DS60 LUMILEDS | Alldatasheet

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LUXEON® K2 with TFFC is the most robust and powerful LED available offering the lowest cost of light with the widest operating range of any power LED. LUXEON K2 with TFFC Œ delivers more useable light Œ optimizes applications to reduce size and cost Œ enables more robust applications Œ reduces thermal management engineering Œ enables use of standard FR4 PCB technology Œ simplifies manufacturing through the use of surface mount technology. LUXEON® K2 with TFFC Technology Leadership Œ Industry leading lumen perform- ance, over 200 lumens in Cool-White at 1000mA Œ Over 60 lm/W at 1000mA Œ Highest operating junction temperature available, up to 150°C Œ Highest Drive Currents—1500 mA Œ Lowest Thermal Resistance— 5.5°C/W Œ Industry Best Moisture Sensitivity level—JEDEC 2a Œ Lead free reflow solder JEDEC 020c compatible Œ RoHS Compliant Œ Autoclave compliant— JESD22 A-102 Œ Industry Best Lumen Maintenance—50,000 hours life at 1000 mA with 70% lumen maintenance power light source

LUXEON K2 with TFFC Datasheet DS60 (10/07) 2 Table of Contents

LUXEON K2 with TFFC Datasheet DS60 (10/07) 3 Product Nomenclature LUXEON K2 with TFFC LEDs are tested and binned at 1000mA. The part number designation is explained as follows: L X K 2 - A B C D - E F G H for Emitter L 2 K 2 - A B C D - x x - E F G H for Star Where: A — designates radiation pattern (Value P for Lambertian emitter, M for Lambertian Star product) B — designates color (see Philips Lumileds AB21) C — designates color variant (0 for direct colors, C for Cool-White) D — designates test current (value 4 for 1000 mA) E — Reserved for future offerings FGH — minimum luminous flux (lm) or radiometric power (mW) performance x x - indicates array description for Level 2 Star Product (11 for 1x1 array) Therefore, products tested and binned at 1000mA follow the part numbering scheme: L X K 2 - P x x 4 - x x x x (L 2 K 2 - M x x 4 - 1 1 - x x x x for Star) Average Lumen Maintenance Characteristics Lifetime for solid-state lighting devices (LEDs) is typically defined in terms of lumen maintenance—the percentage of initial l ight output remaining after a specified period of time. Philips Lumileds projects that white LUXEON K2 with TFFC products will deliver, on average, 70% lumen maintenance at 50,000 hours of operation at a forward current of 1000mA. This projection is based on constant current operation with junction tempera - ture maintained at or below 120°C. This performance is based on independent test data, Philips Lumileds historical data from tests run on similar material systems , and internal LUXEON reliability testing. Observation of design limits included in this data sheet is required in order to achie ve this projected lumen maintenance. More information about lifetime and reliability can be found in the LUXEON K2 Reliability Datasheet on the Philips Lumileds web site. Environmental Compliance Philips Lumileds is committed to providing environmentally friendly products to the solid-state lighting market. LUXEON K2 with TFFC LEDs are compliant to the European Union directives on the Restriction of Hazardous Substances in electronic equipment, namely the RoHS directive. Philips Lumileds will not intentionally add the following restricted materials to LUXEON K2 with TFF C LEDs: lead, mercury, cadmium, hexavalent chromium, polybrominated biphenyls (PBB) or polybrominated diphenyl ethers (PBDE).

LUXEON K2 with TFFC Datasheet DS60 (10/07) 4 Flux Characteristics for LUXEON K2 with TFFC Junction and Case Temperature = 25ºC Table 1. MMiinniimmuumm PPeerrffoorrmmaannccee aatt TTeesstt CCuurrrreenntt TTyyppiiccaall PPeerrffoorrmmaannccee aatt IInnddiiccaatteedd CCuurrrreenntt MMiinniimmuumm LLuummiinnoouuss FFlluuxx ((llmm)) TTyyppiiccaall LLuummiinnoouuss FFlluuxx ((llmm)) CCoolloorr PPaarrtt NNuummbbeerr aatt 11000000mmAA aatt 11550000 mmAA aatt 770000 mmAA aatt 335500 mmAA LXK2-PWC4-0200 200 275 170 95 LXK2-PWC4-0180 180 250 150 85 LXK2-PWC4-0160 160 220 135 75 Flux Characteristics for LUXEON K2 with TFFC Star Junction and Case Temperature = 25ºC Table 2. MMiinniimmuumm PPeerrffoorrmmaannccee aatt TTeesstt CCuurrrreennttss TTyyppiiccaall PPeerrffoorrmmaannccee aatt IInnddiiccaatteedd CCuurrrreenntt MMiinniimmuumm LLuummiinnoouuss FFlluuxx ((llmm)) TTyyppiiccaall LLuummiinnoouuss FFlluuxx ((llmm)) CCoolloorr PPaarrtt NNuummbbeerr aatt 11000000mmAA aatt 11550000 mmAA aatt 770000 mmAA aatt 335500 mmAA L2K2-MWC4-11-0200 200 275 170 95 L2K2-MWC4-11-0180 180 250 150 85 L2K2-MWC4-11-0160 160 220 135 75 Notes for Tables 1 & 2: 1. Minimum luminous flux performance guaranteed within published operating conditions. Philips Lumileds maintains a tolerance of ± 10% on flux and power measurements of LUXEON K2 with TFFC. 2. Typical luminous flux performance when device is operated within published operating conditions. 3. LUXEON K2 with TFFC products with even higher luminous flux and radiometric power levels will become available in the future. Please consult Philips Lumileds or Future Electronics for more information. 4. Radiation Pattern for all LUXEON K2 with TFFC products is Lambertian. 5. LUXEON K2 with TFFC is tested and binned at 25°C with a 20ms monopulse test to minimize heating of the junction or case. 6. Case Temperature should be measured in the center of the bottom of heatsink slug. Cool- White Cool- White

LUXEON K2 with TFFC Datasheet DS60 (10/07) 5 Optical Characteristics LUXEON K2 with TFFC at Test Current[1] Junction and Case Temperature = 25ºC[11] Table 3. TTyyppiiccaall TTeemmppeerraattuurree TTyyppiiccaall DDoommiinnaanntt WWaavveelleennggtthh [2] λλDD,, TTyyppiiccaall CCooeeffffiicciieenntt ooff TToottaall TTyyppiiccaall PPeeaakk WWaavveelleennggtthh [3] λλPP,, SSppeeccttrraall DDoommiinnaanntt IInncclluuddeedd VViieewwiinngg oorr CCoolloorr TTeemmppeerraattuurree [4] HHaallff--wwiiddtthh [6] WWaavveelleennggtthh AAnnggllee [7] AAnnggllee [8] CCCCTT ((nnmm)) ((nnmm//ooCC)) ((ddeeggrreeeess)) ((ddeeggrreeeess)) Cool White 4500 K 6500 K 10000 K - - 160 120 Notes for Table 3: 1. Test current is 1000 mA for all LXK2 - Pxx4 - xxxx Emitter products (L2K2 - Mxx4 - 11 - xxxx for LUXEON K2 with TFFC Star products). 2. Dominant wavelength is derived from the CIE 1931 Chromaticity diagram and represents the perceived color. Philips Lumileds maintains a tolerance of ± 0.5 nm for dominant wavelength measurements. 3. Philips Lumileds maintains a tolerance of ± 2nm for peak wavelength measurements. 4. CCT ±5% tester tolerance 5. Typical CRI (Color Rendering Index) for Cool-White product is 70. 6. Spectral width at ½ of the peak intensity. 7. Total angle at which 90% of total luminous flux is captured. 8. Viewing angle is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value. 9. All white products are built with Indium Gallium Nitride (InGaN). 10. White power light sources represented here are IEC60825 class 2 for eye safety. 11. Luxeon K2 with TFFC is tested and binned at 25°C with a 20ms monopulse test to minimize heating of the junction or case.

LUXEON K2 with TFFC Datasheet DS60 (10/07) 6

Electrical Characteristics

Electrical Characteristics at 1000mA Junction and Case Temperature = 25ºC[4] Table 4. TTyyppiiccaall TTeemmppeerraattuurree TTyyppiiccaall TTyyppiiccaall CCooeeffffiicciieenntt ooff TThheerrmmaall DDyynnaammiicc FFoorrwwaarrdd RReessiissttaannccee FFoorrwwaarrdd VVoollttaaggee VVff [1] RReessiissttaannccee [2] VVoollttaaggee JJuunnccttiioonn ttoo ((VV)) ((ΩΩ)) ((mmVV//ooCC)) CCaassee ((ooCC//WW)) Notes for Table 4: 1. Philips Lumileds maintains a tolerance of ±0.06V on forward voltage measurements 2. Dynamic resistance is the inverse of the slope in linear forward voltage model for LEDs. See figure 13. 3. The forward voltage of the LUXEON K2 with TFFC LED will reduce by up to 0.50V at 1000mA during the first few hours of operation after SMT reflow. Due to this effect, Philips Lumileds recommends current source drive for consistent and reliable performance. Cross connected series/parallel arrays or voltage drivers which could result in current hogging or variation in drive current are not recommended. Please consult your Philips Lumileds authorized distributor or Philips Lumileds Sales Representative for further information. 4. Luxeon K2 with TFFC is tested and binned at 25°C with a 20ms monopulse test to minimize heating of the junction or case. Typical Electrical Characteristics Junction and Case Temperature = 25ºC Table 5. TTyyppiiccaall FFoorrwwaarrdd VVoollttaaggee VVff ((VV)) CCoolloorr aatt 11550000mmAA aatt 770000mmAA aatt 335500mmAA Cool-White 3.85 3.5 3.3

Preliminary LUXEON K2 Emitter Datasheet DS51a (1/07) 7 Absolute Maximum Ratings[3] Table 6. CCooooll--WWhhiittee PPaarraammeetteerr VVaalluuee DC Forward Current (mA) 1500 Peak Pulsed Forward Current (mA) 1500 Average Forward Current (mA) 1500 ESD Sensitivity > 2,000 V HBM Class 2 JESD22-A114-B LED Junction Temperature[1] 150°C Storage Temperature -40°C - 185°C Soldering Temperature JEDEC 020c 260°C Allowable Reflow Cycles 3 Autoclave Conditions 121°C at 2 ATM, 100% RH for 72 hours max Reverse Voltage (Vr) See Note 2 Notes for Table 6: 1. Proper current derating and thermal management must be observed to maintain junction temperature below the maximum. 2. LEDs are not designed to be driven in reverse bias. 3. Stresses in excess of the absolute maximum ratings can cause damage to the emitter. Maximum Rating limits apply to each parameter in isolation, all parameters having values within the Current Derating Curve. It should not be assumed that limiting values of more than one parameter can be applied to the product at the same time. Exposures to the absolute maximum ratings for extended periods can adversely affect device reliability.

LUXEON K2 with TFFC Datasheet DS60 (10/07) 8 JEDEC Moisture Sensitivity Table 7. SSooaakk RReeqquuiirreemmeennttss LLeevveell FFlloooorr LLiiffee SSttaannddaarrdd AAcccceelleerraatteedd EEnnvviirroonnmmeenntt TTiimmee CCoonnddiittiioonnss TTiimmee CCoonnddiittiioonnss TTiimmee CCoonnddiittiioonnss ((hhoouurrss)) ((hhoouurrss)) 2a 4 ≤ 30°C / 696 [1] 30°C / 120 60°C / weeks 60% RH + 5/-0 60% RH +1/-0 60% RH Note for Table 7: 1. The standard soak time includes a default value of 24 hours for semiconductor manufacturer's exposure time (MET) between bake and bag and includes the maximum time allowed out of the bag at the distributor's facility. Reflow Soldering Characteristics[1] Table 8. PPrrooffiillee FFeeaattuurree LLeeaadd FFrreeee AAsssseemmbbllyy 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: 1. All temperatures refer to topside of the package, measured on the package body surface. JEDEC 020c

  1. The anode side of the device is denoted by the chamfer on the part body. Electrical insulation between the case and the
  2. Do not handle the device by the lens except as described in Philips Lumileds document AB29.
  3. All dimensions are in millimeters.
  4. All dimensions without tolerances are for reference only.
  5. Recommended solder paste thickness of 0.15mm.

Figure 1. 4-lead Gullwing Package Outline Drawing.

  1. The anode side of the device is denoted by the chamfer on the part body. Electrical insulation between the case and the board

is required—slug of the device is not electrically neutral. Do not electrically connect either the anode or cathode to the slug.

  1. Do not handle the device by the lens except as described in Philips Lumileds document AB29—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.

  1. All dimensions are in millimeters.
  2. All dimensions without tolerances are for reference only.
  3. Recommended solder paste thickness of 0.15mm.
  4. Available as a custom part number, contact your local sales representative for more information.
  5. The 2-Lead Gullwing part is not recommended for use in solder re-flow systems. Mount these parts with a thermal

adhesive and hot bar soldering. For conventional reflow surface-mounting, use 4-Lead Gullwing Form. Figure 5. 2-Lead Gullwing Package Outline Drawing.

  1. Electrical isolation is required between signal leads and hexagonal heat slug contact.
  2. For optimal thermal performance, maximize board metallization at hexagonal heat slug contact.

Figure 6. 2-Lead Gullwing Package Solder Pad Layout. Figure 7. Solder Pad Layout 2-Lead Gullwing. Figure 8. 2-Lead Gullwing Pin Out Diagram.

1 NC (TRIMMED)

2 ANODE

3 NC (TRIMMED)

4 CATHODE

  1. Slots in aluminum core PCB for M3 or #4 mounting screw.
  2. Electrical interconnection pads labeled on the aluminum core PCB with "+" and "-" to denote positive and negative,

respectively. All positive pads are interconnected, as are all negative pads, allowing for flexibility in array interconnection .

  1. All dimensions are in millimeters.

Figure 9. LUXEON K2 with TFFC Star Package Outline Drawing.

LUXEON K2 with TFFC Datasheet DS60 (10/07) 19 Emitter Reel Packaging

LUXEON K2 with TFFC Datasheet DS60 (10/07) 20 Product Binning and Labeling Purpose of Product Binning In the manufacturing of semiconductor products, there is a variation of performance around the average values given in the tech - nical data sheets. For this reason, Philips Lumileds bins the LED components for luminous flux, color and forward voltage (V F). Decoding Product Bin Labeling LUXEON K2 with TFFC Emitters are labeled using a three or four digit alphanumeric code (CAT code) depicting the bin values for emitters packaged on a single reel. All emitters packaged within a reel are of the same 3-variable bin combination. Using these codes, it is possible to determine optimum mixing and matching of products for consistency in a given application. Format of Labeling for Emitters Reels of Cool-White Emitters are labeled with a four digit alphanumeric CAT code following the format below. ABCD A = Flux bin (J, H, J, K etc.) B and C = Color bin (W0, U0, V0 etc.) C = V F bin (D, E, F, G etc.)

LUXEON K2 with TFFC Datasheet DS60 (10/07) 21 Luminous Flux Bins Table 9 lists the standard photometric luminous flux bins for LUXEON K2 with TFFC emitters (at test current). Although several bins are outlined, product availability in a particular bin varies by production run and by product performanc e. Not all bins are available in all colors. Table 9. FFlluuxx BBiinnss MMiinniimmuumm PPhhoottoommeettrriicc FFlluuxx MMaaxxiimmuumm PPhhoottoommeettrriicc FFlluuxx BBiinn CCooddee ((llmm)) ((llmm)) A 8.2 10.7 B 10.7 13.9 C 13.9 18.1 D 18.1 23.5 E 23.5 30 F3 0 4 0 G4 0 5 0 H5 0 6 0 J6 0 7 0 K7 0 8 0 L8 0 9 0 M 90 100 N 100 120 P 120 140 Q 140 160 R 160 180 S 180 200 T 200 220 U 220 260 V 260 300 W 300 350 X 350 N/A Note: Please see Table 1 for binning parameters and tolerances.

LUXEON K2 with TFFC Datasheet DS60 (10/07) 22 Forward Voltage Bins Although several bins are outlined, product availability in a particular bin varies by production run and by product performanc e. Table 10. VVFF BBiinnss MMiinniimmuumm FFoorrwwaarrdd VVoollttaaggee MMaaxxiimmuumm FFoorrwwaarrdd VVoollttaaggee BBiinn CCooddee ((VV)) ((VV)) A 2.31 2.55 B 2.55 2.79 C 2.79 3.03 D 3.03 3.27 E 3.27 3.51 F 3.51 3.75 G 3.75 3.99 H 3.99 4.23 J 4.23 4.47 K 4.47 4.71 Note: Please see Table 4 for more information on Forward Voltage binning.

LUXEON K2 with TFFC Datasheet DS60 (10/07) 23 White Binning Information Figure 20: White Binning Structure

LUXEON K2 with TFFC Datasheet DS60 (10/07) 24 LUXEON K2 with TFFC Cool-White Bin Structure Figure 21: Cool-White Bin Structure

LUXEON K2 with TFFC Datasheet DS60 (10/07) 25 LUXEON K2 with TFFC Cool-White Bin Structure, Continued Cool-White LUXEON K2 with TFFC Emitters are tested and binned by x,y coordinates.

19 Color Bins, CCT Range 10,000K to 4,500K

Table 11. CCooooll WWhhiittee BBiinn SSttrruuccttuurree TTyyppiiccaall CCCCTT TTyyppiiccaall CCCCTT BBiinn CCooddee XX YY ((KK)) BBiinn CCooddee XX YY ((KK)) 0.274238 0.300667 0.318606 0.310201 Y0 0.303051 0.332708 8000 WQ 0.329393 0.320211 6000 0.307553 0.310778 0.329544 0.310495 0.282968 0.283772 0.319597 0.301303 0.282968 0.283772 0.328636 0.368952 YA 0.307553 0.310778 8000 VM 0.348147 0.385629 5300 0.311163 0.293192 0.346904 0.371742 0.289922 0.270316 0.328823 0.356917 0.301093 0.342244 0.328823 0.356917 XM 0.313617 0.354992 6700 VN 0.346904 0.371742 5300 0.314792 0.344438 0.345781 0.359190 0.303051 0.332708 0.329006 0.345092 0.303051 0.332708 0.329006 0.345092 XN 0.314792 0.344438 6700 V0 0.345781 0.359190 5300 0.316042 0.333222 0.344443 0.344232 0.305170 0.322386 0.329220 0.331331 0.305170 0.322386 0.329220 0.331331 X0 0.316042 0.333222 6700 VP 0.344443 0.344232 5300 0.317466 0.320438 0.343352 0.332034 0.307553 0.310778 0.329393 0.320211 0.307553 0.310778 0.348147 0.385629 XP 0.317466 0.320438 6700 UM 0.367294 0.400290 4750 0.319597 0.301303 0.364212 0.382878 0.311163 0.293192 0.346904 0.371742 0.313617 0.354992 0.346904 0.371742 WM 0.328636 0.368952 6000 UN 0.364212 0.382878 4750 0.328823 0.356917 0.362219 0.371616 0.314792 0.344438 0.345781 0.359190 0.314792 0.344438 0.345781 0.359190 WN 0.328823 0.356917 6000 U0 0.362219 0.371616 4750 0.329006 0.345092 0.359401 0.355699 0.316042 0.333222 0.344443 0.344232 0.316042 0.333222 0.344443 0.344232 W0 0.329006 0.345092 6000 UP 0.359401 0.355699 4750 0.329220 0.331331 0.357079 0.342581 0.317466 0.320438 0.343352 0.332034 0.317466 0.320438 WP 0.329220 0.331331 6000 0.329393 0.320211 0.318606 0.310201 Note for Table 11: 1. Philips Lumileds maintains a tester tolerance of ± 0.005 on x, y color coordinates.

©2007 Philips Lumileds Lighting Company. All rights reserved. Product specifications are subject to change without notice. Luxeon is a registered trademark of the Philips Lumileds Lighting Company in the United States and other countries. www.luxeon.com www.futurelightingsolutions.com For technical assistance or the location of your nearest sales office contact any of the following: North America: 1 888 589 3662 americas@futurelightingsolutions.com Europe: 00 800 443 88 873 europe@futurelightingsolutions.com Asia Pacific: 800 5864 5337 asia@futurelightingsolutions.com Japan: 800 5864 5337 japan@futurelightingsolutions.com Company Information LUXEON® is developed, manufactured and marketed by Philips Lumileds Lighting Company. Philips Lumileds is a world-class supplier of Light Emitting Diodes (LEDs) producing billions of LEDs annually. Philips Lumileds is a fully integrated supplier, producing core LED material in all three base colors (Red, Green, Blue) and White. Philips Lumileds has R&D centers in San Jose, California and in The Netherlands and production capabilities in San Jose and Penang, Malaysia. Founded in 1999, Philips Lumileds is the high-flux LED technology leader and is dedicated to bridging the gap between LED technology and the lighting world. Philips Lumileds technology, LEDs and systems are enabling new solid-state lighting applications and markets. Philips Lumileds may make process or materials changes affecting the perform- ance or other characteristics of our products. These products supplied after such changes will continue to meet published specifications, but may not be identical to products supplied as samples or under prior orders.