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Specific Lighting Product Data Sheet Spec No.: DS23-2016-0102 Effective Date: 12/15/2016 Revision: - LITE-ON DCC RELEASE BNS-OD-FC001/A4 LITE-ON Technology Corp. / Optoelectronics No.90,Chien 1 Road, Chung Ho, New Taipei City 23585, Taiwan, R.O.C. Tel: 886-2-2222-6181 Fax: 886-2-2221-1948 / 886-2-2221-0660 http://www.liteon.com/opto

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 technologies. 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 1/17 Part No.:

1.4 Product List Part Number Product VF CCT CRI Color Bin Lumen Bin Series Type 3SDCM 5SDCM ANSI -8%~+8% -15%~+25% LTPL-M13712ZS27-T0 12 37V 2700K 80 LTPL-M13712ZS30-T0 12 37V 3000K 80 LTPL-M13712ZS40-T0 12 37V 4000K 80 LTPL-M13712ZS50-F1 12 37V 5000K 80-2/17 Part No.:

2. Outline Dimensions 2.1 Form Factor of M137 series CoB 12 Series Notes 1. All dimensions are in millimeters. 2. Tolerance is ±0.3mm unless otherwise noted. 3. LED of equivalent circuit means all series/parallel in CoB package 3/17 Part No.:

3. Absolute Maximum Ratings at Ta=25 C Parameter Symbol Rating Unit Power Dissipation P O 12.0 W Forward Current I F 300 ma Junction Temperature T j 125 C Thermal Resistance, Junction-Case R th, J-C 2.5 C/W Operating Temperature Range T opr -40 to 85 C Storage Temperature Range T stg -40 to 100 C Electrostatic Discharge ESD 8 KV Notes 1. The pulse mode condition is 1/10 duty cycle with 100 msec pulse width. 2. Forbid to be operated at reverse voltage condition. 3. ESD spec is reference to AEC-Q101-001 HBM. 4. The unit of Rth is C/W electrical. 5. The M13 CoB is recommended soldering temperature under 350degC and could not over 3.5sec. 4/17 Part No.:

4. Electro-Optical Characteristics 4.1 Typical Performance 12 Series Product Dominant Current V F (V) Flux(lm) V F (V) Flux(lm) Eff.(lm/W) Eff.(lm/W) CCT (ma) @25 C @25 C @85 C @85 C @25 C @85 C 2700K 200 36.8 930 35.7 828 126 116 3000K 200 36.8 969 35.7 862 132 121 4000K 200 36.8 1027 35.7 914 139 128 5000K 200 36.8 1037 35.7 922 141 129 Notes 1. All of V F value are typical, the real bin range please refer page 19 V F Binning Parameter. 2. All of flux value are typical, the real bin range please refer page 19 Flux Binning Parameter. 3. Tolerance of flux is ±7%, tolerance of CCX/CCY is ±0.007, tolerance of CRI is ±2, and tolerance of V F is ±3%. 4. Typical viewing angle is 120deg. 5/17 Part No.:

4.2 Forward Current vs. Lumen Voltage 12 Series Product Current Lumen (lm) V F (V) (ma) 2700K 3000K 4000K 5000K 40 33.5 219 228 242 244 60 33.8 319 332 352 355 100 34.8 503 524 555 561 150 35.8 713 743 788 795 200 36.8 897 935 990 1000 250 37.6 1066 1111 1177 1189 300 38.4 1222 1274 1349 1362 6/17 Part No.:

Relative Intensity (%) 4.3 Relative Spectral Power Distribution at Typical Current SPECIFIC LIGHTING 3000K 5000K 25degC 85degC 4.4 Radiation Characteristics 100% 0 90% 30 80% 70% 60% 50% 60 40% 30% 20% 10% 0% 90 60 30 0 50 100 7/17 Part No.:

4.5 Forward Current vs. Forward Voltage 4.6 Forward Voltage vs. Case Temperature 8/17 Part No.:

4.7 Relative Intensity vs. Case Temperature 4.8 Forward Current Degrading Curve 9/17 Part No.:

5. CoB Binning Definition Flux Binning Parameter (25degC) Lumen CODE List of M13 Series Product Parameter Code Unit Lumen G 395 Example of M137 Series Product Bin Lumen (lm) 2700K CCT Bin Range H 425 I 460 J 495 K 535 OP 730~790 PR 790~920 RT 920~1070 Lumen Range Luminous Flux L 580 M 625 N lm 675 O 730 P 790 Q 850 R 920 S 990 T 1070 U 1155 Bin Code Main Bin G H J K -15%~-8% -8%~+8% +8%~+25% Full Bins 10/17 Part No.:

12 Series Lumen Bin Lumen (lm) 2700K 3000K 4000K 5000K Bin Range Bin Range Bin Range Bin Range OP 730~790 OP 730~790 PQ 790~850 PQ 790~850 PQ 790~850 PQ 790~850 QR 850~920 QR 850~920 QR 850~920 QR 850~920 RS 920~990 RS 920~990 RS 920~990 RT 920~990 ST 990~1070 ST 990~1070 ST 990~1070 ST 990~1070 TU 1070~1155 TU 1070~1155 Forward Voltage Binning Parameter (25degC) Parameter Bin Symbol Min Max Unit Condition Forward Voltage V1 VF 33 39 V IF =Typical Current Note: Full Rank on Label Example: V1/HJ/D1 Forward Voltage Rank Luminous Flux Rank Color Rank V1 OP D1 11/17 Part No.:

Example of LiteOn CoB MacAdam Ellipse Color Definition (EX: 2700K) Solid line in red/blue/black is 3SDCM/5SDCM/ANSI at 25degC. D3 D2 D1 Dotted line in light gray is 3SDCM/5SDCM/ANSI at 85degC and the CCX/CCY center follows ANSI. CIE Center Point CCT 25degC (LiteOn Spec.) 85degC (ANSI) Hot/Cold Factor CCX CCY CCX CCY CCX CCY 2700 0.4602 0.4133 0.4578 0.4101-0.0024-0.0032 3000 0.4352 0.4090 0.4338 0.4030-0.0014-0.0060 4000 0.3841 0.3872 0.3818 0.3797-0.0023-0.0075 5000 0.3485 0.3655 0.3447 0.3553-0.0038-0.0102 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. 4. The ellipse equation expression: SDCM = (g11*(x-x 0) 2 + 2*g12*(x-x 0)*(y-y 0) + g22*(y-y 0) 2 ) 0.5 12/17 Part No.:

M13 CRI80 2700K PN: LTPL-M13712ZS27-T0 M13 CRI80 3000K PN: LTPL-M13712ZS30-T0 ASI at 25degC 13/17 Part No.:

M13 CRI80 4000K PN: LTPL-M13712ZS40-T0 M13 CRI80 5000K PN: LTPL-M13712ZS50-F1 14/17 Part No.:

6. Reliability Test Plan No Test item Condition Duration Number of Failed Result 1 High Temperature Operating Life Tc=85 C, I F =Typical Current 1K hours 0/10 Pass 2 Wet High Temperature Operating Life 60 C/90%RH, I F =Typical Current(DC) 30 mins ON/OFF 1K hours 0/10 Pass -40 C to 125 C, 15minutes dwell, 3 Thermal Shock <10 seconds transfer, measurement in every 250 cycles 500 cycles 0/10 Pass 4 Fast Switch Cycling Test 40000cycles, 2 mins On/Off, Room temperature(25 C+/-5 C), measurement in every 5000 cycles 40K cycles 0/10 Pass 5 6 High Temperature Storage Life Low Temperature Storage Life Ta=120 C 1K hours 0/10 Pass Ta=-55 C 1K hours 0/10 Pass 7 Mechanical Shock 1500G, 0.5ms pulse, 5 shocks each 6 axis 30 Times (5 shocks each 6 axis) 0/10 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 (3 times per axis over 6 hrs) 0/10 Pass Criteria for Judging the Damage Item Symbol Test Condition Criteria for Judgment Min. Max. Forward Voltage V F I F =Typical Current U.S.L. x 1.1 Luminous Flux Lm I F =Typical Current L.S.L. x 0.7 CCX & CCY X,Y I F =Typical Current Shift<0.02 Notes: 1.Operating life tests are mounted on thermal heat sink 2..Storage items are only component, not put on heat sink. 15/17 Part No.:

7. Packing Specifications Packaging Tray 100pcs LED in one tray MSL level 3 Marking Label 1 Label 2 Label 1 Inner Bag (Dry Pack) 10pcs trays in one bag Inner Box One bag in one box Label 2 Label 2 Label 2 Outer Box 5pcs inner boxes in one outer box 16/17 Part No.:

8. Cautions SPECIFIC LIGHTING 8.1 An LED is a current-operated device. In order to ensure intensity uniformity on 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 might 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 V F of the suspect LEDs at low currents. 17/17 Part No.: