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  t-1 (3 mm) auto insertable led lamps technical data hlmp-n20x hlmp-ng05 hlmp-n30x hlmp-nh01 hlmp-n40x hlmp-nj01 hlmp-n50x hlmp-nl05 hlmp-n60x hlmp-n10x features ? t-1 (3 mm) auto insertable package ? alingap sunpower intensity ? high light output ? tinted diffused and tinted non-diffused lens options ? wide viewing angle ? variety of colors ? available with straight or formed lead tape and reel options description this family of 3 mm led lamps is capable of withstanding automatic insertion and wave soldering processes. designed with a thick epoxy flange and soft leadframe material, it is ideal for clinch and cut operations. applications ? general purpose ? high volume manufacturing device selection guides high brightness lamps package luminous intensity viewing angle color part number diff. tint typ. mcd, if @ 20 ma 2 q 1 / 2 (degrees) alingap red hlmp-ng05 m 250 45 alingap red orange hlmp-nh01 250 45 alingap orange hlmp-nj01 265 45 alingap amber hlmp-nl05 m 260 45 dh as algaas red hlmp-n100 x m 42 60 hlmp-n105 m 110 45 high efficiency lamps package luminous intensity viewing angle color part number diff. tint typ. mcd, if @ 10 ma 2 q 1 / 2 (degrees) high efficiency red hlmp-n200 x x 12 60 (her) hlmp-n205 x 38 45 yellow hlmp-n300 x x 15 60 hlmp-n305 x 27 45 orange hlmp-n400 x x 22 60 hlmp-n405 x 28 45 high performance green hlmp-n500 x x 28 60 hlmp-n505 x 48 45 emerald green hlmp-n600 x m 4.5 60 HLMP-N605 m 10 45 note: 1. 2 q 1 / 2 is the off axis angle where the luminous intensity is 1 / 2 the on axis intensity.
2 absolute maximum ratings at t a = 25 oc high a1ingap performance amber, high green & dh as orange, efficiency red emerald algaas red-orange, parameter and orange yellow green red & red units dc forward current [1] 30 20 30 30 30 [2,3] ma reverse voltage 5 v (ir = 100 m a) junction temperature, 110 c t jmax storage temperature -40 to +85 c range operating temperature -20 to +85 -40 to +85 c range lead soldering a) dip/drag soldering: 260 c for 5 seconds temperature b) wave solder temperature: 245 c for 3 seconds [1.6 mm (0.063 in.) from seating plane] notes: 1. see figure 4 for maximum current derating vs. ambient temperature. 2. suggested minimum dc current: 10 ma 3. maximum peak pulsed forward current: 50 ma, 30 ma average. package dimensions 2.0 (0.08) ref. 0.4 ?0.2 (0.01 ?0.01) 2.5 ?0.3 (0.10 ?0.01) 0.45 ?0.10 (0.02 ?0.007) 0.4 ?0.2 (0.02 ?0.01) 0.4 + 0.1 0 (0.2 + 0.00 - 0.00 ) 3.4 ?0.2 (0.13 ?0.01) cathode marks 0.65 (0.03) max. 3.1 ?0.2 (0.12 ?0.01) 4.4 ?0.3 (0.17 ?0.01) 3.5 ?0.3 (0.14 ?0.01) 5.9 ?0.5 (0.23 ?0.02) 23.0 (0.91) 1.0 ?0.5 (0.04 ?0.02) seating plane notes: 1. all dimensions are in millimeters (inches). 2. leads are mild steel. solder coated. 3. epoxy meniscus of 0.8 mm (0.03 in.) maximum may extend to the leads.
3 optical characteristics at t a = 25 oc color luminous peak dominant spectral luminous intensity wavelength wavelength half efficacy lv (mcd) [1] l peak (nm) l d [2] (nm) width h v [3] part number min. typ. if (ma) typ. typ. typ. (lm/w) hlmp-n100 13.8 42 20 hlmp-n105 35.2 110 20 645 637 27 80 hlmp-n200 8.6 12 10 hlmp-n205 13.8 38 10 635 626 40 145 hlmp-n300 9.2 15 10 hlmp-n305 14.7 27 10 583 585 36 500 hlmp-n400 5.4 22 10 hlmp-n405 13.8 28 10 600 604 37 380 hlmp-n500 10.6 28 10 hlmp-n505 17 48 10 565 570 28 595 hlmp-n600 1 4.5 10 HLMP-N605 4.2 10 10 558 560 24 656 hlmp-nl05 147 260 20 592 590 17 480 hlmp-nj01 138 265 20 609 605 17 370 hlmp-nh01 138 250 20 621 615 17 260 hlmp-ng05 138 250 20 635 626 17 150 notes: 1. the luminous intensity, lv, is measured at the mechanical axis of the lamp package. the actual peak of the spatial radiation pattern may not be aligned with this axis. 2. the dominant wavelength, l d, is derived from the cie chromaticity diagram and represents the color of the device. 3. the radiant intensity, le, in watts per steradian, may be found from the equation le = lv/ h v , where lv is the luminous intensity in candelas and h v is the luminous efficacy in lumens/watt. electrical characteristics at t a = 25 oc capacitance speed of response forward c (pf) t s (ns) voltage vf = 0, thermal time constant vf (volts) f = 1 mhz resistance r q j-pin e -t / t s part number typ. max. if (ma) typ. ( c/w) typ. hlmp-n10x 1.80 2.2 20 30 290 30 hlmp-n20x 1.90 2.6 10 11 290 90 hlmp-n30x 2.00 2.6 10 15 290 90 hlmp-n40x 1.90 2.6 10 4 290 280 hlmp-n50x 2.10 2.7 10 18 290 500 hlmp-n60x 2.10 2.7 10 35 290 3100 hlmp-nlox [1] 2.02 2.4 20 40 240 20 hlmp-nj01 [1] 1.98 2.4 20 40 240 20 hlmp-nh0x [1] 1.94 2.4 20 40 240 20 hlmp-ng0x [1] 1.90 2.4 20 40 240 20 note: 1. please contact your agilent sales representative about operating currents below 10 ma.
4 red-orange alingap red wavelength ?nm relative intensity 1.0 0.5 0 550 600 650 700 amber orange high brightness lamps dh algaas red orange high efficiency red wavelength ?nm relative intensity 1.0 0.5 0 500 550 600 650 700 yellow emerald green high performance green high efficiency lamps 0 90 70 60 40 20 i f ?forward current ?ma 1.5 3.5 2.5 0.5 v f ?forward voltage ?v 0 4.0 yellow high efficiency lamps high efficiency red/orange green, emerald green 1.0 2.0 3.0 10 30 50 80 figure 1. relative intensity vs. peak wavelength. figure 2. forward current vs. forward voltage. 0 70 60 40 20 i f ?forward current ?ma v f ?forward voltage ?v 1.0 3.0 amber high brightness lamps dh asalgaas red 1.5 2.0 2.5 10 30 50 alingap red
5 relative luminous intensity (normalized at 20 ma) 0 0 i f ?dc forward current ?ma 10 20 1.0 0.5 30 1.5 high brightness lamps 40 alingap dh as algaas 2.0 i f ?forward current ?ma 0 0 t a ?ambient temperature ?? 40 80 40 20 10 20 60 30 5 15 25 35 dh as algaas red r q ja = 559?c/w r q ja = 689?c/w i f ?forward current ?ma 0 0 t a ?ambient temperature ?? 40 80 40 20 10 60 30 5 15 25 35 her, orange, yellow, and high performance green, emerald green r q ja = 470?c/w r q ja = 705?c/w r q ja = 300?c/w yellow her, orange, green, emerald green 20 figure 4. maximum forward dc current vs. ambient temperature. figure 3. relative luminous intensity vs. forward current. relative luminous intensity (normalized at 10 ma) 0 0 i dc ?dc current per led ?ma 10 20 4.0 2.0 1.0 515 30 3.0 25 0.5 1.5 2.5 3.5 her, orange, yellow, and high performance green, emerald green i f ?forward current ?ma 0 0 t a ?ambient temperature ?? 40 80 40 20 10 20 60 30 5 15 25 35 alingap r q ja = 500?c/w r q ja = 650?c/w r q ja = 750?c/w 10 30 50 70 90
6 taping options straight lead option #002 #2ca #2cd dimension b C C C dimension h 20.5 1.0 18.0 1.0 20.5 1.0 (0.81 0.04) (0.71 0.04) (0.81 0.04) formed lead option #2uk #2ul #2um #2un #2up #2uq #2ur dimension b 12.0 1.0 9.0 1.0 10.0 1.0 11.0 1.0 13.0 1.0 14.0 1.0 15.0 1.0 (0.47 0.04) (0.35 0.04) (0.39 0.04) (0.43 0.04) (0.51 0.04) (0.55 0.04) (0.59 0.04) dimension h 16.0 1.0 (0.63 0.04) normalized intensity 1 0 angular displacement ?degrees 0.8 0.6 0.5 0.7 0.2 -90 0.1 0.3 0.4 -80 -70 -60 -50 -40 -20 -10 0 -30 10 20 30 40 50 60 70 80 90 0.9 figure 5. representative spatial radiation pattern for 45 viewing angle. normalized intensity 1 0 angular displacement ?degrees 0.8 0.6 0.5 0.7 0.2 -90 0.1 0.3 0.4 -80 -70 -60 -50 -40 -20 -10 0 -30 10 20 30 40 50 60 70 80 90 0.9 figure 6. representative spatial radiation pattern for 60 viewing angle. units: mm (inches)
7 straight lead formed lead 1.5 (0.06) max. 2.5 (0.10) max. 14.0 ?1.7 (0.55 ?0.07) 18.0 ?1.0 (0.71 ?0.04) 6.4 ?1.3 (0.25 ?0.05) 12.7 ?1.0 (0.50 ?0.04) 9.1 ?0.6 (0.36 ?0.03) 0.0 ?1.0 (0.00 ?0.04) 0.0 ?1.0 (0.00 ?0.04) 11.0 (0.43) max. dimension "h" (see table) 5.1 ?0.7 (0.20 ?0.03) 12.7 ?0.3 (0.50 ?0.01) 2.5 ?0.3 (0.10 ?0.01) cathode lead 0.7 ?0.2 (0.03 ?0.01) aa view a? ? 4.0 ?0.2 (0.16 ?0.01) typ. 1.5 (0.06) max. 2.5 (0.10) max. 14.0 ?1.7 (0.55 ?0.07) 18.0 ?1.0 (0.71 ?0.04) 6.4 ?1.3 (0.25 ?0.05) 12.7 ?1.0 (0.50 ?0.04) 9.1 ?0.6 (0.36 ?0.03) 0.0 ?1.0 (0.00 ?0.04) 0.0 ?1.0 (0.00 ?0.04) 11.0 (0.43) max. dimension "h" (see table) 3.9 ?0.7 (0.15 ?0.03) 12.7 ?0.3 (0.50 ?0.01) 2.5 ?0.3 (0.10 ?0.01) cathode lead 0.7 ?0.2 (0.03 ?0.01) aa view a? ? 4.0 ?0.2 (0.16 ?0.01) typ. dimension "b" (see table) tape outline drawing
recommended assembly condition ? a single-sided phenolic printed circuit board (pcb) is preferred. double-sided pcb and other materials may cause greater lead stress. recommended through-hole diameter is 0.9 to 2.0 mm. leadlength below the pcb should be 1.5 to 2.0 mm, and the clinching angle (angle between the lead and pcb) should be 30 10 degrees. ? if smt devices and an adhesive are used on the same pcb as these lamps, the adhesive should be cured before the lamps are auto-inserted. if curing must be done after lamp insertion, the cure temperature and time should not exceed 140 c, 100 seconds. this is the temperature of the surface normal to the ir source. solder condition: preheat: temperature ramp rate of 2 to 4 c per second. do not exceed 150 c delta temperature between preheat and solder temperatures. the maximum time at preheat should not exceed 10 seconds. solder: 245 c maximum, 3 seconds (1.6 mm below seating plane). tape & reel (for option #002 only) ammo pack (for all options except #002) package options lead option ammo pack (1000 pcs.) tape & reel (2000 pcs.) straight lead #2c #002 formed lead #2u C from left side of box, adhesive tape is facing upward. made in malaysia anode leds operator ......... hp part # ........... date code ........ taping date ..... bin ....................... no. of gaps ..... quantity .......... cathode c a + anode lead leaves the box first. 336 (13.23) 52 (2.05) 140 (5.51) dimensions in millimeters (inches). reeling orientation clockwise adhesive tape must be facing towards the outside of the reel. anode lead leaves the reel first. protective cardboard 110 (4.33) dia. 336 (13.23) dia. dimensions in millimeters (inches). www.semiconductor.agilent.com data subject to change. copyright ? 1999 agilent technologies, inc. obsoletes 5965-9779e (7/97) 5968-7951e (11/99)


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