EdiPower III SL Series

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EdiPower III Series EdiPower III SL Series Datasheet Down Light Spot Light PAR Lamp Bulb Street Light Introduction : For bakery lighting applications, Edison's Aroma LED presents champagne gold color which can help to emphasize the luster of bread, cheese and wine. Moreover, Edison Opto also develops special phosphor proportion to emit deep pink light (Ruby LED) which can enhance the red in fresh meat and flowers. Edison Opto launcher Mela LED which can bring out the rosy luster of natural skin. Featuring high CRI (up to 90), EdiPower SL Mela LED is the perfect match for beauty makeup lighting. Description : Mela --- Application: Skin, bright or colorful fabrics and goods, etc. Brightness effect can be obtained by making the color of skin to be appeared as gentle and soft. Contrast bright and colorful appearance of goods. Easy to be applied in COB LED lighting. Ruby --- Application: Fresh meat, dark meat, and goods with red appearance. Bring out the color of red ingredient, especially on meat. Easy to be applied in COB LED lightng. Snow White --- Application: Irradiat at fabric, clothing, paint. Bring out white colors effect in fabric and paint. Similar to Ceramic Metal Halide (CDM) in spectrum. Easy design-in Solid State Lighting (SSL). Aroma --- Application: Bread, Cheese, Champagne, Wine, and color of yellow ingredient. Refine the visual sense of bread, cheese and wine, to make color of yellow, orange, gold ingredients stand out. Easy to be designed in COB Retail lighting. Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 1

Table of Contents General Information...3 Absolute Maximum Ratings (T c =25 o C)...4 Luminous Flux Characteristic...5 Chromaticity coordinates (3_Step, T C =25 o C)...6 Mechanical Dimensions...8 Characteristic curve...11 Reliability...16 Product Packaging Information...18 Handling with a EdiPower III Series...20 Revision History...24 About Edison Opto...24 Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 2

General Information Ordering Code Format 2 P SL xx xw xx Pxx xxx X1 X2 X3 X4 X5 X6 X7 X8 X1 X2 X3 X4 X5 Type Component Series Wattage Color 2 Emitter P EdiPower SL SL Series 09 9W MW Mela 30 30W AW Aroma 40 40W RW Ruby SW Snow White X6 X7 X8 Internal code PCB Board Serial Number P12 13x13 - - P13 19x19 - - P16 28x28 Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 3

Absolute Maximum Ratings (T c =25 o C) Parameter Symbol Value Units 2PSL09xWxxP12010 : 9.4 Input Power Pi 2PSL30xWxxP13010 : 26.4 W 2PSL40xWxxP16010 : 40.2 DC Forward Current 1 I F 2PSL30xWxxP13010 : 720 ma 2PSL09xWxxP12010 : 240 2PSL40xWxxP16010 : 1080 Min. Forward Current Min. I F 10 ma Reverse Current 2 I R 1 ma Operating Temperature T op -40 ~ +85 C Storage Temperature T st -40 ~ +85 C LED junction Temperature 3 T J 125 C Case Temperature T C 2PSLxxAW27Pxx010 : 105 2PSLxxSW27Pxx010 : 85 C 2PSLxxRW27Pxx010 : 105 2PSLxxMW38Pxx010 : 105 Thermal Resistance R j-c 2PSL30xWxxP13010 : 0.88 C/W 2PSL09xWxxP12010 : 2.3 2PSL40xWxxP16010 : 0.60 Notes: 1. DC forward current should not exceed LED s operating current; the current tolerance should be kept within a range of 5%. 2. LEDs are not designed to be driven in reverse bias. 3. Proper current derating must be observed to maintain junction temperature below the maximum at all time. 4. Refer to Outline drawing for Tc measurement point. 5. D.C. Current : Tj = Tc + R j-c *Pi Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 4

Luminous Flux Characteristic Order Code CCT (K) Luminous Flux(lm) T C =85 C Luminous Flux(lm) T C =25 C Efficacy (lm/w) CRI Ra CRI R9 Forward Voltage V F (V) Min. Typ. Min. Typ. Typ. Min. Min. Min. Typ. Max. Forward Current ( ma ) 2PSL09RW27P12010 2000 590 700 680 805 90 70 0 33.6 37.2 38.4 240 2PSL09AW27P12010 2400 705 835 810 960 111 80 0 33.6 37.2 38.4 240 2PSL09SW27P12010 3000 710 840 815 965 108 80 0 33.6 37.2 39.0 240 2PSL09MW38P12010 4500 630 745 720 855 95 90 50 33.6 37.2 38.4 240 2PSL30RW27P13010 2000 1745 2075 2000 2380 90 70 0 33.6 37.2 38.4 720 2PSL30AW27P13010 2400 1940 2310 2230 2650 99 80 0 33.6 37.2 38.4 720 2PSL30SW27P13010 3000 1995 2375 2290 2725 102 80 0 33.6 37.2 39.0 720 2PSL30MW38P13010 4500 1865 2220 2145 2550 95 90 50 33.6 37.2 38.4 720 2PSL40RW27P16010 2000 3045 3620 3495 4160 104 70 0 33.6 37.2 40.8 1080 2PSL40AW27P16010 2400 3340 3975 3835 4565 113 80 0 33.6 37.2 40.8 1080 2PSL40SW27P16010 3000 3110 3700 3570 4250 106 80 0 33.6 37.2 41.2 1080 2PSL40MW38P16010 4500 3205 3815 3680 4380 109 90 50 33.6 37.2 40.8 1080 Notes : 1. Edison Opto Corp. maintains forward voltage ±3%, luminous flux ±10%, Ra and R9±2 tolerance. 2. Flux values @ 25 C are calculated and for reference only. Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 5

Chromaticity coordinates (3_Step, T C =25 o C) Mela - 4500K 0.3445 0.3415 0.3385 CIE-y 0.3355 0.3325 0.3295 0.3265 0.3450 0.3475 0.3500 0.3525 0.3550 0.3575 0.3600 Aroma-2400K 0.4235 CIE-y 0.4205 0.4175 0.4145 0.4115 0.4085 CIE-x CCT Steps Cx Cy a b theta 4500K 3 0.3531 0.3356 0.00939 0.00402 53.72 0.4055 0.4720 0.4745 0.4770 0.4795 0.4820 0.4845 0.4870 CIE-x CCT Steps Cx Cy a b theta 2400K 3 0.4791 0.4143 0.00810 0.00420 53.70 Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 6

Ruby - 2000K 0.3605 CIE-y 0.3575 0.3545 0.3515 0.3485 0.3455 0.3425 0.4775 0.4800 0.4825 0.4850 0.4875 0.4900 0.4925 CCT Steps Cx Cy a b theta 2000K 3 0.4851 0.3515 0.00810 0.00420 53.7 Snow White-3000K 0.3940 0.3910 0.3880 CIE-x CIE-y 0.3850 0.3820 0.3790 0.3760 0.4200 0.4220 0.4240 0.4260 0.4280 0.4300 0.4320 0.4340 CIE-x CCT Steps Cx Cy a b theta 3000K 3 0.4268 0.3852 0.00834 0.00408 53.22 Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 7

Mechanical Dimensions 9W Emitter Dimensions Anode 2.3 3.65 6.75 R2.00 Notes : 1. Unit : mm 2. Tolerance : ± 0.2 mm 11.2 1.6 0.9 2.3 6.75 3.65 13.5 6.75 Emitter Area R2.00 6.75 13.5 Cathode (Tc measurement Point) 9W Emitter Circuit Layout Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 8

30W Emitter Dimensions 3.2 5.5 9.5 R2.00 Anode 9.5 7.1 1.6 7.1 9.5 19 Notes : 1. Unit : mm 2. Tolerance : ± 0.2 mm 1.6 Emitter Area R2.00 9.5 19 5.5 3.2 17 1.6 0.9 Cathode (Tc measurement Point) 30W Emitter Circuit Layout (1) (2) (6) Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 9

40W Emitter Dimensions 1.40 3.20 14.00 2.60 Anode 2.60 Notes : 1. Unit : mm 2. Tolerance : ± 0.2 mm 1.60 0.90 11.40 7.80 11.00 28.00 1.40 1.60 Emitter Area R1.60 11.40 28.00 9.40 11.82 Cathode (Tc measurement Point) 24.50 40W Emitter Circuit Layout (1) (2) (9) Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 10

Characteristic curve Color Spectrum 1.2 Normalized luminous Intensity 1.0 0.8 0.6 0.4 0.2 2PSLxxMW38Pxx010 2PSLxxAW27Pxx010 2PSLxxRW27Pxx010 0 400 450 500 550 600 650 700 750 800 Wavelength(nm) Beam Pattern 1.0 120 105 90 75 60 Arbitrary Unit (A.U) 0.8 0.6 0.4 0.2 165 150 135 45 30 15 0 180 0 Radiation Angle Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 11

Forward Voltage vs. Forward Current (9W) 39 38 Forward Voltage (V) 37 36 35 34 2PSL09RW27P12010 2PSL09AW27P12010 2PSL09MW38P12010 2PSL09SW27P12010 33 30 60 90 120 150 180 210 240 270 Forward Current (ma) Forward Current vs. Forward Voltage (30W) 38 37 Forward Voltage (V) 36 35 34 33 2PSL30RW27P13010 2PSL30AW27P13010 2PSL30MW38P13010 2PSL30SW27P13010 32 90 180 270 360 450 540 630 720 810 Forward Current (ma) Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 12

Forward Voltage vs. Forward Current (40W) 43 41 Forward Voltage (V) 39 37 35 33 2PSL40RW27P16010 2PSL40AW27P16010 2PSL40MW38P16010 2PSL40SW27P16010 31 0 180 360 540 720 900 1080 1260 Forward Current (ma) Relative Luminous Intensity vs. Forward Current 120 Relative Luminous Intensity (%) 100 80 60 40 20 2PSL09xWxxP12010 2PSL30xWxxP13010 2PSL40xWxxP16010 0 0 120 240 360 480 600 720 840 960 1080 1200 Forward Current (ma) Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 13

Relative Luminous Flux vs. Case Temperature 120 Relative Luminous flux (%) 100 80 60 40 20 0 20 30 40 50 60 70 80 90 100 110 Case Temperature ( o C) Forward Voltage vs. Case Temperature 37.10 36.85 Forward Voltage (V F ) 36.60 36.35 36.10 35.85 35.60 20 30 40 50 60 70 80 90 100 110 Case Temperature ( o C) Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 14

Allowable Forward Current vs. Case Temperature 1440 Allowable Forward Current 1200 960 720 480 720 240 2PSL09xWxxP12010 2PSL30xWxxP13010 2PSL40xWxxP16010 0 0 20 40 60 80 100 Case Temperature ( o C) Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 15

Reliability NO. Test Item Test Condition Remark 1 Temperature Cycle -40 C~100 C ( 30 mins / 30 mins ) 100 Cycle 2 Thermal Shock -40 C~100 C (15,min/15 mins 10 sec) 100 Cycle 3 High-Temperature Storage Ta=100 C 1000 hrs 4 Humidity Heat Storage Ta=85 C, RH=85% 500 hrs 5 Low-Temperature Storage Ta= -40 C 1000 hrs 6 Operation Life test 25 C 6000 hrs 7 High Temperature Operation Life test 85 C 1000 hrs 8 ON/OFF Test 30 sec ON, 30 sec OFF 1.5W times Failure Criteria Item Criteria for Judgment Min. Max. Lumen Maintenance 85% - Δu'v' - 0.006 Forward Voltage - Initial Data x 1.1 Reverse Current - 1 μa Resistance to Soldering Heat No dead lamps or visual damage Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 16

Average Lumen Maintenance Characteristics Lumen maintenance for light sources or luminaires is defined in terms of the change in light output of a light source over operational life, relative to initially measured light output. Edison Opto projects that EdiPower III SL Series products will deliver, on average, greater than 70% lumen maintenance (L70) after 50,000 hours of operation at the rated forward test current. This performance is based on constant current operation with case temperature maintained at or below 85 C. These projections are based on a combination of package test data, semiconductor chip reliability data, a fundamental understanding of package related degradation mechanisms, and performance observed from products installed in the field using Edison Opto die technology. Observation of design limits in this datasheet is required in order to achieve this projected lumen maintenance. Limited Warranty for Edison Opto EdiPower III SL Series This limited warranty is provided by Edison Opto to the original purchaser of the LED lighting product that is identified on our invoice reflecting its original purchase (the "Product"). We warrant that the Product, under normal operation (T C <85 o C T J <125 o C and the operation current is lower than maximum forward current which is described in the datasheet), will be free of defects in material and workmanship for a period of FIVE (5) YEARS from the date of original purchase. Notes: 1. This limited warranty cannot be transferred to subsequent purchasers of the Product; even Product is resold in new condition and in its original packaging. 2. The determination of whether the Product is defective shall be made by Edison Opto in our sole discretion with consideration given to the overall performance of the Product. Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 17

Product Packaging Information Tube Packing for 9W 355 Tube Packing 30W 400 Tube package dimension. 1. 2. 3. Label Label Tube package Antistatic bag Carton Packaging items for SL Series Notes: 1. All dimensions are in mm. 2. 25pcs(9W) & 20pcs(30W) emitters in a full tube. 3. There are 20 tubes in a bag. 4. 6pcs(9W) & 4pcs(30W) bags in a carton. 5. A bag contains one humidity indicator card and drying agent. Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 18

Tray Packing for 40W Tray package dimension. 1. 2. Label Tray package Antistatic bag 3. 4. Label Label Box Carton Packaging items for SL Series Notes: 1. All dimensions are in mm. 2. There are 40W 12pcs emitters in a full tray. 3. There are 5 trays in a bag. 4. There are 10 bags in a box. 5. There are 10 boxes in a carton. 6. A bag contains one humidity indicator card and drying agent. Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 19

Handling with a EdiPower III Series Notification on Anti-static LED device are combine by many accurate parts which belong to static sensitive device. A human body may aware of the discharge voltage about 2-3KV, which is much larger than an electronic device may bear. Therefore, to keep the LED operation environment away from static and lower the exits static become an important issue in a LED manufacture 1. Anti-Static Steps - All the staffs who has the possibility to contact with the LED components should follow the instructions to eliminate the static: Put on the hand or finger gloves before touch a LED device. (Do not use a nylon or rubber Glove ) Do not do any actions that may generate the static in the protection area. Such as wipe hands or foot, put on/off the clothes. Avoid any movement that may cause static damages. When remove a component from the package, please be slow and gentle. Do not touch the metal part of a LED component. Changing Area 1. Wear the antistatic shoes. 2. Wear the antistatic clothes and hat. Test the antistatic shoes and hand belt. Production Line Wear the finger glove, let the anti-static hand belt grounded. Production 2. Environmental anti-static protection Use an anti-static floor and make earth. Materials such as plastic or rubber contain carbon or conductive polyester is recommended. LEDs should be operated on the desk which is laid by the static discharge material. Protection area with a temperature at 22±5 C and a relative humidity at 70±10%RH are recommended. Layout an appropriate earth system. All the equipments should earth isolated into the ground or pillar. All soldering and testing equipments should also provide earth ability. Prevent the accumulation and the fractions between stuffs. 3. Anti-Static steps for package, transportation and storage. Package: All the bags must have the ability of anti-static. Do not use any nylon bag, normal plastic bag or polyester bag for package. Do not open the bag if a LED is not ready to be handling. Open the bag at the protection area and put in a conductive case. Transportation: The cart should install the conductive wheels. Avoid the mechanical vibration and impacts. Storage: Be attention of the temperature and the relative humidity under the suggest condition. Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 20

Protector Operation Manual Take out the COB components from the material tube Solder electric wires Backside coated with thermal grease Complete operation process Remove the Blue protective film with tweezer Mount the COB components to the heatsink modules Handling with a EdiPower III Component Proper handling of the EdiPower III using tweezers or gloved fingers. Do not touch the emitting region. Use only the IPA and swab to clean the flux/dust of the EdiPower III surface. Other organic solvent may cause the failure Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 21

Notification of Installation. 1. Soldering pads are present for direct electrical wiring. Manual soldering at 360±5 C, <5 secs are recommended.(no need with IR reflow process) EdiPower III can be secured with M2/M3 screws. To ensure optimal usage. Recommendations: Flat screws or countersunk screws are recommended. Avoid the screw head touching the pad to prevent from the electric leakage. Screw Torque Specification Size Tightening Torque (N m) M2 0.25~1 M3 1~1.25 Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 22

Thermal Management About 80% of input power of a LED transform into heat. A high temperature operation condition always easily causes the LEDs to decrease of flux and the life decay of LED dies. The highest operation temperature of a component is able to be found in its datasheet which is indicated as T J. The power dissipation ability, the ambient temperature between the LED junction, environment, thermal path and its thermal resistance are the mean parameters which affect the performance of a LED device. Therefore, the limitation of the junction temperature has become an important issue when designing a LED product. For LEDs, choose an appropriate operation environment and conduct the heat to the air after light on LEDs may maintain the better performance and lifetime. Four major thermal path are as follow: (1) From heat source (component) to heat sink. (By conduction) (2) Conduction from within the heat sink to its surface. (By conduction) EdiPower III (3) Transfer from the surface to the surrounding air. (By convection) (4) Emit heat from the heat sink surface. (By Radiation) Path(1): The contact surface of the component and heat sink are not perfectly flat, they are not able to meet each other completely. Air between these two materials will result high thermal resistance and reduce the effect of heat transfer. To enhance the ability of thermal conduction, one common method is applying thermal grease between the two interfaces and use the screws to enforce the adhesion between two surface. EdiPower III EdiPower III Heat Sink Heat Sink EdiPower III with thermal grease Sectional View (without Thermal Grease) Sectional View (without Thermal Grease-Yellow Part) Heat Sink Ts (2) Tphosphor (3) Tc (1) Rear View Notes: 1. Tc : 105 o 2. (Tc-Ts) <10 o 3. Operating temperature of T phosphor < 200 o Recommended thermal Grease Parameters Characteristics Value Unit Thermal Conductivity (K) >3.0 W/m*K Thickness 0.1 mm Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 23

Revision History Versions Description Release Date 1 Establish order code information 2015/04/10 2 Revise Aroma application 2015/04/17 3 Update luminous flux characteristic 2015/10/07 4 Add Protector Operation Manual 2015/10/29 5 1. Update Snow White Chromaticity coordinates 2. Revise Absolute Maximum ratings 3. Update Thermal management 4. Revise characteristic curve 2015/12/04 6 Add 9W & 40W Information 2016/10/07 About Edison Opto Edison Opto is a leading manufacturer of high power LED and a solution provider experienced in LDMS. LDMS is an integrated program derived from the four essential technologies in LED lighting applications- Thermal Management, Electrical Scheme, Mechanical Refinement, Optical Optimization, to provide customer with various LED components and modules. More Information about the company and our products can be found at Copyright 2016 Edison Opto. All rights reserved. No part of publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photo copy, recording or any other information storage and retrieval system, without prior permission in writing from the publisher. The information in this publication are subject to change without notice. For general assistance please contact: service@edison-opto.com.tw For technical assistance please contact: LED.Detective@edison-opto.com.tw Copyright 2016 Edison Opto Corporation. All right reserved. The information in this document is subject to change without notice. version : 6 24