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  features well defined spatial radiation pattern viewing angles: major axis 70 minor axis 35 high luminous output red and amber intensity are available for: alingap (bright) alingap ii (brightest) colors: 472 nm blue 526 nm green 626 nm red 630 nm red 590 nm amber 592 nm amber superior resistance to moisture uv resistant epoxy benefits viewing angle designed for wide field of view application red, green, and blue radiation patterns matched for full color sign superior performance in outdoor environments applications full color/video signs description these precision optical performance oval leds are specifically designed for full color/video and passenger information signs. the oval shaped radiation pattern (35 x70 ) and high luminous intensity ensure that these devices are excellent for wide field of view outdoor application where a wide viewing angle and readability in sunlight are essential. these lamps have very smooth, matched radiation patterns ensuring consistent color mixing in full color applications, message uniformity across the viewing angle of the sign. high efficiency led material is used in these lamps: aluminum indium gallium phosphide (alingap) for amber and red, and indium gallium nitride (ingan) for blue and green. each lamp is made with an advance optical grade epoxy offering superior high temperature and high moisture resistance in outdoor applications. the package epoxy contains both uv- a and uv-b inhibitors to reduce the effects of long term exposure to direct sunlight. designers can select parallel or perpendicular orientation. both lamps are available in tinted version. caution: the blue and green leds are class 1 esd sensitive. please observe appropriate precautions during handling and processing. refer to avago application note an-1142 for additional details. hlmp-alxx/blxx/adxx/bdxx/bb11/bm11 t-1 3 / 4 (5 mm) oval precision optical performance alingap and ingan lamps data sheet
2 table 1. device selection guide for alingap ii color and luminous luminous forward dominant intensity, intensity, voltage, leads wavelength i v (mcd) at i v (mcd) at v f (v) with leadframe package part number l d (nm) typ. 20 ma min. 20 ma max. max. stand-offs orientation drawing hlmp-ad06-p00xx red 630 880 2.4 no parallel a hlmp-ad06-p0txx red 630 880 2.6 no parallel a hlmp-ad16-p00xx red 630 880 2.4 yes parallel b hlmp-ad16-p0txx red 630 880 2.6 yes parallel b hlmp-ad16-rs0xx red 630 1500 2500 2.6 yes parallel b hlmp-ad16-rstxx red 630 1500 2500 2.6 yes parallel b hlmp-ad16-ru0xx red 630 1500 4200 2.4 yes parallel b hlmp-ad16-rutxx red 630 1500 4200 2.6 yes parallel b hlmp-ad16-st0xx red 630 1900 3200 2.4 yes parallel b hlmp-ad16-sttxx red 630 1900 3200 2.6 yes parallel b hlmp-al06-l00xx amber 592 400 2.4 no parallel a hlmp-al06-l0rxx amber 592 400 2.6 no parallel a hlmp-al06-n00xx amber 592 680 2.4 no parallel a hlmp-al06-n0rxx amber 592 680 2.6 no parallel a hlmp-al16-n00xx amber 592 680 2.4 yes parallel b hlmp-al16-n0rxx amber 592 680 2.6 yes parallel b hlmp-al16-psrxx amber 592 880 2500 2.6 yes parallel b hlmp-al16-qr0xx amber 592 1150 1900 2.4 yes parallel b hlmp-al16-qrrxx amber 592 1150 1900 2.6 yes parallel b hlmp-bd06-p00xx red 630 880 2.4 no perpendicular c hlmp-bd06-p0txx red 630 880 2.6 no perpendicular c hlmp-bd06-rs0xx red 630 1500 2500 2.4 no perpendicular c hlmp-bd06-rstxx red 630 1500 2500 2.6 no perpendicular c hlmp-bd16-p00xx red 630 880 2.4 yes perpendicular d hlmp-bd16-p0txx red 630 880 2.6 yes perpendicular d hlmp-bd16-ru0xx red 630 1500 4200 2.4 yes perpendicular d hlmp-bd16-rutxx red 630 1500 4200 2.6 yes perpendicular d hlmp-bd16-st0xx red 630 1900 3200 2.4 yes perpendicular d hlmp-bd16-sttxx red 630 1900 3200 2.6 yes perpendicular d hlmp-bl06-n00xx amber 592 680 2.4 no perpendicular c hlmp-bl06-n0rxx amber 592 680 2.6 no perpendicular c hlmp-bl06-qrkxx amber 592 1150 1900 2.4 no perpendicular c hlmp-bl06-qrsxx amber 592 1150 1900 2.6 no perpendicular c hlmp-bl16-n00xx amber 592 680 2.4 yes perpendicular d hlmp-bl16-n0rxx amber 592 680 2.6 yes perpendicular d hlmp-bl16-ps0xx amber 592 880 2500 2.4 yes perpendicular d hlmp-bl16-psrxx amber 592 880 2500 2.6 yes perpendicular d
3 table 2. led indicators device selection guide for alingap color and luminous luminous dominant intensity, intensity, leads wavelength i v (mcd) at i v (mcd) at with leadframe package part number l d (nm) typ. 20 ma min. 20 ma max. stand-offs orientation drawing hlmp-ag01-k00xx red 626 310 no parallel a hlmp-ag11-kn0xx red 626 310 880 yes parallel b hlmp-al01-k00xx amber 590 310 no parallel a hlmp-al01-lp0xx amber 590 400 1150 no parallel a hlmp-al01-nr0xx amber 590 680 1900 no parallel a hlmp-al11-kn0xx amber 590 310 880 yes parallel b hlmp-al11-nr0xx amber 590 680 1900 yes parallel b hlmp-bg01-lm0xx red 626 400 520 no perpendicular c hlmp-bg01-mn0xx red 626 520 880 no perpendicular c hlmp-bg11-kn0xx red 626 310 880 yes perpendicular d hlmp-bl01-nr0xx amber 590 680 1900 no perpendicular c hlmp-bl11-kn0xx amber 590 310 880 yes perpendicular d hlmp-bl11-nr0xx amber 590 680 1900 yes perpendicular d table 3. device selection guide for ingan color and dominant luminous intensity, leads with leadframe package part number wavelength l d (nm) typ. iv (mcd) at 20 ma min. stand-offs orientation drawing hlmp-ab01-j00xx blue 472 240 no parallel a hlmp-ab01-k0dxx blue 472 310 no parallel a hlmp-bb11-j00xx blue 472 240 yes perpendicular d hlmp-bb11-k00xx blue 472 310 yes perpendicular d hlmp-bm11-l00xx green 526 400 yes perpendicular d hlmp-bm11-q00xx green 526 1150 yes perpendicular d hlmp-ab11-j00xx blue 472 240 yes parallel b hlmp-am01-q00xx green 526 1150 no parallel a hlmp-bb01-j0bxx blue 472 240 no perpendicular c hlmp-bb11-kn0xx blue 472 310 yes perpendicular d hlmp-bm01-l00xx green 526 400 no perpendicular c tolerance for intensity range limit is 15%.
4 part numbering system hlmp-x x x x - x x x xx mechanical options 00: bulk packaging dd: ammo pack yy: flexi-bin; bulk packaging zz: flexi-bin; ammo pack color bin 0: no color bin limitation b: color bin 2 and 3 only k: color bins 2 and 4 only r: color bins 1, 2, 4, and 6 with v f max of 2.6 v s: color bins 2 and 4 with vf max of 2.6 v t: red color with v f max of 2.6 v maximum intensity bin 0: no iv bin limitation minimum intensity bin tint option 1 or 6: matching color tints standoff option 0: without 1: with color b: 472 nm blue d: 630 nm red g: 626 nm red l: 590 or 592 nm amber m: 526 nm green package a: 5 mm mini oval, parallel b: 5 mm mini oval, perpendicular
5 package dimensions 5.00 ?0.20 (0.197 ?0.008) 31.60 (1.244) min. 0.70 (0.028) max. 1.00 (0.039) min. 8.71 ?0.20 (0.343 ?0.008) 2.54 ?0.38 (0.100 ?0.015) 0.50 ?0.10 (0.020 ?0.004) sq. typ. cathode lead 5.00 ?0.20 (0.197 ?0.008) 31.60 (1.244) min. 0.70 (0.028) max. 1.00 (0.039) min. 8.71 ?0.20 (0.343 ?0.008) 2.54 ?0.38 (0.100 ?0.015) 0.50 ?0.10 (0.020 ?0.004) sq. typ. cathode lead 1.50 ?.15 (0.059 ?0.006) 5.00 ?0.20 (0.197 ?0.008) 31.60 (1.244) min. 0.70 (0.028) max. 1.00 (0.039) min. 8.71 ?0.20 (0.343 ?0.008) 2.54 ?0.38 (0.100 ?0.015) 0.50 ?0.10 (0.020 ?0.004) sq. typ. cathode lead 5.00 ?0.20 (0.197 ?0.008) 31.60 (1.244) min. 0.70 (0.028) max. 1.00 (0.039) min. 8.71 ?0.20 (0.343 ?0.008) 2.54 ?0.38 (0.100 ?0.015) 0.50 ?0.10 (0.020 ?0.004) sq. typ. cathode lead 1.50 ?.15 (0.059 ?0.006) a b c d 11.70 + 0.13 ?0.08 0.461 + 0.005 ?0.003 ) ( notes: 1. all dimensions are in millimeters (inches). 2. leads are mild steel, solder dipped. 3. tapers shown at top of leads (bottom of lamp package) indicate an epoxy meniscus that may extend about 1 mm (0.040 in.) down the leads. 4. recommended pc board hole diameters: lamp packages a and c without stand-offs: flush mounting at base of lamp package = 1.143/1.067 mm (0.044/0.042 in.). lamp packages b and d with stand-offs: mounting at lead stand-offs.
6 absolute maximum ratings at t a = 25?c parameter blue and green red and amber dc forward current [1] 30 ma 50 ma peak pulsed forward current [2] 100 ma 100 ma average forward current 30 ma 30 ma reverse voltage (i r = 100 a) 5 v reverse voltage (i r = 10 a) 5 v power dissipation 120 mw 120 mw led junction temperature 130 c 130 c operating temperature range ?0 c to +80 c ?0 c to +100 c storage temperature range ?0 c to +100 c ?0 c to +120 c dip soldering temperature [3] 260 c for 5 seconds 260 c for 5 seconds wave soldering temperature [3] 250 c for 3 seconds 250 c for 3 seconds notes: 1. derate linearly from figure 7. 2. duty factor 30% khz. 3. 1.59 mm (0.060 in.) below body.
7 electrical/optical characteristics at t a = 25 c parameter symbol min. typ. max. units test conditions typical viewing angle major 2 q 1/2 70 deg minor 35 forward voltage v f vi f = 20 ma red ( l d = 626 nm) 2.0 2.4 red ( l d = 630 nm) option xx0xx 2.2 2.4 option xxtxx 2.3 2.6 amber ( l d = 590 nm) 2.0 2.4 amber ( l d = 592 nm) option xx0xx 2.2 2.4 option xxrxx, xxsxx 2.3 2.6 blue ( l d = 472 nm) 3.5 4.0 green ( l d = 526 nm) 3.5 4.0 reverse voltage amber, red v r 520 v i r = 100 a blue, green 5 i r = 10 a peak wavelength peak of wavelength of amber ( l d = 592 nm) l peak 594 nm spectral distribution red ( l d = 630 nm) 639 at i f = 20 ma blue ( l d = 472 nm) 470 green ( l d = 526 nm) 524 spectral halfwidth wavelength width amber ( l d = 592 nm) ? l 1/2 17 nm at spectral distribution red ( l d = 630 nm) 17 1/2 power point at blue ( l d = 472 nm) 35 i f = 20 ma green ( l d = 526 nm) 47 capacitance v f = 0, f = 1 mhz amber, red c 40 pf blue, green 43 luminous efficacy emitted luminous amber ( l d = 592 nm) h v 500 lm/w power/emitted radiant red ( l d = 630 nm) 155 power at i f = 20 ma blue ( l d = 472 nm) 75 green ( l d = 526 nm) 520 thermal resistance r q j-pin 240 c/w led junction-to- cathode lead notes: 1. 2 q 1/2 is the off-axis angle where the luminous intensity is 1/2 the on-axis intensity. 2. the radiant intensity, i e in watts per steradian, may be found from the equation i e = i v / h v where i v is the luminous intensity in candelas and h v is the luminous efficacy in lumens/watt. 3. the luminous intensity is measured on the mechanical axis of the lamp package. 4. the optical axis is closely aligned with the package mechanical axis. 5. the dominant wavelength, l d , is derived from the cie chromaticity diagram and represents the color of the lamp. 6. for options -xxrxx, -xxsxx and -xxtxx, max. forward voltage (vf) is 2.6 v. refer to vf bin table.
8 figure 1. relative intensity vs. wavelength. figure 2. blue, green forward current vs. forward voltage. wavelength nm relative intensity 1.0 0.5 0 400 500 600 700 450 550 650 0.4 0.3 0.2 0.1 0.6 0.7 0.8 0.9 blue green amber red 0 30 25 15 10 forward current forward voltage 2.0 2.6 3.0 3.8 5 20 2.2 2.8 3.4 2.4 3.2 3.6 figure 3a. amber, red forward current vs. forward voltage. figure 4. blue, green relative luminous intensity vs. forward current. 0 1.5 0.5 intensity normalized at 20 ma i f forward current ma 0102030 1.0 51525 0 70 60 40 20 i f forward current ma v f forward voltage v 1.0 3.0 amber 1.5 2.0 2.5 10 30 50 red figure 3b. forward current vs. forward voltage for option -xxtxx red, and option -xxrxx and -xxsxx amber. 0 40 20 dc forward current ma forward voltage v 03.0 1.0 1.5 2.5 10 30 50 0.5 2.0 amber red figure 6. blue, green maximum forward current vs. ambient temperature. figure 7. amber, red maximum forward current vs. ambient temperature. i f forward current ma 0 0 t a ambient temperature c 40 80 40 20 10 20 60 30 100 5 15 25 35 i f forward current ma 0 0 t a ambient temperature c 40 80 50 40 30 20 10 20 60 100 r ja = 585 c/w r ja = 780 c/w figure 5. amber, red relative luminous intensity vs. forward current. relative intensity (normalized at 20 ma) 0 0 forward current ma 20 30 2.0 1.0 50 0.5 1.5 2.5 10 40 amber red
9 figure 8. spatial radiation pattern ?35 x 70 degree lamps. relative intensity % 100 0 vertical angular displacement degrees 80 60 50 70 20 50 10 30 40 40 0 20 -10 -30 -50 90 30 10 -20 -40 relative intensity % 100 0 horizontal angular displacement degrees 80 60 50 70 20 50 10 30 40 40 0 20 -10 -30 -50 90 30 10 -20 -40 intensity bin limits (mcd at 20 ma) bin name min. max. g 140 180 h 180 240 j 240 310 k 310 400 l 400 520 m 520 680 n 680 880 p 880 1150 q 1150 1500 r 1500 1900 s 1900 2500 t 2500 3200 u 1900 2500 tolerance for each bin limit is 15%. amber color bin limits (nm at 20 ma) bin name min. max. 1 584.5 587.0 2 587.0 589.5 4 589.5 592.0 6 592.0 594.5 tolerance for each bin limit is 0.5 nm. notes: 1. all bin categories are established for classifi- cation of products. products may not be available in all bin categories. please contact your avago representative for further infor- mation. 2. vf bin table only available for those numbers with options -xxrxx, -xxsxx, -xxtxx. blue color bin limits (nm at 20 ma) bin name min. max. 1 460.0 464.0 2 464.0 468.0 3 468.0 472.0 4 472.0 476.0 5 476.0 480.0 tolerance for each bin limit is 0.5 nm. green color bin limits (nm at 20 ma) bin name min. max. 1 520.0 524.0 2 524.0 528.0 3 528.0 532.0 4 532.0 536.0 5 536.0 540.0 tolerance for each bin limit is 0.5 nm. vf bin table [2] bin id min. max. va 2.0 2.2 vb 2.2 2.4 vc 2.4 2.6
for product information and a complete list of distributors, please go to our website: www.avagotech.com avago, avago technologies, and the a logo are trademarks of avago technologies limited in the united states and other countries . data subject to change. copyright ? 2007 avago technologies limited. all rights reserved. obsoletes 5988-9224en 5989-1903en january 19, 2007


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