DS45 LUMILEDS | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 17
Technical content
Features
Highest flux per LED family in the world Very long operating life (up to 100k hours) Available in 5500K white, green, blue, royal blue, cyan, red, red-orange, and amber Lambertian and side emitting radiation patterns More energy efficient than incandescent and most halogen lamps Low voltage DC operated Cool beam, safe to the touch Instant light (less than 100 ns) Fully dimmable No UV Superior ESD protection Typical Applications Reading lights (car, bus, aircraft) Portable (flashlight, bicycle) Mini-accent/Uplighters/ Downlighters/Orientation Fiber optic alternative/ Decorative/Entertainment Bollards/Security/Garden Cove/Undershelf/Task Automotive rear combination lamps Traffic signaling/Beacons/ Rail crossing and Wayside Indoor/Outdoor Commercial and Residential Architectural Edge-lit signs (Exit, point of sale) LCD Backlights/Light Guides power light source
LUXEON III Emitter DS45 (3/06) 2 Mechanical Dimensions Lambertian Notes: 1.The anode side of the device is denoted by a hole in the lead frame. Electrical insulation between the case and the board is required—slug of device is not electrically neutral. Do not electrically connect either the anode or cathode to the slug. 2.All dimensions are in millimeters. 3.All dimensions without tolerances are for reference only. Side Emitting Notes: 1.The anode side of the device is denoted by a hole in the lead frame. Electrical insulation between the case and the board is required—slug of device is not electrically neutral. Do not electrically connect either the anode or cathode to the slug. 2.Caution must be used in handling this device to avoid damage to the lens surfaces that will reduce optical efficiency. 3.All dimensions are in millimeters. 4.All dimensions without tolerances are for reference only. Drawings not to scale Drawings not to scale TOP VIEW BOTTOM VIEW
Flux Characteristics at 700mA, Junction Temperature, TJ = 25ºC Table 1. MMiinniimmuumm LLuummiinnoouuss TTyyppiiccaall LLuummiinnoouuss FFlluuxx ((llmm)) oorr FFlluuxx ((llmm)) oorr RRaaddiioommeettrriicc RRaaddiioommeettrriicc LLUUXXEEOONN PPoowweerr ((mmWW)) PPoowweerr ((mmWW)) RRaaddiiaattiioonn CCoolloorr EEmmiitttteerr ΦΦV [1,2] ΦΦV [2] PPaatttteerrnn White LXHL-PW09 60.0 65 Green LXHL-PM09 51.7 64 Lambertian Cyan LXHL-PE09 51.7 64 Blue[3] LXHL-PB09 13.9 23 Royal Blue[4] LXHL-PR09 275 mW 340 mW White LXHL-DW09 51.7 58 Green LXHL-DM09 51.7 58 Side Emitting Blue[3] LXHL-DB09 13.9 21 Flux Characteristics at 1000mA, Junction Temperature, TJ = 25ºC Table 2. TTyyppiiccaall LLuummiinnoouuss FFlluuxx ((llmm)) oorr RRaaddiioommeettrriicc PPoowweerr ((mmWW)) LLUUXXEEOONN ΦΦV [1,2] RRaaddiiaattiioonn CCoolloorr EEmmiitttteerr 11000000 mmAA PPaatttteerrnn White LXHL-PW09 80 Green LXHL-PM09 80 Lambertian Cyan LXHL-PE09 80 Blue[3] LXHL-PB09 30 Royal Blue[4] LXHL-PR09 450 mW White LXHL-DW09 70 Green LXHL-DM09 70 Side Emitting Blue[3] LXHL-DB09 27 Notes for Tables 1 & 2: 1.Minimum luminous flux or radiometric power performance guaranteed within published operating conditions. Lumileds main- tains a tolerance of ± 10% on flux and power measurements. 2.LUXEON types with even higher luminous flux levels will become available in the future. Please consult your Lumileds Authorized Distributor or Lumileds sales representative for more information. 3.Typical flux value for 470nm devices. Due to the CIE eye response curve in the short blue wavelength range, the minimum luminous flux will vary over the Lumileds blue color range. Luminous flux will vary from a typical of 17lm for the 460-465nm bin to a typical of 30lm for the 475-480 nm bin due to this effect. Although the luminous power efficiency is lower in the shor t blue wavelength range, radiometric power efficiency increases as wavelength decreases. For more information, consult the LUXEON Design Guide, available upon request. 4.Royal Blue product is binned by radiometric power and peak wavelength rather than photometric lumens and dominant wavelength. LUXEON III Emitter DS45 (3/06) 3
LUXEON III Emitter DS45 (3/06) 4 Flux Characteristics at 1400mA, Junction Temperature, TJ = 25ºC Table 3. MMiinniimmuumm LLuummiinnoouuss TTyyppiiccaall LLuummiinnoouuss LLUUXXEEOONN FFlluuxx ((llmm)) FFlluuxx ((llmm)) RRaaddiiaattiioonn CCoolloorr EEmmiitttteerr FFV [1,2] FFV [2] PPaatttteerrnn Red LXHL-PD09 90 140 Red-Orange LXHL-PH09 120 190 Lambertian Amber LXHL-PL09 70 110 Red LXHL-DD09 90 125 Red-Orange LXHL-DH09 120 170 Side Emitting Amber LXHL-DL09 70 100 Notes for Table 3: 1.Minimum luminous flux performance guaranteed within published operating conditions. Lumileds maintains a tolerance of ± 10% on flux measurements. 2.LUXEON types with even higher luminous flux levels will become available in the future. Please consult your Lumileds Authorized Distributor or Lumileds sales representative for more information.
5LUXEON III Emitter DS45 (3/06) Optical Characteristics at 700mA, Junction Temperature, TJ = 25ºC Table 4. DDoommiinnaanntt WWaavveelleennggtthh[[11]] TTeemmppeerraattuurree λλDD,, CCooeeffffiicciieenntt ooff TToottaall PPeeaakk WWaavveelleennggtthh[[22]] λλPP,, SSppeeccttrraall DDoommiinnaanntt IInncclluuddeedd VViieewwiinngg oorr CCoolloorr TTeemmppeerraattuurree[[33]] HHaallff--wwiiddtthh[[44]] WWaavveelleennggtthh AAnnggllee[[55]] AAnnggllee[[66]] RRaaddiiaattiioonn CCCCTT ((nnmm)) ((nnmm//ooCC)) ((ddeeggrreeeess)) ((ddeeggrreeeess)) White 4500K 5500K 10000K — — Green 520nm 530nm 550nm 35 0.04 160 140 Lambertian Cyan 490nm 505nm 520nm 30 0.04 160 140 Blue 460nm 470nm 490nm 25 0.04 160 140 Royal Blue[2] 440nm 455nm 460nm 20 0.04 160 140 Optical Characteristics at 700mA, Junction Temperature, TJ = 25ºC Continued Table 5. TTeemmppeerraattuurree TTyyppiiccaall DDoommiinnaanntt WWaavveelleennggtthh[[11]] CCooeeffffiicciieenntt ooff TToottaall FFlluuxx TTyyppiiccaall λλDD,, SSppeeccttrraall DDoommiinnaanntt PPeerrcceenntt AAnnggllee oorr CCoolloorr TTeemmppeerraattuurree[[33]] HHaallff--wwiiddtthh[[44]] WWaavveelleennggtthh wwiitthhiinn ooff PPeeaakk RRaaddiiaattiioonn CCCCTT ((nnmm)) ((nnmm//ooCC)) ffiirrsstt 4455°° [[77]] IInntteennssiittyy [[88]] White 4500K 5500K 10000K — — <15% 75° - 85° Side Emitting Green 520nm 530nm 550nm 35 0.04 <15% 75° - 85° Blue 460nm 470nm 490nm 20 0.04 <15% 75° - 85° Notes: (for Tables 4 & 5) 1. Dominant wavelength is derived from the CIE 1931 Chromaticity diagram and represents the perceived color. Lumileds maintains a tolerance of ± 0.5nm for dominant wavelength measurements. 2. Royal Blue product is binned by radiometric power and peak wavelength rather than photometric lumens and dominant wavelength. Lumileds maintains a tolerance of ± 2nm for peak wavelength measurements. 3. CRI (Color Rendering Index) for White product types is 70. CRI for Warm White product type is 90 with typical R 9 value of 70. CCT ±5% tester tolerance. 4. Spectral width at ½ of the peak intensity. 5. Total angle at which 90% of total luminous flux is captured. 6. θ½ is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value. 7. Cumulative flux percent within ± 45° from optical axis. 8. Off axis angle from lamp centerline where the luminous intensity reaches the peak value. 9. All white, green, cyan, blue and royal blue products built with Indium Gallium Nitride (InGaN). 10.Blue and Royal Blue power light sources represented here are IEC825 Class 2 for eye safety.
LUXEON III Emitter DS45 (3/06) 6 Optical Characteristics at 1400mA, Junction Temperature, TJ = 25ºC Table 6. TTeemmppeerraattuurree CCooeeffffiicciieenntt ooff TToottaall SSppeeccttrraall DDoommiinnaanntt IInncclluuddeedd VViieewwiinngg DDoommiinnaanntt WWaavveelleennggtthh[[11]] HHaallff--wwiiddtthh[[22]] WWaavveelleennggtthh AAnnggllee[[33]] AAnnggllee[[44]] RRaaddiiaattiioonn λλDD ((nnmm)) ((nnmm//ooCC)) ((ddeeggrreeeess)) ((ddeeggrreeeess)) Red 620.5nm 627nm 645nm 20 0.05 170 130 Lambertian Red-Orange 613.5nm 617nm 620.5nm 18 0.06 170 130 Amber 584.5nm 590nm 597nm 17 0.09 170 130 Optical Characteristics at 1400mA, Junction Temperature, TJ = 25ºC, Continued Table 7. TTeemmppeerraattuurree TTyyppiiccaall CCooeeffffiicciieenntt ooff TToottaall FFlluuxx TTyyppiiccaall SSppeeccttrraall DDoommiinnaanntt PPeerrcceenntt AAnnggllee DDoommiinnaanntt WWaavveelleennggtthh[[11]] HHaallff--wwiiddtthh[[22]] WWaavveelleennggtthh wwiitthhiinn ooff PPeeaakk RRaaddiiaattiioonn λλDD ((nnmm)) ((nnmm//ooCC)) ffiirrsstt 4455°° [[55]] IInntteennssiittyy [[66]] Red 620.5nm 627nm 645nm 20 0.05 <30% 75° - 85° Side Emitting Red-Orange 613.5nm 617nm 620.5nm 18 0.06 <30% 75° - 85° Amber 584.5nm 590nm 597nm 17 0.09 <30% 75° - 85° Notes: (for Tables 6 & 7) 1.Dominant wavelength is derived from the CIE 1931 Chromaticity diagram and represents the perceived color. Lumileds maintains a tolerance of ± 0.5nm for dominant wavelength measurements. 2.Spectral width at ½ of the peak intensity. 3.Total angle at which 90% of total luminous flux is captured. 4.θ½ is the off axis angle from lamp centerline where the luminous intensity is ½ of the peak value. 5.Cumulative flux percent within ± 45° from optical axis. 6.Off axis angle from lamp centerline where the luminous intensity reaches the peak value. 7.All red, red-orange and amber products built with Aluminum Indium Gallium Phosphide (AlInGaP).
LUXEON III Emitter DS45 (3/06) 7 Electrical Characteristics at 1000mA, Junction Temperature, TJ = 25ºC Table 9. TTyyppiiccaall FFoorrwwaarrdd VVoollttaaggee VVFF ((VV))[[11]] CCoolloorr 11000000 mmAA White 3.90 Green 3.90 Cyan 3.90 Blue 3.90 Royal Blue 3.90 Notes for Table 9: 1.Lumileds maintains a tolerance of ± 0.06V on forward voltage measurements. Electrical Characteristics at 700mA, Junction Temperature, TJ = 25ºC Table 8. TTeemmppeerraattuurree CCooeeffffiicciieenntt ooff TThheerrmmaall FFoorrwwaarrdd RReessiissttaannccee,, FFoorrwwaarrdd VVoollttaaggee VVFF [[11]] DDyynnaammiicc VVoollttaaggee[[33]] JJuunnccttiioonn ((VV)) RReessiissttaannccee[[22]] ((mmVV//ooCC)) ttoo CCaassee Notes for Table 8: 1.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 Figures 3a and 3b. 3.Measured between 25 oC ≤ TJ ≤ 110oC at IF = 700mA.
LUXEON III Emitter DS45 (3/06) 8 Electrical Characteristics at 1400mA, Junction Temperature, TJ = 25ºC Table 10. TTeemmppeerraattuurree CCooeeffffiicciieenntt ooff TThheerrmmaall FFoorrwwaarrdd RReessiissttaannccee,, DDyynnaammiicc VVoollttaaggee[[33]] JJuunnccttiioonn FFoorrwwaarrdd VVoollttaaggee VVFF ((VV))[[11]] RReessiissttaannccee[[22]] ((mmVV//ooCC)) ttoo CCaassee Notes for Table 10: 1.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 3. 3.Measured between 25ºC ≤ T J ≤ 110ºC at IF = 1400mA. Absolute Maximum Ratings Table 11. WWhhiittee//GGrreeeenn// RReedd// CCyyaann//BBlluuee// RReedd--OOrraannggee// PPaarraammeetteerr RRooyyaall BBlluuee AAmmbbeerr DC Forward Current (mA)[1] 1000 1540 Peak Pulsed Forward Current (mA) 1000 2200 Average Forward Current (mA) 1000 1400 LED Junction Temperature (ºC) 135 135 Storage Temperature (ºC) -40 to +120 -40 to +120 Soldering Temperature (ºC)[2] 260 for 260 for 5 seconds max 5 seconds max ESD Sensitivity [3] ±16,000V HBM ±16,000V HBM Notes for Table 11: 1.Proper current derating must be observed to maintain junction temperature below the maximum. For more information, consult the Luxeon Design Guide, available upon request. 2.Measured at leads, during lead soldering and slug attach, body temperature must not exceed 120ºC. Luxeon Emitterscannot be soldered by general IR or Vapor-phase reflow, nor by wave soldering. Lead soldering is limited to selective heating of the leads, such as by hot-bar reflow, fiber focussed IR, or hand soldering. The package back plane (slug) may not be attached by soldering, but rather with a thermally conductive adhesive. Electrical insulation between the slug and the board is required. Please consult Lumileds' Application Brief AB10 on Luxeon Emitter Assembly Information for further details on assembly methods. 3.LEDs are not designed to be driven in reverse bias. Please consult Lumileds' Application Brief AB11 for further information.
©2006 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.lumiledsfuture.com For technical assistance or the location of your nearest sales office contact any of the following: North America: +1 888 589 3662 or askluxeon@futureelectronics.com Europe: 00 800 443 88 873 or luxeon.europe@futureelectronics.com Asia: 800 5864 5337 or lumileds.asia@futureelectronics.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 solid-state LED technology and the lighting world. Philips Lumileds technology, LEDs and systems are enabling new applications and markets in the lighting world. 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.