LUXEON® A Freedom From Binning LUXEON A Freedom From Binning Hot Tested Superior Quality of Light Technical Datasheet DS100 Introduction LUXEON® A brings Illumination Grade LED light sources to the lighting market. It has never been simpler to design LED solutions and bring them to market. With hot testing and color binning, every LUXEON A is tested and specified at real world operating conditions, Tj 85°C. With Freedom From Binning, every LUXEON A LED falls within a single 3 step MacAdam ellipse centered on the black body curve and now, luminaire manufacturers can be confident in color consistency from LED to LED. There’s never been a more supportable and consistent light emitting diode. The superior quality of light, light output, and real world efficacy enable leading performance and efficient solution development in a wide variety of segments including retrofit bulbs, office, hospitality, school, and home lighting. • Freedom From Binning for superior quality of light • Hot tested and color binned at Tj 85°C • Maximum light output and lowest cost of light • Specified color over angle • Simplified design and accellerated time to market.
Open the catalog to page 1LUXEON A Datasheet DS100 20110518 3 Product Nomenclature LUXEON A emitters are tested and binned “hot” under conditions comparable to those found in “real-world” lighting products. The test conditions for LUXEON A are 700 mA D.C. with junction temperature at 85ºC. The part number designation for the LUXEON A emitters is explained as follows: L X H A - B C D E Where: A — designates minimum CRI performance (value 8 = 80 minimum) B — designates radiation pattern (value P for Lambertian) C — designates color (value W = White) D & E — designates nominal ANSI CCT (value 27 = 2700K and 30 = 3000K) Therefore...
Open the catalog to page 3LUXEON A Datasheet DS100 20110518 4 Product Selection Guide for LUXEON A EmittersJunction Temperature = 85°C Table 1. Performance at Test Current Minim um Luminous Nominal Flux Test Current ANSI CCT Part Number Minimum CRI Typical CRI (lm) [1] [2] (mA) 2700K LXH8-PW27 80 85 140 700 3000K LXH8-PW30 80 85 150 700 Notes for Table 1: 1. Minimum luminous flux performance within published operating conditions. Philips Lumileds maintains a tolerance of ± 6.5% on luminous flux measurements.2. LUXEON A products with even higher luminous flux levels will become available in the future. Please consult Philips...
Open the catalog to page 4LUXEON A Datasheet DS100 20110518 5 LUXEON A at Test Current [1]Junction Temperature = 85°C Table 3. Typical Total Typical Color Temperature [2] Included Viewing CCT Angle [3] Angle [4] Nominal Part (degrees) (degrees) ANSI CCT Number Typical u0.90V 2u 1/2 2700K LXH8-PW27 2725K 160 120 3000K LXH8-PW30 3045K 160 120 Notes for Table 3: 1. Test current is 700 mA D.C. for all LXH8-PWxx emitters.2. CCT ±5% tester tolerance.3. Total angle at which 90% of total luminous flux is captured. 4. Viewing angle is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value....
Open the catalog to page 5LUXEON A Datasheet DS100 20110518 6 Electrical Characteristics at 700 mA for LUXEON AJunction Temperature = 85ºC Table 4. Typical Temperature Coefficient of Forward Typical Thermal Resistance Forward Voltage Vf [1] Voltage [2] Junction to Nominal (V) (mV/°C) Thermal Pad (°C/W) ANSI CCT Min. Max. DVF / DTJ Ru J-C 2700K 2.5 3.5 -1.8 to -2.4 6 3000K 2.5 3.5 -1.8 to -2.4 6 Notes for Table 4: 1. Philips Lumileds maintains a tolerance of ±0.06V on forward voltage measurements.2. Measured between 25°C = TJ = 110°C at If = 700 mA.Typical Electrical Characteristics at 350 mA, 700 mA and 1000 mA for LUXEON...
Open the catalog to page 6LUXEON A Datasheet DS100 20110518 7 Absolute Maximum Ratings Table 6. Parameter 2700K and 3000K DC Forward Current (mA) 1000 mA Peak Pulsed Forward Current (mA) [2] 1200 mA Average Forward Current (mA) 1000 mA ESD Sensitivity < 8000V Human Body Model (HBM) Class 3B JESD22-A114-E LED Junction Temperature[1] 150°C Operating Case Temperature at 700 mA -40°C - 135°C Storage Temperature -40°C - 135°C Soldering Temperature JEDEC 020c 260°C Allowable Reflow Cycles 3 Autoclave Conditions 121°C at 2 ATM 100% Relative Humidity for 96 Hours Maximum Reverse Voltage (Vr) LUXEON A LEDs are not designed to...
Open the catalog to page 7LUXEON A Datasheet DS100 20110518 8 Temperature Profile for Table 8. Table 8. Profile Feature Lead Free Assembly Average Ramp-Up Rate (Tsmax to Tp) 3°C / second max Preheat Temperature Min (Tsmin) 150°C Preheat Temperature Max (Tsmax) 200°C Preheat Time (tsmin to tsmax) 60 - 180 seconds Temperature (TL) 217°C Time Maintained Above Temperature (TL) 60 - 150 seconds Peak / Classification Temperature (TP) 260°C Time Within 5°C of Actual Peak Temperature (tP) 20 - 40 seconds Ramp - Down Rate 6°C / second max Time 25°C to Peak Temperature 8 minutes max Notes for Table 8: - All temperatures refer to...
Open the catalog to page 8LUXEON A Datasheet DS100 20110518 9 Mechanical Dimensions Figure 1. Package outline drawing. Notes for Figure 1: - Do not handle the device by the lens --care must be taken to avoid damage to the lens or the interior of the device that can be damaged by excessive force to the lens.- Drawings not to scale. All dimensions are in millimeters.- The thermal pad is electrically isolated from the anode and cathode contact pads.
Open the catalog to page 9LUXEON A Datasheet DS100 20110518 10 Pad Configuration Note for Figure 2: - The Thermal Pad is electrically isolated from the Anode and Cathode contact pads.Solder Pad Design Note for Figure 3: - The photograph shows the recommended LUXEON A layout on Printed Circuit Board (PCB). This design easily achieves a thermal resistance of 7K/W. - Application Brief AB32 provides extensive details for this layout. Printed Circuit Board layout files (.dwg) are available at www.philipslumileds.com and www.philipslumileds.cn.com. 3 12TOP321BOTTOM3THERMAL2ANODE1CATHODEPADFUNCTION Figure 2. Pad configuration....
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