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  rev. 1.00 1 april 19, 2012 rev. 1.00 pb april 19, 2012 HT7939A high current and performance white led driver feature ? input voltage range: 2.6v~5.5v ? high effciency - up to 90% ? integrated n-ch mosfet ? can drive up to 39 wleds from a 5v input ? low standby current: 0.1 m a (typ.) ? built-in ovp, ocp, otp, uvlo protection ? en pin dimming frequency up to 200khz ? 1.2mhz fxed switching frequency ? sot23-6 package applications ? display backlighting C automatic C dvd player C digital photo frame C handheld computer general description the HT7939A is a high ef ficiency boost converter for d riving m ultiple w hite l eds u sing c urrent m ode operation. the device is des igned to drive up to 39 white leds from a 5v power supply . the white led current is setup using an exter nal current setting resistor, which has a low feedback voltage of 0.2v to minimise r esistor p ower l osses a nd t hus i mproving effciency. the HT7939A has a dimming frequency of up to 200khz, whi ch has excellent linear performa nce over this dimming frequency range. the over voltage function prevents device damage by turning of f the converter should the led load become open circuit. the devic e also includes over current protection, over temperature protection and under voltage protection preventing damag e to the device should the output be overloaded. selection guide part no. package marking HT7939A sot23-6 39a-1 (ovp=17.6v) 39a-2 (ovp=32.0v) note: both lead free and green compound devices are available.
rev. 1.00 2 april 19, 2012 HT7939A block diagram               
           ? ? ? ? ? ?-? ? ? ? ? ? ?-? ? ? pin assignment            
      pin descriptin pin no. pin name description 1 sw switching pin. connected to inductor and diode. 2 gnd ground. 3 fb feedback pin. reference voltage. the HT7939A feedback voltage is 0.2v. 4 en shutdown & dimming control input. do not allow this pin to foat. 5 ovp over voltage protection pin which is connected to the output. 6 vin the input supply pin for the ic. connect vin to a supply voltage between 2.6v~5.5v.
rev. 1.00 3 april 19, 2012 HT7939A absolute maximum ratings input v oltage, fb v oltage, en ............................ 6.0v sw v oltage ........................................................... 36v ovp v oltage ......................................................... 36v operating t emperature range .......... -40c to +85c storage t emperature range ............ -55c to +150c maximum junction t emperature ..................... 150c note: these are stress ratings only . stresses exceeding the range specifed under absolute maximum ratings may cause substantial damage to the device. functional operation of this device at other conditions beyond those listed in the specifcation is not implied and prolonged exposure to extreme conditions may af fect device reliability. electrical characteristics v in = 5.0v, t a= 25 c, unless otherwise specifed (note 1) symbol parameter test conditions min. typ. max. unit input supply voltage and current v in input voltage D 2.6 D 5.5 v uvlo under voltage lockout D 1.8 2.1 2.4 v i in supply current switching D 1.0 5.0 ma ven= 0 D 0.1 1.0 a error amplifer v fb feedback voltage D 190 200 210 mv v line regulation v in = 3.0v~4.3v, i led = 20ma D 1.0 D % power switch f osc switching frequency measure d at sw pin 0.8 1.2 1.6 mhz dc maximum duty cycle 85 90 D % r ds(on) sw on resistance D D 0.5 D i sw(off) switch leakage current D D 0.1 1.0 a enable v ih en voltage high D 2.0 D D v v il en voltage low D D D 0.8 v f en dimming clock rate duty= 5%~100% 100 D 200 khz ovp and ocp v ovp ovp threshold no load, for 39a-1 marking 15.8 17.6 19.4 v no load, for 39a-2 marking 28.8 32.0 35.2 v i ocp n-channel mosfet current limit D D 1200 D ma thermal shutdown t shut thermal shutdown threshold D D 150 D c thermal shutdown hysteresis D D 25 D c note 1. specifcations are production tested at t a=25 degree. specifcations over -40 c to 85 c degree operating temperature range are assured by design, characterization.
rev. 1.00 4 april 19, 2012 HT7939A functional description vin under-voltage lockout -- uvlo the HT7939A contains an input under v oltage lockout, uvl o, c ircuit. t he purp ose of t he uvl o circuit is to ensure that the input voltage is high enough for reliabl e operation. when the input v oltage is below the uvlo threshold, the internal power mosfet w ill remain s witched of f .the u vlo threshold is s et below the minimum input voltage of 2.6v t o a void a ny t ransient vin drops unde r t he uvlo threshold and causing the converter to turn off. current limit protection the HT7939A has a cycle-by-cycle current limit to protect the internal power mosfet . if the inductor current re aches t he c urrent l imit t hreshold, t he mosfet will be turned of f. it is important to note that this current limit will not protect the output from excessive c urrent d uring a n o utput sh ort c ircuit. i f an output short circuit occurs, excessive current can damage both the inductor and the diode. over-voltage protection -- ovp the HT7939A provides an over -voltage function. if the fb pin is shorted to ground or an led is disconnected from the circuit, the fb pin voltage will be z ero a nd t he i nternal powe r mosfe t wi ll switch a t i ts f ully d uty c ycle. t his m ay c ause t he output voltage to exceed its maximum voltage rating, possibly damaging the devic e and the external components. internal over voltage protection circuitry turns of f the power mosfet and shuts down the device as soon as the output voltage exceeds the threshold .as a result, the output voltage falls to the level of the input supply voltage. the device remains in this shutdown mode until it is enabled once again to a reset conditio n by the en pin or after the power is restarted. over-temperature protection -- otp a thermal shutdown function is implemented to prevent device damage due to excessive heat and power dissipation. t ypically the thermal shutdown threshold is 150 c . when the thermal shutdown is t riggered t he d evice st ops swi tching u ntil t he temperature f alls b elow a t ypical v alue o f 1 25 c . af ter this the device will once again resume switching. application information inductor selection there are three important electrical parameters that need t o b e c onsidered wh en c hoosing a n i nductor. these a re t he i nductor v alue, t he dc r ( parasitic se rial dc resistance) and the saturation current. the inductor s value determines the input ripple current. lower inductor values decrease the physical size of the inductor , but increase the input ripple current. however , lar ger inductor values decrease the input ripple current, but have higher series resistances and lower saturation currents. a good rule to choose a s utiable inductor value is to allow the peak-to- peak ripple current to be approximately 30~50% of the maximum input current. calculate the required inductance value using the following equations:                                                                  in t he e quation s a bove, i out(max) i s t he m aximum load current, ?i l is the peak-to-peak inductor ripple current, is the converter ef ficiency, f sw is the switching frequency and i l(peak) is the peak inductor current. t o prevent inductor core saturation, ensure that the inductor-saturation c urrent is ra ted hi gher than the peak inductor current. a 10h inductor value is recommended for most HT7939A application s.
rev. 1.00 5 april 19, 2012 HT7939A input and output capacitor selection the o utput c apacitor d etermines t he st eady st ate output volt age ripple . the volt age ripple i s rel ated to the capacitor s capacitance and its esr which i s the equivalent series resistance. ceramic capacitor s with l ow e sr va lue s wi ll result i n t he lowest ripple voltage values and are the recommended type . due to their low esr values , the capacitance value can be calculated using the following equation:                      in t he e quation a bove, v ripple = pe ak t o pe ak out put ripple, f sw is the switching frequency. the output capaci tor is recommend ed to be in a range of 1f to 10f . the input capacitor is require d to be in a range of 2.2f to 10.0f . the output capacitor affects the loop stability of the boost regulator . if the output capacitor is lower than this range, the boost regulator c ould potential ly bec ome unstable. schottky diode selection the output rectifier diode s upplies current to the inductor w hen the internal m osfet is of f. the average and peak current ratings of the diode must be greater than the maximum output current and peak inductor current. the reverse breakdown voltage must be gre ater t han t he m aximum output volt age. it is re commended t o u se a sc hottky d iode wi th a l ow forward voltage to minimis e pow er dis sipation and therefore to maximise the effciency of the converter . a 1n5819 diode type is recommended for HT7939A applications. led current selection the led current is controlled by the current sense feedback resistor r fb , the current sense feedback reference is 200mv . in order to ensure accurate led currents, precision resistors with a 1% tolerance are the preferred t ypes. t he l ed c urrent c an be c alculated using the following formula:               where i led i s t he output l ed c urrent, v fb =feedback voltage, r fb =current sense resistor. digital and analog dimming control the digital dimming method uses a pwm signal applied to the en pin and the en pin dimming frequency up to 200khz. this is shown in fg.19. the average led current increases proportionally with the pwm signal duty cycle. a 0% duty cycle corresponds to zero led current. a 100% duty cycle corresponds to a full led current. there are two methods to control the led brightness for analog dimming. the first method uses a dc voltage t o c ontrol t he fe edback vo ltage. if t he dc voltage range is from 0v to 3.3v , the selection of resistors provided in fg.20 controls the led current from 20ma to 0ma. other applications a filtered pwm signal, which is shown in fig.21. the filtered pwm signal appli cation acts the same way as the dc voltage dimming control.
rev. 1.00 6 april 19, 2012 HT7939A typical performance characteristics fig.1 HT7939A-1 w-led current v.s. dimming (3s13p) fig.2 HT7939A-1 w-led current v.s. dimming (3s10p) fig.3 HT7939A-2 w-led current v.s. dimming (7s4p) fig.4 effciency v.s. input voltage fig.5 feedback voltage v.s. input voltage fig.6 HT7939A-1 3s10p dimming=100hz, d=50%, v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=v en signal, ch2=i led current)
rev. 1.00 7 april 19, 2012 HT7939A fig.7 HT7939A-1 3s10p dimming=10khz, d=50% , v in = 5.0v, l=22 m h, v in =c out =2.2 m f (ch1=v en signal, ch2=i led current) fig.8 HT7939A-1 3s10p dimming=200khz, d=50%, v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=v en signal ch2=i led current) fig.9 HT7939A-1 3s10p start up waveform v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=c in , ch2= v out ) fig.10 HT7939A-1 3s10p ovp waveform v in =5.0v l=22 m h, c in =c out =2.2 m f (ch1=switching signal, ch2=v out ) fig.11 HT7939A-1 3s10p ba sic waveform, v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=switching signal, ch2=inducto r current) fig.12 HT7939A-2 7s4p dimming=100hz, d=50% v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=v en signal, ch2=i led current)
rev. 1.00 8 april 19, 2012 HT7939A fig.13 HT7939A-2 7s4p dimming=10khz, d=50% v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=v en signal, ch2=i led current) fig.14 ht793 9a-2 7s4p dimming=200khz, d=50%, v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=v en signal, ch2=i led current) fig.15 HT7939A-2 7s4p start up waveform, v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1=c in , ch2= v out ) fig.16 HT7939A-2 7s4p ovp waveform, v in =5.0v, l=22 m h, c in =c out =2.2 m f (ch1= switching signal, ch2= v out ) fig.17 HT7939A-2 7s4p basic waveform, v in =5.0v, l=22 m h, c in =c out =2.2 m f
rev. 1.00 9 april 19, 2012 HT7939A application circuits vin en gnd sw ovp fb HT7939A v in v out 10m h/22mh l 1n5819 d1 rfb 1w 2.2mf c1 2.2 mf c2 3s13p fig.18 application for driving 3s13p wleds 1 w 2.2mf 2.2 mf vin en gnd sw ovp fb HT7939A v in v out 10m h/22m h l 1n5819 d1 rfb c1 c2 3s13p pwm signal fig.19 application for dimming control using a pwm signal vin en gnd sw ovp fb HT7939A v in v out 10m h/22m h l 1n5819 d1 2.2mf c1 2.2mf c2 3s13p rfb 1w 10kw 150kw 0v~3.3v fig.20 application for dimming control using a dc voltage vin en gnd sw ovp fb HT7939A v in v out 10m h/22m h l 1n5819 d1 2.2mf c1 2.2mf c2 3s13p rfb 1w 10kw 150kw pwm signal 0.1mf fig.21 application for dimming control using a filtered pwm signal
rev. 1.00 10 april 19, 2012 HT7939A package information note that the package information provided here is for consultation purposes only . as this information may be updated at regular intervals users are reminded to consult the holtek website (http://www.holtek.com.tw/english/ literature/package.pdf) for the latest version of the package information. 6-pin sot23C6 outline dimensions            symbol dimensions in inch min. nom. max. a 0.039 D 0.051 a1 D D 0.004 a2 0.028 D 0.035 b 0.014 D 0.020 c 0.004 D 0.010 d 0.106 D 0.122 e 0.055 D 0.071 e D 0.075 D h 0.015 D 0.118 l 0.015 D D 0 D 9 symbol dimensions in mm min. nom. max. a 1.00 D 1.30 a1 D D 0.10 a2 0.70 D 0.90 b 0.35 D 0.50 c 0.10 D 0.25 d 2.70 D 3.10 e 1.40 D 1.80 e D 1.90 D h 2.60 D 3.00 l 0.37 D D 0 D 9
rev. 1.00 11 april 19, 2012 HT7939A reel dimensions       sot23C6 symbol description dimensions in mm a reel outer diameter 178.0+1.0 b reel inner diameter 62.0+1.0 c spindle hole diamete 13.0+0.2 d key slit width 2.50+0.25 t1 space between flange 8.4 +1.5/-0.0 t2 reel thickness 11.4 +1.5/-0.0
rev. 1.00 12 april 19, 2012 HT7939A carrier tape dimensions                 
   sot23C6 symbol description dimensions in mm w carrier tape width 8.0+0.3 p cavity pitch 4.0+0.1 e perforation position 1.75+0.10 f cavity to perforation (width direction) 0.50+0.05 d perforation diameter 1.5 +0.1/-0.0 d1 cavity hole diameter 1.5 +0.1/-0.0 p0 perforation pitch 4.0+0.1 p1 cavity to perforation (length direction) 2.00+0.05 a0 cavity length 3.15+0.10 b0 cavity width 3.2+0.1 k0 cavity depth 1.4+0.1 t carrier tape thickness 0.20+0.03 c cover tape width 5.3+0.1
rev. 1.00 13 april 19, 2012 HT7939A holtek semiconductor inc. (headquarters) no.3, creation rd. ii, science park, hsinchu, taiwan tel: 886-3-563-1999 fax: 886-3-563-1189 http://www.holtek.com.tw holtek semiconductor inc. (taipei sales offce) 4f-2, no. 3-2, yuanqu st., nankang software park, taipei 115, taiwan tel: 886-2-2655-7070 fax: 886-2-2655-7373 fax: 886-2-2655-7383 (international sales hotline) holtek semiconductor inc. (shenzhen sales offce) 5f, unit a, productivity building, no.5 gaoxin m 2nd road, nanshan district, shenzhen, china 518057 tel: 86-755-8616-9908, 86-755-8616-9308 fax: 86-755-8616-9722 holtek semiconductor (usa), inc. (north america sales offce) 46729 fremont blvd., fremont, ca 94538, usa tel: 1-510-252-9880 fax: 1-510-252-9885 http://www.holtek.com copyright ? 2012 by holtek semiconductor inc. the information appearing in this data sheet is believed to be accurate at the time of publication. however, holtek assumes no responsibility arising from the use of the specifications described. the applications mentioned herein are used solely for the purpose of illustration and holtek makes no warranty or representation that such applications will be suitable without further modification, nor recommends the use of its products for application that may present a risk to human life due to malfunction or otherwise. holtek's products are not authorized for use as critical components in life support devices or systems. holtek reserves the right to alter its products without prior notifcation. for the most up-to-date information, please visit our web site at http://www.holtek.com.tw.


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