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  ts3 31 low power low offset voltage comparators 1/5 version: a07 sot - 25 general description t he ts 3 31 is single precision voltage comparators capable of single - supply or split - supply operation. the specifications as low as 2.0 mv make this device an excellent ground level with single - s upply operation. input offset - voltage selection for many applications in consumer automotive, and it is designed to permit a common mode range - to - industrial electronics. absolute maximum rating parameter symbol limit unit s upply voltage v cc +36 or 18 v differential input voltage v idr 36 v input common mode voltage range v icr - 0.3 to 36 v input current i in 50 ma output short circuit to ground i sc continuous output sink current i sink 20 ma operating temperature ra nge t opr - 40 ~ +85 o c junction temperature t j 150 o c storage temperature range t stg - 65 ~ +150 o c lead temperature 1.6mm(1/16 ) from case for 10sec. t lead 260 o c block diagram features output voltage compatible with dtl, ecl, ttl, mos and cmos logic levels low input bias current 25na low input offset current 0.5na low input offset voltage 2 mv( typ ) input common mode range to ground level differential input voltage range equal to power supply voltage very low supply current drain (0.4ma) - ind ependent of supply voltage wide single - supply range 2v~36v split - supply range 1v to 18v ordering information part no. package packing ts3 31cx5 rf sot - 25 3 kpcs / 7 ?ree pin definition : 1. input + 2. ground 3. input - 4. output 5. vcc
ts3 31 low power low offset voltage comparators 2/5 version: a07 electrical characteristics (v cc = 5v, ta=25 o c ; unless otherwise specified.) characteris tics symbol min typ max unit input offset voltage ( note 3) v io -- 2 5 mv input offset current , i in(+) - i in( - ) , v cm =0v i io -- -- 50 na input offset current ( note 4) , i in(+) - i in( - ) , v cm =0v i ib -- -- 250 na input common mode voltage range , vcc=30v v ic r - 0 -- v cc - 1.5 v voltage gain , r l 15k, v cc =15v, vo=1v~11v a vol 50 200 -- v/mv large signal response time vin=ttl logic swing. vref = 1.4v , v rl =5v. r l =5.1k -- -- 300 -- ns response time ( note 6) , v rl =5v. r l =5.1k t tlh -- 1.3 -- us output sink current , v in ( - )=1v, v in (+)=0v, vo 1.5v i sink 6.0 16 -- ma output saturation voltage , v in ( - )=1v, v in (+)=0v, i sink 4ma v ol -- 250 400 mv output leakage current , v in ( - )=0v, v in (+)=1v, vo=5v i ol -- 0.1 -- na supply current r l = , v cc =5v r l = , v cc =36v icc -- -- 0.4 1.0 1.0 2.5 ma note 1 . the max. output current may be as high as 20ma, independent of the magnitude of v cc , output short circuits to v cc can cause excessive heating and eventual destruction. note 2. this magnitude of input current will only occur if the input leads are driven more negative than g r ound or the negative supply voltage. this is due to the input pnp collector base junction becoming forward biased acting as an input clamp diode. there is also a lateral pnp parasitic tran sistor action on the ic chip. this phenomena can cause the output voltage of the comparators to go to the v cc voltage level (or ground if overdrive is large) during the time the input is driven negative. this will not destroy the device and normal output s tates will recover when the inputs become - 0.3v of ground or negative supply. note 3. at output switch point, v o =1.4vdc, r s =0 with v cc from 5vdc to 30vdc, and over the full input common - mode note 4. due to the pnp transistor inputs, bias current will flow out of the inputs, this current is essentially constant independent of the output state, therefore, no loading changes will exist on the input lines. note 5. input common mode of either input should not be permitted to go more than 0.3v negative of ground or minus supply. the upper limit of common mode range is v cc - 1.5v but either or both inputs can betaken to as high as 30volts without damage. note 6. response time is specified with a 100mv step and 5.0mv of overdrive. with larger magnitudes of overdriv e faster response times are obtainable. application information this comparator feature high gain, wide bandwidth characteristics. this gives the device oscillation tendencies if the outputs are capacitive coupled to the inputs via stray capacitance. thi s oscillation manifests itself during output transitions (v ol to v oh ). to alleviate this situation input resistors<10k should be used. the addition of positive feedback (<10 mv) is also recommended. it is good design practice to ground all unused pins. di fferential input voltages may be larger than supply voltage without damaging the comparator's inputs. voltages more negative than - 0.3v should not be used.
ts3 31 low power low offset voltage comparators 3/5 version: a07 application information (continues) figure 4. zero crossing detector (single supply) figure 6. time delay generator figure 7. free - running square - wave oscillator figure 8. comparator with hysteresis
ts3 31 low power low offset voltage comparators 4/5 version: a07 sot - 25 mechanical drawing marking diagram 31 = product code for ts3 31 cx5 y = year code m = month code ( a =jan, b =feb, c =mar, d =apl, e =may, f =jun, g =jul, h =aug, i =sep, j =oct, k =nov, l =dec) l = lot code sot - 25 dimension millimeters inches dim min max min max. a+a1 0.09 1.25 0.0354 0.0492 b 0.30 0.50 0.0118 0.0197 c 0.09 0.25 0.0035 0.0098 d 2.70 3.10 0.1063 0.1220 e 1.40 1.80 0.0551 0.0709 e 1.90 bsc 0.0748 bsc h 2.40 3.00 0.09449 0.1181 l 0.35 bsc 0.0138 bsc ? 1 0 10 0 10 s1 0.95 bsc 0.0374 bsc
ts3 31 low power low offset voltage comparators 5/5 version: a07 notice specifications of the produc ts displayed herein are subject to change without notice. tsc or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies. information contained herein is intended to provide a product description only. no license, expre ss or implied, to any intellectual property rights is granted by this document. except as provided in tsc? terms and conditions of sale for such products, tsc assumes no liability whatsoever, and disclaims any express or implied warranty, relating to sale and/or use of tsc products including liability or warranties relating to fitness for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right. the products shown herein are not designed for use in medical, life - saving, or life - sustaining applications. customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify tsc for any damages resulting from such improper use or sale.


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