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  2016-05-06 1 2016-05-06 soleriq ? s 13 datasheet version 1.0 gw kaglb3.dm the soleriq ? s products were specifically designed for applications requiring large flux packages out of a compact area. this brilliant color version is designed for shop lighting applications. it features a high color quality which is similar to high intensity discharge lamps (hid). its brilliant light not only provides a high quality of white but also enables rich and saturated colors which have only been possible with hid lamps before. die soleriq ? s produkte wurden speziell fr anwendungen entwickelt, die gro?en lichtstrom aus einer kompakten fl?che ben?tigen. die brilliant color variante wurde zur optimalen pr?sentation von waren in verkaufsr?umen entwickelt. die hohe farbqualit?t ist vergleichbar mit der von hochdruck-entladungslampen. das brilliante licht erzeugt nicht nur ein hochwertiges wei?, sondern bringt auch die flle und s?ttigung der farben so zur geltung, wie man es bisher nur von entladungslampen kennt. features: besondere merkmale: ? package: chip-on-board ? geh?usetyp: chip-on-board ? viewing angle at 50 % i v : 120 ? abstrahlwinkel bei 50 % i v : 120 ? cri: min. 85 ? cri: min. 85 ? luminous flux: typ. 1910 lm @ 3250 k, 85 c ? lichtstrom: typ. 1910 lm @ 3250 k, 85 c ? luminous efficacy: typ. 92 lm/w @ 3250 k, 85 c ? lichtausbeute: typ. 92 lm/w @ 3250 k, 85 c applications anwendungen ? downlights ? downlights ? spot lights ? spot-leuchten ? indoor general lighting ? innen-allgemeinbeleuchtung ? museum lighting ? museumsbeleuchtung ? color: 3250 k (white) ? farbe: 3250 k (wei?)
2016-05-06 2 version 1.0 gw kaglb3.dm ordering information bestellinformation type: color temperature luminous flux 1) page 17 ordering code typ: farbtemperatur lichtstrom 1) seite 17 bestellnummer i f = 600 ma, t = 85 c [k] v [lm] gw kaglb3.dm-spsq-32b3 3250 1800 ... 2100 Q65111A9645 note: the above type numbers represent the order groups which include only a few brightness groups (see page 5). only one group will be shipped on each packing unit (there will be no mixing of two groups on each packing unit). e. g. gw kaglb3.dm-spsq-32b3 means that only one group sp, sq will be shippable for any packing unit. anm.: die oben genannten typbezeichnungen umfassen die bestellbaren selektionen. diese bestehen aus wenigen helligkeitsgruppen (siehe seite 5). es wird nur eine einzige helligkeitsgruppe pro verpackungseinheit geliefert. z. b. gw kaglb3.dm-spsq-32b3 bedeutet, dass in einer verpackungseinheit nur eine der helligkeitsgruppen sp, sq enhalten ist. j

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2016-05-06 4 version 1.0 gw kaglb3.dm characteristics (t s = 85 c; i f = 600 ma) kennwerte parameter symbol values unit bezeichnung symbol werte einheit viewing angle at 50 % i v abstrahlwinkel bei 50 % i v (typ.) 2? 120 forward voltage 2) page 17 durchlassspannung 2) seite 17 (min.) (typ.) (max.) v f v f v f v v v color rendering index 3) page 17 farbwiedergabe index 3) seite 17 (3250k) (min.) r a 85 - real thermal resistance junction / solder point 4) page 17 realer w?rmewiderstand sperrschicht / l?tpad 4) seite 17 (typ.) (max.) r th js real r th js real 0.72 0.86 k/w k/w "electrical" thermal resistance junction / solder point 4) page 17 "elektrischer" w?rmewiderstand sperrschicht / l?tpad 4) seite 17 (with efficiency e = 38 %) (typ.) (max.) r th js el r th js el 0.4 0.5 k/w k/w 33 3 4.7 37

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version 1.0 gw kaglb3.dm 2016-05-06 7 note: no packing unit / tape ever contains more than one group for each selection. anm.: in einer verpackungseinheit / gurt ist immer nur eine gruppe fr jede selektion enthalten. brightness helligkeit chromaticity coordinate farbort group name on label gruppenbezeichnung auf etikett example: :? - ??m? beispiel: :? - ??m? :? ??m?
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  rel = f (); t s = 85 c; i f = 600 ma i rel = f (?); t s = 85 c gw kaglb3.dm 350 400 450 500 550 600 650 700 750 800 l [nm] 0,0 0,2 0,4 0,6 0,8 1,0 i rel : v l gw kaglb3.dm -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 j [] 0,0 0,2 0,4 0,6 0,8 1,0 i rel

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  i f = f (v f ); t s = 85 c v / v (600 ma) = f(i f ); t s = 85 c cx, cy = f(i f ); t s = 85 c gw kaglb3.dm 31 32 34 36 38 v f [v] 60 1380 200 400 600 800 1000 1200 i f [ma] gw kaglb3.dm 60 1 3 8 0 2 0 0 400 600 800 1000 1 2 0 0 i f [ma] 0,0 0,5 1,0 1,5 2,0 f v f v (600 ma ) gw kaglb3.dm 60 1 3 8 0 2 0 0 400 600 800 1000 1 2 0 0 i f [ma] -0,02 -0,01 0,00 0,01 0,02 d cx d cy : d cx - : d cy -
  
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  v f = v f - v f (85 c) = f(t j ); i f = 600 ma v / v (85 c) = f(t j ); i f = 600 ma cx, cy = f(tj); i f = 600 ma gw kaglb3.dm -40 -20 0 20 40 60 80 100 120 t j [c] -2 0 2 4 6 8 10 12 ? v f [v] gw kaglb3.dm -40 -20 0 20 40 60 80 100 120 t j [c] 0,0 0,2 0,4 0,6 0,8 1,0 1,2 v v (85 c ) gw kaglb3.dm -40 -20 0 20 40 60 80 100 120 t j [c] -0,08 -0,06 -0,04 -0,02 0,00 0,02 0,04 0,06 0,08 ? cx ? cy : cx - : cy -

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