DS55 LUMILEDS | Alldatasheet

Document overview

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Technical content

Features

Œ Lead-Free Œ RoHS Compliant Œ High Luminance Œ Uniform Color Œ Low Power Consumption Œ Low Thermal Resistance Œ Low Profile Œ Meets SAE/ECE/JIS Automotive Color Requirements Œ Packaged in tubes for use with automatic insertion equipment Typical

Applications

Œ Automotive Exterior Lighting Œ Electronic Signs and Signals Œ Specialty Lighting HPWA-MH02 HPWT-MH02 HPWA-DH02 HPWT-DH02 HPWT-RD02 HPWT-BH02 HPWT-MD02 HPWT-RL02 HPWT-DD02 HPWT-ML02 HPWT-BD02 HPWT-DL02 HPWT-RH02 HPWT-BL02

Outline Drawings Selection Guide Table 1 Total Included Total Flux ΦΦV (LM) Angle θθ90V @ 70 mA[1] (Degrees) [2] Device Type LED Color Typ. Typ. HPWA-MH02 AS AlInGaP Red-Orange 2.0 95 HPWA-DH02 75 HPWT-RD02 44 X 88 HPWT-MD02 TS AlInGaP Red 3.8 100 HPWT-DD02 70 HPWT-BD02 50 HPWT-RH02 44 X 88 HPWT-MH02 TS AlInGaP Red-Orange 5.0 100 HPWT-DH02 70 HPWT-BH02 50 HPWT-RL02 44 X 88 HPWT-ML02 TS AlInGaP Amber 2.5 100 HPWT-DL02 70 HPWT-BL02 50 Notes: 1.Φv is the total luminous flux output as measured with an integrating sphere after the device has stabilized. θJ-A = 200°C/W, TA = 25ºC) 2.θ0.90 V is the included angle at which 90% of the total luminous flux is captured. Absolute Maximum Ratings at TA = 25ºC Table 2 Parameter HPWA HPWT Units DC Forward Current [1] 70 70 mA Power Dissipation 187 221 mW Reverse Voltage (IR = 100 mA) 10 10 V Operating Temperature Range -40 to +100 ºC Storage Temperature Range -55 to +100 ºC High Temperature Chamber 125ºC, 2 Hours LED Junction Temperature 125ºC Solder Conditions [2] Preheat Temperature 85 +/- 15°C, 70 sec +/- 20 sec Solder Temperature 250 +/- 5°C, 2.5 +/- 0.5 sec [1.5mm (0.06 in) below seating plane] Notes: 1. De-rate as shown in Figures 4a and 4b. 2. See "Recommended Soldering Conditions", Page 8. Lead-Free SuperFlux LEDs Datasheet DS55 (10/06) 2

Lead-Free SuperFlux LEDs Datasheet DS55 (10/06) 3 Optical Characteristics at TA = 25°C, IF = 70 mA, RθθJ-A = 200°C/W Table 3 TToottaall LLuummiinnoouuss PPeeaakk DDoommiinnaanntt IInncclluuddeedd IInntteennssiittyy// VViieewwiinngg WWaavveelleennggtthh WWaavveelleennggtthh AAnngglleeθθ00..9900 VV TToottaall FFlluuxx AAnnggllee 22θθ11//22 DDeevviiccee λλppeeaakk ((nnmm)) λλddoomm((nnmm))[[11]] ((DDeeggrreeeess))[[22]] IIvv((ccdd))//ΦΦvv((llmm)) ((DDeeggrreeeess)) HPWA-MH02 624 618 95 0.6 90 HPWA-DH02 75 0.9 60 HPWT-RD02 44 X 88 1.25 25 x 68 HPWT-MD02 640 630 100 0.6 70 HPWT-DD02 70 1.5 40 HPWT-BD02 50 2.0 30 HPWT-RH02 44 X 88 1.25 25 x 68 HPWT-MH02 626 620 100 0.6 70 HPWT-DH02 70 1.5 40 HPWT-BH02 50 2.0 30 HPWT-RL02 44 X 88 1.25 25 x 68 HPWT-ML02 596 594 100 0.6 70 HPWT-DL02 70 1.5 40 HPWT-BL02 50 2.0 30 Notes: 1.The dominant wavelength is derived from the CIE Chromaticity Diagram and represents the perceived color of the device. 2.θ

0.90 V is the included angle at which 90% of the total lumi-

nous flux is captured. Electrical Characteristics at TA=25°C Table 4 FFoorrwwaarrdd VVoollttaaggee RReevveerrssee VVFF ((VVoollttss)) BBrreeaakkddoowwnn CCaappaacciittaannccee TThheerrmmaall @@ VVRR ((VVoollttss))[[11]] CC ((ppFF)) RReessiissttaannccee SSppeeeedd ooff IIFF == 7700mmAA ((HHPPWWAA,, @@ IIRR == 110000 VVFF == 00,, RRθθJJ--PPIINN RReessppoonnssee HHPPWWTT)) μμAA FF == 11MMHHzz.. ((°°CC//WW)) τss ((nnss)) [[22]] DDeevviiccee HPWA-xH02 1.83 2.2 2.67 10 20 40 155 20 HPWT-xD02 2.19 2.6 3.03 10 20 40 125 20 HPWT-xH02 2.19 2.6 3.03 10 20 40 125 20 HPWT-xL02 2.19 2.6 3.15 10 20 40 125 20 Notes: 1.Operation in reverse bias is not recommended. 2.τs is the time constant, e -t/τs.

Lead-Free SuperFlux LEDs Datasheet DS55 (10/06) 4 Part Number Selection RReedd PPaarrtt NNuummbbeerr VViieewwiinngg AAnnggllee MMiinn.. FFlluuxx[[11]] MMaaxx FFlluuxx MMiinniimmuumm MMaaxxiimmuumm 22θθ11//22 ((DDeeggrreeeess)) ΦΦvv ((llmm)) ΦΦvv ((llmm)) IInntteennssiittyy ((ccdd)) IInntteennssiittyy ((ccdd)) HPWT-RD02-00000 25 X 68 1.5 1.9 HPWT-RD02-D4000 25 X 68 2.0 4.8 2.5 6.0 HPWT-RD02-E4000 25 X 68 2.5 6.1 3.1 7.6 HPWT-RD02-F4000 25 X 68 3.0 7.3 3.8 9.1 HPWT-BD02-00000 30 1.5 3.0 HPWT-BD02-D4000 30 2.0 4.8 4.0 9.6 HPWT-BD02-E4000 30 2.5 6.1 5.0 12.2 HPWT-BD02-F4000 30 3.0 7.3 6.0 14.6 HPWT-DD02-00000 40 1.5 2.3 HPWT-DD02-D4000 40 2.0 4.8 3.0 7.2 HPWT-DD02-E4000 40 2.5 6.1 3.8 9.2 HPWT-DD02-F4000 40 3.0 7.3 4.5 11.0 HPWT-MD02-00000 70 1.5 0.9 HPWT-MD02-D4000 70 2.0 4.8 1.2 2.9 HPWT-MD02-E4000 70 2.5 6.1 1.5 3.7 HPWT-MD02-F4000 70 3.0 7.3 1.8 4.4 Note: 1. Φv is the total luminous flux output as measured with an integrating sphere after the device has stabilized.

Lead-Free SuperFlux LEDs Datasheet DS55 (10/06) 5 RReedd--OOrraannggee PPaarrtt NNuummbbeerr VViieewwiinngg AAnnggllee MMiinn.. FFlluuxx MMaaxx FFlluuxx MMiinniimmuumm MMaaxxiimmuumm 22θθ11//22 ((DDeeggrreeeess)) ΦΦvv ((llmm)) ΦΦvv ((llmm)) IInntteennssiittyy ((ccdd)) IInntteennssiittyy ((ccdd)) HPWT-RH02-00000 25 X 68 1.5 1.9 HPWT-RH02-D4000 25 X 68 2.0 4.8 2.5 6.0 HPWT-RH02-E4000 25 X 68 2.5 6.1 3.1 7.6 HPWT-RH02-F4000 25 X 68 3.0 7.3 3.8 9.1 HPWT-RH02-G4000 25 X 68 3.5 9.7 4.4 12.1 HPWT-RH02-H4000 25 X 68 4.0 12.0 5.0 15.0 HPWT-BH02-00000 30 1.5 3.0 HPWT-BH02-D4000 30 2.0 4.8 4.0 9.6 HPWT-BH02-E4000 30 2.5 6.1 5.0 12.2 HPWT-BH02-F4000 30 3.0 7.3 6.0 14.6 HPWT-BH02-G4000 30 3.5 9.7 7.0 19.4 HPWT-BH02-H4000 30 4.0 12.0 8.0 24.0 HPWT-DH02-00000 40 1.5 2.3 HPWT-DH02-D4000 40 2.0 4.8 3.0 7.2 HPWT-DH02-E4000 40 2.5 6.1 3.8 9.2 HPWT-DH02-F4000 40 3.0 7.3 4.5 11.0 HPWT-DH02-G4000 40 3.5 9.7 5.3 14.6 HPWT-DH02-H4000 40 4.0 12.0 6.0 18.0 HPWT-MH02-00000 70 1.5 0.9 HPWT-MH02-D4000 70 2.0 4.8 1.2 2.9 HPWT-MH02-E4000 70 2.5 6.1 1.5 3.7 HPWT-MH02-F4000 70 3.0 7.3 1.8 4.4 HPWT-MH02-G4000 70 3.5 9.7 2.1 5.8 HPWT-MH02-H4000 70 4.0 12.0 2.4 7.2 HPWA-MH02-B4000 90 1.0 3.6 0.6 2.2 HPWA-DH02-B4000 40 1.0 3.6 1.5 5.4 HPWA-MH02-C4000 90 1.5 4.2 0.9 2.5 HPWA-DH02-C4000 40 1.5 4.2 2.3 6.3 AAmmbbeerr PPaarrtt NNuummbbeerr VViieewwiinngg AAnnggllee MMiinn.. FFlluuxx MMaaxx FFlluuxx MMiinniimmuumm MMaaxxiimmuumm 22θθ11//22 ((DDeeggrreeeess)) ΦΦvv ((llmm)) ΦΦvv ((llmm)) IInntteennssiittyy ((ccdd)) IInntteennssiittyy ((ccdd)) HPWT-RL02-00000 25 X 68 1.0 1.3 HPWT-RL02-C4000 25 X 68 1.5 4.2 1.9 5.3 HPWT-RL02-D4000 25 X 68 2.0 4.8 2.5 6.0 HPWT-BL02-00000 30 1.0 2.0 HPWT-BL02-C4000 30 1.5 4.2 3.0 8.4 HPWT-BL02-D4000 30 2.0 4.8 4.0 9.6 HPWT-DL02-00000 40 1.0 1.5 HPWT-DL02-C4000 40 1.5 4.2 2.3 6.3 HPWT-DL02-D4000 40 2.0 4.8 3.0 7.2 HPWT-ML02-00000 70 1.0 0.6 HPWT-ML02-C4000 70 1.5 4.2 0.9 2.5 HPWT-ML02-D4000 70 2.0 4.8 1.2 2.9

Lead-Free SuperFlux LEDs Datasheet DS55 (10/06) 8 Recommended Soldering Conditions for Pb-Free SuperFlux SSoollddeerr CCoonnddiittiioonnss Preheat Temperatue 85 +/- 15ºC Preheat Time 70s +/- 20s Peak Profile Temperature 250 +/- 5ºC Solder Time Above 217ºC 2.5 +/- 0.5s Note: 1.All top preheat stages are to be turned off so that the lamp body is not directly exposed to the heat source. 2.Profile taken on the LED lead at the bottom of the PCB. 3.Single wave soldering is recommended. 100 200 250 300 0 1 02 03 04 05 06 07 08 09 0 Time (Seconds) Temperature (deg C) 150 Preheat 90 s (MAX) 100oC (MAX) Peak 255 C o 217 C o 100 200 250 300 0 1 02 03 04 05 06 07 08 09 0 Time (Seconds) Temperature (deg C) 150 Preheat 90 s (MAX) 100oC (MAX)150 Preheat 90 s (MAX) 100oC (MAX)100oC (MAX) Peak 255 C o 217 C o

©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®, SuperFlux and SnapLED are 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 applica- tions 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.