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  product speci fication IXD1701 ps 034001 - 0515 preliminary 1 28 v input high speed voltage regulator features ? operating voltage range 2.0 v C 28 . 0 v ? output voltage range from 1. 8 v to 18 .0 v with 0. 1 v increments ? output voltage accuracy 2 % ? temperature stability 3 0 ppm/ 0 c ? low power consumption of 50 a at v ou t = 5.0 v ? output current up to 15 0 ma (200 ma limit) ? standby current less than 0.1 a typical ? power supply ripple rejection 5 0 db at 1 khz ? current limit and short circuit protection ? low esr ceramic capacitor compatible ? on/off switch , ? thermal shutdown ? oper ating ambient temperature - 40 + 85 0 c ? packages : sot - 25, sot - 89, s ot - 89 - 5 , and usp - 6c ? eu rohs compliant, pb free application s ? mobile phones ? car audio and navigation systems ? cameras, vcrs ? various portable equipment description the IXD1701 is positive vo ltage regulator with operation voltage up to 28v , manufactured by cmos process. the ic consists of a voltage reference, an error amplifier, a current limiter, a thermal protection, a phase compensation circuit, and a driver transistor. the output voltage i s selectable in 0.1 v increments within the range from 1.8 v to 18 v. high precision output voltage achieved by laser trimming technology. the IXD1701 is stable with low esr ceramic output capacitor (c l ). the over current protection circuit and the therma l shutdown are built - in. these two protection circuits operate when the output current reaches current limit level or the junction temperature reaches temperature limit. the chi p enable (ce) function allows set IXD1701 into standby mode, reducing current c o n sumption to less than 0.1 a typically. the IXD1701 is available in sot - 25, sot - 89, sot - 89 - 5, usp - 6c, sot - 223, and to - 252 packages . typical application circuit typical performance characteristic the IXD1701b w ith ce function load transient response (IXD1701b/d502) v in = 7.0 v, t r = t f = 5 s, cin = cl = 1 f, i out = 0 ma ? 30 ma, ta = 25 0 c , time: 1 m s/div
product specification IXD1701 ps03 40 01 - 0515 preliminary 2 absolute maximum rat ings parameter symbol ratings units input voltage v in C 0.3 ~ + 30 v output current i out 30 0 1) ma output voltage v out C 0.3 ~ v in + 0.3 or + 30 2) v ce input voltage (IXD1701b version only) v ce C 0.3 ~ + 30 v power dissipation 2) sot - 25 p d 250 mw 600 (pcb mounted) sot - 89 500 10 00 (pcb mounted) sot - 89 - 5 500 13 00 (pcb mounted) usp - 6c 120 1000 (pcb mounted) sot223 300 1500 (pcb mounted) to - 252 500 1800 (pcb mounted) operating temperature range t opr C 40 ~ + 85 0 c storage temperature range t stg C 55 ~ +125 0 c all voltages are in respect to v ss 1) i out pd / ( v in - v out ) 2) the lowest value between v in + 0.3 and 30 v 3) this is a reference data taken by using the test board. p lease refer to page 25 to 30 for details
product specification IXD1701 ps03 40 01 - 0515 preliminary 3 electrical operating characteristics ta = 25 0 c parameter symbol conditions min. typ. max. unit circuit input voltage v in 2.0 28 .0 v ? output voltage 1) v out(e) v ce = v in , i out = 10 ma e - 0 v ? max imum output current i out_max v ce = v in = v out (t) + 3 v v out (t) 3 v 150 ma ? v out (t) < 3 v 100 load regulation ?v out v ce = v in , 1 m a i out 50 ma 1.8 v v out (t) 5 v 50 90 mv ? 5.1 v v out (t) 12.0 v 50 175 12.1 v v out (t) 18.0 v 180 275 dropout voltage 2) v dif 1 v ce = v in , i out = 2 0 ma e - 1 4) m v ? v dif 2 v ce = v in , i out = 10 0 ma e - 2 4) supply current i ss 1.8 v v out (t) 5 v 11 50 105 a ? 5.1 v v out (t) 12.0 v 11 60 115 12.1 v v out (t) 18.0 v 11 65 125 standby current i stb v ce = 0 v 0.01 0.10 a ? line regulat ion v out (t) + 2 v v in 28 v, v ce = v in i out = 5 ma 0.05 0.10 %/v ? i out = 13 ma 0.15 0.30 output voltage temperature characteristics v ce = v in , i out = 3 0 ma - 40 0 c t opr 85 0 c 10 0 ppm/ 0 c ? power supply rejection ratio psrr v ce = v in , i out = 2 0 ma, f = 1 khz v in = (v out)t) + 2 ) v dc + 0.5 v p - p ac 5 0 db ? short circuit current i short v ce = v in , v in = v out)t) + 2 v 4 0 ma ? thermal shutdown detect temperat ure t tsd junction temperature 150 0 c thermal shutdown hystetresis t hys 25 0 c ce h level voltage 5) v ceh 1. 1 v in v ? ce l level voltage 5) v cel 0 0.3 5 v ? ce h level current 5) i ceh v ce = v in = 6.0 v - 0.1 0.1 a ? ce l level current 5) i cel v in = 6.0 v, v ce = v ss - 0.1 0.1 a ? note: unless otherwise stated, v in = v ce = v out ( t ) + 2 .0 v 1) v out ( t) is nominal output voltage and v out ( e) is effective output voltage, (i.e. the output voltage when " v out ( t ) + 1.0v" is provided at the v in pin , w hile maintaining a certain i out value). 2) v dif = {v in - v out } , where v in1 is the input voltage when v out = 0.98 v out(t) appears , while input voltage gradually decrease s 3) refer to the table voltage chart, output voltage 4) refer to the table voltage chart, dropo ut voltage 5) IXD1701 b version only
product specification IXD1701 ps03 40 01 - 0515 preliminary 4 electrical operating characteristics (continued) voltage chart ta = 25 0 c symbol e - 0 e - 1 e - 2 output voltage v out(t) output voltage , v dropout voltage , mv dropout voltage , mv i out = 20 ma i out = 100 ma v out vdif1 vd if2 (v) min. max. typ. max. typ. max. 1.8 1.764 1.836 550 710 2200 2700 1.9 1.862 1.938 550 710 2200 2700 2.0 1.960 2.040 450 600 1900 2600 2.1 2.058 2.142 450 600 1900 2600 2.2 2.156 2.244 390 520 1700 2200 2.3 2.254 2.346 390 520 1700 2200 2.4 2. 352 2.448 390 520 1700 2200 2.5 2.450 2.550 310 450 1500 1900 2.6 2.548 2.652 310 450 1500 1900 2.7 2.646 2.754 310 450 1500 1900 2.8 2.744 2.856 310 450 1500 1900 2.9 2.842 2.958 310 450 1500 1900 3.0 2.940 3.060 260 360 1300 1700 3.1 3.038 3.162 2 60 360 1300 1700 3.2 3.136 3.264 260 360 1300 1700 3.3 3.234 3.366 260 360 1300 1700 3.4 3.332 3.468 260 360 1300 1700 3.5 3.430 3.570 260 360 1300 1700 3.6 3.528 3.672 260 360 1300 1700 3.7 3.626 3.774 260 360 1300 1700 3.8 3.724 3.876 260 360 1300 1700 3.9 3.822 3.978 260 360 1300 1700 4.0 3.920 4.080 220 320 1100 1500 4.1 4.018 4.182 220 320 1100 1500 4.2 4.116 4.284 220 320 1100 1500 4.3 4.214 4.386 220 320 1100 1500 4.4 4.312 4.488 220 320 1100 1500 4.5 4.410 4.590 220 320 1100 1500 4.6 4.508 4.692 220 320 1100 1500 4.7 4.606 4.794 220 320 1100 1500 4.8 4.704 4.896 220 320 1100 1500 4.9 4.802 4.998 220 320 1100 1500 5.0 4.900 5.100 190 280 1000 1300 5.1 4.998 5.202 190 280 1000 1300 5.2 5.096 5.304 190 280 1000 1300 5.3 5.194 5.406 190 280 1000 1300 5.4 5.292 5.508 190 280 1000 1300 5.5 5.390 5.610 190 280 1000 1300 5.6 5.488 5.712 190 280 1000 1300 5.7 5.586 5.814 190 280 1000 1300 5.8 5.684 5.916 190 280 1000 1300 5.9 5.782 6.018 190 280 1000 1300 6.0 5.880 6.120 190 280 10 00 1300
product specification IXD1701 ps03 40 01 - 0515 preliminary 5 electrical operating characteristics (continued) voltage chart (continued) ta = 25 0 c symbol e - 0 e - 1 e - 2 output voltage v out(t) output voltage , v dropout voltage , mv dropout voltage , mv i out = 20 ma i out = 100 ma v out vdif1 vdif2 (v) min . max. typ. max. typ. max. 6.1 5.978 6.222 190 280 1000 1300 6.2 6.076 6.324 190 280 1000 1300 6.3 6.174 6.426 190 280 1000 1300 6.4 6.272 6.528 190 280 1000 1300 6.5 6.370 6.630 170 230 800 1150 6.6 6.468 6.732 170 230 800 1150 6.7 6.566 6.834 170 230 800 1150 6.8 6.664 6.936 170 230 800 1150 6.9 6.762 7.038 170 230 800 1150 7.0 6.860 7.140 170 230 800 1150 7.1 6.958 7.242 170 230 800 1150 7.2 7.056 7.344 170 230 800 1150 7.3 7.154 7.446 170 230 800 1150 7.4 7.252 7.548 170 230 800 1150 7.5 7.350 7.650 170 230 800 1150 7.6 7.448 7.752 170 230 800 1150 7.7 7.546 7.854 170 230 800 1150 7.8 7.644 7.956 170 230 800 1150 7.9 7.742 8.058 170 230 800 1150 8.0 7.840 8.160 170 230 800 1150 8.1 7.938 8.262 130 190 700 950 8.2 8.036 8.364 130 190 700 950 8.3 8.134 8.466 130 190 700 950 8.4 8.232 8.568 130 190 700 950 8.5 8.330 8.670 130 190 700 950 8.6 8.428 8.772 130 190 700 950 8.7 8.526 8.874 130 190 700 950 8.8 8.624 8.976 130 190 700 950 8.9 8.722 9.078 130 190 700 950 9.0 8.820 9.180 130 190 700 950 9.1 8.918 9.282 130 190 700 950 9.2 9.016 9.384 130 190 700 950 9.3 9.114 9.486 130 190 700 950 9.4 9.212 9.588 130 190 700 950 9.5 9.310 9.690 130 190 700 950 9.6 9.408 9.792 130 190 700 950 9.7 9.506 9.894 130 190 700 950 9.8 9.6 04 9.996 130 190 700 950 9.9 9.702 10.098 130 190 700 950 10.0 9.800 10.200 130 190 700 950
product specification IXD1701 ps03 40 01 - 0515 preliminary 6 electrical operating characteristics (continued) voltage chart (continued) ta = 25 0 c symbol e - 0 e - 1 e - 2 output voltage v out(t) output voltage, v dropout vol tage, mv dropout voltage, mv i out = 20 ma i out = 100 ma v out vdif1 vdif2 (v) min. max. typ. max. typ. max. 10.1 9.898 10.302 120 170 650 850 10.2 9.996 10.404 120 170 650 850 10.3 10.094 10.506 120 170 650 850 10.4 10.192 10.608 120 170 650 850 10.5 10.290 10.710 120 170 650 850 10.6 10.388 10.812 120 170 650 850 10.7 10.486 10.914 120 170 650 850 10.8 10.584 11.016 120 170 650 850 10.9 10.682 11.118 120 170 650 850 11.0 10.780 11.220 120 170 650 850 11.1 10.878 11.322 120 170 650 850 11.2 10.976 11.424 120 170 650 850 11.3 11.074 11.526 120 170 650 850 11.4 11.172 11.628 120 170 650 850 11.5 11.270 11.730 120 170 650 850 11.6 11.368 11.832 120 170 650 850 11.7 11.466 11.934 120 170 650 850 11.8 11.564 12.036 120 170 650 850 11.9 11. 662 12.138 120 170 650 850 12.0 11.760 12.240 120 170 650 850 12.1 11.858 12.342 120 170 650 850 12.2 11.956 12.444 120 170 650 850 12.3 12.054 12.546 120 170 650 850 12.4 12.152 12.648 120 170 650 850 12.5 12.250 12.750 120 170 650 850 12.6 12.348 12.852 120 170 650 850 12.7 12.446 12.954 120 170 650 850 12.8 12.544 13.056 120 170 650 850 12.9 12.642 13.158 120 170 650 850 13.0 12.740 13.260 120 170 650 850 13.1 12.838 13.362 120 170 650 850 13.2 12.936 13.464 120 170 650 850 13.3 13.034 13.5 66 120 170 650 850 13.4 13.132 13.668 120 170 650 850 13.5 13.230 13.770 120 170 650 850 13.6 13.328 13.872 120 170 650 850 13.7 13.426 13.974 120 170 650 850 13.8 13.524 14.076 120 170 650 850 13.9 13.622 14.178 120 170 650 850 14.0 13.720 14.280 1 20 170 650 850
product specification IXD1701 ps03 40 01 - 0515 preliminary 7 electrical operating characteristics (continued) voltage chart (continued) ta = 25 0 c symbol e - 0 e - 1 e - 2 output voltage v out(t) output voltage , v dropout voltage , mv dropout voltage , mv i out = 20 ma i out = 100 ma v out vdif1 vdif2 (v) min. max. typ. max. typ. max. 14.1 13.818 14.382 120 170 650 850 14.2 13.916 14.484 120 170 650 850 14.3 14.014 14.586 120 170 650 850 14.4 14.112 14.688 120 170 650 850 14.5 14.210 14.790 120 170 650 850 14.6 14.308 14.892 120 170 650 850 14.7 14.406 14.994 120 170 650 850 14.8 14.504 15.096 120 170 650 850 14.9 14.602 15.198 120 170 650 850 15.0 14.700 15.300 120 170 650 850 15.1 14.798 15.402 120 170 650 850 15.2 14.896 15.504 120 170 650 850 15.3 14.994 15.606 120 170 650 850 15.4 15.0 92 15.708 120 170 650 850 15.5 15.190 15.810 120 170 650 850 15.6 15.288 15.912 120 170 650 850 15.7 15.386 16.014 120 170 650 850 15.8 15.484 16.116 120 170 650 850 15.9 15.582 16.218 120 170 650 850 16.0 15.680 16.320 120 170 650 850 16.1 15.778 1 6.422 120 170 650 850 16.2 15.876 16.524 120 170 650 850 16.3 15.974 16.626 120 170 650 850 16.4 16.072 16.728 120 170 650 850 16.5 16.170 16.830 120 170 650 850 16.6 16.268 16.932 120 170 650 850 16.7 16.366 17.034 120 170 650 850 16.8 16.464 17.13 6 120 170 650 850 16.9 16.562 17.238 120 170 650 850 17.0 16.660 17.340 120 170 650 850 17.1 16.758 17.442 120 170 650 850 17.2 16.856 17.544 120 170 650 850 17.3 16.954 17.646 120 170 650 850 17.4 17.052 17.748 120 170 650 850 17.5 17.150 17.850 12 0 170 650 850 17.6 17.248 17.952 120 170 650 850 17.7 17.346 18.054 120 170 650 850 17.8 17.444 18.156 120 170 650 850 17.9 17.542 18.258 120 170 650 850 18.0 17.640 18.360 120 170 650 850
product specification IXD1701 ps03 40 01 - 0515 preliminary 8 pin configura tion sot - 25 (top view) sot - 89 (top view) sot - 89 - 5 (top view) usp - 6c (bottom view) sot - 223 (top view) to - 252 (top view) pin assignment pin number pin name functions sot - 25 sot - 89 sot - 89 - 5 usp - 6c sot - 223 to - 252 1 3 5 6 3 1 v in power input 5 1 1 1 1 3 v out output voltage 2 2 2 5 2 2 v ss ground 4 3 3 ce on/off control low C standby mode, high C active 1) 3 1 nc no connection 1) ce pin does not have internal pull - down resistor. ic state is undefined, if this pin is open. block diagram s ixd 1 701b IXD1701 d diodes inside the circuits are esd protection diodes and parasitic diodes. the dissipation pad for the usp - 6c package should be solder - plated in respect with mount ing pattern and metal mask to improve heat d issipation and. mounting strength . if the pad needs to be connected to other pins, it should be connected to the v ss (no. 5 ) pin.
product specification IXD1701 ps03 40 01 - 0515 preliminary 9 basic operation t he e rror a mplifier of the ixd 1701 series monitors output voltage divided by internal resistors r1 & r2 and compare s it with the internal r eference v oltage (see block diagram above) . the output signal from error amplifier drives gate of the p - channel mosfet, which is connected to the v out pin and operates as a series voltage regulator. the c urrent limit/s hort p rotect ion circuit s monitor leve l of the output current , and thermal shutdown circuit monitors mosfet junction temperature to prevent ic damage by excessive current. t he ce pin allows shutdown internal circuitry to minimize power consumption . current limiter, short - circuit protection the ixd 1701 series have a current limiter circuit & a fold back circuit, which aid the operations of the current limiter and circuit protection. when the load current reaches the current limit level, the fixed current limiter circuit activates and output volt age drops. because of this drop , the fold back circuit activates too , and output voltage drops further decreasing output current. when the output pin is shorted, a current of about 3 0 ma flows. thermal shutdown when the junction temperature of the built - in transistor reaches the temperature limit, the thermal shutdown circuit activates and turns transistor off. the ic resumes normal operation when the junction temperature falls below value determined by thermal shutdown hysteresis. ce pin t he ce pin allows shutdown internal circuitry to minimize power consumption . in shutdown mode, output at the v out pin is pulled down to the v ss level by resistors r1 and r2 connected in series . note that the ce input is a ctive high and has no p ull d own resistor. ic will be in undefined state, if ce pin is open. ce pin should be connected to either v in or ground. ic c urrent consumption may increase, if voltage applied to this pin is ~ 0.5 of v in . minimum operating voltage the input voltage should be above 2.0 v f or the stabl e ic operation. typical application circuit layout and use considerations 1. m ount external component as close to the ic as possible and use thick, short connecting traces to reduce the circuit impedance. 2. the ic may malfunction if absolute maximum rating s are exceeded. 3. if power source of this regulator is a high impedance device , an input capacitor c in 0. 1 f should be used to prevent oscillations . 4. the internal phase compensation guarantees the IXD1701 stable operations even without load capacitor c l . however, load capacitor cl = 0.1 C 1.0 f located as close to vout and vss pins may improve regulator s dynamic characteristics, reducing over/undershoot at heavy load. 5. in case of high output current, increasing the input capacitor value can stabilize operations. 6. please ensure that output current i out is less than p d / (v in - v out ) , where p d is a rated p ower dissipation value of the package shown at absolute maximum rating table to not exceed it . 7. if ic is operate s at high temperature with no load, the output voltage may increase beyond nominal range .
product specification IXD1701 ps03 40 01 - 0515 preliminary 10 test circuits circuit ? IXD1701b IXD1701d ci rcuit ? IXD1701b IXD1701d circuit ? IXD1701b IXD1701d unless otherwise stated, ta = 25 0 c, v ce = v in , c in = c l = 1 f (ceramic) the IXD1701 d has ce pin connected to v in internally. typical performance characteristics (1) output voltage vs. output current ixd 1701 x 1 82 x x v in = v ce = 4.8 v ixd 1701 x 1 82 x x v in = v ce = 4.8 v , ta = 25 0 c
product specification IXD1701 ps03 40 01 - 0515 preliminary 11 typical performance characteristics (continued) ( 1 ) output voltage vs output current (continue) topr = 25 0 c ixd 1701 x 502 x x v in = v ce = 8.0 v IXD1701x502 x x v in = v ce = 8.0 v , ta = 25 0 c IXD1701xc02 x x v in = v ce = 15.0 v IXD1701xc02 x x v in = v ce = 15.0 v , ta = 25 0 c IXD1701x j 02 x x v in = v ce = 21.0 v IXD1701xj02 x x v in = v ce = 21.0 v , ta = 25 0 c
product specification IXD1701 ps03 40 01 - 0515 preliminary 12 typical performance characteristics (continued) (2) output voltage vs. input voltage IXD1701x182 x x v in = v ce , ta = 25 0 c IXD1701x182 x x v in = v ce , ta = 25 0 c IXD1701x502 x x v in = v ce , ta = 25 0 c IXD1701x502 x x v in = v ce , ta = 25 0 c IXD1701xc02 x x v in = v ce , ta = 25 0 c IXD1701xc02 x x v in = v ce , ta = 25 0 c
product specification IXD1701 ps03 40 01 - 0515 preliminary 13 typical performance characteristics (continued) (2) output voltage vs. input voltage IXD1701xj02 x x v in = v ce , ta = 25 0 c IXD1701xj02 x x v in = v ce , ta = 25 0 c (3) dropout voltage vs. output current ixd170 1x182 x x v in = v ce IXD1701x 50 2 x x v in = v ce IXD1701xc02 x x v in = v ce IXD1701xj02 x x v in = v ce
product specification IXD1701 ps03 40 01 - 0515 preliminary 14 typical performance characteristics (continued) ( 4 ) supply current vs. input volt age IXD1701x182 x x IXD1701x502 x x IXD1701xc02 x x IXD1701xj02 x x (5) supply current vs. ambient temperature IXD1701x182 x x v in = v ce = 3.8 v IXD1701x502 x x v in = v ce = 7 .0 v
product specification IXD1701 ps03 40 01 - 0515 preliminary 15 typical performance characteristics (continued) (5) supply current vs. ambient temperature (continued) IXD1701xc02 x x v in = v ce = 14.0 v IXD1701xj502 x x v in = v ce = 20.0 v ( 6 ) out put voltage vs. ambient temperature (continued) IXD1701x182 x x v in = v ce IXD1701x502 x x v in = v ce IXD1701xc02 x x v in = v ce IXD1701xj02 x x v in = v ce
product specification IXD1701 ps03 40 01 - 0515 preliminary 16 typical performance char acteristics (continued) (7) input voltage transient response IXD1701x332 x x i out = 1 ma , ta = 25 0 c , t r = t f = 5 s, v in = 5.3 v ? 6.3 v IXD1701x332 x x i out = 30 ma , ta = 25 0 c , t r = t f = 5 s, v in = 5.3 v ? 6.3 v ixd 1701x502 x x i out = 1 ma , ta = 25 0 c , t r = t f = 5 s, v in = 7.0 v ? 8.0 v IXD1701x502 x x i out = 30 ma , ta = 25 0 c , t r = t f = 5 s, v in = 7.0 v ? 8.0 v IXD1701xc02 x x i out = 1 ma , ta = 25 0 c , t r = t f = 5 s, v in = 14.0 v ? 15.0 v IXD1701xc02 x x i out = 30 ma , ta = 25 0 c , t r = t f = 5 s, v in = 14.0 v ? 15.0 v
product specification IXD1701 ps03 40 01 - 0515 preliminary 17 typical performance characteristics (continued) (7) input voltage transient response (continued) IXD1701xj02 x x i out = 30 ma , ta = 25 0 c , t r = t f = 5 s, v in = 20.0 v ? 21.9 v IXD1701xj02 x x i out = 30 ma , ta = 25 0 c , t r = t f = 5 s, v in = 20.03 v ? 21.0 v ( 8 ) load transient response IXD1701x332 x x ta = 25 0 c , t r = t f = 5 s, v in = 5. 3 v i out = 1 ma , ? 30 ma IXD1701x502 x x ta = 25 0 c , t r = t f = 5 s, v in = 7.0 v i out = 1 ma , ? 30 ma IXD1701xj02 x x ta = 25 0 c , t r = t f = 5 s, v in = 14.0 v i out = 1 ma , ? 30 ma IXD1701xj02 x x ta = 25 0 c , t r = t f = 5 s, v in = 20.0 v i out = 1 ma , ? 30 ma
product specification IXD1701 ps03 40 01 - 0515 preliminary 18 typical performance characteristics (continued) ( 9 ) input voltage rising response time IXD1701x332 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 5.3 v i out = 1 ma , IXD1701x332 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 5.3 v i out = 30 ma IXD1701x502 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 7.0 v i out = 1 ma , IXD1701x502 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 7.0 v i out = 30 ma IXD1701xc0 2 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 14.0 v i out = 1 ma , IXD1701xc02 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 14.0v i out = 30 ma
product specification IXD1701 ps03 40 01 - 0515 preliminary 19 typical performance characteristics (continued) (9) input voltage rising response time (continued) IXD1701xj02 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 20.0 v i out = 1 ma , IXD1701xj02 x x ta = 25 0 c , t r = 5 s, v in = 0 ? 20.0 v i out = 30 ma ( 10 ) ce rising response time IXD1701x 33 2 x x ta = 25 0 c , t r = 5 s, v in = 5.3 v, v ce = 0 ? v in , i out = 1 ma , IXD1701x 33 2 x x ta = 25 0 c , t r = 5 s, v in = 5.3 v, v ce = 0 ? v in , i out = 30 ma IXD1701x502 x x ta = 25 0 c , t r = 5 s, v in = 7.0 v, v ce = 0 ? v in , i out = 1 ma , IXD1701x502 x x ta = 25 0 c , t r = 5 s, v in = 7.0 v, v ce = 0 ? v in , i out = 30 ma
product specification IXD1701 ps03 40 01 - 0515 preliminary 20 typical performance characteristics (continued) (10) ce rising response time (continued) IXD1701xc02 x x ta = 25 0 c , t r = 5 s, v in = 14.0 v, v ce = 0 ? v in , i out = 1 ma , IXD1701xc02 x x ta = 25 0 c , t r = 5 s, v in = 14.0 v, v ce = 0 ? v in , i out = 30 ma IXD1701xj02 x x ta = 25 0 c , t r = 5 s, v in = 20.0 v, v ce = 0 ? v in , i out = 1 ma , IXD1701xj02 x x ta = 25 0 c , t r = 5 s, v in = 20.0 v, v ce = 0 ? v in , i out = 30 ma (11) power supply ripple rejection IXD1701x332 x x ta = 25 0 c , v in = v ce = 5.3 v+ 0.5 vp - p ac , i out = 1 ma , IXD1701x332 x x ta = 25 0 c , v in = v ce = 5.3 v+ 0.5 vp - p ac , i out = 30 ma ,
product specification IXD1701 ps03 40 01 - 0515 preliminary 21 typical performance characteristics (continued) (11) power supply ripple rejection (continued) IXD1701x502 x x ta = 25 0 c , v in = v ce = 7.0 v+ 0.5 vp - p ac , i out = 1 ma , IXD1701x502 x x ta = 2 5 0 c , v in = v ce = 7.0 v+ 0.5 vp - p ac , i out = 30 ma , IXD1701xc02 x x ta = 25 0 c , v in = v ce = 14.0 v+ 0.5 vp - p ac , i out = 1 ma , IXD1701xc02 x x ta = 25 0 c , v in = v ce = 14.0 v+ 0.5 vp - p ac , i out = 30 ma , IXD1701xj02 x x ta = 25 0 c , v in = v ce = 20.0 v+ 0.5 vp - p ac , i out = 1 ma , IXD1701xj02 x x ta = 25 0 c , v in = v ce = 20.0 v+ 0.5 vp - p ac , i out = 30 ma ,
product specification IXD1701 ps03 40 01 - 0515 preliminary 22 ordering information ixd 1 701b ? ? ? ? ? - ? ce function IXD1701d ? ? ? ? ? - ? no c e function (3 - pin regulator) designator description symbol description ? ? output voltage 18 C 99 for voltages from 1.8 v to 9.9 v, e.g. 2.5 v - ? = 2, ? = 5; 5.0 v - ? = 5, ? = 0 a0 C j0 for voltages from 10.0 v to 18.0 v, e.g. 11.6 v - ? = b, ? = 6; 1 8.0 v - ? = j, ? = 0 ? ) output voltage accuracy 2 accuracy: 2 % ? ? - ? (*) packages 1) (order limit) mr sot - 25 (3000/reel) mr - g sot - 25 (3000/reel) pr sot - 89, sot - 89 - 5 ( 1 000/reel) p r - g sot - 89, sot - 89 - 5 ( 1 000/reel) er usp - 6c ( 3 000/reel) e r - g u sp - 6c ( 3 000/reel) fr sot - 223 ( 1 000/reel) fr - g sot - 223 ( 1 000/reel) jr to - 252 (2500/reel) jr - g to - 252 (2500/reel) note: the - g suffix denotes halogen and antimony free as well as being fully rohs compliant. 1) IXD1701b version is available in sot - 25, sot - 89 - 5, and usp - 6c packages only; IXD1701 d version is available in sot - 89, sot - 223, and to - 252 packages only.
product specification IXD1701 ps03 40 01 - 0515 preliminary 23 package drawing and dimensions units: mm sot - 25 s o t - 89 sot - 8 9 - 5 sot - 223
product specification IXD1701 ps03 40 01 - 0515 preliminary 24 package drawing and dimensions (continued) units: mm to - 252 usp - 6c usp - 6c reference pattern layout usp - 6c r eference metal mask design
product specification IXD1701 ps03 40 01 - 0515 preliminary 25 package power dissipation sot - 25 powe r dissipation the power dissipation varies with the mount board conditions. please use this data as a reference only . 1. measurement condition s: condition: mount on a board ambient: natural convection soldering: lead (pb) free board: dimensions 40 40 mm (1600 mm 2 in one side) copper (cu) traces occupy 50% of the board area on top and bottom layers package heat sink tied to the copper traces . (board of sot - 26 is used) material: glass epoxy (fr - 4) thickness: 1.6 mm through - hole: 4 x 0.8 diameter 2. power dissipation vs. ambient temperature board mount (tjmax = 125 0 c ) ambient temperature , 0 c power dissipation pd , mw thermal resistance , 0 c/ w 25 600 166.67 85 240
product specification IXD1701 ps03 40 01 - 0515 preliminary 26 package power dissipation (continued) sot - 89 power diss ipation the power dissipation varies with the mount board conditions. please use this data as a reference only . 1. measurement condition s: condition: mount on a board ambient: natural convection soldering: lead (pb) free board: dimensions 4040 mm (1600 mm 2 in one side) copper (cu) traces occupy 50% of the board area on top and bottom layers package heat sink tied to the copper traces . material: glass epoxy (fr - 4) thickness: 1.6 mm through - hole: 5 x 0.8 diameter 2. power dissipation vs. ambient temperature board mount (tjmax = 125 0 c ) ambient temperature , 0 c power dissipation pd , mw thermal resistance , 0 c/ w 25 10 00 1 00.00 85 4 0 0
product specification IXD1701 ps03 40 01 - 0515 preliminary 27 package power dissipation (continued) sot - 89 - 5 power dissipation the power dissipation varies with the mo unt board conditions. please use this data as a reference only . 1. measurement condition s: condition: mount on a board ambient: natural convection soldering: lead (pb) free board: dimensions 4040 mm (1600 mm 2 in one side) copper (cu) traces occupy 50% of the board area on top and bottom layers package heat sink tied to the copper traces . material: glass epoxy (fr - 4) thickness: 1.6 mm through - hole: 5 x 0.8 diameter 2. power dissipation vs. ambient temperature board mount (tjmax = 125 0 c ) ambie nt temperature , 0 c power dissipation pd , mw thermal resistance , 0 c/ w 25 13 00 76.92 85 50 0
product specification IXD1701 ps03 40 01 - 0515 preliminary 28 package power dissipation (continued) usp - 6c power dissipation the power dissipation varies with the mount board conditions. please use this data as a refer ence only . 1. measurement condition s: condition: mount on a board ambient: natural convection soldering: lead (pb) free board: dimensions 4040 mm (1600 mm 2 in one side) copper (cu) traces occupy 50% of the board area on top and bottom layers packag e heat sink teed to copper traces material: glass epoxy (fr - 4) thickness: 1.6 mm through - hole: 4 x 0.8 diameter 2. power dissipation vs. ambient temperature board mount (tjmax = 125 0 c ) ambient temperature , 0 c power dissipation pd , mw thermal resista nce , 0 c/ w 25 100 0 1 00.00 85 40 0
product specification IXD1701 ps03 40 01 - 0515 preliminary 29 package power dissipation (continued) sot - 223 power dissipation the power dissipation varies with the mount board conditions. please use this data as a reference only . 1. measurement condition s: condition: mount on a board ambient: natural convection soldering: lead (pb) free board: dimensions 4040 mm (1600 mm 2 in one side) copper (cu) traces occupy 50% of the board area on top and bottom layers package heat sink tied to the copper traces . material: glass epoxy (fr - 4) thickness: 1.6 mm through - hole: 4 x 0.8 diameter 2. power dissipation vs. ambient temperature board mount (tjmax = 125 0 c ) ambient temperature , 0 c power dissipation pd , mw thermal resistance , 0 c/ w 25 1 5 00 66.67 85 6 0 0
product specification IXD1701 ps03 40 01 - 0515 preliminary 30 package po wer dissipation (continued) to - 252 power dissipation the power dissipation varies with the mount board conditions. please use this data as a reference only . 1. measurement condition s: condition: mount on a board ambient: natural convection soldering: lead (pb) free board: dimensions 4040 mm (1600 mm 2 in one side) copper (cu) traces occupy 50% of the board area on top and bottom layers package heat sink tied to the copper traces . material: glass epoxy (fr - 4) thickness: 1.6 mm through - hole: 4 x 0 .8 diameter 2. power dissipation vs. ambient temperature board mount (tjmax = 125 0 c ) ambient temperature , 0 c power dissipation pd , mw thermal resistance , 0 c/ w 25 1 8 00 55.56 85 72 0
product specification IXD1701 ps03 40 01 - 0515 preliminary 31 marking sot - 25 , sot - 89, sot89 - 5, usp - 4 sot - 25 sot - 89 - 5 sot - 89 usp - 6c sot - 223 to - 252 ? - represents product series mark product series 8 ixd 1701 xx x xx x ? - represents type of regulator and output voltage range mark type output voltage, v product series 0 b 1.8 C 3.0 IXD1701bxxxx 1 3.1 C 6.0 2 6.1 C 9.0 3 9.1 - 12.0 a 12.1 C 15.0 b 15.1 C 18.0 4 d 1.8 C 3.0 IXD1701dxxxx 5 3.1 C 6.0 6 6.1 C 9.0 7 9.1 - 12.0 c 12.1 C 15.0 d 15.1 C 18.0
product specification IXD1701 ps03 40 01 - 0515 preliminary 32 marking (c ontinued) ? - represents output voltage mark output voltage , v 0 - 3.1 6.1 9.1 12.1 15.1 1 - 3.2 6.2 9.2 12.2 15.2 2 - 3.3 6.3 9.3 12.3 15.3 3 - 3.4 6.4 9.4 12.4 15.4 4 - 3.5 6.5 9.5 12.5 15.5 5 - 3.6 6.6 9.6 12.6 15.6 6 - 3.7 6.7 9.7 12.7 15.7 7 - 3.8 6.8 9.8 12.8 15.8 8 - 3.9 6.9 9.9 12.9 15.9 9 - 4.0 7.0 10.0 13.0 16.0 a - 4.1 7.1 10.1 13.1 16.1 b - 4.2 7.2 10.2 13.2 16.2 c - 4.3 7.3 10.3 13.3 16.3 d - 4.4 7.4 10.4 13.4 16.4 e - 4.5 7.5 10.5 13.5 16.5 f - 4.6 7.6 10.6 13.6 16.6 h - 4.7 7 .7 10.7 13.7 16.7 k 1.8 4.8 7.8 10.8 13.8 16.8 l 1.9 4.9 7.9 10.9 13.9 16.9 m 2.0 5.0 8.0 11.0 14.0 17.0 n 2.1 5.1 8.1 11.1 14.1 17.1 p 2.2 5.2 8.2 11.2 14.2 17.2 r 2.3 5.3 8.3 11.3 14.3 17.3 s 2.4 5.4 8.4 11.4 14.4 17.4 t 2.5 5.5 8.5 11.5 14.5 17. 5 u 2.6 5.6 8.6 11.6 14.6 17.6 v 2.7 5.7 8.7 11.7 14.7 17.7 x 2.8 5.8 8.8 11.8 14.8 17.8 y 2.9 5.9 8.9 11.9 14.9 17.9 z 3.0 6.0 9.0 12.0 15.0 18.0 ? ? - represents production lot number 01 09, 0a 0z, 11 9z, a1 a9, aa az, b1 zz in order , (g, i, j, o, q, w excluded)
product specification IXD1701 ps03 40 01 - 0515 preliminary 33 customer support to share comments, get your technical questions answered, or report issues you may be experiencing with our products, please visit zilogs technical support page at http://support.zilog.com . to learn more about this product, find add itional documentation, or to discover other fac - ets about zilog product offerings, please visit the zilog knowledge base at http:// zilog.com/kb or consider participating in the zilog forum at http://zilog.com/forum . this publication is subject to replacem ent by a later edition. to determine whether a later edition exists, please visit the zilog website at http://www.zilog.com . warning: do not use this product in life support systems. life support policy zilogs products are not authorized for use as critical components in life support devices or systems without the express prior written approval of the president and general counsel of zilog corporation. as used herein life support devices or systems are devices w hich (a) are intended for surgical implant into the body, or (b) support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided in the labeling can be reasonably expected to result in a significant injury to the user. a critical component is any component in a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system or to affect its safety or effectiveness. document di sclaimer ?2015 zilog, inc. all rights reserved. information in this publication concerning the devices, applications, or technology described is intended to suggest possible uses and may be superseded. zilog, inc. does not assume liability for or provide a representation of accuracy of the information, devices, or technology described in this document. zilog also does not assume liability for intellectual property infringement related in any manner to use of information, devices, or technology described her ein or otherwise. the information contained within this document has been verified according to the general principles of electrical and mechanical engineering.


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