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  slvs022k ? januar y 1989 ? revised may 2005 1 post office box 655303 ? dallas, texas 75265  initial accuracy ? 4 mv for lt1004-1.2 ? 20 mv for lt1004-2.5  micropower operation  operates up to 20 ma  very low reference impedance  applications: ? portable meter reference ? portable test instruments ? battery-operated systems ? current-loop instrumentation description/ordering information the lt1004 micropower voltage reference is a two-terminal band-gap reference diode designed to provide high accuracy and excellent temperature characteristics at very low operating currents. optimizing the key parameters in the design, processing, and testing of the device results in specifications previously attainable only with selected units. the lt1004 is a pin-for-pin replacement for the lm285 and lm385 series of references, with improved specifications. it is an excellent device for use in systems in which accuracy previously was attained at the expense of power consumption and trimming. the lt1004c is characterized for operation from 0 c to 70 c. the l t1004i is characterized for operation from ?40 c to 85 c. copyright ? 2005, texas instruments incorporated please be aware that an important notice concerning avail ability, standard warranty, and use in critical applications of texas instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. lp package (top view) 1 2 3 4 8 7 6 5 nc nc nc anode cathode nc cathode nc d or pw package (top view) anode cathode nc nc ? no internal connection terminals 6 and 8 are internally connected. nc ? no internal connection
slvs022k ? january 1989 ? revised may 2005 2 post office box 655303 ? dallas, texas 75265 description/ordering information (continued) ordering information t a v z typ package ? orderable part number top-side marking soic (d) tube of 75 lt1004cd-1-2 4c-12 soic (d) reel of 2500 lt1004cdr-1-2 4c-12 ammo of 2000, formed lead lt1004clpm-1-2 1.2 v to-226 / to-92 (lp) reel of 2000, formed lead lt1004clpr-1-2 1004c12 bulk of 1000, straight lead lt1004clp-1-2 tssop (pw) tube of 150 lt1004cpw-1-2 4c-12 0 c to 70 c tssop (pw) reel of 2000 lt1004cpwr-1-2 4c-12 0 c to 70 c soic (d) tube of 75 lt1004cd-2-5 4c-25 soic (d) reel of 2500 lt1004cdr-2-5 4c-25 ammo of 2000, formed lead lt1004clpm-2-5 2.5 v to-226 / to-92 (lp) reel of 2000, formed lead lt1004clpr-2-5 1004c25 bulk of 1000, straight lead lt1004clp-2-5 tssop (pw) tube of 150 lt1004cpw-2-5 4c-25 tssop (pw) reel of 2000 lt1004cpwr-2-5 4c-25 soic (d) tube of 75 lt1004id-1-2 4i-12 soic (d) reel of 2500 lt1004idr-1-2 4i-12 ammo of 2000, formed lead lt1004ilpm-1-2 1.2 v to-226 / to-92 (lp) reel of 2000, formed lead lt1004ilpr-1-2 1004i12 ?40 c to 85 c bulk of 1000, straight lead lt1004ilp-1-2 tssop (pw) tube of 150 lt1004ipw-1-2 4i-12 tssop (pw) reel of 2000 lt1004ipwr-1-2 4i-12 soic (d) tube of 75 lt1004id-2-5 4i-25 2.5 v soic (d) reel of 2500 lt1004idr-2-5 4i-25 2.5 v tssop (pw) tube of 150 lt1004ipw-2-5 4i-25 tssop (pw) reel of 2000 lt1004ipwr-2-5 4i-25 ? package drawings, standard packing quantities, thermal data, symbolization, and pcb design guidelines are available at www.ti.com/sc/package. symbol anode (a) cathode (k)
slvs022k ? januar y 1989 ? revised may 2005 3 post office box 655303 ? dallas, texas 75265 schematic 7.5 k ? q3 q2 q1 q5 q6 q11 q12 q10 q9 q13 q8 q7 500 k ? 500 ? 60 k ? 600 k ? 200 k ? 50 k ? 300 k ? 20 pf 20 pf anode cathode anode q13 300 k ? 50 k ? 200 k ? cathode q12 q11 q10 q9 q8 q7 600 k ? 20 pf 60 k ? 500 ? q6 q5 500 k ? 20 pf q1 q2 7.5 k ? q3 500 k ? 500 k ? lt1004-2.5 lt1004-1.2 q4 q4 note a: all component values shown are nominal.
slvs022k ? january 1989 ? revised may 2005 4 post office box 655303 ? dallas, texas 75265 absolute maximum ratings over operating free-air temperature range (unless otherwise noted) ? reverse current, i r 30 ma . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . forward current, i f 10 ma . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . package thermal impedance, ja (see notes 1 and 2): d package 97 c/w . . . . . . . . . . . . . . . . . . . . . . . . . . . . lp package 140 c/w . . . . . . . . . . . . . . . . . . . . . . . . . . pw package 149 c/w . . . . . . . . . . . . . . . . . . . . . . . . . operating virtual junction temperature, t j 150 c . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . lead temperature 1,6 mm (1/16 inch) from case for 10 seconds 260 c . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . storage temperature range, t stg ?65 c to 150 c . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ? stresses beyond those listed under ?absolute maximum ratings? may cause permanent damage to the device. these are stress ratings only, a nd functional operation of the device at these or any other conditions beyond those indicated under ?recommended operating conditi ons? is not implied. exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. notes: 1. maximum power dissipation is a function of t j (max), ja , and t a . the maximum allowable power dissipation at any allowable ambient temperature is p d = (t j (max) ? t a )/ ja . operating at the absolute maximum t j of 150 c can affect reliability. 2. the package thermal impedance is calculated in accordance with jesd 51-7. recommended operating conditions min max unit t a operating free-air temperature lt1004c 0 70 c t a operating free-air temperature lt1004i ?40 85 c electrical characteristics at specified free-air temperature parameter test t a ? lt1004-1.2 lt1004-2.5 unit parameter test conditions t a ? min typ max min typ max unit 25 c 1.231 1.235 1.239 2.48 2.5 2.52 v z reference voltage i z = 100 a full lt1004c 1.225 1.245 2.47 2.53 v v z reference voltage i z = 100 a full range lt1004i 1.225 1.245 2.47 2.53 v  v average temperature coefficient i z = 10 a 25 c 20 ppm/ c  v z temperature coefficient of reference voltage i z = 20 a 25 c 20 ppm/ c change in i z = i z (min) to 1 ma 25 c 1 1 ? v z change in reference voltage i z = i z (min) to 1 ma full range 1.5 1.5 mv ? v z reference voltage with current i z = 1 ma to 20 ma 25 c 10 10 mv with current i z = 1 ma to 20 ma full range 20 20 ? v z / ? t long-term change in reference voltage i z = 100 a 25 c 20 20 ppm/khr i z (min) minimum reference current full range 8 10 12 20 a z z reference impedance i z = 100 a 25 c 0.2 0.6 0.2 0.6 ? a full range 1.5 1.5 ? v n broadband noise voltage i z = 100 a, f = 10 hz to 10 khz 25 c 60 120 v ? full range is 0 c to 70 c for the lt1004c and ?40 c to 85 c for the lt1004i. the average temperature coef ficient of reference voltage is defined as the total change in reference voltage divided by the specified temperature range.
slvs022k ? januar y 1989 ? revised may 2005 5 post office box 655303 ? dallas, texas 75265 typical characteristics table of graphs graph title figure lt1004x-1.2 reverse current vs reverse voltage 1 reference-voltage change vs reverse current 2 forward voltage vs forward current 3 reference voltage vs free-air temperature 4 reference impedance vs reference current 5 noise voltage vs frequency 6 filtered output noise voltage vs cutoff frequency 7 lt1004x-2.5 transient response 8 reverse current vs reverse voltage 9 forward voltage vs forward current 10 reference voltage vs free-air temperature 11 reference impedance vs reference current 12 noise voltage vs frequency 13 filtered output noise voltage vs cutoff frequency 14 transient response 15
slvs022k ? january 1989 ? revised may 2005 6 post office box 655303 ? dallas, texas 75265 typical characteristics ? figure 1 0 0.2 0.4 0.6 0.8 1 1.2 1.4 ? reverse current ? v r ? reverse voltage ? v 0.1 1 10 100 lt1004x-1.2 reverse current vs reverse voltage i r a ??????? ??????? t a = ?55 c to 125 c figure 2 10 1 0.1 0.01 ? 4 0 4 8 12 16 i r ? reverse current ? ma ? reference voltage change ? mv lt1004x-1.2 reference-voltage change vs reverse current 100 ? v z ?????? ?????? c to 125 c figure 3 0.01 0.1 1 10 100 0.8 1.2 0.4 0 i f ? forward current ? ma ? forward voltage ? v lt1004x-1.2 forward voltage vs forward current v f ???? c 1 0.6 0.2 figure 4 125 105 85 65 45 25 5 ?15 ?35 ?55 1.225 1.23 1.235 1.24 1.245 t a ? free-air temperature ? c ? reference voltage ? v lt1004x-1.2 reference voltage vs free-air temperature v z ????? ????? a ? data at high and low temperatures are applicable only within the rated operating free-air temperature ranges of the various dev ices.
slvs022k ? januar y 1989 ? revised may 2005 7 post office box 655303 ? dallas, texas 75265 typical characteristics ? figure 5 lt1004x-1.2 reference impedance vs reference current ? reference impedance ? i z ? reference current ? ma ??????? ??????? c to 125 c 100 10 1 0.1 100 10 1 0.1 0.01 ? z z figure 6 lt1004x-1.2 noise voltage vs frequency ? noise voltage ? f ? frequency ? hz 700 600 500 400 300 200 100 0 10 100 1 k 10 k 100 k v n nv/ hz ???? ???? a ???? c figure 7 filtered output noise voltage ? cutoff frequency ? khz 100 10 1 0.1 70 60 50 40 30 20 10 0 tl1004x-1.2 filtered output noise voltage vs cutoff frequency v c r 100 a ????? ????? ????? a ????? ????? c figure 8 ???? s ??? ? v o v i 2 ? data at high and low temperatures are applicable only within the rated operating free-air temperature ranges of the various dev ices.
slvs022k ? january 1989 ? revised may 2005 8 post office box 655303 ? dallas, texas 75265 typical characteristics ? figure 9 v r ? reverse voltage ? v ?????? c to 125 c 100 10 1 0.1 3 2.5 2 1.5 1 0.5 0 lt1004x-2.5 reverse current vs reverse voltage ? reverse current ? i r a figure 10 1.2 0.8 0.4 100 10 1 0.1 0.01 0 ???? ???? c i f ? forward current ? ma lt1004x-2.5 forward voltage vs forward current ? forward voltage ? v v f 1 0.6 0.2 2.515 2.51 2.505 2.5 2.495 2.48 2.485 125 105 85 65 45 25 5 ?15 ?35 2.49 t a ? free-air temperature ? c ?55 lt1004x-2.5 reference voltage vs free-air temperature ? reference voltage ? v v z 2.52 2.475 ????? ????? a figure 11 ? data at high and low temperatures are applicable only within the rated operating free-air temperature ranges of the various dev ices.
slvs022k ? januar y 1989 ? revised may 2005 9 post office box 655303 ? dallas, texas 75265 typical characteristics ? figure 12 100 10 1 i z ? reference current ? ma 1000 0.1 100 10 1 0.1 0.01 ? reference impedance ? ? lt1004x-2.5 reference impedance vs reference current ?????? ?????? ?????? c to 125 c z z figure 13 f ? frequency ? hz 1400 1200 1000 800 600 200 0 10 100 1 k 10 k 100 k 400 ? noise voltage ? v n nv/ hz ???? ???? a ???? c lt1004x-2.5 noise voltage vs frequency figure 14 cutoff frequency ? khz 100 10 1 0.1 120 100 80 60 40 20 0 tl1004x-2.5 filtered output noise voltage vs cutoff frequency filtered output noise voltage ? v c r 100 a ????? ????? ???? a ???? ???? c figure 15 t ? time ? s input and output voltages ? v 100 500 output input lt1004x-2.5 transient response 24 k ? v o v i 0 4 3 2 1 0 5 0 ? data at high and low temperatures are applicable only within the rated operating free-air temperature ranges of the various dev ices.
slvs022k ? january 1989 ? revised may 2005 10 post office box 655303 ? dallas, texas 75265 application information + lm301a 24 v ? 100 pf output ?5 v 16.9 k ? ? 1.05 k ? ? 0.05 f 2n3904 56 k ? ?5 v 10 k ? ttl input 12 k ? 24 v 22 k ? lt1004-1.2 21 v 600 s rc ? 1% metal-film resistors figure 16. v i(pp) generator for eproms (no trim required) brown red green 6250 ? 302 k ? 15 v 10 k ? 0.1% 2.7 k ? 5% lt1004-1.2 2765 ? 0.1% 10 k ? 0.1% 10 k ? 0.1% 0.1% 168.3 ? 0?10 v 0 c?100 c rt network ysi 44201 network detail ysi 44201 + 1/2 tle2022 ? + 1/2 tle2022 ? figure 17. 0 c-to-100 c linear-output thermometer
slvs022k ? januar y 1989 ? revised may 2005 11 post office box 655303 ? dallas, texas 75265 application information v i = 6.5 v to 15 v v+ r v? lm334 5.6 k ? 3 7 8 6 2 4 + ? tlc271 v o = 5 v 150 pf 3.01 m ? 1% 1% 1 m ? lt1004-1.2 figure 18. micropower 5-v reference figure 19. low-noise reference output 50 f 22 ? v i 5 v + lt1004-1.2 100 a figure 20. micropower reference from 9-v battery 9 v 510 k ? 1.235 v lt1004-1.2 r1 5 k ? at 25 c ? 1800 ? 1684 ? 187 ? lt1004-1.2 3 v lithium + ? 100 k ? ? ? + thermocouple type r1 j k t s 232 k ? 298 k ? 301 k ? 2.1 m ? ? quiescent current ? 15 a ? yellow springs inst. co., part #44007 note a: this application compensates within 1 c from 0 c to 60 c. figure 21. micropower cold-junction compensation for thermocouples
slvs022k ? january 1989 ? revised may 2005 12 post office box 655303 ? dallas, texas 75265 application information figure 22. 2.5-v reference 5 v 50 k ? 2.5 v lt1004-2.5 figure 23. high-stability 5-v regulator + v i 8 v 10 f in out lt1084 adj 5 v + 10 f 301 ? 1% 100 ? 1% lt1004-2.5 figure 24. ground-referenced current source 15 v 2 k ? ? lt1004-1.2 tle2027 ? + r1 (see note a) ?5 v i o (see note a) ? may be increased for small output currents note a: r1 2 v i o + 10 a , i o = 1.235 v r1 figure 25. amplifier with constant gain over temperature v cc+ 5 v output 2n3904 60 k ? v cc? ?5 v 250 k ? 250 k ? input lt1004-1.2 200 k ? figure 26. 1.2-v reference from 1.5-v battery 1.5 v (see note a) 3 k ? 1.235 v lt1004-1.2 note a: output regulates down to 1.285 v for i o = 0. figure 27. terminal current source with low temperature coefficient v+ r 6.8 k ? r 5 k ? lt1004-1.2 lm334 i o 1.3 v r
slvs022k ? januar y 1989 ? revised may 2005 13 post office box 655303 ? dallas, texas 75265 application information 1 m ? battery output 12 v lo = battery low r1 ? 1% 133 k ? 1% lt1004-1.2 + ? tlc271 ? r1 sets trip point, 60.4 k ? per cell for 1.8 v per cell. figure 28. lead-acid low-battery-voltage detector v cc ? 1 v 0.015 lt1084 adj v i v o v o v i 10 f 10 f 120 ? lt1004-1.2 2 k ? v cc? + + r1 r1 figure 29. variable-voltage supply
packaging information orderable device status (1) package type package drawing pins package qty eco plan (2) lead/ball finish msl peak temp (3) lt1004cd-1-2 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cd-1-2e4 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cd-2-5 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cde4-1-2 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cde4-2-5 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cdr-1-2 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cdr-1-2e4 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cdr-2-5 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cdre4-1-2 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cdre4-2-5 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004clp-1-2 active to-92 lp 3 1000 tbd cu snpb level-nc-nc-nc lt1004clp-2-5 active to-92 lp 3 1000 tbd cu snpb level-nc-nc-nc lt1004clpe3-1-2 active to-92 lp 3 1000 pb-free (rohs) cu sn level-nc-nc-nc lt1004clpr-2-5 active to-92 lp 3 2000 tbd cu snpb level-nc-nc-nc LT1004CLPRE3-1-2 active to-92 lp 3 2000 pb-free (rohs) cu sn level-nc-nc-nc lt1004cpw-1-2 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cpw-2-5 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cpwe4-1-2 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cpwe4-2-5 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cpwr-1-2 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cpwr-2-5 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cpwre4-1-2 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004cpwre4-2-5 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004id-1-2 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004id-2-5 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ide4-1-2 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim package option addendum www.ti.com 11-oct-2005 addendum-page 1
orderable device status (1) package type package drawing pins package qty eco plan (2) lead/ball finish msl peak temp (3) lt1004ide4-2-5 active soic d 8 75 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004idr-1-2 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004idr-2-5 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004idre4-1-2 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004idre4-2-5 active soic d 8 2500 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ilp-1-2 active to-92 lp 3 1000 tbd cu snpb level-nc-nc-nc lt1004ilp-2-5 obsolete to-92 lp 3 tbd call ti call ti lt1004ipw-1-2 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ipw-2-5 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ipwe4-1-2 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ipwe4-2-5 active tssop pw 8 150 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ipwr-1-2 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ipwr-2-5 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ipwre4-1-2 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004ipwre4-2-5 active tssop pw 8 2000 green (rohs & no sb/br) cu nipdau level-1-260c-unlim lt1004md-1-2 obsolete soic d 8 tbd call ti call ti lt1004md-2-5 obsolete soic d 8 tbd call ti call ti lt1004mdr-1-2 obsolete soic d 8 tbd call ti call ti lt1004mdr-2-5 obsolete soic d 8 tbd call ti call ti lt1004mlp-1-2 obsolete to-92 lp 3 tbd call ti call ti lt1004mlp-2-5 obsolete to-92 lp 3 tbd call ti call ti (1) the marketing status values are defined as follows: active: product device recommended for new designs. lifebuy: ti has announced that the device will be discontinued, and a lifetime-buy period is in effect. nrnd: not recommended for new designs. device is in production to support existing customers, but ti does not recommend using this part in a new design. preview: device has been announced but is not in production. samples may or may not be available. obsolete: ti has discontinued the production of the device. (2) eco plan - the planned eco-friendly classification: pb-free (rohs) or green (rohs & no sb/br) - please check http://www.ti.com/productcontent for the latest availability information and additional product content details. tbd: the pb-free/green conversion plan has not been defined. pb-free (rohs): ti's terms "lead-free" or "pb-free" mean semiconductor products that are compatible with the current rohs requirements for all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. where designed to be soldered at high temperatures, ti pb-free products are suitable for use in specified lead-free processes. green (rohs & no sb/br): ti defines "green" to mean pb-free (rohs compatible), and free of bromine (br) and antimony (sb) based flame retardants (br or sb do not exceed 0.1% by weight in homogeneous material) (3) msl, peak temp. -- the moisture sensitivity level rating according to the jedec industry standard classifications, and peak solder package option addendum www.ti.com 11-oct-2005 addendum-page 2
temperature. important information and disclaimer: the information provided on this page represents ti's knowledge and belief as of the date that it is provided. ti bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. efforts are underway to better integrate information from third parties. ti has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. ti and ti suppliers consider certain information to be proprietary, and thus cas numbers and other limited information may not be available for release. in no event shall ti's liability arising out of such information exceed the total purchase price of the ti part(s) at issue in this document sold by ti to customer on an annual basis. package option addendum www.ti.com 11-oct-2005 addendum-page 3

mechanical data msot002a ? october 1994 ? revised november 2001 1 post office box 655303 ? dallas, texas 75265 lp (o-pbcy-w3) plastic cylindrical package 4040001-2 /c 10/01 straight lead option 0.016 (0,41) 0.014 (0,35) 0.157 (4,00) max formed lead option 0.104 (2,65) 0.210 (5,34) 0.170 (4,32) 0.050 (1,27) 0.016 (0,41) 0.022 (0,56) 0.500 (12,70) min seating plane 0.175 (4,44) 0.205 (5,21) 0.165 (4,19) 0.125 (3,17) dia d c 0.105 (2,67) 0.095 (2,41) 0.135 (3,43) min 0.080 (2,03) 0.055 (1,40) 0.045 (1,14) 1 0.105 (2,67) 23 0.080 (2,03) 0.105 (2,67) notes: a. all linear dimensions are in inches (millimeters). b. this drawing is subject to change without notice. c. lead dimensions are not controlled within this area d. falls within jedec to -226 variation aa (to-226 replaces to-92) e. shipping method: straight lead option available in bulk pack only. formed lead option available in tape & reel or ammo pack.
mechanical data msot002a ? october 1994 ? revised november 2001 2 post office box 655303 ? dallas, texas 75265 lp (o-pbcy-w3) plastic cylindrical package 4040001-3 /c 10/01 0.094 (2,40) 0.114 (2,90) 0.460 (11,70) 0.539 (13,70) tape & reel 0.335 (8,50) 0.384 (9,75) 0.020 (0,50) min 0.217 (5,50) 0.748 (19,00) 0.748 (19,00) 0.689 (17,50) 0.098 (2,50) 0.433 (11,00) 0.335 (8,50) 0.610 (15,50) 0.650 (16,50) 1.260 (32,00) 0.905 (23,00) 0.234 (5,95) 0.266 (6,75) 0.512 (13,00) 0.488 (12,40) 0.114 (2,90) 0.094 (2,40) 0.146 (3,70) 0.169 (4,30) dia notes: a. all linear dimensions are in inches (millimeters). b. this drawing is subject to change without notice. c. tape and reel information for the format lead option package.
mechanical data mtss001c january 1995 revised february 1999 post office box 655303 ? dallas, texas 75265 pw (r-pdso-g**) plastic small-outline package 14 pins shown 0,65 m 0,10 0,10 0,25 0,50 0,75 0,15 nom gage plane 28 9,80 9,60 24 7,90 7,70 20 16 6,60 6,40 4040064/f 01/97 0,30 6,60 6,20 8 0,19 4,30 4,50 7 0,15 14 a 1 1,20 max 14 5,10 4,90 8 3,10 2,90 a max a min dim pins ** 0,05 4,90 5,10 seating plane 0 8 notes: a. all linear dimensions are in millimeters. b. this drawing is subject to change without notice. c. body dimensions do not include mold flash or protrusion not to exceed 0,15. d. falls within jedec mo-153
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