CMP-02_15 AD | Alldatasheet

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FEATURES GENERAL DESCRIPTION d Operation trom Single +5V ience. The CMP-02 is capable of operating over a wide range Pb p Reélétor-Required for TTL Drive of supply voltages, including single plus 5 volt supply O operation, and is pin-compatible to earlier 111, 106, and 710 6 types. For applications requiring faster response time, please L pIN CONNECTIONS ORDERING INFORMATIO! aN j nm PACKAGEN__/ see | $$ *) haarpid " a rH oe Voog MAX PLASTIC so B BE OP 7 Ge fprpaw (mv) __TO-98 SPIN &-PIN RAN a rate ey, 08 - CMPO2EP = COM eE|> Penne [=| [af sacam 28 _CMPOZCJ CMPOZCP_CMPOZCS_—_—XIND tor { Burmin's available on commercial and industrial temperature range parts in ™ ? POXY/MINI-DIP CarDIP, plastic DIP, and TO-can packages. vv (CASE) (PeButthy TO-99 &-PINSS (J-Sutfix) {S-Sufflx) SIMPLIFIED SCHEMATIC vo suse oars © J ° oda Sa 6 ars INPUT RIA 7 oe soz “ Ri INVERTING > > ese Py ° Line ta | a. on sor + Df pre =D | oa v=o

ABSOLUTE MAXIMUM RATINGS (Note 1) QUtput to GrOUN ...csseesesssstsersssresenseeecessesstssesesssene BV tO 432V Output Short-Circuit Duration 4h SHUN KAGE TYPE ©), (Noto 2) 8, UNITS Positive Supply Voltage to Ofiset Null... toay © TAMAR Me Input Voltage (Vi = $15V) -..cesscsesereecresesnensserensseeenernee £15V &-Pin Plastic DIP (P) 103 43 °c Operating Temperature Range NOTES: CMP-026 scssssscsssssenscrpnemricrnsrunoreiereccniane OCW*TOS 1. Absolute ratings apply to both DICE and packaged parts, unless otherwise CMP-02C ssssstssssntsnnestsnesetsentscerserseneer A0°C tO 485°C rns 2. ©, |8 specified for worst case mounting conditions, .e., @,, is specified for Junction Temperature (T)) -.--aersereseeneesnne “85°C t0 +150°C abvios in socket for TO and P-DIP packages; @,, i ‘speclfid for device sol- P-SUPIX essseeeecoostssssssenensnsesenssersesantearsverssse “BO°C 10 +125°C, la — PERI ICS at Vs = + 15V, Ta = 25°C, unless otherwise noted. Col ee YS CMP-02E CMP-026 PARY EF [srmn0i\\ o fr os MIN TYP MAX MIN TYP MAX UNITS Input Oreer vonage gg ndcohn, we) | | | 770s fea ew InpurOreat Gurrent tog wom YL LP Fos fo pgs oA Differential Input — Resistance Rw (Note 2} N Voltage Gain Ay Vo =1 to 3V, Note 2) 200 eo: C10 [sof —/ ve 100mV step, Sm Overdrive —/ [ | Response Time t No Load (No Pull-Up) — 190 270 - <i) p (Note 3} * 8kN to S¥ (Pull-Up} — 0 na —- 10 TTL Fan-Out = 4, No Pull-Up —- mw — - w = SS Input Slew Rate - 6 = =- 6 = Vs Input Voltage Range cMVA #25 +10 — #25 +190 0 — v ‘Common-Mode —_ ejection Ratio cMRA a Ww 9 11000 a8 Power Supply 5V s Vg, 5 18V, _ _ Rejection Ratio PSAR avs Vg-S OV * «0 im bi ae Vin2 3mY, lo = 320K 24 3820 = - - - Posktive Output Vou V2 SMV, [= 240uA = = 24 84 = v mace Vin = 3m¥, p= OmA 240 48 240 48 Vy S—1OMY, link = OMA — 016 040 — 016 0.40 Saturation Voltage Vou Vin S—10MY, IainkS 6.4mA — 03 045 — ost 045 v Vinu:S TOMY, Igink $ 12MA (CMP-02 only) — 036 05 - - = Output Leakage Current Teak Vw 10mV, Vo= +30 — 003 20 = 005 80 uA Positive Supply Current + ViyS—10mv — 55 80 — 58 385 mA Negative Supply Current - Vins —1omv — We — 1222 mA Power Dissipation Pa Ves —10mV — © 153 — 1m 1 mW Offset Voltage _ _ _ _ ‘sais Fis Nulling Pot = 2ka. 458 +5 mv NOTES: 1. These Paramaters are specified as the maximum values required to drive account the worst case effects of voltage gain and input impedance. the output between the logic levels of 0.4V.and2.4V witha Tkit load tied to 2. Guaranteed by design, +8V; thus, these parameters define an error band which takes into 3. Sample tested.

ELECTRICAL CHARACTERISTICS at Vs = SV, Vs_= OV, Ta = 25°C, unless otherwise noted. SSeS CMP-02E CMP-02C PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX —_UNITS “Truk Offuee vom input Offset Voltage Vos Rig 5k0t, (Note 1) — 415 — 0s as mv Input Offset Current los Note 1) - 0.25 3 = 0.35 14 nA ampmeteetCurems tog Note gy HB Input Bias Current Ip — 4s - » nA Appt Blea Gurren Voltage Gain Ay Vo=1t0.3V - o = - s — vim 100mV Step, SmV Overdrive Response Time ty 5kQ to 5V (Pull-Up) — <i ona ~ ns TTL Fan-Out = 4, 5kfi to 5V a — 0 Input Voltage Range CMVR 18-35 17-38 sepa 1.8-3.5 1.73.8 = v Saturation Voltage Vou ¥iv-8.5mV, lyinn © 8AMA — 03 04s = 03 04s v Positive Supply Current I+ Vi <-10mV - 22 3 — 23 36 mA Festive Supply Current te Nw Power Dissipation Pg Vin <—10mv = "1 16 — 18 18 mw een Po Ns Som SB 1 ese-Larameters a¢a specified as the maximum values required to drive ‘the outpdy belweenythe logreteuals of D.4V and 2.4V with a 1k0 load tied to +5¥; thub, wpe a rg deKne an error band which takes into account the wp of tints pt pag Gain antrimput impedance. picaL/c {ana BRISNGS act npenany Grade, ~40°C <T, <+85°C for C Grade, unless otherwise me aw d/ain ll oie a \\ od, b MP-02C PARAMETER SYMBOL CoNaoITis p [max Lain rR MAX UNITS Rg <5k0,, (Note 1) Ne p i jp Inpis Otleae toitags Vos Vg. = SV, Ve_= OV, (Note 1) : hs ‘Average Input Offsat —] Voltage Drift Without External Trim TOVos Rg = 5011 = % > 18 Jeo With External Trim TGVpsn Rg=S00 - 1 = 12 i Ta= 70°C, (Note 1) - 0 3 — 04 Inpub etter oticent ‘os Ta=0"C, (Note 1) — 04 6 — 08 2 in — A tt) ea Average Input Offset #28°C<T,< 470°C - @ = - 38 = ° Current Drift Thos gee ct, <+25°C = 4 = - 5 = deli Ta=+70°C _~ 26 50 _ 3 100 Input Bias Current le ttre = - 2 wm nA fi Voltage Gain Ay Vo= 1 to 3V, (Note 2) wo 500 — 7 50 vim | ee Le 100mv Step, SmV Overdrive Response Time te Tau +70°C, No Load - 2m = —- @% - ns Ta=0°C, No Load - wo — -— wo - Ll Input Voltage Range CMVR 212.0 £13 and £12 213 = Vv Ba ih i a 2: | a ns of Common-Mode 1 - 108 - Rejection Ratio CoRR % 98 as a8 i aac Power Supply . ejection Patio PSRR SVS V5 < 15V,-15V <Vg_<0V 7 8 88 0B Positive Output Voltage Vou Vin2 4mV, to = 200A, 24 32 - 24 32 - v rants Sepeivore _No__ Vitel @00@A Vin S-10mV, Igink =O — 07 04 — o7 o4 scsliaindnilhnaie— Vou Vin S—10mV, ging =6-4MA — 030 05 — ost 05 id NOTES: 1. These Parameters are specified as the maximum values required to drive ‘the output between the logic levels of 0.4V and 2.4V with a 1kM load tied to +5V; thus, these parameters define an error band which takes into account the worst case effects of voltage gain and input impedance. 2. Guaranteed by design.

9% = i we le ee ’ = 1. GROUND | (= 2. NONINVERTING INPUT ae 3. INVERTING INPUT I = — 4. NEGATIVE SUPPLY (SUBSTRATE) 5, BALANCE me a ie 6. BALANCE ra 7. OUTPUT is i ear bs; 8, POSITIVE SUPPLY Tt =—— biz) Fi D DIE SIZE 0.065 X 0.043 inch, 2730 6q. mils J _{1.851 1.004 mm, 1.806 94. mm) whreh TEST LiMiTb apo Ta sian G \\ —~ CMP-02N CMP-02GR PAR [sung giTid yin uit Limit UNITS —S ey Input Orfeat Current mw V\\SZ7JT{ J fff ¢ ts nA MAX Input Bias Currnt Is aS WN TT TE eax Differential input Resistance Rin NN pp el sl Input Volioge Range cmvr fosf Iss] | Common-Mode Rejection Ratio GMRA _Voy==GMVA a ee ee Power Supply Rejection Ratio PSRR. aaE¥,HeOt 80 [a5 Ml ; Vin2 SMV, 19 =320uA 24 = ity Linssinhinhninn:taoihaiat in Vou Vin 3MV, Lo = 240uA = 24 Saturation Voltage Vou eink = 8.4m A 0.45 0.45 Vv MAX Output Leakage Current Leak Vin2 10mV, Vo= SOV 2 8 WA MAX Positive Supply Current aa Vin =-10mv a a5 mA MAX Negative Supply Current md Vin=-10mV 22 22 mA MAX Power Consumption Py Vin S-10mV 183 181 mW MAX WAFER TEST LIMITS at Vst+ = 5V and Vs- = OV, Ta = 25°C. a CMP-02N CMP-02GR PARAMETER ‘SYMBOL CONDITIONS LIMIT _ LiMIT UNITS Input Offset Voltage Vos Rss Skt 1.5 as mv MAX Input Offset Current los 3 4 nA MAX NOTE: Electrical tests are performed at water probe to the limits shown. Due to variations in assembly methods and normal yield loss, yield after packaging is not guaranteed for standard product dice. Consult factory to negotiate specifications based on dice lot qualification through sample lot assembly and testing. TYPICAL ELECTRICAL CHARACTERISTICS at Vs = +15V. —__ EEE CMP-02N CMP-02GR PARAMETER SYMBOL CONDITIONS TYPICAL TYPICAL UNITS ‘Average Input Offset = Voltage|DAk TCVos Rig = 500, 15 18 eve ‘Average Input Offset Current Drift TClos 4 5 parc. 100mV Step, 5mV Overdrive Response Time tr No Load (No Pull-Up}, Ta= 25°C 190 baie bid

TYPICAL PERFORMANCE CHARACTERISTICS RESPONSE TIME, 100mV STEP, 5mV OVERDRIVE, VARIOUS LOADS RESPONSE TIME TEST CIRCUIT ree! | TE | pdt WI OT OT T12 | = -pencurmecoe wwas T POTe [epson NOT "2 eer ‘On 3g 3. NOLOAD th 38 wy Boos, La A 13 LEN @ | —w > hf Ot 128 KR 12 8 6 i a= OC ND; eu Leet tt he : Regt fra f

3 Ld ret Tf | 2 aw |_| I YQ) 8 ae: loureur

Zoot [ft eel] os tL | | I PeLIN TTL) Td] aan TT TTT iis Nero, | ™ ae - a ar a | VN RINE: (Vog.~ OVERDAVE) () Neon re Fad RESPONSE TIME tre) it OFFS} OR vs S (OLTAGE vs INPUT OFFSET CURRENT 3 [a aS Siena ue'osase= 7 5 ai KZA i Nemes Piya 0 aan LCI) 2 See OH WY SS & EB ner case oer 3 ore fee 2 oo |_| AY & ROR ae === === = POSS FUT at F BEER oe : PE oe ee Omnia eas © Fata 2 | (Cl | t pease Sirs. 2, ae eeceentec a Fae Ce] ae) HANG Ce | { | | oS es CCT C= wt | NA TTT 1 a ee a ea ee ee > INPUT BIAS CURRENT INPUT BIAS CURRENT vs DIFFERENTIAL INPUT VOLTAGE RANGE vs TEMPERATURE INPUT VOLTAGE vs TEMPERATURE oe “hee Ts CTL: 3 COEF KAP AE I = re B ee _” \\ SCI g com.02 g gvew . a] PL ISOSNGEEC] ode meg Co" rESSSee TT : ECR PE PITRE fem Pssst 2 i = : e pve PRE yet a EER TEE Eabvege | IT gee [TE Ee Reed EU te og es 028 75 135 | a a a i ra 5 725 TEMPERATURE (°C) ° DIFFERENTIAL INPUT VOLTAGE (VOLTS) TEMPERATURE (°C}

TYPICAL PERFORMANCE CHARACTERISTICS SATURATION VOLTAGE SUPPLY CURRENT vs POWER CONSUMPTION vs SINK CURRENT SUPPLY VOLTAGE va TEMPERATURE 0 & 120 PoP eH] fee ae os ae reco orto | SEES fot eee] ot LH | 4 Pct a 4 4e oe BLL ante amgs| a ELL ie TIA LA | i AE : Z a SAH OC eee) EEE “AE T | eer | i. eo Veet | eR Pee PENS =o a a ee () Sx Fura + SUPPLY VOLTAGE (VOLTS) TEMPERATURE (0)

9 PUFSHORT-CIRCUIT OFFSET TRIMMING AND

STANDARD 6} i cur ENT va PUT VOLTAGE STROBE CIRCUITS an OT Lo =, ¥ WALT pct CO fe PRN FH - oo 1 BL oun Eo LSke HL HH by b (ae acy NS Ssaeeb] | LO Lp lp masee 8 SOC ENPANT — fi Peo | am | INES S05 Ey a | Ss ~ ky © ae taaneahnencscai am = — 5 et ! idm cad ISRSNSARGRAEEE an wi in RESPONSE TIME, RESPONSE TIME vs 100mV STEP AND VARIOUS INPUT OVERDRIVES SOURCE RESISTANCE "a ——— so 000 ie LAVA: woe LIT VP 13 ‘od VV IZ E ee Wineay 2 em LUI ee || aa @ ial ye | @@ Ol Qs 2 Fasn Sits i eer PCA | Eee 8 ae LTT ieee a & atnv E amvovenseve ict Rs = wt 1 FewL 1 LT [| FasL) LTP TT] CONE TTS Ti “60 ° 120 240 ‘360 420 ~ 7) o 120 (200 ‘360-420 on 1.0 10 7100

The CMP-02 provides fast response times even with small response time. Matched bypass capacitors across the input overdrives; to achieve this performance requires very high resistors also can eliminate the instability, gain at high frequencies. The CMP-02 is completely free of meodinurns step size oscillations; however, small values of stray capacitance from and If Cg 2 20pF ( ———______ " i minimum overdrive output to input when combined with high-source resistances . . can cause an unstable condition. DC characteristics are not the response time will approximate the response time for low affected, but when the input is within afew microvolts ofthe values of Rg, It should be noted that the offset nulling transition level, certain conditions can create an oscillation terminals do not require bypassing for stability. As with all region. The width of this oscillatory region and the size of wideband circuits, it is recommended that the supplies be source resistance where oscillations begin is a strong func- bypassed near the socket of the device. tion of the stray coupling present. the following suggestions are offered as a guide towards minimizing the conditions for PRECISION, DUAL LIMIT, GO/NO GO TESTER oscillation: matched source resistors, minimized stray capac- itances (@.g., a ground plane between output and input), or 8v wt un capacitive output loading (C_). The capacitive loading tech- 9 7 pig eliminate the oscillations, but result in slower UPPER 2 G sinziva YooktRON, Sr ae Ore Jd LD ARIES SS ZBOoytT |) | | le PS ; i tn" ell 4 ptt . So ps,