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  luckylight 5mm standard t-1 3/4 type full color with common anode led technical data sheet part no.: LL-509RGBM2E-004 spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 1 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com
luckylight features: uniform light output. low power consumption. i.c. compatible. long life-solid state reliability. the product itself will remain within rohs compliant version. descriptions: the hyper red source color devices are made with algainp on gaas substrate light emitting diode. the pure green source color devices are ma de with ingan on sapphire substrate light emitting diode. the blue source color devices are made with ingan on sapphire substrate light emitting diode. applications: tv set. monitor. te l e p h o n e . computer. circuit board, etc. spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 2 of 10 approved: =+28 checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com
luckylight package dimension: 1 [0.039] 1 2 3 4 24.00[0.945] 25.00[0.984] 23.00[0.906] 27.00[1.063] 1.27 [0.050] 3.81 [0.150] 0.6 [0.024] 0.5 [0.020] 8.65 [0.341] 4.9 [0.193] 0.5 [0.020] 3 (com) 2 14 1 cathode green 2 cathode blue 3 common anode 4 cathode red 5.85 [0.2305] 5 [0.1970] 5 [0.197] part no. chip material lens color source color algainp hyper red ingan pure green LL-509RGBM2E-004 ingan white diffused blue notes: 1. all dimensions are in millimeters (inches). 2. tolerance is 0.25mm (.010 ) unless otherwise noted. 3. protruded resin under flange is 1.00mm (.039 ) max. 4. specifications are subject to change without notice. spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 3 of 10 approved: =+28 checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com
luckylight spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 4 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com absolute maximum ratings at ta=25  parameters emitting color symbol max. unit hyper red 65 pure green 95 power dissipation blue pd 95 mw peak forward current (1/10 duty cycle, 0.1ms pulse width) ifp 100 ma hyper red if 25 ma pure green if 25 ma forward current blue if 25 ma reverse voltage vr 5 v operating temperature range topr -40 to +85 storage temperature range tstg -40 to +100 lead soldering temperature [4mm (.157 < ) from body] tsld 260 for 5 seconds
luckylight spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 5 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com electrical optical characteristics at ta=25  parameters symbol emitting color min. typ. max. unit te s t condition hyper red 350 600 --- pure green 450 1000 --- luminous intensity * iv blue 250 500 --- mcd if=20ma (note 1) hyper red --- 60 --- pure green --- 60 --- viewing angle * 2 1/2 blue --- 60 --- deg if=20ma (note 2) hyper red --- 632 --- pure green --- 520 --- peak emission wavelength p blue --- 468 --- nm if=20ma hyper red --- 624 --- pure green --- 525 --- dominant wavelength d blue --- 470 --- nm if=20ma (note 3) hyper red 1.60 2.00 2.60 pure green 2.80 3.40 3.80 forward voltage vf blue 2.80 3.40 3.80 v if=20ma hyper red --- --- 10 pure green --- --- 10 reverse current ir blue --- --- 10 a v r =5v notes: 1. luminous intensity measurement allowance is 10%. 2. 1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity. 3. the dominant wavelength ( d) is derived from the cie chromaticity diagram and represents the single wavelength which defines the color of the device.
luckylight typical electrical / optical characteristics curves (25 ambient temperature unless otherwise noted) hyper red: spectrum distribution relative luminous intensity (%) ta=25  0 400 100 forward current & forward voltage forward current if (ma) ta=25  0 10 20 30 40 50 1.4 1.6 1.8 2.0 2.2 2.4 forward voltage vf (v) 300 500 600 700 800 wavelength p (nm) 75 50 25 luminous intensity & ambient temperature relative luminous intensity (%) 1 1000 -60 ambient temperature ta ( )  100 10 -40-20 0 20406080100 luminous intensity & forward current relative luminous intensity (%) 1 1000 10 forward current if (ma) 100 10 0 10 1 10 2 10 3 forward current derating curve forward current if (ma) 0 0 10 20 30 40 50 ambient temperature ta ( )  25 f=1khz duty=1/10 ta=25  20 40 60 80 100 2.6 ta=25  radiation diagram 0.3 0 0.7 0.8 1.0 0.9 0.1 0 0.2 0.4 0.6 0.5 o 10 o 20 o 30 o 40 o 50 o 60 o 70 o 80 o 90 o spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 6 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com
luckylight pure green: spectrum distribution relative luminous intensity (%) ta=25 0 400 100 300 500 600 700 800 wavelength ? p (nm) 75 50 25 luminous intensity & ambient temperature relative luminous intensity (%) 1 1000 -60 ambient temperature ta ( ) 100 10 -40-20 0 20406080100 luminous intensity & forward current relative luminous intensity (%) 1 1000 10 forward current if (ma) 100 10 0 10 1 10 2 10 3 forward current derating curve forward current if (ma) 0 0 10 20 30 40 50 ambient temperature ta ( ) 25 f=1khz duty=1/10 ta=25 20 40 60 80 100 forward current & forward voltage forward current if (ma) ta=25 2.8 0 10 20 30 40 50 3.0 3.2 3.4 3.6 3.8 4.0 forward voltage vf (v) ta=25 radiation diagram 0.3 0 0.7 0.8 1.0 0.9 0.1 0 0.2 0.4 0.6 0.5 o 10 o 20 o 30 o 40 o 50 o 60 o 70 o 80 o 90 o spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 7 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com
luckylight blue: spectrum distribution relative luminous intensity (%) ta=25 0 400 100 forward current & forward voltage forward current if (ma) ta=25 2.8 0 10 20 30 40 50 3.0 3.2 3.4 3.6 3.8 4.0 forward voltage vf (v) 300 500 600 700 800 wavelength ? p (nm) 75 50 25 luminous intensity & ambient temperature relative luminous intensity (%) 1 1000 -60 ambient temperature ta ( ) 100 10 -40-20 0 20406080100 luminous intensity & forward current relative luminous intensity (%) 1 1000 10 forward current if (ma) 100 10 0 10 1 10 2 10 3 forward current derating curve forward current if (ma) 0 0 10 20 30 40 50 ambient temperature ta ( ) 25 f=1khz duty=1/10 ta=25 20 40 60 80 100 ta=25 radiation diagram 0.3 0 0.7 0.8 1.0 0.9 0.1 0 0.2 0.4 0.6 0.5 o 10 o 20 o 30 o 40 o 50 o 60 o 70 o 80 o 90 o spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 8 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com
luckylight spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 9 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com reliability test items and conditions: the reliability of products shall be satisfied with items listed below: confidence level: 90%. ltpd: 10%. 1) test items and results: te s t i t e m standard te s t method test conditions note number of damaged resistance to soldering heat jeita ed-4701 300 302 tsld=2605  , 10sec 3mm from the base of the epoxy bulb 1 time 0/100 solder ability jeita ed-4701 300 303 tsld=2355  , 5sec (using flux) 1time over 95% 0/100 thermal shock jeita ed-4701 300 307 0 ~100 15sec, 15sec 100 cycles 0/100 temperature cycle jeita ed-4701 100 105 -40 ~25  ~100~25  30min,5min,30min,5min 100 cycles 0/100 moisture resistance cycle jeita ed-4701 200 203 25 ~65 ~-10 90%rh 24hrs/1cycle 10 cycles 0/100 high temperature storage jeita ed-4701 200 201 ta = 1 0 0  1000hrs 0/100 terminal strength (pull test) jeita ed-4701 400 401 load 10n (1kgf) 101sec no noticeable damage 0/100 terminal strength (bending test) jeita ed-4701 400 401 load 5n (0.5kgf) 0~90~0 bend 2 times no noticeable damage 0/100 temperature humidity storage jeita ed-4701 100 103 ta = 6 0  , rh=90% 1000hrs 0/100 low temperature storage jeita ed-4701 200 202 ta = - 4 0  1000hrs 0/100 steady state operating life ta = 2 5  , if=30ma 1000hrs 0/100 steady state operating life of high humidity heat ta = 6 0  , rh=90%, if=30ma 500hrs 0/100 steady state operating life of low te m p e ra t u r e ta = - 3 0  , if=20ma 1000hrs 0/100 2) criteria for judging the damage: criteria for judgment item symbol test conditions min max forward voltage vf if=20ma --- f.v.*)1.1 reverse current ir vr=5v --- f.v.*)2.0 luminous intensity iv if=20ma f.v.*)0.7 --- *) f.v.: first value.
luckylight spec no.: b508 x360 rev no.: v.2 date: oct./12/2005 page: 10 of 10 approved: zhou checked: wu drawn: shu lucky light electronics co., ltd. http://www.luckylightled.com please read the following note s before using the product: 1. over-current-proof customer must apply resistors for protection, otherwise slight voltage shift will cause big current change (burn out will happen). 2. storage 2.1 do not open moisture proof bag before the products are ready to use. 2.2 before opening the package, the leds should be kept at 30  or less and 90%rh or less. 2.3 the leds should be used within a year. 2.4 after opening the package, the leds should be kept at 30  or less and 70%rh or less. 2.5 the leds should be used within 168 ho urs (7 days) after opening the package. 3. soldering condition 3.1 pb-free solder temperature profile 3.2 reflow soldering should not be done more than two times. 3.3 when soldering, do not put stress on the leds during heating. 3.4 after soldering, do not warp the circuit board. 4. soldering iron each terminal is to go to the tip of soldering iron temperature less than 260  for 5 seconds within once in less than the soldering ir on capacity 25w. leave two seconds and more intervals, and do soldering of each terminal. be careful because the damage of the product is often started at the time of the hand solder. 5. repairing repair should not be done after the leds have been soldered. when repairing is unavoidable, a double-head soldering iron should be used. it should be confirmed beforehand whether the characteristics of the leds will or will not be damaged by repairing. 6. caution in esd static electricity and surge damages the led. it is recommended to use a wrist band or anti-electrostatic glove when handling the led. all devices equipment and machinery must be properly grounded.


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