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  agilent sun power series hlmp-cb15, hlmp-cm15, hlmp-cb30, hlmp-cm30 t-1 3 / 4 (5 mm) precision optical performance ingan blue and green lamps data sheet features ? well defined spatial radiation pattern ? viewing angles: 15? and 30? ? high luminous output ? colors: 472 nm blue, 526 nm green ? superior resistance to moisture ? uv resistant epoxy benefits ? superior performance in outdoor environments ? wavelengths suitable for color mixing in full color (rgb) signs applications ? commercial outdoor signs ? automotive interior lights ? front panel indicators ? front panel backlighting description these high intensity blue and green leds are based on ingan material technology. ingan is the most efficient and cost effective material for leds in the blue and green region of the spectrum. the 472 nm typical dominant wavelength for blue and 526 nm typical dominant wavelength for green are well suited to color mixing in full color signs. these led lamps are untinted, nondiffused, t-1 3 / 4 packages incorporating second generation optics producing well defined spatial radiation patterns at specific viewing cone angles. caution: hlmp-cbxx and hlmp-cmxx leds are class 1 esd sensitive. please observe appropriate precautions during handling and processing. refer to agilent application note an-1142 for additional details. these lamps are made with an advanced optical grade epoxy, offering superior high temperature and high moisture resistance performance in outdoor signal and sign applications. the high maximum led junction temperature limit of +130?c enables high temperature operation in bright sunlight conditions. the package epoxy contains both uv-a and uv-b inhibitors to reduce the effects of long term exposure to direct sunlight. these lamps are available in two viewing angle options to give the designer flexibility with optical design.
2 led indicators device selection guide typical color and dominant luminous intensity, leads with package part number viewing angle wavelength l d (nm) typ. iv (mcd) min. stand-offs drawing hlmp-cb15-p00xx 15? blue 472 880 no a hlmp-cb15-r00xx 15? blue 472 1500 no a hlmp-cb16-p00xx 15 blue 472 880 yes b hlmp-cb30-k00xx 30? blue 472 310 no a hlmp-cb30-m00xx 30? blue 472 520 no a hlmp-cb31-m00xx 30 blue 472 520 yes b hlmp-cm15-s00xx 15? green 526 1900 no a hlmp-cm15-w00xx 15? green 526 5500 no a hlmp-cm16-s00xx 15 green 526 1900 yes b hlmp-cm30-m00xx 30? green 526 520 no a hlmp-cm30-s00xx 30? green 526 1900 no a hlmp-cm31-m00xx 30 green 526 520 yes b part numbering system hlmp - x x xx - x x x xx mechanical options 00: bulk dd: ammo pack color bin selection 0: full color range maximum intensity bin 0: no maximum iv bin limit minimum intensity bin refer to device selection guide viewing angle and standoff options 15: 15 degree without standoff 16: 15 degree with standoff 30: 30 degree without standoff 31: 30 degree with standoff color b: blue m: green package c: t-1 3/4 (5 mm) round lamp
3 notes: 1. dimensions in mm. 2. tolerance 0.1 mm unless otherwise noted. 1.14 ?0.20 (0.045 ?0.008) 5.80 ?0.20 (0.228 ?0.008) 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 2.35 (0.093) max. cathode flat hlmp-cx15 and hlmp-cx30 package dimensions 1.14 ?0.20 (0.045 ?0.008) 5.80 ?0.20 (0.228 ?0.008) 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 cathode flat d 1.50 ?0.15 (0.059 ?0.006) hlmp-cx16 and hlmp-cx31 hlmp-cx16 hlmp-cx31 d = 12.60 ?0.25 (0.496 ?0.010) d = 12.22 ?0.50 (0.481 ?0.020)
4 electrical/optical characteristics at t a = 25?c parameter symbol min. typ. max. units test conditions forward voltage hlmp-cb1x-p0000 v f 3.8 4.0 v i f = 20 ma hlmp-cb15-r0000 3.5 4.0 hlmp-cb3x-k0000 3.8 4.0 hlmp-cb3x-m0000 3.8 4.0 hlmp-cm1x-s0000 3.8 4.0 hlmp-cm15-w0000 3.5 4.0 hlmp-cm3x-m0000 3.8 4.0 hlmp-cm30-s0000 3.5 4.0 reverse voltage v r 5i r = 100 m a peak wavelength peak of wavelength of blue ( l d = 472 nm) l peak 470 nm spectral distribution green ( l d = 526 nm) 524 at i f = 20 ma spectral halfwidth wavelength width blue ( l d = 472 nm) dl 1/2 35 nm at spectral power green ( l d = 526 nm) 47 point at i f = 20 ma capacitance c 43 pf v f = 0, f = 1 mhz luminous efficacy emitted luminous blue ( l d = 472 nm) h v 75 lm/w power/emitted radiant green ( l d = 526 nm) 520 power thermal resistance r q j-pin 240 ?c/w led junction-to- cathode lead absolute maximum ratings at t a = 25?c parameter blue and green dc forward current [1] 30 ma peak pulsed forward current 100 ma average forward current 30 ma reverse voltage (i r = 100 m a) 5 v power dissipation 120 mw led junction temperature 130?c operating temperature range C40?c to +80?c storage temperature range C40?c to +100?c soldering temperature 260?c for 5 seconds note: 1. derate linearly as shown in figure 5 for temperatures above 50?c.
5 figure 1. relative intensity vs. wavelength. figure 2. forward current vs. forward voltage (for hlmp-cb15-r0000, hlmp-cm15-w0000 and hlmp-cm30-s0000). figure 4. relative luminous intensity vs. forward current. wavelength ?nm relative intensity 400 450 500 550 600 650 700 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 green blue 0 0 30 25 15 10 2.0 3.2 5 20 2.8 2.4 3.6 forward current forward voltage 2.6 2.2 3.0 3.4 3.8 0 1.5 0.5 intensity normalized at 20 ma i f ?forward current ?ma 0 5 15 30 1.0 10 25 20 figure 5. maximum forward current vs. ambient temperature. figure 6. spatial radiation pattern C 15? lamps. figure 7. spatial radiation pattern C 30? lamps. i f ?forward current ?ma 0 0 t a ?ambient temperature ?? 40 80 40 35 25 15 10 20 60 100 5 20 30 normalized intensity 1.0 0 angular displacement ?degrees 0.8 0.6 0.2 -30 0.4 10 20 -20 -10 0 30 0.9 0.7 0.5 0.3 0.1 normalized intensity 1.0 0 angular displacement ?degrees 0.8 0.6 0.2 -40 0.4 10 20 -20 -10 0 40 0.9 0.7 0.5 0.3 0.1 -30 30 520 550 530 dominant wavelength ?nm forward current ?ma 0 20 60 120 540 40 100 80 525 535 545 green blue 472 473 474 475 476 477 478 471 figure 8. color vs. forward current. figure 9. normalized iv vs. t (green). 0.88 1.02 0.90 normalized intensity degrees c 0 20 60 100 1.00 40 80 0.98 0.96 0.94 0.5 figure 3. forward current vs. forward voltage (for hlmp-cb1x-p0000, hlmp-cb30-k0000, hlmp-cb3x-m0000, hlmp-cm1x-s0000 and hlmp-cm3x-m0000). 2.0 3.4 v f ?forward voltage ?v 0 10 25 30 i f ?forward current ?ma 4.2 5 15 20 2.4 3.0 3.8 2.2 2.8 3.2 4.0 2.6 3.6
intensity bin limits bin name min. max. 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 3200 4200 v 4200 5500 w 5500 7200 tolerance of each minimum and maximum is 15%. color bin limits (nm at 20 ma) blue color range (nm) bin id 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 range (nm) bin id 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. note: 1. all bin categories are established for classification of products. products may not be available in all bin categories. please contact your agilent represen- tatives for further information. 6
www.agilent.com/semiconductors for product information and a complete list of distributors, please go to our web site. for technical assistance call: americas/canada: +1 (800) 235-0312 or (408) 654-8675 europe: +49 (0) 6441 92460 china: 10800 650 0017 hong kong: (+65) 6271 2451 india, australia, new zealand: (+65) 6271 2394 japan: (+81 3) 3335-8152(domestic/interna- tional), or 0120-61-1280(domestic only) korea: (+65) 6271 2194 malaysia, singapore: (+65) 6271 2054 taiwan: (+65) 6271 2654 data subject to change. copyright ? 2003 agilent technologies, inc. obsoletes 5988-7309en january 16, 2003 5988-8658en


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