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product structure silicon monolithic integrated circuit this product is not designed prot ection against radioactive rays 1/22 datashee t ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 14 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 white led driver with pwm brightness control for up to 11 leds in series bd60a00nux bd60a60nux general description this ic is boost dc/dc converter that can drive white led with constant current. more stabled white led lighting can be achieved by direct current connection without electric tolerance and high-speed response by current mode. moreover, separating ic power supply (2.7v to 5.5v) and coil power supply (2.3v to 20v) makes it possible to widen input range, which will be helpful to be applied to various kinds of applications. over voltage setting can be selected corresponding to the number of led lightings. bd60a00nux is for max 11 lightings, bd60a60nux is for max 6 lightings. features ? boost dc/dc converter ? drive led 11 lightings (vout=3.6v11+0.7v=40. 3v 2/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 absolute maximum ratings parameter symbol ratings unit condition maximum applied voltage 1 vmax1 7 v vin, en, pwm, iset terminals maximum applied voltage 2 vmax2 45 v fb, sw, vout terminals bd60a00nux maximum applied voltage 3 vmax3 31 v fb, sw, vout terminals bd60a60nux operating temperature r ange topr -40 to +85 ? c storage temperature range tstg -55 to +150 ? c power dissipation 1 pd1 2000 mw *1 *1 4 layer (rohm standard board) has been mounted. when it?s used by more than ta=25 ? c, it?s reduced by 20mw/ ? c. recommended operating ratings (ta=-40 ? c to +85 ? c) parameter symbol ratings unit conditions operating power supply voltage vin 2.7 to 5.5 * v vin terminal operating coil voltage vcoil 2.3 to 20 v coil voltage *when the operating supply voltage is over 4.61v for bd60a00nux, please refer the application p.16 electrical characteristics (unless otherwise specified, ta=25 ? c, vin=3.6v) parameter symbol limits unit conditions min. typ. max. quiescent current iq - 0.1 1.0 a en=0v current consumption (no boost) iddnb - 1.5 3.0 ma en=2.8v, pwm=0v current consumption (boost) iddb - 2.5 5.0. ma en=2.8v, pwm=2.8v [en, pwm terminal] low input voltage range vthl - - 0.5 v high input voltage range vthh 1.4 - - v pull down register rcnt 65 100 135 k ? [switching regulator] fb terminal control voltage fb 0.56 0.70 0.84 v switching frequency fsw - 600 - khz max duty duty 90 95 - % fb=0v sw transistor on resistor ronn - 0.5 - ? isw=80ma sw transistor leak current iqsw - 0.1 2.0 a en=0v [protection] over current limit icoil - 750 - ma *1 over voltage limit bd60a00nux ovp1 40 42 44 v detect voltage of vout terminal over voltage limit bd60a60nux ovp2 26 28 30 v detect voltage of vout terminal over voltage limit hysteresis ovphy - 1 - v vout terminal leak current iqvout - 0.1 1.0 a en=0v shot key diode open protection sop - 0. 2 - v detect voltage of vout terminal led terminal over voltage protection ledovp 4.4 5.9 6.4 v pwm=2.8v detect voltage of low voltage uvlo - 2.2 - v vin falling edge [current driver] led maximum current ilmax - - 30 ma vin=4v, cout=1f led current accuracy ila ccu - - 3.0 % iled=20ma led current limit ilocp - 0 0.1 ma current limit value at iset resistor 1k ? setting led leak current iqled - 0.1 2.0 a en=0v iset terminal voltage iset - 0.6 - v *1 this parameter is tested with dc measurement. 3/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 + + - osc control + - s q r tsd sw en gnd pwmcomp erramp fb vin thermal shutdown c urrent sense over current protect q1 vout + - over & under voltage protect pwm current driver iset uvlo pin description pin no. pin name in/out f unction terminal diagram 1 en in enable control b 2 vin in battery input c 3 pwm in pwm input b 4 iset in led current setting terminal a 5 fb in feedback voltage input b 6 vout in over voltage protection input b 7 gnd - gnd c 8 sw out switching terminal b pin esd type block diagram a gnd pin vin gnd c vin gnd pin b figure 1. pin esd type 4/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 main characteristics examples led 6series, coil: vlf302512mt-100m led 10series, coil: vlf302512mt-100m condition: vin=3.6v led=6series iled sweep (10->30ma) cin=1 f/10v ccoil=1 f/25v cout=2.2 f/50v sbd=rb160m-60 coil=vlf302512mt-100m condition: vin=3.6v led=10series iled sweep (10->30ma) cin=1 f/10v ccoil=1 f/25v cout=2.2 f/50v sbd=rb160m-60 coil=vlf302512mt-100m 5/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 main characteristics examples- continued ic power=5.0v, coil power=4v to 16v ? bd60a00nux ic power=5.0v, coil power=2.7v to 20v, led 8serial, led current =25ma, coil 1094as-10m (toko), sbd rb060m-60tr (rohm) ? bd60a60nux ic power=5.0v, coil power=2.7v to 20v, led 6serial, led current =25ma, coil 1094as-10m (toko), sbd rb521a-40tr (rohm) 70 75 80 85 90 95 234567891011121314151617181920 vcoil (v) efficiency (%) eff1 eff2 eff 1 = (vout x iled) / (vcoil x icoil) x100 eff 2 = (vout x iled) / (vcoil x icoil + vin x ivin) x100 70 75 80 85 90 95 234567891011121314 vcoil (v) efficiency (%) eff = (vout x iled) / (vcoil x icoil + vin x ivin) x100 6/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 main characteristics examples- continued pwm 20khz duty 50% vout led current pwm 100mv/div 40s/div vout led current pwm pwm 20khz duty 1% 100mv/div 200ns/div 7/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 main characteristics examples - continued ? bd60a00nux pwm duty ? led current ic power=5.0v, led 8serial, led current =25ma, pwm frequency = 20 khz, ta=25deg coil 1094as-10m (toko), sbd rb060m-60tr (rohm) functional descriptions 1) pwm current mode dc/dc converter this ic keeps output voltage invariably by setting pwm duty to make fb terminal 0.7v when the power is on. as for the inputs of the pwm comparator as the f eature of the pwm current mode, one is overlapped with error components from the error amplifier, and the other is overlapped with a current sense signal that controls the inductor current into slope waveform to prevent sub harmonic oscillatio n. this output controls internal nch tr via the rs latch. in the period where internal nch tr gate is on, energy is accumulated in the ex ternal inductor, and in the period where internal nch tr gate is off, energy is transferred to the output capacitor via external sbd. this ic has many safety functions, and their det ection signals stop switching operation at once. 2) soft start this ic has soft start function, which prevents rush current at turning on. after en and pwm are changed l ? h, soft start becomes effective within 1ms. soft start doesn't become effective even if enable is changed l ? h, after that. by changing en and pwm l ? h, soft start can become effective. since a soft start function stops working at the time of following pwm=h when en=h is held with pwm=l after en=h should input a pwm signal within 10ms. pwm off on on off off off on off off en soft star t soft star t rese t reset reset soft start time finish pwm en within 10ms figure 2. soft start possible to duty 0.4% at pwm=20 khz bd60a00nux vcoil vs efficiency vin=5vta=25 led 8 (26v) coil 1094as-10m(toko) sbd rb060m-60tr(rohm) led current 25ma pwm frequency 20khz 0.01 0.10 1.00 10.00 100.00 0.1 1.0 10.0 100.0 pwm duty (%) led current (ma) 0.4% 8/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 protection ? over voltage protection at such an error of output open as t he output dc/dc and the led is not connected to ic, t he dc/dc boosts too much and the vout terminal exceeds the absolute maximum ratings , and may destruct the ic. therefore, when the vout becomes sensing voltage or higher, the over voltage limit pr otection works, turns off the switching tr, dc/dc will be stopped, and the output voltage goes down slowly. when output voltage becomes below the hysteresis voltage of over voltage protection, a boost function works and out put voltage reaches detection voltage again. this operation is repeated unless the abnor malities in application are recovered. ? schottky diode open protection in the case of external sbd is not connected to ic, or vout is shorted to gnd, the coil or in ternal tr may be destructed. therefore, at such an error as vout becoming 0.2v or below, turns off the out put tr, and prevents the coil and the ic from being destructed. and the ic changes from activation into non-activa tion, and current does not flow to the coil (0ma). ? thermal shut down this ic has thermal shut down function. the thermal shut down works at 175 ? c or higher, and the ic changes from activation into non-activation. ? over current protection over current flows the current detection resistor that is connected to between internal switching transistor source and gnd. current sense voltage turns more than detection voltage, over current protec tion is operating and it is prevented from flowing more than detection current by reduci ng on duty of switching tr without stopping boost. as over current detector of this ic is detected peak curren t, current more than over current setting value does not flow. < the estimate of the current value which need for the normal operation> as over current detector of this ic is detected the peak curr ent, it has to estimate peak cu rrent to flow to the coil by operating condition. in case of, switching frequency = fsw typ.=0.6mhz supply voltage of coil = vin inductance value of coil = l output voltage = vout total led current = iout average current of coil = iave peak current of coil = ipeak efficiency = eff on time of switching transistor = ton ipeak = (vin / l) (1 / fsw) (1-(vin / vout)) iave=(vout iout / vin) / eff ton=(iave (1-vin/vout) (1/fsw) (l/vin) 2) 1/2 as peak current varies according to whether there is the direct current superposed, the next is decided. (1-vin/vout) (1/fsw) < ton ? peak current = ipeak /2 + iave (continuous mode ccm) (1-vin/vout) (1/fsw) > ton ? peak current = (vin / l)ton (discontinuous mode dcm) (example 1) in case of, vin=6.0v, l=10h, fsw=0.6mhz , vout=32.5v, iout=25ma, current =85% ipeak = (6.0v / 10h) (1 / 0.6mhz) (1-(6.0v / 32.5v)) =0.82 a iave = (32.5v 25ma / 6.0v) / 85% = 0.16a ton = (0.16a (1-6.0v / 32.5v) (1 / 0.75mhz) (10h /6.0v) 2) 1/2 = 0.85s (1-vin/vout) (1 /fsw)=1.36s > ton peak current = (6.0v / 10h)0.85s =0.51a + - sw 9/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 protection - continued ? led terminal over voltage protection when fb terminal becomes higher than 5.9v (typ.), ic senses the situation trouble after 100s and then stops constant current driver and dc/dc. ther efore ic becomes never heated, even if output and fb are both shorted. moreover, if fb terminal becomes lower than 5.9v (typ.), ic senses nor mal condition and activates constant current driver. ? prevention of led terminal over voltage protection malfunction as the below diagrams show, voltage drop of fb terminal becomes slow when pwm operates by connecting capacitor on a parallel with led and decreasing led current. at that time , led terminal voltage protection works after condition of fb terminal > 5.9v keeps more than 100s. led terminal voltage protection might stop current driver and dc/dc and also turns off leds, so that please set up coil selection and led cu rrent setting less than 100s until fb terminal < 5.9v. ? low voltage detect protection (uvlo) supply voltage(vin) becomes lower than low voltage detec t voltage 2.2v(typ.), ic stops dc/dc and constant current driver. moreover, this function can be off by boosting supply voltage up to more than hysteresis voltage. dc/dc current driver vin reset 2.20 v 5% 0v a ctive a ctive 2.32 v fb vou t current driver fb reset 5.9 v a ctive dc/dc a ctive 100s reset reset reset pwm l h en l h current driver fb reset 5.9v 0.7v a ctive dc/dc a ctive 100s reset reset reset pwm l h 10/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 operating of the a pplication deficiency 1) when 1 led or 1string open during the operating since fb terminal is set to 0v when set to open, output boosts up to the over voltage protection voltage. when over voltage is detected, the boosting operati on stops and then output voltage goes down slowly. later, if output voltage becomes less than hysteresis of over cu rrent protection, output voltage keeps bo osting up to over voltage protection voltage again. figure 3. led open detect 2) when led short-circuited in the plural even if one led short-circuits during boos t operation, it usually passes along le d and it is turned on. by making led shorted, fb terminal voltage increases by led vf. t herefore output voltage becomes lower by led vf, and the condition turns to be normal. figure 4. one led shorted figure 5. fb terminal ? vout terminal shorted fb fb output vout fb voltage led connection normal open led current 20ma 0ma hysteresis voltage 0.7v+vf of led fb vou t led current 20ma 0.7v led short vf of led vf of led fb vou t fb vout led current 20ma 0.7v led short vin 5.9v 0.1ma 100s 11/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 operating of the applicati on deficiency - continued 3) when schottky diode (sbd) remove in the situation that connection is opened and also dc/dc is activated, sw terminal voltage becomes more than rated voltage due to a lack of parts that c an accept the current accumulated inside the coil. consequently ic might be destroyed. to prevent the ic destruction, sbd open protecti on is functioned. sw terminal is never destroyed as boosting operation is stopped after vout terminal detects less than 0.2v. 4) when resistance linked to an iset terminal short-circuits since resistor connected to iset terminal becomes 0 ? , led current setting value becomes more than rating. in order to avoid this trouble, this ic has led current limit protection. by using this function, setting current of rating current driver becomes 0ma, and the current flow of led is almost same as leak current. control signal input timing when input control signals such as enable and pwm without completing the standup of supply voltage (vin), be careful of the following points. input each control signal after vin exceeds 2.2v and uvlo is off. when input enable and pwm, the standup time should be plac ed as min.100s from 2.2v to stable voltage for vin. since a soft start function stops working at the time of following pwm=h when en=h is held with pwm=l. after en=h should input a pwm signal within 10ms. start control (en) and select led current driver (pwm) this ic can control the ic system by en terminal and also turns off compulsorily by setting ?l? level input voltage 0.4v or below. it also powers on when en becomes more than ?h? level input voltage 1.4v. in the case of en=h, led current fixed by iset resistor with pwm=h flows. w hen it is selected at pwm=l, led current stop to flow. en pwm ic led current l l off off h l on off l h off off h h on current fixed by iset led current setting range led current sets up normal current by resi ster (riset) connected to iset voltage. each setting current is shown as below. normal current = 600/riset [a] normal current setting range is 10ma to 30ma, and also le d current at off setting is max 2a of leak current. iset normal current setting example riset led current 20.0k ? (e96) 30.0ma 24.0k ? (e24) 25.0ma 30.0k ? (e24) 20.0ma 56.0k ? (e24) 10.7ma vin 2.2v en min. 100 s pwm dc/dc vout figure 6. control signal input timing vin en min. 10 ms pwm dc/dc vout 12/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 brightness control there are two dimming method available; the first method is ana log dimming that applies analog voltage to iset terminal, and the second method is digital dimming that inputs pwm to pwm terminal. since each method has the different merits, please choose a suitable method for the application of use. 1) current driver pwm control is controlled by prov iding pwm signal to pwm, as it is shown figure 7. the current set up with iset is chosen as the h section of pwm and the current is off as t he l section. therefore, the average led current increases in proportion to duty cycle of pwm signal. this method that internal circuit and dc/dc work, because it becomes to switch the driver, the current tolerance is a few wh en the pwm brightness is adjusted, so it makes it possible to brightness control unt il 0.4s (min1% at 25khz). and, don't use for the bri ghtness control, because effect of iset changeover is big under 0.4s on time and under 3s off time. typical pwm frequency is 100hz to 25khz. 2) analog dimming can be operated by applying voltage to iset terminal via resistor as the below figure shows. iset terminal voltage works to become 0.6v regardless of the conn ected resistor. led current increases iset terminal current 600 times, so that led current can be minimized by decreasi ng flow current into iset terminal using external dc input led current = 1000 x 0.6v 470k ? + 22k ? 1000 0.6v - dac output pwm led current coil current ic?s active current on off on off on off on figure 7. pwm sequence sw vin cin 4.7 f r1 24k ? cout 2.2 f 25ma vin 2.7v to 4.6v vout fb l1 10 h iset gnd en pwm reset pwm input 0 5 10 15 20 25 30 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 dc voltage [v] led current [ma] 0 5 10 15 20 25 30 0 20406080100 pwm hi duty [%] led current [ma] sw vin cin 4.7 f r1 470k ? cout 2.2 f vin 2.7v to 4.6v vout fb l1 10 h iset gnd en pwm led on/off reset dc r2 22k ? 13/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 brightness control - continued 3) the brightness control to set large cu rrent over ic max setting current is made by giving dc control voltage to vfb pin of ic via a series resistor as shown in under figure. led lu minance (current) changed by giving dc voltage to vfb directly. dc voltage is given from filtered one of dac signal, or pwm signal shown in under figure. led current (iled) is next expression. iled = [[(fb-dc) / r1] * r2 + fb ] / rfb sw vin cin 4.7 f cout 2.2 f vin 2.7v to 4.6v vout fb l1 10 h iset gnd en pwm reset dc rfb 6.49 ? r2 6.8k ? 3s7p r1 22k ? sw vin cin 4.7 f cout 2.2 f vin 2.7v to 4.6v vout fb l1 10 h iset gnd en pwm reset pwm 5 ? 33k ? 3s7p 47k ? 100k ? 47nf 0 - 3.3v 0 20 40 60 80 100 120 140 160 0.0 0.5 1.0 1.5 2.0 2.5 3.0 dc [v] iled total [ma] bd60a60nux 3ledx7parallel 0 20 40 60 80 100 120 140 160 180 200 0 2040 6080100 pwm duty [%] st 20khz iled total [ma] bd60a60nux 3ledx7parallel 14/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 the coil selection the dc/dc is designed by more than 4.7h. when l value sets to a lower value, it is possibility that the specific sub-harmonic oscillation of current mode dc / dc will be happened. please do not let l value to 3.3h or below. and, l value increases, the phase margin of dc / dc becomes to zero. please enlarge the output capacitor value when you increase l value. output capacitor selection output capacitor smoothly keeps output voltage and supplies led current. if led current is set more than 20ma with vcoil=2.3v to 5. 5v, please make output capacitor more than 2.2f. otherwise phase margin of dc/dc decreases and might oscillate. output voltage consists of charge (fet on) and discharge (l ed current). so output volt age has output ripple voltage every fet switching. output ripple voltage is calculated as following. output ripple voltage - switching cycle = t - total led current = iled - switching on duty = d - output ripple voltage = v ripple - output capacitor = cout - ou tput capacitor (real value) = c real - decreasing ratio of capacitor = c error c real = cout c error (capacitor value is decreased by bias, so) c real = iled (1-d) t / v ripple cout = iled (1-d) t / v ripple / c error (example 1) in case of, vin=5.0v, fsw = 0.6mhz, vout =32.5v, iled =20ma, cout = 2.2f, c error = 50% t = 1 / 0.6mhz d = 1 ? vin / vout = 1 ? 5/32.5 v ripple = iled (1-d) t / (coutc error ) = 20ma (5/32.5) (1 / 0.6mhz) / (2.2f0.5) = 4.7mv led selection please select led vf that input voltage is smaller than output voltage (vout). 0v 35v 50v output voltage capa [f] cout c real 15/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 the separation of the ic power supply and coil power supply this ic can work in separating the power source in both ic power supply and coil power supply. with this application, it can obtain that decrease of ic power consumption, and the applied voltage exceeds ic rating 5.5v. that application is shown in below figure 8. the coil power supply is connected to high voltage source applied from adapters. then the ic power supply is con nected to the power supply that should be different from the coil power supply. figure 8. application at the time of power supply separation figure 9. application at the time of power supply common the number of available leds by each power supply voltage condition ccoil 4.7 f sw vin cin 4.7 f r1 24k ? cout 2.2 f 25ma vout fb l1 10 h iset gnd en pwm reset pwm input ic power 2.3v to 4.6v 1 cell battery dimmingled current setting25ma) 2.7v 3v v 5v 6v 7v 8v 9v 10v 11v 12v 13v 14v 15v 16v 17v 18v 19v 20v 2 cs cs cs cs 3 cs cs cs cs s s 4 cs cs cs cs s s s s s 5 cs cs cs cs s s s s s s s 6 cs cs cs cs s s s s s s s s s 7 cs cs cs cs s s s s s s s s s s s 8 cscscscssssssssss sss 9 cscscscsssssssssssssss 10 cscscscssssssssssssssss c???vcoil-vin common power supply s???vcoil-vin separated power supply ???no use due to led terminal over voltage protection vin leds 3 sw vin cin 1 f r1 24k ? cout 2.2 f 25ma coil power 2.3v to 20v vout fb l1 10 h iset gnd en pwm reset pwm input ic power 2.7v to 4.6v step down dc/dc 2,3cell battery 16/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 about the order of a power supply injection at the time of power supply separation even if the ic power supply is 0v, leak channel is blocked as pull down resistor for power off is placed inside the ic. the resistor intercepts leak channel from coil power supply. additionally, there is no order for standing up and down of coil and ic power supply. ? at the time of starting it doesn?t matter whether coil power or ic power becomes activated first. ? at the time of power supply off please turn off after make en terminal ?l?. if power supply voltage of coil power becomes low, coil current increases due to high boosting, which leads to over current limit. in order to avoid this state, before turning off a power supply it is necessary to su rely set en to l. input voltage 5v bd60a00nux the gnd noise become big by impedance of pcb boards, so t hat wake up characteristics might become unstable. to select input voltage to 5v(input voltage 4.61v ove r), we recommend under application to insert 4.7 ? between input voltage line and vin terminal sw vin cin 4.7 f riset 24k ? cout 2.2 f 25ma vin 2.7v to 5.5 v vout fb l1 10 h iset gnd en pwm reset pwm input 4.7 ? ic power en pwm vout coil power free 17/22 datasheet d a t a s h e e t bd60a00nux bd60a60nux ? 2012 rohm co., ltd. all rights reserved. www.rohm.com tsz22111 ? 15 ? 001 tsz02201-0g3g0c200320-1-2 27.sep.2012 rev.001 pcb layout in order to make the most of the performance of this ic, its pc b layout is very important. characteristics such as efficiency and ripple and the likes change greatly with pcb layout, which please note carefully connect input capacitor cin as close as possible between coil l1 and gnd. |
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