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  hsmx-c680 right angle surface mount chipleds data sheet description the hsmx-c680 series of chip-type leds are designed to illuminate at a right angle to the direction of mounting. when mounted on a pc board, these devices will emit light in a direction parallel to the board. the small 3.0 x 1.0 x 2.0mm footprint of the hsmx-c680 is designed for applications where space is limited. these devices are available in four colors and use untinted, non- difused optics. the hsmx-c680 series of parts are compatible with ir refow soldering process only. package dimensions features ? right angle mounting ? compatible with ir refow soldering process ? available in a wide variety of colors ? available in 8 mm tape on 178mm (7) diameter reels applications ? lcd backlighting ? keypad side/backlighting ? light piping ? right angle indicator device selection guide part number parts per reel color hsma-c680 3000 alingap amber hsmc-c680 3000 alingap red hsmg-c680 3000 gap green hsmh-c680 3000 as algaas red hsml-c680 3000 alingap orange hsms-c680 3000 gap high efciency red, her HSMY-C680 3000 gap yellow caution: hsmx-c680 leds are class 1a esd sensitive per jesd22-a114c.01 standard. please observe appro - priate precautions during handling and processing. refer to application note an-1142 for additional details. polarity mark to reinforce soldering anode (cathode for hsmh-c680) 3.0 1.0 0.3 0.3 1.0 2.0 0.88 0.25 0.25 r 0.45 cathode (anode for hsmh-c680) 2.0 anode cathode (non-pin connection)
2 absolute maximum ratings at t a = 25 c parameter alingap gap as algaas units dc forward current 30 25 25 ma power dissipation 72 65 65 mw reverse voltage (i r = 100 m a) 5 5 5 v led junction temperature 95 95 95 c operating temperature range -40 to 85 c storage temperature range -40 to 85 c soldering temperature see refow soldering profle (figure 6 & 7) electrical characteristics at t a = 25c part number forward voltage v f (volts) [1] @ i f = 20ma reverse breakdown v r (volts) @ i r = 100 m a thermal resistance r q j-p ( c/w) typ. max. typ. typ. alingap amber 2.0 2.4 5 500 alingap red 2.0 2.4 5 500 gap green 2.2 2.6 5 300 as algaas red 1.8 2.6 5 300 alingap orange 2.0 2.4 5 500 gap her 2.0 2.6 5 300 gap yellow 2.1 2.6 5 300 notes: 1. vf tolerance : 0.1v optical characteristics at t a = 25c part number luminous intensity i v [1] (mcd) @ 20ma color, dominant wavelength l d [2] (nm) typical color, peak wavelength l peak [(nm) typical viewing angle 2 q 1/2 [3] (degrees) typical min. typ. alingap amber 28.5 76.9 591 594 115 alingap red 28.5 62.3 630 643 115 gap green 4.5 13.3 573 568 125 as algaas red 7.2 30.7 642 657 125 alingap orange 28.5 108.6 604 611 115 gap her 2.8 5.1 621 636 125 gap yellow 2.8 9.3 589 588 125 notes: 1. the luminous intensity iv is measured at the peak of the spatial radiation pattern which may not be aligned with the mechanical axis of the led package. 2. the dominant wavelength, l d, is derived from the cie chromaticity diagram and represents the perceived color of the device. 3. q 1/2 is the of-axis angle where the luminous intensity is ? the peak intensity.
3 color bin limits [1] alin gap amber bin id dominant wavelength (nm) minimum maximum a 582.0 584.5 b 584.5 587.0 c 587.0 589.5 d 589.5 592.0 e 592.0 594.5 f 594.5 597.0 tolerance : 1nm alingap red bin id dominant wavelength (nm) minimum maximum - 620.0 635.0 tolerance : 1nm gap green bin id dominant wavelength (nm) minimum maximum a 561.5 564.5 b 564.5 567.5 c 567.5 570.5 d 570.5 573.5 e 573.5 576.5 tolerance : 1nm as algaas her bin id dominant wavelength (nm) minimum maximum - 630.0 650.0 tolerance : 1nm alingap orange bin id dominant wavelength (nm) minimum maximum a 597.0 600.0 b 600.0 603.0 c 603.0 606.0 d 606.0 609.0 e 609.0 612.0 f 612.0 615.0 tolerance : 1nm gap her bin id dominant wavelength (nm) minimum maximum - 620.0 635.0 tolerance : 1nm gap yellow bin id dominant wavelength (nm) minimum maximum a 582.0 584.5 b 584.5 587.0 c 587.0 589.5 d 589.5 592.0 e 592.0 594.5 f 594.5 597.0 tolerance : 1nm notes: 1. bin categories are established for classifcation of products. products may not be available in all categories. please contact your avago representative for information on current available bins. light intensity (i v ) bin limits [1] bin id intensity (mcd) minimum maximum h 2.80 4.50 j 4.50 7.20 k 7.20 11.20 l 11.20 18.00 m 18.00 28.50 n 28.50 45.00 p 45.00 71.50 q 71.50 112.50 tolerance : 15% notes: 1. bin categories are established for classifcation of products. products may not be available in all categories. please contact your avago representative for information on current available bins.
4 figure 1. relative intensity vs. wavelength.. figure 2. forward current vs. forward voltage. figure 3. luminous intensity vs. forward current. 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 480 530 580 630 680 730 780 wavelength - nm relative intensity alingap red alingap amber alingap orange 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 380 430 480 530 580 630 680 730 780 wavelength - nm relative intensity gap green gap yellow as algaas gap her 0.1 1 10 100 0 1 2 3 forward voltage - v forward current - ma alingap red alingap amber & orange 0.1 1 10 100 1.5 1.7 1.9 2.1 2.3 2.5 forward voltage - v forward current - ma as algaas red gap yellow gap green gap her 0 0.2 0.4 0.6 0.8 1 1.2 1.4 0 5 10 15 20 25 30 dc forward current - ma relative luminous intensity (normalized at 20 ma) alingap orange alingap red & amber 0 0.2 0.4 0.6 0.8 1 1.2 1.4 0 5 10 15 20 25 30 dc forward current - ma relative luminous intensity (normalized at 20 ma) gap & algaas
5 notes: 1. all dimensions are in millimeters (inches). 2. tolerance is 0.1mm (0.004in.) unless otherwise specifed. figure 4. maximum forward current vs. ambient temperature. figure 5.. recommended refow soldering profle. figure 6. recommended pb-free refow soldering profle. 0 5 10 15 20 25 30 35 0 2 0 4 0 6 0 8 0 100 ambient temperature - c maximum forward current - ma alingap figure 7. recommended soldering land pattern. 0 25 0 20 60 80 100 20 5 forward current C ma ambient temperature C c 40 30 10 15 230 c max. 10 sec. max. 4 c/sec. max. over 2 min. time temperature 4 c/sec. max. 140-160 c C3 c/sec. max. 217 c 200 c 60 - 120 sec. 6 c/sec. max. 3 c/sec. max. 3 c/sec. max. 150 c 255 - 260 c 100 sec. max. (acc. to j-std-020c) 10 - 30 sec. time temperature emitted direction
6 figure 8. reeling orientation. figure 9. reel dimensions. cathode side printed label user feed direction 10.50 1.0 (0.413 0.039) 59.60 1.00 (2.346 0.039) ? 20.20 min. (? 0.795 min.) 6 ps 178.40 1.00 (7.024 0.039) 3.0 0.5 (0.118 0.020) 4.0 0.5 (0.157 0.020) 5.0 0.5 (0.197 0.020) ? 13.1 0.5 (? 0.516 0.020) 8.0 1.0 (0.315 0.039)
7 f igur e 10. c arrier t ape d imensions f igur e 11. t ape leader and trailer dimensions . 8.00 0.30 (0.315 0.012) user feed direction dim. a (see table) 3.50 0.05 (0.138 0.002) 1.75 0.10 (0.069 0.004) 1.20 0.20 dim. b (see table) 4.00 0.10 (0.157 0.004) 2.00 0.05 (0.079 0.002) 4.00 0.10 (0.157 0.004) 1.50 + 0.100 (0.059 + 0.004) ? cathode ?1.1 end start there shall be a minimum of 40 mm (1.57 inch) of empty component pockets sealed with cover tape. mounted with components there shall be a minimum of 40 mm (1.57 inch) of empty component pockets sealed with cover tape. 150 mm-360 mm (5.9 - 14.2 inch) may consist of carrier and/or cover tape. t able 1 dim. a dim. b dim. c p art number 0.10 (0.004) 0.10 (0.004) 0.10 (0.004) hsmx - c680 3.35 (0.132) 2.30 (0.091) 1.20 (0.047) dimensions in millime ters (inches)
r e ? o w s olde ring: f or mor e inf or ma tion on r e?o w solder ing , r ef er t o ap - plica tion not e an-1060, sur fac e m oun ting sm t led i ndica t or c omponen ts . s t o r age c ondit ion: 5 t o 30c @ 60%rh max. bak ing is r equir ed bef or e moun ting , if : 1. humidit y i ndica t or c ar d is > 10% when r ead a t 23 5c. 2. d evic e expose t o fac t or y c onditions <30c/60%rh mor e than 672 hours r e c omm ende d ba k ing c ondit ion: 605c f or 20 hours . f or pr oduc t informa tion and a c omplet e list of distribut ors , please go t o our w eb sit e: w w w .a v agot ech.com a v ago , a v ago t echnologies , and the a logo ar e tr ademarks of a v ago t echnologies in the unit ed s ta t es and other c oun tries . da ta subjec t t o change . c op yrigh t ? 2005-2011 a v ago t echnologies . all righ ts r eser v ed . a v02-0481en - may 26, 2011


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