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hlmp-3351, hlmp-3366, hlmp-3451, hlmp-3466, hlmp-3554, hlmp-3568 t-1 3 / 4 (5 mm) low profle led lamps data sheet description the hlmp-335x/-336x series are gallium arsenide phosphide on gallium phosphide high efciency red light emitting diodes. the hlmp-345x/-346x series are gallium arsenide phosphide on gallium phosphide yellow light emitting diodes. the hlmp-355x/-356x series are gallium phosphide green light emitting diodes. the low profle t-1 3 / 4 package provides space savings and is excellent for backlighting applications. package dimensions features ? high intensity ? low profle: 5.8 mm (0.23 in.) nominal ? t-1 3 / 4 diameter package ? difused and non-difused types ? general purpose leads ? ic compatible/low current requirements ? reliable and rugged
2 selection guide color package description 2 q 1/2[1] part number hlmp- luminous intensity iv (mcd) min. max. red t-1 3 / 4 tinted, difused 50 3351 5.4 - 3351-d00xx 2.1 - 3351-f00xx 5.4 - t-1 3 / 4 tinted, non-difused 45 3366 13.8 - 3366-h00xx 13.8 - yellow t-1 3 / 4 tinted, difused 50 3451 3.6 - 3451-d00xx 3.6 - 3451-efbxx 5.7 18.4 3451-f00xx 9.2 - t-1 3 / 4 tinted, non-difused 45 3466 9.2 - 3466-f00xx 9.2 - green t-1 3 / 4 tinted, difused 50 3554 6.7 - 3554-e00xx 6.7 - t-1 3 / 4 tinted, non-difused 40 3568 10.6 - 3568-f00xx 10.6 - part numbering system hlmp - 3 x xx - x x x xx mechanical option 00: bulk 01: tape & reel, crimped leads 02: tape & reel, straight leads r1: tape & reel, counterclockwise color bin options 0: full color bin distribution b: color bin 2 & 3 only maximum iv bin options 0: open (no. max. limit) others: please refer to the iv bin table minimum iv bin options please refer to the iv bin table lens options 5x: tinted, difused 6x: tinted, nondifused color options 3: gap her 4: gap yellow 5: gap green package options 3: t-1 3/4 (5 mm) 3 figure 1. relative intensity vs. wavelength. 1.0 0.5 green t a = 25 c red yellow 500 550 600 650 700 750 wavelength ? nm relative intensity high efficiency red absolute maximum ratings at t a = 25c parameter 3350 series 3450 series 3550 series units peak forward current 90 60 90 ma average forward current [1] 25 20 25 ma dc current [2] 30 20 30 ma power dissipation [3] 135 85 135 mw reverse voltage (i r = 100 a) 5 5 5 v transient forward current [4] (10 s pulse) 500 500 500 ma operating temperature range -40 to +100 -40 to +100 -20 to +100 c storage temperature range -40 to +100 -40 to +100 -40 to +100 wave soldering temperature [1.59 mm (0.063 in.) from body] 250c for 3 seconds solder dipping temperature [1.59 mm (0.063 in.) from body] 260c for 5 seconds notes: 1. see figure 10 (high efciency red), 15 (yellow), or 20 (green) to establish pulsed operating conditions. 2. for high efciency red and green series, derate linearly from 50c at 0.5 ma/c. for red and yellow series, derate linearly from 50c at 0.2 ma/c. 3. for high efciency red and green series, derate power linearly from 25c at 1.8 mw/c. for red and yellow series, derate power linearly from 50c at 1.6 mw/c. 4. the transient peak current is the maximum non-recurring peak current that can be applied to the device without damaging the led die and wirebond. it is not recommended that the device be operated at peak current beyond the peak forward current listed in the absolute maximum ratings. 4 high efciency red hlmp-335x/-336x series electrical specifcations at t a = 25c symbol description device hlmp- min. typ. max. units test conditions 2 q 1/2 including angle between half luminous intensity points 3366 50 50 45 45 deg. note 1 (figure 11) peak peak wavelength 635 nm measurement at peak (figure 1) d dominant wavelength 626 nm note 2 ? 1/2 spectral line halfwidth 40 nm s speed of response 90 ns c capacitance 11 pf v f = 0; f = 1 mhz r q j-pin thermal resistance 260 c/w junction to cathode lead v f forward voltage 1.9 2.4 v i f = 10 ma (figure 7) v r reverse breakdown voltage 5.0 v i r = 100 a v luminous efcacy 145 lm/w note 3 notes: 1. q 1 / 2 is the of-axis angle at which the luminous intensity is half the axial luminous intensity. 2. dominant wavelength, d , is derived from the cie chromaticity diagram and represents the single wavelength which defnes the color of the device. 3. radiant intensity, i e , in watts/steradian may be found from the equation i e = i v / v , where i v is the luminous intensity in candelas and v is the luminous efcacy in lumens/watt. figure 8. relative luminous intensity vs. forward current. figure 7. forward current vs. forward voltage. figure 9. relative efciency (luminous intensity per unit current) vs. peak current. 60 50 40 30 20 10 0 1.0 1.5 2.0 2.5 3.0 3.5 4.0 v ? forward voltage ? v f i ? forward current ? ma f 5 figure 10. maximum tolerable peak current vs. pulse duration. (i dc max as per max ratings). figure 11. relative luminous intensity vs. angular displacement. yellow hlmp-345x/-346x series electrical specifcations at t a = 25c symbol description device hlmp- min. typ. max. units test conditions 2 q 1/2 including angle between half luminous intensity points 3466 50 50 45 45 deg. note 1 (figure 16) peak peak wavelength 583 nm measurement at peak (figure 1) d dominant wavelength 585 nm note 2 ? 1/2 spectral line halfwidth 36 nm s speed of response 90 ns c capacitance 15 pf v f = 0; f = 1 mhz r q j-pin thermal resistance 260 c/w junction to cathode lead v f forward voltage 2.0 2.4 v i f = 10 ma (figure 12) v r reverse breakdown voltage 5.0 v i r = 100 a v luminous efcacy 500 lm/w note 3 notes: 1. q 1 / 2 is the of-axis angle at which the luminous intensity is half the axial luminous intensity. 2. dominant wavelength, d , is derived from the cie chromaticity diagram and represents the single wavelength which defnes the color of the device. 3. radiant intensity, i e , in watts/steradian may be found from the equation i e = i v / v , where i v is the luminous intensity in candelas and v is the luminous efcacy in lumens/watt. 6 figure 15. maximum tolerable peak current vs. pulse duration. (i dc max as per max ratings). figure 16. relative luminous intensity vs. angular displacement. figure 13. relative luminous intensity vs. forward current. figure 14. relative efciency (luminous intensity per unit current) vs. peak current. figure 12. forward current vs. forward voltage. 60 50 40 30 20 10 0 1.0 1.5 2.0 2.5 3.0 3.5 4.0 v ? forward voltage ? v f i ? forward current ? ma f 7 green hlmp-355x/-356x series electrical specifcations at t a = 25c symbol description device hlmp- min. typ. max. units test conditions 2 q 1/2 including angle between half luminous intensity points 3554 3568 50 40 deg. note 1 (figure 21) peak peak wavelength 565 nm measurement at peak (figure 1) d dominant wavelength 569 nm note 2 ? 1/2 spectral line halfwidth 28 nm s speed of response 500 ns c capacitance 18 pf v f = 0; f = 1 mhz r q j-pin thermal resistance 260 c/w junction to cathode lead v f forward voltage 2.1 2.7 v i f = 10 ma (figure 17) v r reverse breakdown voltage 5.0 v i r = 100 a v luminous efcacy 595 lm/w note 3 notes: 1. q 1 / 2 is the of-axis angle at which the luminous intensity is half the axial luminous intensity. 2. dominant wavelength, d , is derived from the cie chromaticity diagram and represents the single wavelength which defnes the color of the device. 3. radiant intensity, i e , in watts/steradian may be found from the equation i e = i v / v , where i v is the luminous intensity in candelas and v is the luminous efcacy in lumens/watt. figure 18. relative luminous intensity vs. forward current. figure 19. relative efciency (luminous intensity per unit current) vs. peak current. figure 17. forward current vs. forward voltage. 8 figure 20. maximum tolerable peak current vs. pulse duration. (i dc max as per max ratings). figure 21. relative luminous intensity vs. angular displacement. intensity bin limits color bin intensity range (mcd) min. max. red d 2.4 3.8 e 3.8 6.1 f 6.1 9.7 g 9.7 15.5 h 15.5 24.8 i 24.8 39.6 j 39.6 63.4 k 63.4 101.5 l 101.5 162.4 m 162.4 234.6 n 234.6 340.0 o 340.0 540.0 p 540.0 850.0 q 850.0 1200.0 r 1200.0 1700.0 s 1700.0 2400.0 t 2400.0 3400.0 u 3400.0 4900.0 v 4900.0 7100.0 w 7100.0 10200.0 x 10200.0 14800.0 y 14800.0 21400.0 z 21400.0 30900.0 maximum tolerance for each bin limit is 18%. color bin intensity range (mcd) min. max. yellow d 4.0 6.5 e 6.5 10.3 f 10.3 16.6 g 16.6 26.5 h 26.5 42.3 i 42.3 67.7 j 67.7 108.2 k 108.2 173.2 l 173.2 250.0 m 250.0 360.0 n 360.0 510.0 o 510.0 800.0 p 800.0 1250.0 q 1250.0 1800.0 r 1800.0 2900.0 s 2900.0 4700.0 t 4700.0 7200.0 u 7200.0 11700.0 v 11700.0 18000.0 w 18000.0 27000.0 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 ? 2005-2008 avago technologies. all rights reserved. av02-1559en - october 13, 2008 mechanical option matrix mechanical option code defnition 00 bulk packaging, minimum increment 500 pcs/bag 01 tape & reel, crimped leads, minimum increment 1300 pcs/bag 02 tape & reel, straight leads, minimum increment 1300 pcs/bag r1 tape & reel, crimped leads, reeled counterclockwise, anode leaves frst note: all categories are established for classifcation of products. products may not be available in all categories. please contact your local avago representative for further clarifcation/information. color categories color cat# lambda (nm) min. max. green 6 561.5 564.5 5 564.5 567.5 4 567.5 570.5 3 570.5 573.5 2 573.5 576.5 yellow 1 582.0 584.5 3 584.5 587.0 2 587.0 589.5 4 589.5 592.0 5 592.0 593.0 maximum tolerance for each bin limit is 0.5 nm. intensity bin limits, continued color bin intensity range (mcd) min. max. green e 7.6 12.0 f 12.0 19.1 g 19.1 30.7 h 30.7 49.1 i 49.1 78.5 j 78.5 125.7 k 125.7 201.1 l 201.1 289.0 m 289.0 417.0 n 417.0 680.0 o 680.0 1100.0 p 1100.0 1800.0 q 1800.0 2700.0 r 2700.0 4300.0 s 4300.0 6800.0 t 6800.0 10800.0 u 10800.0 16000.0 v 16000.0 25000.0 w 25000.0 40000.0 maximum tolerance for each bin limit is 18%. |
Price & Availability of HLMP-3351-D0002
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