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  asmt-mxx5 / asmt-mxx6 moonstone ? 1w power led light source data sheet description the moonstone ? 1w power led light source is a high performance energy e?cient device which can handle high thermal and high driving current. the exposed pad design has excellent heat transfer from the package to the motherboard. the cool white power led is available in various color temperature ranging from 4000k to 10000k and warm white power led ranging from 2600k to 4000k. the low pro?le package design is suitable for a wide variety of applications especially where height is a constraint. the package is compatible with re?ow soldering. this will give more freedom and ?exibility to the light source designer. applications ? sign backlight ? safety, exit and emergency sign lightings ? specialty lighting such as task lighting and reading lights ? retail display ? commercial lighting ? accent or marker lightings, strip or step lightings ? portable lightings, bicycle head lamp, torch lights. ? decorative lighting ? architectural lighting ? pathway lighting ? street lighting ? pedestrian street lighting ? tunnel lighting features ? available in cool white & warm white color ? energy e?cient ? exposed pad for excellent heat transfer ? suitable for re?ow soldering process ? high current operation ? long operation life ? wide viewing angle ? silicone encapsulation ? non-esd sensitive (threshold > 16kv) ? msl 4 products ? available in both electrically isolated and non-isolated metal heat slug speci?cations ? ingan technology ? 4.0 v (max) at 350 ma ? 110 viewing angle
2 package dimensions notes: 1. all dimensions are in millimeters. 2. tolerance is 0.1 mm unless otherwise speci?ed. 3. metal slug is connected to anode for electrically non-isolated option. me t a l s l ug c a t ho d e ano d e 1 2 3 10.00 8. 5 0 3 1 2 8. 5 0 ? 5 .2 6 ? 8.00 5 .08 0.81 2.00 5 .2 5 1.30 10. 6 0 1.27 3.30 h ea t sink le d zener +  figure 1 . asmt-mxx5 / asmt-mxx6 package outline d rawing .
3 device selection gui d e (t j = 2 5 c ) part n umber c olor l uminous flux, v [1, 2 ] (lm) test c urrent (ma) dice technology e lectrically isolate d metal slug min . typ . max . asmt-mw05-nlm00 cool white 73.0 80.0 124.0 350 ingan no asmt-mw06-nlm00 yes asmt-my05-nkm00 warm white 56.0 73.0 124.0 350 ingan no asmt-my06-nkm00 yes asmt-mwb6-nlm00 cool white di?used 73.0 70.0 124.0 350 ingan yes asmt-myb6-nkm00 warm white di?used 56.0 65.0 124.0 350 ingan yes notes: 1. v is the total luminous ?ux output as measured with an integrating sphere at 25ms mono pulse condition. 2. flux tolerance is 10%. part n umbering system asmt C m x 1 x 2 x 3 C n x 4 x 5 x 6 x 7 packaging option c olor bin selection max flux bin min flux bin c olor w C cool white y C warm white silicone type 0 C non-di?used b C di?used heat sink 5 C electrically non-isolated 6 C electrically isolated note: 1. please refer to page 7 for selection details.
4 absolute maximum r atings parameter asmt-mxx5 / asmt-mxx6 units dc forward current [1] 500 ma peak pulsing current [2] 1000 ma power dissipation 2000 mw led junction temperature 125 c operating metal slug temperature range at 350 ma -40 to +110 c storage temperature range -40 to +120 c soldering temperature refer to figure 12 reverse voltage [3] not recommended note: 1. derate linearly based on figure 8. 2. pulse condition: duty factor = 10%, frequency = 1 khz. 3. not designed for reverse bias operation. optical c haracteristics at 3 5 0 ma (t j = 2 5 c ) part n umber c olor c orrelate d c olor temperature, cc t (kelvin) viewing angle, 2 ? [ 2 ] () l uminous e ?ciency (lm/w) min . max . typ . typ . asmt-mw05-nlm00 cool white 4000 10000 110 63 asmt-mw06-nlm00 asmt-my05-nkm00 warm white 2600 4000 110 58 asmt-my06-nkm00 asmt-mwb6-nlm00 cool white di?used 4000 10000 110 56 asmt-myb6-nkm00 warm white di?used 2600 4000 110 52 notes: 1. ? is the o?-axis angle where the luminous intensity is ? the peak intensity. e lectrical c haracteristic at 3 5 0 ma (t j = 2 5 c ) dice type forwar d voltage, v f (volts) thermal r esistance, r j-ms ( c /w) [1] min . typ . max . typ . ingan 3.0 3.6 4.0 10 note: 1. r j-ms is thermal resistance from led junction to metal slug.
5 figure 2. r elative intensity vs . wavelength . figure 3. r elative l uminous flux vs . mono pulse c urrent . figure 4 . forwar d c urrent vs . forwar d voltage . figure 5 . r a d iation pattern . figure 6 . maximum pulse current vs . ambient temperature . derate d base d on t a = 2 5 c , r j-a = 30 c /w . figure 7. maximum pulse current vs . ambient temperature . derate d base d on t a = 8 5 c , r j-a = 30 c /w . 0.0 0. 1 0.2 0.3 0. 4 0. 5 0. 6 0.7 0.8 0. 9 1 .0 380 4 30 4 80 5 30 5 80 6 30 6 80 730 780 wav elen gth - nm rel ativ e i n t en sity wa r m whit e c oo l whit e 0 0.2 0. 4 0. 6 0.8 1 1 .2 1 . 4 0 5 0 1 00 15 0 200 2 5 0 300 3 5 0 4 00 45 0 5 00 d c fo r wa r d c u rren t - ma rel ativ e l umi n ous f l ux ( n o r ma l i ze d at 3 5 0 ma) 0 5 0 1 00 15 0 200 2 5 0 300 3 5 0 4 00 45 0 5 00 00. 511 . 5 22. 5 33. 54 fo r wa r d vo l tag e - v fo r wa r d c u rren t - ma 0 0. 1 0.2 0.3 0. 4 0. 5 0. 6 0.7 0.8 0. 9 1 -9 0 -6 0 - 30 0 30 6 0 9 0 a n gu l a r disp l a ce m en t - d e g ree s n o r ma l i ze d i n t en sity 0.0 0.2 0. 4 0. 6 0.8 1 .0 1 .2 1 . 4 0.0000 1 0.000 1 0.00 1 0.0 1 0. 11 1 0 1 00 pu l s e du r atio n , t p - sec pu l s e du r atio n , t p - sec pu l s e c u rren t, i p - a d = 0.0 5 0. 1 0 0.2 5 0. 5 0 1 .00 0.0 0.2 0. 4 0. 6 0.8 1 .0 1 .2 1 . 4 0.0000 1 0.000 1 0.00 1 0.0 1 0. 111 0 1 00 pu l s e c u rren t, i p - a d = 0.0 5 0. 1 0 0.2 5 0. 5 0 1 .00 d= t p t t p i f t d= t p t t p i f t
6 (acc . to j-std- 020c ) 2 1 7 c 200 c 6 0 - 1 20 s ec. 6 c /s ec. max . 3 c /s ec. max . 3 c /s ec. max . 15 0 c 2 55 - 2 6 0 c 1 00 s ec. max . 1 0 - 30 s ec. tim e t e mp er atu re 1 0.70 0. 1 0 8. 4 0 0. 1 0 3. 1 0. 1 0 5 .08 0. 1 0 1 .00 0. 1 0 1 7.00 0.20 - 0.2 5 - 0.20 - 0. 15 - 0. 1 0 - 0.0 5 0.00 0.0 5 0. 1 0 0. 15 0.20 0.2 5 -5 0 - 2 5 02 55 07 51 00 1 2 5 ju nc tio n t e mp er atu re ,t j - c fo r wa r d vo l tag e shift - v ( n o r ma l i ze d at 2 5 c ) 0.0 20.0 4 0.0 6 0.0 80.0 1 00.0 1 20.0 -5 0 - 2 5 02 55 07 51 00 1 2 5 ju nc tio n t e mp er atu re ,t j - c rel ativ e l ight output - % ( n o r ma l i ze d at 2 5 c ) wa r m whit e c oo l whit e 0 1 00 200 300 4 00 5 00 6 00 020 4 0 6 080 1 00 1 20 14 0 ambi en t t e mp er atu re , t a - c max a ll owab le d c c u rren t - ma 0 1 00 200 300 4 00 5 00 6 00 020 4 0 6 080 1 00 1 20 14 0 m e ta l s l ug t e mp er atu re , t ms - c max a ll owab le d c c u rren t - ma r j-a = 20 c /w r j-a = 2 5 c /w r j-a = 30 c /w r j-ms = 1 0 c /w figure 11 . r elative l ight output vs . junction temperature . figure 1 2. r ecommen d e d r e?ow sol d ering . figure 1 3. r ecommen d e d sol d ering lan d pattern . figure 1 0. forwar d voltage shift vs . junction temperature . note: for detail information on re?ow soldering of avago surface mount leds, do refer to avago application note an1060 surface mounti ng smt led indicator components. figure 8. maximum forwar d c urrent vs . ambient temperature . derate d base d on t jmax = 1 2 5 c , r j-a = 20 c /w, 2 5 c /w an d 30 c /w . figure 9 . maximum forwar d c urrent vs . metal slug temperature . derate d base d on t jmax = 1 2 5 c , r j-ms = 1 0 c /w .
7 c olor bin selections [x 6 ] individual reel will contain parts from one color bin selection only. c ool white selection bin id o full distribution a a only b b only c c only d d only e e only f f only g g only h h only l a and g only m b and h only n a and c only p b and d only q e and c only r f and d only s g and h only u e and f only w c and d only z a and b only 1 a, b, c and d only 2 g, h, a and b only 4 c, d, e and f only warm white selection bin id o full distribution a a only b b only c c only d d only e e only f f only n a and c only p b and d only q e and c only r f and d only u e and f only w c and d only z a and b only 1 a, b, c and d only 4 c, d, e and f only flux bin l imit [x 4 x 5 ] bin l uminous flux (lm) at i f = 3 5 0 ma min . max . k 56.0 73.0 l 73.0 95.0 m 95.0 124.0 tolerance for each bin limits is 10%. option selection details asmt C m x 1 x 2 x 3 C n x 4 x 5 x 6 x 7 x 4 C minimum flux bin x 5 C maximum flux bin x 6 C color bin selection x 7 C packaging option
8 c olor bin l imit c ool c olor l imits white ( c hromaticity c oor d inates) bin a x 0.367 0.362 0.329 0.329 y 0.400 0.372 0.345 0.369 bin b x 0.362 0.356 0.329 0.329 y 0.372 0.330 0.302 0.345 bin c x 0.329 0.329 0.305 0.301 y 0.369 0.345 0.322 0.342 bin d x 0.329 0.329 0.311 0.305 y 0.345 0.302 0.285 0.322 bin e x 0.303 0.307 0.283 0.274 y 0.333 0.311 0.284 0.301 bin f x 0.307 0.311 0.290 0.283 y 0.311 0.285 0.265 0.284 bin g x 0.388 0.379 0.362 0.367 y 0.417 0.383 0.372 0.400 bin h x 0.379 0.369 0.356 0.362 y 0.383 0.343 0.330 0.372 tolerance: 0.01 warm c olor l imits white ( c hromaticity c oor d inates) bin a x 0.452 0.488 0.470 0.438 y 0.434 0.447 0.414 0.403 bin b x 0.438 0.470 0.452 0.424 y 0.403 0.414 0.384 0.376 bin c x 0.407 0.418 0.452 0.438 y 0.393 0.422 0.434 0.403 bin d x 0.395 0.407 0.438 0.424 y 0.362 0.393 0.403 0.376 bin e x 0.381 0.387 0.418 0.407 y 0.377 0.404 0.422 0.393 bin f x 0.373 0.381 0.407 0.395 y 0.349 0.377 0.393 0.362 tolerance: 0.01 0.2 4 0.2 6 0.28 0.30 0.32 0.3 4 0.3 6 0.38 0. 4 0 0. 4 2 0. 44 0.2 4 0.2 6 0.28 0.30 0.32 0.3 4 0.3 6 0.38 0. 4 00. 4 20. 44 y - c oo r di n at e x - c oo r di n at e b c e d a f 4 . 5k 7 k 1 0 k 4 .0 k g h black bo d y c urve 5 . 6k 0.32 0.3 4 0.3 6 0.38 0. 4 0 0. 4 2 0. 44 0. 46 0. 4 8 0.3 4 0.3 6 0.38 0. 4 00. 4 20. 44 0. 46 0. 4 80. 5 00. 5 2 x - c oo r di n at e y - c oo r di n at e b c e d a f 3. 5k 4 .0 k 2. 6k 3.0 k black bo d y c urve packaging option [x 4 ] selection option 0 tube 1 tape and reel e xample asmt-mw 0 5- nl mw 0 asmt-mw05-nxxxx C cool white, electrically non-isolated heat sink, non-di?used x 4 = l C minimum flux bin l x 5 = m C maximum flux bin m x 6 = w C color bin c and d only x 7 = 0 C tube option figure 15 . c olor bins (warm white) . figure 14 . c olor bins ( c ool white) .
9 dimension value a 0 8.80 0.10 b 0 16.45 0.10 k 0 3.60 0.10 e 1.75 0.10 f 11.50 0.10 w 24.0 0.10 p 16.0 0.10 quantity/ reel 250 units all dimensions in millimeters. tape an d r eel C option 1 packing tube C option 0 figure 16 . tube d imensions . figure 1 7. c arrier tape d imensions . 5 3 5 .00 1 .00 5 . 45 5 .80 4 . 65 5 . 5 0 1 0. 1 0 37.00 8.30 top vi e w sid e vi e w a a b ao b p s ecti o n b s ecti o n a ko w f e bo 2. 5
10 r 1 0.00 6 0.0 o ? 2 6 8.00 ? 330.00 1 .00 ? 99 . 5 0 1 .00 2.30 2.30 2 4 .0 +1 .00 ? 0.00 ? 1 3. 5 0 0. 5 0 2. 5 0 0. 5 0 r 1 0. 5 0 0. 5 0 1 20.0 o en d mi n imum of 16 0 mm of e mpty c ompo nen t po c k e ts s e a le d with c ov er tap e. mou n t e d with c ompo nen ts mi n imum of 3 9 0 mm of e mpty c ompo nen t po c k e ts s e a le d with c ov er tap e. sta r t figure 1 8. c arrier tape lea d er an d trailer d imensions . figure 19 . r eel d imensions .
for product information and a complete list of distributors, please go to our web site: www . avagotech . com avago, avago technologies, and the a logo are trademarks of avago technologies in the united states and other countries. data subject to change. copyright ? 2005-2010 avago technologies. all rights reserved. av02-1698en - april 23, 2010 han d ling precaution the encapsulation material of the product is made of silicone for better reliability of the product. as silicone is a soft material, please do not press on the silicone or poke a sharp object onto the silicone. these might damage the product and cause premature failure. during assembly or handling, the unit should be held on the body only. please refer to avago application note an 5288 for detail infor- mation. moisture sensitivity this product is quali?ed as moisture sensitive level 4 per jedec j-std-020. precautions when handling this moisture sensitive product is important to ensure the reliability of the product. do refer to avago application note an5305 handling of moisture sensitive surface mount devices for details. a. storage before use C unopen moisture barrier bag (mbb) can be stored at <40c/90%rh for 12 months. if the actual shelf life has exceeded 12 months and the humidity indicator card (hic) indicates that baking is not required, then it is safe to re?ow the leds per the original msl rating. C it is not recommended to open the mbb prior to assembly (e.g. for iqc). b. control after opening the mbb C the humidity indicator card (hic) shall be read immediately upon opening of mbb. C the leds must be kept at <30c/60%rh at all time and all high temperature related process including soldering, curing or rework need to be completed within 72 hours. c. control for un?nished reel C for any unused leds, they need to be stored in sealed mbb with desiccant or desiccator at <5%rh. d. control of assembly boards C if the pcb soldered with the leds is to be subjected to other high temperature processes, the pcb need to be stored in sealed mbb with desiccant or desiccator at <5%rh to ensure no leds have exceeded their ?oor life of 72 hours. e. baking is required if C hic 10% indicator is not blue and 5% indicator is pink. C the leds are exposed to condition of >30c/60% rh at any time. C the leds ?oor life exceeded 72hrs. recommended baking condition: 605c for 20hrs. disclaimer: avagos products and software are not speci?cally designed, manufactured or authorized for sale as parts, components or assemblies for the planning, construction, maintenance or direct operation of a nuclear facility or for use in medical devices or applications. customer is solely responsible, and waives all rights to make claims against avago or its suppliers, for all loss, damage, expense or liability in connection with such use.


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