DATA SHEET CITILED COB Series High intensity Type CLU720-1206B8 Introduction P 2 Performance Characteristics P 3 Mechanical Dimensions P 5 Characteristic Curves P 6 Reliability P 9 Packing Specification P 10 Precaution P 11 1 Ref.CE-P2911 11/14 Product Nomenclature CLU720 - 12 06 B8 - 27 3 M2 G1 [1] [2] [3] [4] [1] Product shape CLU720 [2] Die count in series 12 [3] Die count in parallel 06 [4] Nominal CCT 2700K [5] CRI (Ra) Min.80 [5] 1. Introduction 1-1. Product Description CITIZEN ELECTRONICS is the first COB manufacture. Our advanced knowledge and packaging technology for many years has excellent reliability and high quality of our products. CITILED COB Series covers a wide range of luminous flux from a 10W incandescent bulb to a 300W mercury lamp in general lighting sources. The element arrangement of LED package is capable of utilizing light more effectively and higher performance. The new package "High Intensity Type" provides smaller LES and higher flux intensity. Our new small LES (Light emitting surface) package has succeeded in producing higher flux intensity through use of our advanced packaging technology. It is suitable for luminaires with a narrow beam angle such as spot lights. Enough space around LES on the PCB accepts flexibility of optics attachment. This package is 3-Step MacAdam ellipse at hot binning. 1-2. Features Mechanical Dimensions Package Structure Reference Assembly CRI (Ra) Nominal CCT : : : : : Chromaticity Range : 3-step MacAdam Ellipse, the center refers to ANSI C78.377:2011. 19.0 x 19.0 x 1.4 (mm) Aluminum Base Chip on Board M3 screw, Connector 80Min. 2,700K, 3,000K, 3,500K, 4,000K, 5,000K : 0.92C/W Thermal Resistance : 1380mA Maximum drive current RoHS compliant Better die arrangement for optics Wide range of luminous flux and high efficacy Improved lumen density compared with previous version 2 Ref.CE-P2911 11/14 2. Performance Characteristics 2-1. Electro Optical Characteristics Electro Optical Characteristics ( Tj=85C ) Product code Nominal CCT Luminous flux ( lm ) CRI Ra R9 Min. Min. Min. Typ. T=85C Efficacy Forward ( lm/W ) Current Tc=25C* ( mA ) Typ. Typ. Voltage ( V) Min. Typ. Max. Thermal Resistance Rj-c ( C/W ) CLU720-1206B8-273M2G1 2700K 80 0 3,339 3,795 4,027 96 1,050 34.5 37.6 40.6 0.92 CLU720-1206B8-303M2G1 3000K 80 0 3,537 4,020 4,266 102 1,050 34.5 37.6 40.6 0.92 CLU720-1206B8-353M2G1 3500K 80 0 3,621 4,115 4,367 104 1,050 34.5 37.6 40.6 0.92 CLU720-1206B8-403M2G1 4000K 80 0 3,696 4,200 4,457 106 1,050 34.5 37.6 40.6 0.92 CLU720-1206B8-503M2G1 5000K 80 0 3,766 4,280 4,542 108 1,050 34.5 37.6 40.6 0.92 Notes : 1. Citizen Electronics maintains forward voltage +/-3%, luminous flux +/-10%,Ra and R9 +/-1. *Values of Luminous flux at Tc=25C are provided as reference only. 2-2. Absolute Maximum Ratings Absolute Maximum Ratings Parameter Symbol Rating Input Power (W) Forward Current (mA) Minimum Current (mA) Reverse Current (mA) Operating Temperature (C) Storage Temperature (C) Case Temperature (C) Junction Temperature (C) Pi If If min Ir Top Tst Tc Tj 61.3 *1 1380 *1 30 1 -40 ~ +100 -40 ~ +100 105 *2 140 *3 *1. Input power and forward current are the values when the LED is used within the range of the derating characteristics in this data sheet. *2. Refer to 3. Outline drawing for Tc measurement point. *3. D.C. Current : Tj = Tc + Rj-c x Pi 3 Ref.CE-P2911 11/14 2-3. Chromaticity Characteristics ( Rated current, Tj=85C ) Oval parameter Color Region 3-step MacAdam ellipse Nominal CCT Center Point ( x, y ) 2700K 3000K Major Axis a Minor Axis b ( 0.4577 , 0.4098 ) 0.00774 0.00411 Ellipse Rotation Angle 57.28 ( 0.4339 , 0.4032 ) 0.00834 0.00408 53.17 3500K ( 0.4078 , 0.3929 ) 0.00951 0.00417 52.97 4000K ( 0.3818 , 0.3796 ) 0.00939 0.00402 54.00 5000K ( 0.3446 , 0.3551 ) 0.00822 0.00354 59.62 * Color region stay within MacAdam 3-step ellipse from the chromaticity center. * The chromaticity center refers to ANSI C78.377:2011. Please refer to ANSI C78. 377 for the chromaticity center. * is the angle between the major axis of the ellipse and the x-axis, and a and b are the major and minor semi-axes of an ellipse. (Ref. IEC 60081:1997 AnnexD) x-y chart CIE1931 0.45 3,000K 2,700K 3,500K Black Body Locus 4,000K 0.40 y 5,000K 0.35 3-step 0.30 0.30 0.35 0.40 x 0.45 0.50 Note : Citizen Electronics maintains chromaticity ( x, y ) +/-0.005 4 Ref.CE-P2911 11/14 3. Mechanical Dimensions Marking 1 : Serial No. Marking 2 : B 12 06 ** ** CRI CCT Dies count in parallel Dies count in series 5 Ref.CE-P2911 11/14 4. Characteristic Curves 4-1. Forward Current Characteristics / Temperature Characteristics Forward Current vs. Forward Voltage Forward Current vs. Relative Luminous Flux Tc=25C 41.0 Tc=25C Relative Luminous Flux [a.u.] 140% Vf [V] 39.0 37.0 35.0 33.0 31.0 29.0 120% 100% 80% 60% 40% 20% 0% 0 500 1000 1500 0 500 If [mA] Case Temperature vs. Forward Voltage If=1050mA 120% Relative Luminous Flux [a.u.] 39.0 Vf [V] 1500 Case Temperature vs. Relative Luminous Flux If=1050mA 39.5 1000 If [mA] 38.5 38.0 37.5 37.0 36.5 36.0 100% 80% 60% 40% 20% 0% 0 25 50 Tc [C] 75 0 100 25 50 Tc [C] 75 100 6 Ref.CE-P2911 11/14 4-2. Optical Characteristics Spectrum : CRI(Ra) 80Min. 5000K 4000K 3500K 3000K 2700K Tj=85 If=1050mA 100% 90% Radiative Intensity 80% 70% 60% 50% 40% 30% 20% 10% 0% 380 430 480 530 580 630 Wave length [nm] 680 730 780 7 Ref.CE-P2911 11/14 4-2. Optical Characteristics (continued) Radiation Characteristic -40 -30 -20 10 -10 100% -50 20 30 40 50 80% -60 -70 60% 60 40% 70 X 20% -80 Y -90 80 90 0% 4-3. Derating Characteristics Case Temperature vs. Allowable Forward Current 1600 1400 If [mA] 1200 1000 800 600 400 200 0 0 25 50 75 Tc [C] 100 125 8 Ref.CE-P2911 11/14 5. Reliability 5-1. Reliability Test Test Item Test Condition IF=1050mA Continuous Operation Test Ta=25C (with Al-fin) x1000hrs IF=1050mA Tj=140C (with Al-fin) x1000hrs Low Temperature Storage Test -40 C x 1000 hours High Temperature Storage Test 100 C x 1000 hours Moisture-proof Test 85 C, 85 %RH for 500 hours Thermal Shock Test -40 C x 30 minutes - 100 C x 30 minutes, 100 cycle 5-2. Failure Criteria ( Tc=25C ) Measuring Item Symbol Measuring Condition Failure Criteria Forward Voltage Vf If=1050mA >U x 1.1 Total Luminous Flux v If=1050mA