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  lrtb g6sg 6-lead multiled enhanced optical power led (thinfilm / thingan) lead (pb) free produc t - rohs compliant vorl?ufige daten nach os-pcn-2006-006-a1-b / preliminary data acc. to os-pcn-2006-006-a1-b 2009-10-14 1 besondere merkmale ? geh?usetyp: wei?es p-lcc-6 geh?use, (rgb-displays) und diffusem silikon verguss ? besonderheit des bauteils: additive farbmischung durch unabh?ngige ansteuerung aller chips ? wellenl?nge: 625 nm (rot), 528 nm (true green), 458 nm (blau) ? abstrahlwinkel: lambertscher strahler (120) ? technologie: thinfilm (rot), thingan (true green, blau) ? optischer wirkungsgrad: 43 lm/w (rot), 36 lm/w (true green), 11 lm/w (blau) ? gruppierungsparameter: lichtst?rke, wellenl?nge ? verarbeitungsmethode: fr alle smt-bestcktechniken geeignet ? l?tmethode: reflow l?ten ? vorbehandlung: nach jedec level 4 ? gurtung: 12 mm gurt mit 1000/rolle, ?180 mm oder 4000/rolle, ?330 mm ? esd-festigkeit: esd-sensitives bauteil anwendungen ? anzeigen im innen- und au?enbereich (z.b. im verkehrsbereich; laufschriftanzeigen) ? getrennte anteuerung der leuchtdiodenchips zur darstellung verschiedener farben inclusive wei? ? vollfarbdisplays bzw. rgb-displays ? blitzlicht im handy ? hinterleuchtung (lcd, schalter, tasten, werbebeleuchtung, allgemeinbeleuchtung) ? einkopplung in lichtleiter features ? package: white p-lcc-6 package , diffused silicone resin ? feature of the device: additive mixture of color stimuli by independent driving of each chip ? wavelength: 625 nm (red), 528 nm (true green), 458 nm (blue) ? viewing angle: lambertian emitter (120) ? technology: thinfilm (red), thingan (true green, blue) ? optical efficiency: 43 lm/w (red), 36 lm/w (true green), 11 lm/w (blue) ? grouping parameter: luminous intensity, wavelength ? assembly methods: suitable for all smt assembly methods ? soldering methods: reflow soldering ? preconditioning: acc. to jedec level 4 ? taping: 12 mm tape with 1000/reel, ?180 mm or 4000/reel, ?330 mm ? esd-withstand voltage: esd senitive device applications ? indoor and outdoor displays (e.g. displays for traffic; light writing displays) ? led chips can be controlled seperately to display various colors including white ? full color displays, rgb-displays ? strobe light for cellular phones ? backlighting (lcd, switches, keys, illuminated advertising, general lighting) ? coupling into light guides
2009-10-14 2 lrtb g6sg anm: die oben genannten typbezeichnungen umfassen die be stellbaren selektionen. diese bestehen aus wenigen helligkeitsgruppen (siehe seite 7 fr n?here informationen). es wird nur eine einzige helligkeitsgruppe pro gurt geliefert. z.b.: lrtb g6sg -u4aa- 1+v2b4-25+s1v1-68 bedeutet, dass auf dem gurt nur eine der helligkeitsgruppen u4, u2, u6, v1, v4, v2, v6 oder aa enthalten ist. um die liefersicherheit zu gew?hrleisten, k?nnen einzelne helligkeitsgruppen nicht bestellt werden. gleiches gilt fr die farben, bei denen wellenl?ngengr uppen gemessen und gruppiert werden. pro gurt wird nur eine wellenl?ngengruppe geliefe rt. z.b.: lrtb g6sg-u4aa-1+v2b4 -25 +s1v1-68 bedeutet, dass auf dem gurt nur eine der wellenl?ngengruppen -2, -3, -4, oder -5 enthalten ist (siehe seite 8 fr n?here information). z.b.: lrtb g6sg-u4aa -1 +v2b4-25+s1v1-68 bedeutet, dass das bauteil innerhalb der auf seite 4 spezifizierten grenzen geliefert wird. um die liefersicherheit zu gew?hrleisten, k?nnen einzelne wellenl?ngengruppen nicht bestellt werden. note: the above type numbers represent the order groups which include only a few brightness groups (see page 7 for explanation). only one group will be ship ped on each reel (there will be no mixing of two groups on each reel). e.g. lrtb g6sg -u4aa- 1+v2b4-25+s1v1-68 means that only one group u4, u2, u6, v1, v4, v2, v6 or aa will be shippable for any one reel. in order to ensure availability, single brightness groups will not be orderable. in a similar manner for colors where wavelength groups are measured and binned, single wavelength groups will be shipped on any one reel. e.g. lrtb g6sg-u4aa-1+v2b4 -25 +s1v1-68 means that only 1 wavelength group -2, -3, -4, or -5 will be shippable (see page 8 for explanation). e.g. lrtb g6sg-u4aa -1 +v2b4-25+s1v1-68 means that th e device will be shipped with in the specified limits as stated on page 4 . in order to ensure availability, single wavelength groups will not be orderable. bestellinformation ordering information typ type emissionsfarbe color of emission lichtst?rke 1) seite 23 luminous intensity 1) page 23 i f = 20 ma i v (mcd) red true green blue lrtb g6sg red true green blue 502 ...1400 900 ...2500 180 ...900 bestellinformation ordering information typ type bestellnummer ordering code lrtb g6sg-u4aa-1+v2b4-25+s1u2-35 lrtb g6sg-u4aa-1+v2b4-25+s1v1-68 q65110a9417 q65110a9441
lrtb g6sg 2009-10-14 3 grenzwerte maximum ratings bezeichnung parameter symbol symbol werte values einheit unit red true green blue betriebstemperatur operating temperature range t op ? 40 ? + 110 c lagertemperatur storage temperature range t stg ? 40 ? + 110 c sperrschichttemperatur junction temperature t j + 125 c durchlassstrom forward current ( t a =25c) i f 70 50 ma sto?strom surge current t p = 10 s, d = 0.005, t a =25c i fm 100 300 300 ma sperrspannung 2) seite 23 reverse voltage 2) page 23 ( t a =25c) v r 12 5 v leistungsaufnahme power consumption ( t a =25c) p tot 195 210 mw w?rmewiderstand thermal resistance sperrschicht/umgebung 3) seite 23 1 chip on junction/ambient 3) page 23 3 chips on sperrschicht/l?tpad junction/solder point r th ja r th ja r th js 340 600 180 340 600 180 340 600 180 k/w k/w k/w
2009-10-14 4 lrtb g6sg kennwerte characteristics ( t a = 25 c) bezeichnung parameter symbol symbol werte values einheit unit red true green blue wellenl?nge des emittierten lichtes (typ.) wavelength at peak emission i f = 20 ma peak 632 523 453 nm dominantwellenl?nge 4) seite 23 (min.) dominant wavelength 4) page 23 (typ.) i f = 20 ma (max.) dom 620.0 625 629.0 518.5 528 541.5 448.5 458 472.5 nm nm nm spektrale bandbreite bei 50 % i rel max (typ.) spectral bandwidth at 50 % i rel max i f = 20 ma ? 18 33 25 nm abstrahlwinkel bei 50 % i v (vollwinkel) (typ.) viewing angle at 50 % i v 2 ? 120 120 120 grad deg. durchlassspannung 5) seite 23 (min.) forward voltage 5) page 23 (typ.) i f = 20 ma (max.) v f v f v f 1.8 2.1 2.4 2.9 3.2 3.7 2.9 3.2 3.7 v v v sperrstrom (typ.) reverse current (max.) v r = 5 v (blue / true green); 12 v (red) i r i r 0.02 10 0.01 10 0.01 10 a a temperaturkoeffizient von peak (typ.) temperature coefficient of peak i f = 20 ma; ?10 c t 100 c tc peak 0.14 0.04 0.04 nm/k temperaturkoeffizient von dom (typ.) temperature coefficient of dom i f = 20 ma; ?10 c t 100 c tc dom 0.07 0.03 0.02 nm/k temperaturkoeffizient von v f (typ.) temperature coefficient of v f i f = 20 ma; ?10 c t 100 c tc v ? 4.7 ? 3.6 ? 4.0 mv/k optischer wirkungsgrad (typ.) optical efficiency i f = 20 ma opt 43 36 11 lm/w * einzelgruppen siehe seite 8 individual groups on page 8
lrtb g6sg 2009-10-14 5 farbortgruppen 6) 7) seite 23 chromaticity coordinate groups 6) 7) page 23 7 gruppe group cx cy gruppe group cx cy 3 0.112 0.741 3 0.158 0.017 0.150 0.672 0.166 0.030 0.182 0.689 0.160 0.043 0.153 0.757 0.150 0.026 4 0.137 0.756 4 0.153 0.022 0.169 0.686 0.162 0.038 0.205 0.692 0.155 0.053 0.181 0.757 0.143 0.034 5 0.164 0.760 5 0.147 0.028 0.190 0.693 0.158 0.047 0.230 0.686 0.148 0.067 0.212 0.747 0.134 0.046 6 0.194 0.752 red 0.692 0.308 0.216 0.687 0.681 0.309 0.257 0.673 0.695 0.295 0.243 0.733 0.707 0.293 anm.: die farbkoordinaten des mischlichtes k?nnen in nerhalb des gekennzeichneten bereichs des farbdreiecks erwartet werden. note: the color coordinates of the mixed light can be expected within the marked area of the color triangle oha02842 520 530 540 550 560 570 580 590 600 610 620 630 0 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 510 505 500 495 490 485 480 460 true green blue red 3 4 5 6 5 4 3 x y
2009-10-14 6 lrtb g6sg floating bins red u4 = 502 ... 631 [mcd] u2 = 560 ... 710 [mcd] u6 = 631... 799 [mcd] v1 = 710 ... 900 [mcd] v4 = 799 ... 1004 [mcd] v2 = 900 ... 1120 [mcd] v6 = 1004... 1252 [mcd] aa = 1120 ... 1400 [mcd] floating bins true green v2 = 900 ... 1120 [mcd] v6 = 1004... 1252 [mcd] aa = 1120 ... 1400 [mcd] a4 = 1.250 ...1.590 [mcd] ab = 1.400 ... 1.800 [mcd] a6 = 1.590 ... 2.010 [mcd] ba = 1.800 ... 2.240 [mcd] b4 = 2.010... 2.500 [mcd]
lrtb g6sg 2009-10-14 7 floating bins blue s1 = 180 ... 224 [mcd] s4 = 201 ... 250 [mcd] s2 = 224 ... 280 [mcd] s6 = 250... 320 [mcd] t1 = 280 ... 355 [mcd] t4 = 315 ... 400 [mcd] t2 = 355 ... 450 [mcd] t6 = 400 ... 500 [mcd] u1 = 450 ... 560 [mcd] u4 = 500 ... 630 [mcd] u2 = 560 ...710 [mcd] u6 = 630 ... 800 [mcd] v1 = 710 ... 900 [mcd]
2009-10-14 8 lrtb g6sg wellenl?ngengruppen (dominantwellenl?nge) 4) seite 23 wavelength groups (dominant wavelength) 4) page 23 gruppe group true green einheit unit gruppe group blue einheit unit min. max. min. max. 3 518.5 526.5 nm 3 448.5 456.5 nm 4 523.5 531.5 nm 4 453.5 461.5 nm 5 528.5 536.5 nm 5 458.5 466.5 nm 6 533.5 541.5 nm 6 463.5 467.5 nm 7 467.5 471.0 nm 8 468.5 472.5 nm gruppenbezeichnung auf etikett group name on label beispiel: t2-1+u2-4+r2-7 example: t2-1+u2-4+r2-7 helligkeits- gruppe brightness group (red) wellenl?nge (keine gruppierung) wavelength (no grouping) (red) helligkeits- gruppe brightness group (true green) wellenl?nge wavelength (true green) helligkeits- gruppe brightness group (blue) wellenl?nge wavelength (blue) t2 1 u2 4 r2 7 anm.: in einer verpackungseinheit / gurt ist immer nur eine helligkeitsgruppe pro farbe enthalten. note: no packing unit / tape ever contains more than one brightness group per color.
lrtb g6sg 2009-10-14 9 relative spektrale emission 6) seite 23 relative spectral emission 6) page 23 v( ) = spektrale augenempf indlichkeit / standard eye response curve i rel = f ( ); t a = 25 c; i f = 20 ma abstrahlcharakteristik 6) seite 23 radiation characteristic 6) page 23 i rel = f ( ? ); t a = 25 c 40 0 400 20 60 80 rel i 100 % nm ohl02523 v 450 500 550 600 650 700 blue true green red 0 0.2 0.4 1.0 0.8 0.6 ? 1.0 0.8 0.6 0.4 0? 10? 20? 40? 30? ohl01660 50? 60? 70? 80? 90? 100? 0? 20? 40? 60? 80? 100? 120?
lrtb g6sg 2009-10-14 10 durchlassstrom 6) seite 23 forward current 6) page 23 i f = f ( v f ); t a = 25 c; red durchlassstrom 6) seite 23 forward current 6) page 23 i f = f ( v f ); t a = 25 c ; blue, true green relative lichtst?rke 6) 7) seite 23 relative luminous intensity 6) 7) page 23 i v / i v(20 ma) = f ( i f ); t a = 25 c relative lichtst?rke 6) seite 23 relative luminous intensity 6) page 23 i v / i v(25 c) = f ( t a ); i f = 20 ma ohl00573 1.7 i f v f v ma 10 0 1.9 2.1 2.3 2.5 2.7 10 1 2 10 5 5 2.5 1 10 10 2 5 ohl02359 10 0 3 3.5 4 4.5 v 5 5 ma v f f i i ohl02525 f v (20 ma) i i v 5 10 0 10 1 ma 10 2 10 1 10 -2 10 5 -1 0 10 5 blue red true green 40 -40 0.4 0.6 0.8 1.0 0 -20 20 v (25 ?c) i 1.2 1.4 i v 1.6 1.8 ?c 60 t j 100 ohl02524 red blue true green
lrtb g6sg 2009-10-14 11 dominante wellenl?nge 6) seite 23 dominant wavelength 6) page 23 blue , dom = f ( i f ); t a = 25 c dominante wellenl?nge 6) seite 23 dominant wavelength 6) page 23 true green , dom = f ( i f ); t a = 25 c i ohl02526 452 dom 0ma nm f 20 40 60 100 10 30 50 70 454 456 458 460 462 464 466 i ohl02527 505 dom 0 ma nm 20 40 60 80 120 510 515 520 525 530 535 545 f true green
lrtb g6sg 2009-10-14 12 maximal zul?ssiger durchlassstrom rot max. permissible forward current red i f = f ( t ); 1 chip on maximal zul?ssiger durchlassstrom true grn max. permissible forward current true green i f = f ( t ); 1 chip on maximal zul?ssiger durchlassstrom rot max. permissible forward current red i f = f ( t ); 3 chips on maximal zul?ssiger durchlassstrom true grn max. permissible forward current true green i f = f ( t ); 3 chips on 40 20 0 0 100 80 60 ?c t i f ma ohl01656 t a t s a t t s temp. solder point temp. ambient 10 20 30 40 50 60 70 80 40 20 0 0 100 80 60 ?c t i f ma ohl01683 t a t s a t t s temp. solder point temp. ambient 10 20 30 40 50 60 40 20 0 0 100 80 60 ?c t i f ma ohl01658 t a t s a t t s temp. solder point temp. ambient 10 20 30 40 50 60 70 80 total maximum power dissipation of all 3chips has to be limited to <400 mw 40 20 0 0 100 80 60 ?c t i f ma ohl01684 t a t s a t t s temp. solder point temp. ambient 10 20 30 40 50 60 total maximum power dissipation of all 3chips has to be limited to <400 mw
lrtb g6sg 2009-10-14 13 maximal zul?ssiger durchlassstrom blau max. permissible forward current blue i f = f ( t ); 1 chip on maximal zul?ssiger durchlassstrom blau max. permissible forward current blue i f = f ( t ); 3 chips on 40 20 0 0 100 80 60 ?c t i f ma ohl01683 t a t s a t t s temp. solder point temp. ambient 10 20 30 40 50 60 40 20 0 0 100 80 60 ?c t i f ma ohl01684 t a t s a t t s temp. solder point temp. ambient 10 20 30 40 50 60 total maximum power dissipation of all 3chips has to be limited to <400 mw
lrtb g6sg 2009-10-14 14 zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 25 c i f = f ( t p ); red (1 chip on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 25 c i f = f ( t p ); red (3 chips on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 85 c i f = f ( t p ); red (1 chip on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 85 c i f = f ( t p ); red (3 chips on) 10 10 0 -2 -3 -4 -5 10 10 10 f i a 2 1 0 -1 10 t p 10 s 10 ohl01709 0.02 0.04 0.06 0.08 0.12 t p = t t p t i f d 1 0.5 0.2 0.005 0.02 0.1 0.05 d 0.01 = 0.10 10 10 0 -2 -3 -4 -5 10 10 10 f i a 2 1 0 -1 10 t p 10 s 10 ohl01723 0.02 0.04 0.06 0.08 0.12 t p = t t p t i f d 1 0.5 0.2 0.05 0.1 0.005 0.01 0.02 d = 0.10 10 10 0 -2 -3 -4 -5 10 10 10 f i a 2 1 0 -1 10 t p 10 s 10 ohl01711 0.02 0.04 0.06 0.08 0.12 t p = t t p t i f d 1 0.5 0.2 0.05 0.1 0.005 0.01 0.02 d = 0.10 = 0.01 0.005 0.05 0.1 0.02 0.5 0.2 10 10 0 -2 -3 -4 -5 10 10 10 1 f i a d p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01724 t t p i f 0.02 0.04 0.06 0.08 0.12 0.10
lrtb g6sg 2009-10-14 15 zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 25 c i f = f ( t p ); true green (1 chip on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 25 c i f = f ( t p ); true green (3 chips on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 85 c i f = f ( t p ); true green (1 chip on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 85 c i f = f ( t p ); true green (3 chips on) 10 10 0 -2 -3 -4 -5 10 10 10 f i a p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01725 t t p i f 0.05 0.10 0.15 0.20 0.25 0.35 0.02 0.5 0.2 0.05 0.1 d = 0.005 0.01 1 0.30 10 10 -2 -3 -4 -5 10 10 10 f i p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01734 t t p i f 0 0.05 0.10 0.15 0.20 0.25 0.30 0.35 a 0.05 1 0.5 0.1 0.2 0.01 0.005 = 0.02 d 10 10 0 -2 -3 -4 -5 10 10 10 f i a p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01726 t t p i f 0.05 0.10 0.15 0.20 0.25 0.35 0.02 0.5 0.2 0.05 0.1 d = 0.005 0.01 1 0.30 10 10 -2 -3 -4 -5 10 10 10 f i p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01735 t t p i f 0 0.05 0.10 0.15 0.20 0.25 0.30 0.35 a 0.05 1 0.5 0.1 0.2 0.01 0.005 = 0.02 d
lrtb g6sg 2009-10-14 16 zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 25 c i f = f ( t p ); blue (1 chip on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 25 c i f = f ( t p ); blue (3 chips on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 85 c i f = f ( t p ); blue (1 chip on) zul?ssige impulsbelastbarkeit permissible pulse handling capability duty cycle d = parameter, t a = 85 c i f = f ( t p ); blue (3 chips on) 10 10 0 -2 -3 -4 -5 10 10 10 f i a p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01725 t t p i f 0.05 0.10 0.15 0.20 0.25 0.35 0.02 0.5 0.2 0.05 0.1 d = 0.005 0.01 1 0.30 10 10 -2 -3 -4 -5 10 10 10 f i p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01734 t t p i f 0 0.05 0.10 0.15 0.20 0.25 0.30 0.35 a 0.05 1 0.5 0.1 0.2 0.01 0.005 = 0.02 d 10 10 0 -2 -3 -4 -5 10 10 10 f i a p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01726 t t p i f 0.05 0.10 0.15 0.20 0.25 0.35 0.02 0.5 0.2 0.05 0.1 d = 0.005 0.01 1 0.30 10 10 -2 -3 -4 -5 10 10 10 f i p t = d t 2 1 0 -1 10 t p 10 s 10 ohl01735 t t p i f 0 0.05 0.10 0.15 0.20 0.25 0.30 0.35 a 0.05 1 0.5 0.1 0.2 0.01 0.005 = 0.02 d
lrtb g6sg 2009-10-14 17 ma?zeichnung 8) seite 23 package outlines 8) page 23 gewicht / approx. weight: 40 mg gurtung / polarit?t und lage 8) seite 23 verpackungseinheit 1000/rolle, ?180 mm oder 4000/rolle, ?330 mm method of taping / polarity and orientation 8) page 23 packing unit 1000/reel, ?180 mm or 4000/reel, ?330 mm c1 cathode red (r) a1 anode red (r) c2 cathode true green (t) a2 anode true green (t) c3 cathode blue (b) a3 anode blue (b) gply6118 2.8 (0.110) 3.6 (0.142) 3.2 (0.126) 0.6 (0.024) 0.7 (0.028) 0.5 (0.020) 3.5 (0.138) (2.5 (0.098)) 2 (0.079) 0...0.15 (0.006) c3 c1 a3 a1 c2 a2 2.8 (0.110) 1.6 (0.063) 3.2 (0.126) 0.9 (0.035) 0.4 (0.016) 3.1 (0.122) 2.6 (0.102) 0.4 (0.016) 0.5 (0.020) 0.3 (0.012) 0.7 (0.028) 0.5 (0.020) package marking a1 a2 a3 c2 c3 c1 3.5 (0.138) 4 (0.157) 1.5 (0.059) 2 (0.079) 1.5 (0.059) 12 (0.472) 1.75 (0.069) 2?...3? 0.3 (0.012) max. 3.7 (0.146) ohty0042 2.05 (0.081) 5.5 (0.217) a3 c3 a2 c2 c1 a1 8 (0.315)
2009-10-14 18 lrtb g6sg empfohlenes l?tpaddesign 8) 9) seite 23 reflow l?ten recommended solder pad 8) 9) page 23 reflow soldering empfohlenes platinendesign fr cluster mit 6-lead topled in serienschaltung recommended pcb-design for cluster with 6-lead topled in series connection 0.8 (0.031) 0.8 (0.031) 0.35 (0.014) geh?usemarkierung package marking solder resist l?tstopplack improved heat dissipation 16 mm per anode pad for 2 ohpy0031 a3 c3 c1 c2 a2 a1 geh?usemarkierung package marking 1.4 (0.055) 4.7 (0.185) 0.35 (0.014) 0.6 (0.024) ohpy2398 anode 1 anode 3 anode 2 cathode 1 cathode 2 cathode 3
lrtb g6sg 2009-10-14 19 l?tbedingungen vorbehandlung nach jedec level 4 soldering conditions preconditioning acc. to jedec level 4 reflow l?tprofil fr bleifreies l?ten (nach j-std-020d) reflow soldering profile for lead free soldering (acc. to j-std-020d ) ohla0687 0 0 t t ?c s 120 s max 50 100 150 200 250 300 ramp up 100 s max 50 100 150 200 250 300 ramp down 6 k/s (max) 3 k/s (max) 25 ?c 30 s max 260 ?c +0 ?c -5 ?c 245 ?c 5 ?c 240 ?c 255 ?c 217 ?c maximum solder profile recommended solder profile 235 ?c -0 ?c +5 ?c minimum solder profile 10 s min
2009-10-14 20 lrtb g6sg barcode-produkt-etikett (bpl) barcode-product-label (bpl) gurtverpackung tape and reel tape dimensions in mm (inch) w p 0 p 1 p 2 d 0 e f 4 0.1 (0.157 0.004) 8 0.1 (0.315 0.004) 2 0.05 (0.079 0.002) 1.5 + 0.1 (0.059 + 0.004) 1.75 0.1 (0.069 0.004) 5.5 0.05 (0.217 0.002) reel dimensions in mm (inch) a w n min w 1 w 2 max 180 (7) 12 (0.472) 60 (2.362) 12.4 + 2 (0.488 + 0.079) 18.4 (0.724) 330 (13) 12 (0.472) 60 (2.362) 12.4 + 2 (0.488 + 0.079) 18.4 (0.724) sample oha32043 (g) group: lot number (1t) lot no: (9d) d/c: date code (x) prod no: product code (6p) batch no: batch number lxxx xxxx product name rohs compliant bin1: bin information color 1 bin2: bin information color 2 bin3: bin information color 3 ml 2 temp st 245 c rt additional text r077 demy packvar: packing type product quantity per reel (q)qty: semiconductors osram opto wavelength group forward voltage group brightness group x-x-x+x-x-x+x-x-x color 1 color 2 color 3 bar code bar code bar code d 0 2 p p 0 1 p w fe direction of unreeling n w 1 2 w a ohay0324 label gurtvorlauf: leader: trailer: gurtende: 13.0 direction of unreeling 0.25 160 mm 160 mm 400 mm 400 mm 12 + 0.3 ? 0.1
lrtb g6sg 2009-10-14 21 trockenverpackung und materialien dry packing process and materials anm.: feuchteempfindliche produkte sind verpackt in eine m trockenbeutel zusammen mit einem trockenmittel und einer feuchteindikatorkarte bezglich trockenverpackung finden sie weitere hinweise im internet und in unserem short form catalog im kapitel ?gurtung und verpackung? unter dem punkt ?trockenverpackung ?. hier sind normenbezge, unter anderem ein auszug der jedec-norm, enthalten. note: moisture-senisitve product is packed in a dr y bag containing desiccant and a humidity card. regarding dry pack you will find furt her information in the internet and in the short form catalog in chapter ?tape and reel? unde r the topic ?dry pack?. here you will also find the normative references like jedec. kartonverpackung und materialien transportation packing and materials oha00539 o s r a m moisture-sensitive label or print barcode label desiccant humidity indicator barcode label osram please check the hic immidiately after bag opening. discard if circles overrun. avoid metal contact. wet do not eat. comparator check dot parts still adequately dry. examine units, if necessary examine units, if necessary 5% 15% 10% bake units bake units if wet, change desiccant if wet, humidity indicator mil-i-8835 if wet, m o is t u r e l e v e l 3 f l o o r t i m e 1 6 8 h o u r s m o is t u r e l e v e l 6 f l o o r t im e 6 h o u r s a ) h u m id i t y i n d i c a t o r c a rd is > 1 0 % w h e n r e a d a t 2 3 ? c 5 ?c , o r r e f l o w , v a p o r -p h a s e re f lo w , o r e q u i v a l e n t p r o c e s s in g ( p e a k p a c k a g e 2 . a ft e r t h i s b a g i s o p e n e d , d e v i c e s th a t w i l l b e s u b j e c t e d to i n f r a re d 1 . s h e l f li f e i n s e a l e d b a g : 2 4 m o n t h s a t < 4 0 ? c a n d < 9 0 % r e la t i v e h u m i d it y ( r h ). m o i s t u re l e v e l 5 a a t fa c t o r y c o n d i t io n s o f ( if b l a n k , s e a l d a te i s i d e n t ic a l w it h d a t e c o d e ) . a ) m o u n t e d w it h in b ) s t o r e d a t b o d y te m p . 3 . d e v ic e s re q u i r e b a k i n g , b e fo r e m o u n t i n g , i f: b a g s e a l d a t e m o is t u r e l e v e l 1 m o i s t u r e l e v e l 2 m o i s t u re l e v e l 2 a 4 . i f b a k in g i s r e q u ir e d , b ) 2 a o r 2 b i s n o t m e t . d a t e a n d t im e o p e n e d : re f e re n c e i p c / j e d e c j - s t d - 0 3 3 f o r b a k e p r o c e d u r e . f l o o r ti m e s e e b e lo w i f b la n k , s e e b a r c o d e l a b e l f l o o r ti m e > 1 y e a r f l o o r t i m e 1 y e a r f l o o r t i m e 4 w e e k s 1 0 % r h . _ < m o i s tu r e l e v e l 4 m o i s t u r e l e v e l 5 ? c ) . o p t o s e m i c o n d u c t o r s m o is t u r e s e n s i t iv e t h is b a g c o n ta in s c a u t i o n f l o o r t i m e 7 2 h o u r s f lo o r t im e 4 8 h o u r s f l o o r t i m e 2 4 h o u rs 3 0 ? c / 6 0 % r h . _ < l e v e l if b l a n k , s e e b a r c o d e l a b e l oha02044 p a c k v a r : r 0 7 7 a d d i t i o n a l t e x t p-1+q-1 multi topled muster osram opto semiconductors ( 6 p ) b a t c h n o : ( x ) p r o d n o : 1 0 ( 9 d ) d / c : 1 1 ( 1 t ) l o t n o : 210021998 123gh1234 0 2 45 ( q ) q t y : 2000 0144 ( g ) g r o u p : 2 6 0 c r t 2 4 0 c r 3 2 2 0 c r m l b i n 3 : b i n 2 : q - 1 - 2 0 b i n 1 : p - 1 - 2 0 lsy t676 2 2 a t e m p s t r18 d e m y p a c k v a r : r 0 7 7 a d d i t i o n a l t e x t p - 1 + q - 1 m u l t i t o p l e d muster osram opto s e m i c o n d u c to r s ( 6 p ) b a t c h n o : ( x ) p r o d n o : 1 0 ( 9 d ) d / c : 1 1 ( 1 t ) l o t n o : 210021998 1 2 3 g h 1 2 3 4 0 2 45 ( q ) q t y : 2 0 0 0 0 1 4 4 ( g ) g r o u p : 2 6 0 c r t 2 4 0 c r 3 2 2 0 c r m l b i n 3 : b i n 2 : q - 1 - 2 0 b in 1 : p - 1 - 2 0 l s y t 6 7 6 2 2 a t e m p s t r 1 8 d e m y osram packing sealing label barcode label m o i s t u r e l e v e l 3 f lo o r t im e 1 6 8 h o u r s m o is t u r e l e v e l 6 f lo o r t i m e 6 h o u r s a ) h u m i d it y i n d i c a t o r c a r d is > 1 0 % w h e n r e a d a t 2 3 ? c 5 ? c , o r r e f lo w , v a p o r - p h a s e r e f lo w , o r e q u i v a le n t p r o c e s s i n g ( p e a k p a c k a g e 2 . a f te r th is b a g i s o p e n e d , d e v ic e s t h a t w i ll b e s u b j e c t e d t o in f r a r e d 1 . s h e lf l if e in s e a l e d b a g : 2 4 m o n t h s a t < 4 0 ? c a n d < 9 0 % r e l a ti v e h u m id i t y ( r h ) . m o i s t u r e l e v e l 5 a a t fa c t o r y c o n d i ti o n s o f ( i f b la n k , s e a l d a t e is i d e n t ic a l w i t h d a te c o d e ) . a ) m o u n t e d w i th in b ) s t o r e d a t b o d y te m p . 3 . d e v i c e s r e q u ir e b a k in g , b e f o r e m o u n ti n g , if: b a g s e a l d a t e m o i s t u r e l e v e l 1 m o i s t u r e l e v e l 2 m o i s t u r e l e v e l 2 a 4 . i f b a k i n g is r e q u i r e d , b ) 2 a o r 2 b is n o t m e t . d a t e a n d t i m e o p e n e d : r e f e r e n c e i p c / j e d e c j - s t d - 0 3 3 f o r b a k e p r o c e d u r e . f lo o r tim e s e e b e lo w i f b l a n k , s e e b a r c o d e la b e l f l o o r t im e > 1 y e a r f lo o r t im e 1 y e a r f lo o r t i m e 4 w e e k s 1 0 % r h . _ < m o is t u r e l e v e l 4 m o i s tu r e l e v e l 5 ?c ) . o p t o s e m ic o n d u c t o r s m o is t u r e s e n s i t iv e t h is b a g c o n t a in s caution f l o o r t i m e 7 2 h o u r s f l o o r t i m e 4 8 h o u r s f lo o r t im e 2 4 h o u r s 3 0 ? c /6 0 % r h . _ < l e v e l i f b l a n k , s e e b a r c o d e l a b e l barcode label
2009-10-14 22 lrtb g6sg attention please! the information describes the type of component and shall not be considered as assured characteristics. terms of delivery and rights to change design reserv ed. due to technical requirements components may contain dangerous substances. for information on the types in question please contact our sales organization. if printed or downloaded, please find the latest version in the internet. packing please use the recycling operators known to you. we can also help you ? get in touch with your nearest sales office. by agreement we will take packing material back, if it is sorted. you must bear the costs of tr ansport. for packing material that is returned to us unsorted or which we are not obliged to accept, we shall have to invoice you for any costs incurred. components used in life-support devices or system s must be expressly authorized for such purpose! critical components 10) page 23 may only be used in life-support devices or systems 11) page 23 with the express written approval of osram os. revision history: 2009-10-14 previous version: 2007-08-08 page subjects (major changes since last revision) date of change 1 acc. to os-pcn-2006-006-a 2006-02-01 9 relative luminous intensity 2006-03-31 4 acc. to os-pcn-2006-006-a1-b 2006-05-04 2, 4, 7,8 new ordering code 2007-08-08 2, 6, 7 new ordering codes 2009-10-14
lrtb g6sg 2009-10-14 23 fu?noten: 1) helligkeitswerte werden mit einer stromeinpr?gedauer von 25 ms und einer genauigkeit von 11% ermittelt. 2) die led kann kurzzeitig in sperrichtung betrieben werden. 3) r thja ergibt sich bei montage auf pc-board fr 4 (padgr??e 16 mm 2 je pad) 4) wellenl?ngen werden mit einer stromeinpr?gedauer von 25 ms und einer genauigkeit von 1 nm ermittelt. 5) spannungswerte werden mit einer stromeinpr?gedauer von 1 ms und einer genauigkeit von 0,1 v ermittelt. 6) wegen der besonderen prozessbedingungen bei der herstellung von led k?nnen typische oder abgeleitete technische parameter nur aufgrund statistischer werte wiedergegeben werden. diese stimmen nicht notwendigerweise mit den werten jedes einzelnen produktes berein, dessen werte sich von typischen und abgeleiteten werten oder typischen kennlinien unterscheiden k?nnen. falls erforderlich, z.b. aufgrund technischer verbesserungen, werden diese typischen werte ohne weitere ankndigung ge?ndert. 7) im gestrichelten bereich der kennlinien muss mit erh?hten helligkeitsunterschieden zwischen leuchtdioden innerhalb ei ner verpackungseinheit gerechnet werden. dimmverh?ltnis im gleichstrom-betrieb max. 5:1 fr red 8) ma?e werden wie folgt angegeben: mm (inch) 9) geh?use h?lt ttw-l?thitze aus nach cecc 00802 10) ein kritisches bauteil ist ein bauteil, das in lebenserhaltenden apparaten oder systemen eingesetzt wird und dessen defekt voraussichtlich zu einer fehlfunktion dieses lebenserhaltenden apparates oder systems fhren wird oder die sicherheit oder effektivit ?t dieses apparates oder systems beeintr?chtigt. 11) lebenserhaltende apparate oder systeme sind fr (a) die implantierung in den menschlichen k?rper oder (b) fr die lebenserhaltung bestimmt. falls sie versagen, kann davon ausgegangen werden, dass die gesundheit und das leben des patienten in gefahr ist. published by osram opto semico nductors gmbh wernerwerkstrasse 2, d-93049 regensburg www.osram-os.com ? all rights reserved. remarks: 1) brightness groups are test ed at a current pulse duration of 25 ms and a tolerance of 11%. 2) driving the led in reverse direction is suitable for short term application. 3) r thja results from mounting on pc board fr 4 (pad size 16 mm 2 per pad) 4) wavelengths are tested at a current pulse duration of 25 ms and a tolerance of 1 nm. 5) forward voltages are tested at a current pulse duration of 1 ms and a tolerance of 0.1 v. 6) due to the special conditions of the manufacturing processes of led, the ty pical data or calculated correlations of technical pa rameters can only reflect statistical figures. these do not necessarily correspond to the actual parameters of each single product, which could differ from the typical data and calculated correlations or the typical characteristic line. if requested, e.g. because of technical improvements, these typ. data will be changed without any further notice. 7) in the range where the line of the graph is broken, you must expect higher bright ness differences between single leds within one packing unit. dimming range for direct current mode max. 5:1 for red 8) dimensions are specified as follows: mm (inch) 9) package able to withstand ttw-soldering heat acc. to cecc 00802 10) a critical component is a component used in a life-support device or system whose failure can reasonably be expected to cause the failure of that life-support device or system, or to affect its safety or the effectiveness of t hat device or system. 11) life support devices or systems are intended (a) to be implanted in the human body, or (b) to support and/or maintain and sustain human life. if they fail, it is reasonable to assume that the health and the life of the user may be endangered.


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