957
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 20W Series Product Current (mA) VF (V) Lumen (lm) 2700K 3000K 3500K 4000K 5000K 350 36.52 1410 1484 1506 1573 1618 400 36.66 1596 1680 1705 1781 1831 450 37.07 1776 1870 1898 1982 2038 500 37.41 1943 2045 2076 2168 2229 550 37.80 2121 2232 2265 2366 2433 600 38.18 2296 2417 2453 2562 2635 650 38.55 2453 2582 2621 2737 2814 700 38.81 2605 2742 2783 2906 2989 750 39.19 2783 2929 2973 3105 3193 30W Series Product Current (mA) VF (V) Lumen (lm) 2700K 3000K 3500K 4000K 5000K 490 36.52 2016 2122 2154 2249 2313 560 36.66 2282 2403 2439 2547 2619 630 37.07 2540 2674 2714 2834 2915 700 37.41 2778 2925 2969 3100 3188 770 37.8 3033 3193 3241 3384 3480 840 38.18 3283 3456 3508 3663 3767 910 38.55 3508 3692 3747 3914 4024 980 38.81 3725 3921 3980 4157 4274 1050 39.19 3980 4189 4252 4441 4566
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 CRI 90 Series 3000K 8W 10W 20W 30W Current (mA) VF (V) Lumen (lm) Current (mA) VF (V) Lumen (lm) Current (mA) VF (V) Lumen (lm) Current (mA) VF (V) Lumen (lm) 140 36.52 467 210 36.52 700 350 36.52 1158 490 36.52 1676 160 36.66 530 240 36.66 793 400 36.66 1310 560 36.66 1898 180 37.07 590 270 37.07 882 450 37.07 1459 630 37.07 2112 200 37.41 645 300 37.41 965 500 37.41 1595 700 37.41 2311 220 37.8 700 330 37.8 1050 550 37.8 1750 770 37.8 2522 240 38.18 760 360 38.18 1140 600 38.18 1885 840 38.18 2730 260 38.55 815 390 38.55 1218 650 38.55 2014 910 38.55 2917 280 38.81 860 420 38.81 1294 700 38.81 2139 980 38.81 3098 300 39.19 921 450 39.19 1382 750 39.19 2285 1050 39.19 3309
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 4. Typical Electrical/Optical Characteristics Curve Fig 1. Relative Spectrum of Emission at typical current. 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Relative Intensity (%) 90° 60 30° 0° 50 100 60° 30° Fig 2. Radiation Characteristics 3000K 25degC 25degC 85degC 85degC 5000K
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 Fig 3. Forward Current vs. Forward Voltage-Curve Fig 4. Forward Current Degrading Curve 10W 20W Rth, J-C=0.8°C / W 30W
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 Fig 5. Junction temperature vs. Relative intensity
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 5. CoB Mac-Adam Ellipse Color Definition LiteOn 3/5/7Step Mac-Adam Chromaticity Coordinate Groups (25degC) Notes 1. The LiteOn Chromaticity Coordinate Groups follow ANSI norm for 7 Mac-Adam square. 2. The (CIEx, CIEy) center of 3/5 Mac -Adam ellipse follow ANSI norm. 3. The ellipse equation expression: SDCM = (g11*(x-x0)2 + 2*g12*(x-x0)*(y-y0) + g22*(y-y0)2)0.5 Forward Voltage Binning Parameter (25degC) Parameter Bin Symbol Min Max Unit Condition Forward Voltage V1 VF 33.0 39.8 V IF=Typical Current ANSI C78.377A 7SDCM 3-Step Mac-Adam Ellipse 5-Step Mac-Adam Ellipse 2700K 3000K 3500K 4000K 5000K
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 Forward Flux Binning Parameter (25degC) CRI 80 Series Parameter Code 4 Bin Symbol Min Max Unit Code 9=0 Code 9=1 Luminous Flux (8W) A1A ΦV 650 750 lm Full Bins AC 750 950 Main Bin CD 950 1050 (10W) EF 1150 1250 Full Bins FH 1250 1500 Main Bin HI 1500 1600 (20W) KL 1900 2050 Full Bins LN 2050 2450 Main Bin NO 2450 2600 (30W) PQ 2800 3050 Full Bins QS 3050 3550 Main Bin ST 3550 3800 8W Product (Code 4=08) Main Bin 10W Product (Code 4=10) Main Bin 20W Product (Code 4=20) Main Bin 30W Product (Code 4=30) Main Bin 1150lm 1250lm 1500lm 1600lm E F H I 1900lm 2050lm 2450lm 2600lm K L N O 2800lm 3050lm 3550lm 3800lm P Q S T Main Bin Full Bins 650lm 750lm 950lm 1050lm A1 A C D
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 CRI90 Series Parameter Code 4 Bin Symbol Min Max Unit Code 9=0 Code 9=1 Luminous Flux (8W) A0A1 ΦV 550 650 lm Full Bins A1B 650 850 Main Bin BC 850 950 (10W) BC 850 950 Full Bins CE 950 1150 Main Bin EF 1150 1250 (20W) HI 1500 1600 Full Bins IK 1600 1900 Main Bin KL 1900 2050 (30W) MN 2050 2450 Full Bins NP 2450 2800 Main Bin PQ 2800 3050 8W Product (Code 4=08) Main Bin 10W Product (Code 4=10) Main Bin 20W Product (Code 4=20) Main Bin 30W Product (Code 4=30) Main Bin 850lm 950lm 1150lm 1250lm B C E F 1500lm 1600lm 1900lm 2050lm H I K L 2050lm 2450lm 2800lm 3050lm M N P Q Main Bin Full Bins 550lm 650lm 850lm 950lm A0 A1 B C
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 Example of LiteOn CoB Mac-Adam Ellipse Color Definition (EX: CRI80, 3000K series) CRI CCT 25degC (LiteOn Spec.) 85degC (ANSI) Hot/Cold Factor CCX CCY CCX CCY CCX CCY Notes 1. LiteOn tester and shipping spec follow the color bin with 25degC CCX/CCY center. 2. The Hot/Cold Factor means the CCX/CCY shift from 25degC to 85degC. 3. The Hot/Cold shift is measured by LiteOn CAS 140B instrument system. Solid line in Red/Blue/Black is 3 /5 /7 SDCM in 25degC. It is shipping Spec. of LiteOn. Dotted line in light gray is 3 / 5 /7 SDCM in 85degC and the CCX/CCY center follows ANSI C78.377A.
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 LiteOn CoB CRI80 2700K Series LiteOn CoB CRI80 3000K Series 85degC 3-Step at 25degC 85degC 5-Step at 25degC 3-Step at 25degC 5-Step at 25degC ANSI 7SDCM ANSI 7SDCM LiteOn CoB CRI80 2700K Series LiteOn CoB CRI80 3000K Series
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 LiteOn CoB CRI80 3500K Series LiteOn CoB CRI80 4000K Series 85degC 5-Step at 25degC 3-Step at 25degC ANSI 7SDCM 85degC 3-Step at 25degC 5-Step at 25degC ANSI 7SDCM LiteOn CoB CRI80 3500K Series LiteOn CoB CRI80 4000K Series
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 LiteOn CoB CRI80 5000K Series LiteOn CoB CRI90 3000K Series 85degC ANSI 7SDCM 5-Step at 25degC LiteOn CoB CRI80 5000K Series LiteOn CoB CRI90 3000K Series ANSI 7SDCM 5-Step at 25degC 3-Step at 25degC 85degC
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 6. Reliability Test Plan No Test item Condition Duration Result
1 High Temperature Operating Life Tc=85°C, IF=Typical Current 1K hours Pass
2 Wet High Temperature Operating
60°C/90%RH, IF=Typical Current(DC) 30 min ON/OFF 1K hours Pass
3 Thermal Shock -40°C to 125°C, 15minutes dwell, <10
seconds transfer, measurement in every 250 cycle 500 cycles Pass
4 Fast Switch Cycling Test 40000cycles, 2 mins On/Off, Room
temperature(25˚C+/-5C), measurement in every 5000 cycle 40K cycles Pass
5 High Temperature Storage Life Ta=120°C 1K hours Pass
6 Low Temperature Storage Life Ta=-55°C 1K hours Pass
7 Mechanical Shock 1500G, 0.5ms pulse, 5 shocks each 6 axis 30 Times (5 shocks each 6 axis) Pass
8 Variable Vibration Frequency 10-2000-10 Hz, log or linear sweep rate,
20G for approximately minute 1.5mm, each applied three times per axis over 6 hrs. 18 hrs (three times per axis over 6 hrs.) Pass Criteria for Judging the Damage Item Symbol Test Condition Criteria for Judgment Min. Max. Forward Voltage Vf IF=Typical Current U.S.L. x 1.1 Luminous Flux Lm IF=Typical Current L.S.L. x 0.7 CCX&CCY X,Y IF=Typical Current Shift<0.02 Notes: 1. Operating life test are mounted on thermal heat sink 2. Storage item are only component, not put on heat sink.
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 7. Packing Specifications
Created Date : 02/06/20 13 Revison : 1.0, 02/06/2013 8. Cautions 8.1 An LED is a current -operated device. In order to ensure intensity uniformity o n multiple LEDs connected in parallel in an application, it is recommended that a current limiting resistor be incorporated in the drive circuit, in series with each LED as shown in Circuit below. LED (A) Recommended circuit. (B) The brightness of each LED m ight appear different due to the differences in the I -V characteristics of those LEDs. 8.2 Do not put any pressure on the light emitting surface either by finger or any hand tool and do not stack the COB products. Stress or pressure may cause damage to the wires of the LED array. 8.3 This product is not designed for the use under any of the following conditions, please confirm the performance and reliability are well enough if you use it under any of the following conditions ・Do not use sulfur -containing materials in commercial products including the materials such as seals and adhesives that may contain sulfur. ・Do not put this product in a place with a lot of moisture (over 85% relative humidity), dew condensation, briny air , and corrosive gas (Cl, H2S, NH3, SO2, NOX, etc.), exposure to a corrosive environment may affect silver plating. ESD (Electrostatic Discharge) Static Electricity or power surge will damage the LED. Suggestions to prevent ESD damage: Use of a conductive wrist band or anti-electrostatic glove when handling these LEDs. All devices, equipment, and machinery must be properly grounded. Work tables, storage racks, etc. should be properly grounded. Use ion blower to neutralize the static charge which might have built up on surface of the LED’s plastic lens as a result of friction between LEDs during storage and handling. ESD-damaged LEDs will exhibit abnormal characteristics such as high reverse leakage current, low forward voltage, or “no light up” at low currents. To verify for ESD damage, check for “light up” and VF of the suspect LEDs at low currents.