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  3-pin microprocessor reset circuit fea tures n precision monitoring of 3 v, 3.3 v and 5 v power supply voltages n fully specified over the temperature range of -40 to + 125 o c n 140 ms minimum power-on reset pulse width: reset output for v6309 reset output for V6319 n 16 a supply current n garanteed reset /reset valid to v dd = 1 v n power supply transient immunity n no external components needed n 3-pin sot-23 package n fully compatible with max809/max810 and amd809/amd810 de scrip tion the v6309 and V6319 are mi cro pro ces sor su per vi sory cir - cuits used to mon i tor the power sup plies in p and dig i tal sys tems. they pro vide ex cel lent cir cuit re li abil ity and low cost by elim i nat ing ex ter nal com po nents and ad just ments when used with 5 v pow ered or 3 v pow ered cir cuits. these cir cuits per form a sin gle func tion: they as sert a re - set sig nal when ever the v dd sup ply volt age de clines be low a pre set thresh old, keep ing it as serted for at least 140 ms af ter v dd has risen above the re set thresh old. the only dif - fer ence be tween the two de vices is that the v6309 has an ac tive-low reset out put (which is guar an teed to be in the cor rect state for v dd down to 1 v), while the V6319 has an ac tive-high reset out put. the re set com para tor is de - signed to ig nore fast tran sients on v dd . re set thresh olds suit able for op er a tion with a va ri ety of sup ply volt ages are avail able. low sup ply cur rent makes the v6309/V6319 ideal for use in por ta ble equip ment. the v6309/V6319 come in a 3-pin sot-23 pack age ap pli ca tions n computers n controllers n intelligent instruments n critical p and c power monitoring n portable/battery-powered equipment 1 v6309/V6319 ? typi cal op er at ing con figu ra tion pin as sign ment fig. 2 fig. 1 em microelectronic-marin sa
ab so lute maxi mum rat ings pa rame ter sym bol con di tions terminal voltage to v ss v dd -0.3 to 6.0 v min. voltage at reset or reset v min -0.3 v max. voltage at reset or reset v max v cc + 0.3 v input current at v dd i min 20 ma output current at reset or reset i max 20 ma rate of rise at v dd t r 100 v s continuous power dissipation p max 320 mw at t a = +70 c for sot-23 (>70 c derate by 4 mw / c) operating temperature range t a -40 to +125 c storage temperature range t st -65 to +150 c ta ble 1 stresses above these listed max i mum rat ings may cause per ma nent dam age to the de vice. ex po sure be yond spec - i fied op er at ing con di tions may af fect de vice re li abil ity or cause mal func tion. han dling pro ce dures this de vice has built-in pro tec tion against high static volt - ages or elec tric fields; how ever, anti-static pre cau tions must be taken as for any other cmos com po nent. un less oth er wise spec i fied, proper op er a tion can only oc cur when all ter mi nal volt ages are kept within the sup ply volt - age range. 2 v6309/V6319 ? pa ram e ter sym bol test con di tions min. typ. max. units v dd range v dd t a = 0 to +70 c 1.0 5.5 v t a = -40 to +105 c 1.2 5.5 v t a = -40 to +125 c 1.6 5.5 v sup ply cur rent ver sions l, m i cc v dd < 5.5 v 26 60 a ver sions r,s,t v dd < 3.6 v 16 50 a re set thresh old 1) ver sion l v th t a = +25 c 4.56 4.63 4.70 v t a = -40 to +125 c 4.40 4.79 v ver sion m t a = +25c 4.31 4.38 4.45 v t a = -40 to +125 c 4.16 4.53 v ver sion t t a = +25c 3.04 3.08 3.11 v t a = -40 to +125c 2.92 3.17 v ver sion s t a = +25 c 2.89 2.93 2.96 v t a = -40 to +125 c 2.78 3.02 v ver sion r t a = +25 c 2.59 2.63 2.66 v t a = -40 to +125c 2.50 2.72 v re set thresh old temp. co ef fi cient -200 ppm/ c v dd to re set de lay 1) v dd = v th to (v th - 100 mv) 7 s re set ac tive time out pe riod t a = -40 to +125 c 140 330 590 ms re set out put volt age low for v6309 v ol v dd > 1.0 v, i sink = 50 a 0.3 v ver sions r,s,t v dd = v th min., i sink = 1.2 ma 0.3 v ver sions l, m v dd = v th min., i sink = 3.2 ma 0.4 v re set out put volt age high for v6309 ver sions r,s,t v oh v dd > v th max., i source = 500 a 0.8 v dd v ver sions l, m v dd > v th max., i source = 800 a v dd -1.5 v v re set out put volt age low for V6319 ver sions r,s,t v ol v dd = v th max., i sink = 1.2 ma 0.3 v ver sions l, m v dd = v th max., i sink = 3.2 ma 0.4 v i source = 150 a elec tri cal char ac ter is tics v dd = full range, t a = -40 to +125 c un less oth er wise spec i fied, typ i cal val ues are at t a = +25 c, v dd = 5 v for ver sions l and m, v dd = 3.3 v for ver sions t and s, v dd = 3 v for ver sion r. (pro duc tion test ing done at t a = +25 c and 85 c, over tem per a ture lim its guar an teed by de sign only ) 1) re set out put for v6309, re set out put for V6319 ta ble 2
3 v6309/V6319 ? sup ply cur rent vs. tem pera ture no load, v63xxr/s/t power-up re set time out vs. tem pera ture all ver sions sup ply cur rent vs. tem pera ture no load, v63xxl/m power-down re set delay vs. tem pera ture v63xxl/m nor mal ized re set threshold vs. tem per a ture all ver sions power- down re set de lay vs. tem pera ture v63xxr/s/t fig. 8 fig. 5 fig. 7 fig. 4 fig. 6 fig. 3
pin de scrip tion ta ble 3 ap pli ca tion in for ma tion neg a tive-going v dd tran sients in ad di tion to is su ing a re set to the mi cro pro ces sor dur ing power-up, power-down, and brown out con di tions, the v6309/V6319 are rel a tively im mune to short du ra tion neg - a tive-going v dd tran sients (glitches). fig. 8 shows typ i cal tran sient du ra tion vs. re set com para tor over drive, for which the v6309/V6319 do not gen er ate a re set pulse. the graph was gen er ated us ing a neg a tive-going pulse ap - plied to v dd , start ing 0.5 v above the ac tual re set thresh old and end ing be low it by the mag ni tude in di cated (re set com para tor over drive). the graph in di cates the max i mum pulse width a neg a tive-going v dd tran sient can have with - out caus ing a re set pulse. as the mag ni tude of the tran - sient in creases (goes far ther be low the re set thresh old), the max i mum al low able pulse width de creases. typically, for the v6309l and V6319m, a v dd tran sient that goes 100 mv be low the re set thresh old and lasts 20 s or less will not cause a re set pulse. a 0.1 f by pass ca pac i tor mounted as close as pos si ble to the v dd pin pro vides ad di - tional tran sient im mu nity. en suring a valid re set out put down to v dd = 0 v when v dd falls be low 1 v, the v6309 reset out put no lon - ger sinks cur rent, it be comes an open cir cuit. there fore, high-impedance cmos logic in puts con nected to reset can drift to un de ter mined volt ages. this pres ents no prob - lem in most ap pli ca tions, since most p and other cir cuitry is in op er a tive with v dd be low 1 v. how ever, in ap pli ca tions where reset must be valid down to 0 v, add ing a pull-down re sis tor to reset causes any stray leak age cur - rents to flow to ground, hold ing reset low (fig.10). r1?s value is not crit i cal; 100 k w is large enough not to load reset and small enough to pull reset to ground. a 100 k w pull-up re sis tor to v dd is also rec om mended for the V6319, if reset is re quired to re main valid for v dd <1 v. 4 v6309/V6319 ? pin name func tion 1 v ss ground 2 for v6309 reset out put re mains low while v dd reset is be low the re set thresh old and rises for 240 ms af ter v dd above the re set thresh old 2 for V6319 reset out put re mains high while v dd reset is be low the re set thresh old and rises for 240 ms af ter v dd above the re set 3 v dd sup ply volt age (+5v, +3.3v or +3.0v ) max.transient du ra tion with out causing a re set pulse ver sus re set com para tor overdrive fig. 9
5 v6309/V6319 ? reset valid for v dd = ground cir cuit fig. 10 in ter fac ing to ps with bidi rec tional reset i/o fig. 11 in ter facing to ps with bidirectional re set pins mi cro pro ces sors with bidirectional re set pins (such as the motorola 68hc11 se ries) can con nect to the v6309 re set out put. if, for ex am ple, the v6309 reset out put is as - serted high and the p wants to pull it low, in de ter mi nate logic lev els may re sult. to cor rect this, con nect a 4.7 k w re - sis tor be tween the v6309 reset out put and the p re set i/o (fig. 11). buffer the v6309 reset out put to other sys - tem com po nents. ben e fits of highly ac cu rate re set thresh old most p su per vi sor ics have re set thresh old volt ages be - tween 5% and 10% be low the value of nom i nal sup ply volt ages. this en sures a re set will not oc cur within 5% of the nom i nal sup ply, but will oc cur when the sup ply is 10% be low nom i nal. when us ing ics rated at only the nom i nal sup ply 5%, this leaves a zone of un cer tainty where the sup ply is be tween 5% and 10% low, and where the re set may or may not be as serted. the v6309l/t and V6319l/t use highly ac cu rate cir cuitry to en sure that re set is as serted close to the 5% limit, and long be fore the sup ply has de clined to 10% be low nom i - nal.
6 v6309/V6319 ? mark ing in for ma tion marking code type number el v6309l em v6309m et v6309t es v6309s er v6309r 1) fl V6319l fm V6319m ft V6319t fs V6319s fr V6319r ta ble 5 ver sion let ter defi ni tion out put stage thresh old volt age [v] 4.63 4.38 3.08 2.93 2.63 v6309, reset out put l m t s r V6319 1) , reset out put l m t s r ta ble 4 or der ing in for ma tion the v6309 is avail able with a reset out put, the V6319 with a reset out put. both type come in a 3-pin sot-23 pack age. or der ing form: type num ber when or der ing, please al ways spec ify the com plete part number pack age and or der ing in for ma tion 1) non-stock items for V6319 em mi cro elec tronic-marin sa can not as sume any re spon si bil ity for use of any cir cuitry de scribed other than en tirely em bod ied in an em mi cro elec tronic-marin sa prod uct. em mi cro elec tronic-marin sa re serves the right to change the cir cuitry and spec i fi ca tions with out no tice at any time. you are strongly urged t o en sure that the in for ma tion given has not been su per seded by a more up-to-date ver sion. e. & o.e. printed in swit zer land, th ? 2000 em mi cro elec tronic-marin sa, 10/00, vers. b/323 em mi cro elec tronic-marin sa, ch - 2074 marin, swit zer land, tel. (+41) 32 - 755 51 11, fax (+41 ) 32 - 755 54 03


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