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fn6428 rev 1.00 page 1 of 20 april 2, 2007 fn6428 rev 1.00 april 2, 2007 isl97801 high power led driver datasheet the isl97801 is a high-power led backlight driver with an integrated 36v fet designed to drive up to 8 high-power leds in series. the pwm convert er runs from an internally generated 1mhz clock. with efficiencies over 90% the regulator provides tight cont rol of led current and may be configured in either boost or buck topologies, allowing from 3 to 8 series diodes to be drive n from wide input voltages. led light level may be controlled either by: 1. led dc bias current set via the level pin, or 2. external low frequen cy pwm control via the enable/pwm pin. in both control mo des optional over temperature thermal protection of the led reduc es the led dc bias current above an adjustable set temper ature, protect ing the led from thermal damage. an optiona l fault monitor drives an external fet between the i nput supply and inductor, providing short circuit current protection for the led and inductor as well as load dump protection for automotive applications. for low cost app lications the pass transistor may be omitted and t he fault pin bypassed. the isl97801 is packaged i n a 20 ld 4mm x 4mm qfn package and is specif ied for operation over the -40c to +105c temper ature range. features ? drives 3-8 high-power le ds in series, up to 32v ? 2.7v to 16v input voltage range ? boost or buck configurable switch ? 3a integrated fet ? automotive load dump protection ? light output tempe rature compensation ? led over-temperature protection ? led disconnect ? pwm/analog light level control ? small, 20 ld 4mm x 4mm qfn package ? pb-free plus anneal available (rohs compliant) applications ? display backlighting - automotive - lcd monitor - notebook displays ? led accent lighting ? automotive lighting pinout isl97801 (20 ld 4x4 qfn) top view ordering information part number (note) part marking tape & reel/ qty package (pb-free) pkg. dwg. # ISL97801ARZ 978 01arz - 20 ld 4x4 qfn l20.4x4c ISL97801ARZ-tk 978 01arz 13/ 1,000 20 ld 4x4 qfn l20.4x4c ISL97801ARZ-t 978 01arz 13/ 6,000 20 ld 4x4 qfn l20.4x4c note: intersil pb-free plus anneal products employ special pb-fr ee material sets; molding compounds/d ie attach materials and 100% matte tin plate termination finish, which are rohs compliant an d compatible with both snpb and pb-free soldering operations. int ersil pb-free products are msl clas sified at pb-free peak reflow temperatures that meet or exceed the pb-free requirements of ipc/jedec j std-020. 1 2 3 4 15 14 13 12 6 7 8 9 20 19 18 17 vdc vhi ovp swd1 b uck/boostn level temp fb vin fault gnd nc enl mode en/pwm sws1 thermal pad 5 swd2 10 tmax 11 sws2 16 vbat not recommended for new designs recommended replacement part isl97634
isl97801 fn6428 rev 1.00 page 2 of 20 april 2, 2007 absolute maximum ratings (t a = +25c) thermal information maximum pin voltage, all pins except below 6.5v v in, sws1, sws2, en/pwm . . . . . . . . . . . . . . . . . . . . . . . . . . .18v vbat, fault, fb . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .24v |vhi - sws1, sws2| . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6.5v swd1, swd2, ovp. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .34v continuous output current . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .1a operating conditions temperature range . . . . . . . . . . . . . . . . . . . . . . . . .-40c to +105c thermal resistance ? ja (c/w) / ? jc (c/w) qfn-20 package (notes 1, 2) . . . . . . . 39 2.5 maximum junction temperature . . . . . . . . . . . . . . . . . . . . . . +135c storage temperature . . . . . . . . . . . . . . . . . . . . . . .-65c to +150c caution: stresses above those listed in ?absolute maximum ratings? may cause permanent damage to the device. this is a stress o nly rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. important note: all parameters having min/max specifications are guaranteed. typical values are for information purposes only. u nless otherwise noted, all tests are at the specified temperature and are pulsed tests, therefore: t j = t c = t a operating continuously at a junction temperature of +135c will shorten the life of the device while the thermal shutdown may t rigger at a higher temperature than +135c since it is a typical number. note: 1. ? ja is measured in free air with the component mounted on a high e ffective thermal conductivity t est board with direct attach f eatures. see tech brief tb379. 2. for ? jc , the case temp location is the center of the exposed metal p ad on the package underside. electrical specifications v bat = v in = 12v, v dc = 5v, t a = -40c to +105c unless otherwise specified. parameter description conditions min typ max unit vin input supply voltage i out = 350ma, 8 leds, buck/boostn = gnd 516v vin input supply voltage i out = 350ma, 5 leds, buck/boostn = gnd, tmax disabled 2.7 12 v v bat input supply monitor normal operating range 2.7 16 v v batfault supply fault threshold if v bat > v batfault , fault pin is switched to ground 17.6 21 24 v i s e n supply current in v in no switching, en/pwm = 1 2.7 3.5 ma i s d is supply current in v in no switching, en/pwm = 0 0.6 2.5 a r switch power fet on resistance i switch = 600ma 0.15 0.25 ? v dc regulated auxiliary supply 4.75 5 5.25 v r outol auxiliary supply open loop output resistance v in < v dc 40 ? r outcl auxiliary supply closed loop output resistance v in > 6v, f < 100hz 6.5 ? i out output drive current 4 led output string. v in = v bat = 10v 1 a i limboost power switch current limit buck/boostn = gnd 3.6 a i limbuck power switch current limit buck/boostn = vdc 2.4 a ovph over voltage positive going voltage mode threshold upper threshold to enter overvoltage fault mode, t a = +25c 31 32 v ovpl over voltage negative going voltage mode threshold lower threshold to exit overvoltage fault mode, t a = +25c 20 23 v v gate protection fet vgs (gate clamp) v in - v fault 9.76 12.2 14.64 v v gate protection fet vgs (gate clamp) v fault - v in 8.16 10.2 12.24 v v fb feedback voltage system in regulation, v level = 1v, vin = 12v, 6 leds 0.19 0.2 0.21 v isl97801 fn6428 rev 1.00 page 3 of 20 april 2, 2007 . v level light control voltage linear input range mode = 1, analog contro l of led current 0.25 3 v fb uv fault feedback undervoltage fault vlevel = 1v, en/pwm = 3v 120 160 180 mv fb ov fault feedback overvoltage fault vlevel = 1v, en/pwm = 3v 220 250 280 mv f sw switching frequency 850 1000 1150 khz f dimming maximum recommended pwm dimming frequency mode = 1, modulation signal applied to en/pwm 10 khz t switch load switch transition time c gate = 2nf 100 ns rls driverl load switch driver impedance low en/pwm = 0 30 50 ? rls driverh load switch driver impedance high en/pwm = 3v 30 50 ? t fault fault timer period 40 50 58 ms t delay start-up delay timed lx switching delay 0.85 1 1.17 ms v faultpump fault pin charge pump v bat = v in = 3v 6 v v boost boost mode threshold buck/boostn = gnd 0.4v dc v v buck buck mode threshold buck/boostn = v dc 0.94v dc v v model mode low threshold mode = gnd 1/3v dc v v modeh mode high threshold mode = v dc 2/3v dc v en fault input level applied to tmax pin to enable fault protection 0.9v dc v dis fault input level applied to tmax pin to disable fault protection 0.96v dc v en temp input level applied to temp pin to enable temperature compensation 0.5 v dis temp input level applied to temp pin to disable temperature compensation 0.08 v t compp vfb positive temperature compensation; vfb/vfbnom vtemp/vdc = 0.80 1.26 t compn vfb negative temperature compensation; vfb/vfbnom vtemp/vdc = 0.20 0.74 t trip internal temperature protection threshold 135 c t hys internal temperature protection hysteresis 25 c ven/pwm l en/pwm pin input low threshold 1.2 v ven/pwm h en/pwm pin input high threshold 2.5 v v dcuvlo v dc under voltage lockout 2.6 v rschottky internal schottky diode for buck 15 23 ? electrical specifications v bat = v in = 12v, v dc = 5v, t a = -40c to +105c unless otherwise specified. (continued) parameter description conditions min typ max unit table 1. light output control, v dc = 5.0v mode temp operating mode 1 (vdc - 0.25) > v > 0.25v standard mode light level to pwm modulation of en/pwm input; led bias curren t determined by level voltage, nominal 1v dont care v < 0.25v disable temperature compensation 0 v < (vdc - 0.25) fixed bias mode v fb level internally set to 0.4v, independent of v level isl97801 fn6428 rev 1.00 page 4 of 20 april 2, 2007 typical performance curves figure 1. 8 leds efficiency vs input voltage vs dimming frequency and duty cycle figure 2. 5 leds efficiency vs input voltage vs dimming frequency and duty cycle figure 3. 3 leds efficiency vs input voltage vs dimming frequency and duty cycle figure 4. 8 and 5 leds efficiency vs pwm duty cycle figure 5. leds pwm dimming linearity figure 6. 8 leds current accu racy vs input voltage 60 65 70 75 80 85 90 95 100 6 8 10 12 14 16 18 v in (v) efficiency (%) 8 leds i ledpeak = 380ma 10%@100hz 10%@10khz 99%@100hz 99%@10khz 50%@1khz 50%@10khz 50%@100hz 10%@1khz 99%@1khz 60 65 70 75 80 85 90 95 100 4 6 8 10121416 v in (v) efficiency (%) 5 leds i ledpeak = 380ma 99% @ 10khz 99% @ 100hz 10% @ 10khz 10% @ 100hz 60 65 70 75 80 85 90 95 100 4810 v in (v) efficiency (%) 3 leds i ledpeak = 380ma 6 99%@100hz 99%@10khz 10%@10khz 10%@100hz 60 65 70 75 80 85 90 95 100 0 20406080100 pwm dimming duty cycle (%) efficiency (%) 8 leds 5 leds i ledpeak = 380ma pwm = 10khz 8 leds, v in = 12v 5 leds, v in = 9v 0 50 100 150 200 250 300 350 400 0 20406080100 pwm dimming duty cycle (%) i led (ma) 8 leds, v in = 12v i ledpeak = 380ma 5 leds @ 100hz 5 leds, v in = 9v 3 leds, v in = 5v 3 leds @ 100hz 8 leds @ 1khz 5 leds @ 10khz 8 leds @ 10khz -6 -5 -4 -3 -2 -1 0 1 2 3 4 6 8 10 12 14 16 18 v in (v) ? i led (%) 8 leds i ledpeak = 380ma 10% @ 100hz 99% @ 100hz 99% @ 10khz 10% @ 10khz isl97801 fn6428 rev 1.00 page 5 of 20 april 2, 2007 figure 7. 5 leds current accuracy vs input voltage figure 8. 3 led s current accuracy vs input voltage figure 9. 8 leds line regulation of pwm duty cycle of 99% figure 10. 5 leds line regulation of pwm duty cycle of 99% figure 11. 3 leds line regulation of pwm duty cycle of 99% figure 12. 8 leds line regulation of pwm duty cycle of 10% typical performance curves (continued) -10 -8 -6 -4 -2 0 2 4 6 8 10 4 6 8 10 12 14 16 v in (v) ? i led (%) 5 leds i ledpeak = 380ma 10% @ 100hz 10% @ 10khz 99% @ 100hz 99% @ 10khz -4 -2 0 2 4 6 8 10 12 14 16 10 9 8 7 6 5 4 v in (v) ? i led (%) 3 leds i ledpeak = 380ma 99% @ 100hz 99% @ 10khz 350 355 360 365 370 375 380 385 390 395 400 6 8 10 12 14 16 18 v in (v) i led (ma) 8 leds i ledpeak = 380ma pwm @ 100hz pwm @ 10khz duty cycle = 99% pwm @ 1khz 350 355 360 365 370 375 380 385 390 395 400 405 410 415 420 4 6 8 10 12 14 16 i led (ma) v in (v) 5 leds i ledpeak = 380ma 99% @ 100hz duty cycle = 99% 99% @ 10khz 360 365 370 375 380 385 390 395 400 405 410 4567 8910 i led (ma) 3 leds i ledpeak = 380ma pwm @ 100hz duty cycle = 99% pwm @ 10khz v in (v) 30 31 32 33 34 35 36 37 38 39 40 6 8 10 12 14 16 18 i led (ma) 8 leds i ledpeak = 380ma duty cycle = 10% pwm @ 10khz v in (v) pwm @ 100hz pwm @ 1khz isl97801 fn6428 rev 1.00 page 6 of 20 april 2, 2007 figure 13. 5 leds line regulation of pwm duty cycle of 10% figure 14. 3 leds line regulation of pwm duty cycle of 10% figure 15. led current vs v level bias figure 16. quiescent current (non-switching) figure 17. start-up waveforms figu re 18. start-up waveforms zoom-i n typical performance curves (continued) 34 35 36 37 38 39 40 41 6 8 10 12 14 16 18 i led (ma) v in (v) 10% @ 100hz 10% @ 10khz 5 leds i ledpeak = 380ma duty cycle = 10% 32 33 34 35 36 37 38 39 40 41 42 4567 8910 i led (ma) v in (v) 3 leds i ledpeak = 380ma duty cycle = 10% pwm @ 10khz pwm @ 100hz 0 50 100 150 200 250 300 350 400 0 0.2 0.4 0.6 0.8 1.0 v level (v) i led (ma) rset = 0.5 ? duty cycle = 100% 5 led 3 led 8 led 0.0001 0.001 0.01 0.1 6 8 10 12 14 16 18 v in (v) i q (ma) en/pwm = 0 v level = 1v t a = +25c 8 leds i led = 350ma 8 leds i led = 350ma isl97801 fn6428 rev 1.00 page 7 of 20 april 2, 2007 figure 19. 50% pwm dimming at 100hz figure 20. 50% pwm dimming at 10khz figure 21. 10% pwm dimming at 1khz figure 22. 50% pwm dimming at 1 khz zoom-in figure 23. transient response operates from 8 to 7 leds figure 24. transient response operates from 7 to 8 leds typical performance curves (continued) 8 leds v in = 16v pwm = 100hz 8 leds v in = 16v pwm = 10khz 8 leds v in = 12v pwm = 1khz pwm = 1khz duty cycle = 50% 8 leds v in = 16v transient response when load dynamically v in = 12v i led = 350ma changes from 8 leds to 7 leds 8 leds v o 7 leds v o transient response when load dynamically v in = 12v i led = 350ma changes from 7leds to 8leds 7 leds v o 8 leds v o isl97801 fn6428 rev 1.00 page 8 of 20 april 2, 2007 typical boost mode application diagram figure 25. ovp and reset figure 26. current limit typical performance curves (continued) fb = 0v 8leds v in = 3.3v i led = 380ma 9 + , 6 : ' 6 : ' 2 9 3 6 : 6 6 : 6 ( 1 / * 1 ' 9 , 1 ) $ 8 / 7 9 % $ 7 9 ' & % 8 & |