OP07 AD | Alldatasheet

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FEATURES even at high closed-loop gains. © LOW Vog eee. ees eeeeee ve ceceeceaeeess 25yV Max Stability of offsets and gain with time or variations in temper- © Low Vog Drift orrrrrerrnenens 0.6uV/°C Max ture is excellent. The accuracy and stability of the OP-07, © LOWNOI8 «o.-...eee soos ences cess + 0:6 4Vp-p Max nulling have made the OP-07 a new industry standard for © Fits 725, 108A/308A, 741, AD510 Sockets OP-07A and the OP-07 are specified for operation over the full mili- © 125°C Temperature-Tested Dice tary range of-55°C to+125°C; the OP-07E is specified for operation over the 0°C to +70°C range, and OP-07C and Dover the—40°C to ORDERING INFORMATION ' +85°C temperature range. T,= 425°C PACKAGE OPERATING The OP-07 is available in hermetically-sealed TO-99 metal can or MAX. TTTCERDIP PLASTIO’ LOG TEMPERATURE ceramic 8-pin Mini-DIP, and in epoxy 8-pin Mini-DIP. It is a direct cow) TO-99 8-PIN B-PIN 20-CONTACT RANGE replacement for 725, 108A, and OP-05 amplifiers; 741-types may a RA ORR _CCébedirectty replaced by removing the 741'snuliing potentiometer. The

75 OPO7EJ OPO7EZ OPO7EP - com OP-207, a dual OP-07, is available for applications requiring close

75 = OPO7J* OPO7Z" — OPO7RC/883 MIL matching of two OP-07 amplifiers. For improved specifications, see 150 OPO7CJ OPO7CZ OPO7CP - XIND the OP-77/0P-177. 150 — — oPo7cst — XIND

150 OPO7DJ = ___oP07DP - XIND PIN CONNECTIONS

+ Fordevices processed in total compliance to MIL-STD-883, add /883 after part number. Consult factory for 883 data sheet. 8 Vos Tait u + Burn-inis available on commercial and industrial temperature range parts in Vos TRI re fos tam Cf te} vos ram CerDIP, plastic DIP, and TO-can packages 7 “SpE tt For availability and burn-in information on SO and PLCC packages, contact cine cour ol anaes Jour your local sales office. | v= Fe] ne ane SKe EPOXY MINI-DIP (P-Suffix) GENERAL DESCRIPTION eve tease) 8-PIN HERMETIC DIP The OP-07 has very low input offset voltage (25uV max for TO-99 (J-Suffix (Z-Suffix) OP-07A) which is obtained by trimming at the wafer stage. (-Sutfix) 8-PIN SO These low offset voltages generally eliminate any need for z of (S-Suffix) external nulling. The OP-07 also features low input bias cur- = & rent (+2nA for OP-07A) and high open-loop gain (300V/mV for ghee OP-07A). The low offsets and high open-loop gain make the we fc OP-07 particularly useful for high-gain instrumentation an i OP-07RC/883 applications. xe fe] Ne tcc The wide input voltage range of +13V minimum combined cB yet (RE -Suffixy with high CMRR of 110dB (OP-07A) and high input impedace lolol provides high accuracy in the noninverting circuit configura- g3g33 tion. Excellent linearity and gain accuracy can be maintained SIMPLIFIED SCHEMATIC vo 7 oat ® on, () ® w “ROMANO rae ARE ma! . ADIUSTED ON GHIP <° Oreser voLTAcE i+ gerd Q¥e ee one now 3 ae 7 a ner {oS 6 oso 1 vb -1-

ABSOLUTE MAXIMUM RATINGS (Note 1) PACKAGE TYPE eattews) O inte Input Voltage (Note 2) ....csessscsssessssessecseecsnesntesesesseen tO2V 8-Pin Hermetic DIP (2) 148 16 “CW Storage Temperature Range 20-Contact LCC 98 38 “Cw P Package vvissusesnmsusssnennnenen ~BS°CHO+125°C NOTES) Operating Temperature Range 1. Absolute maximum ratings apply to both DICE and packaged parts, unless OP-O7E cesesseeee 0°C to 470°C 2. For supply voltages less than #22V, the absolute maximum input voltage is Se i equal eabve supeiy vohage. OP-07C, OP-O7D wanesnsnsrninininnones “AO°C10 +85°C 5, i spect for wort ease mounting contons, ie. i spect fo Junction Temperature ) seseseaenennereeaneatesssecessersscsesssee #150°C for device soldered to printed circuit board for SO package. ELECTRICAL CHARACTERISTICS at Vs = + 15V, Ta= 25°C, unless otherwise noted. ——— OP-07A OP-07 PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Input Offset Voltage Vos (Note 1) _ 10 25 _ 30 75 ru Long-Term Input Offset _ _

198 Bieblity AVos/Time (Note 2) 02 10 02 10 nV/Mo

Input Offset Current los — 03 20 — 04 28 nA Input Bias Current Ig — +07 +20 — +10 +30 nA Input Noise Voltage enpp 0.1Hz to 10Hz (Note 3) — 035 06 = 035 06 Bp» fo= 10Hz (Note 3) — 103 180 — 103 180 Input Noise Voltage Density en fo= 100Hz (Note 3) — 100 130 — 100 130 nvi/ Hz fo = 1000Hz (Note 3) _ 96 no _ 96 1.0 Input Noise Current ‘np. 2 0.1Hz to 10Hz (Note 3) _ 4 30 - 4 30 Ap. 2 fo= 10Hz (Note 3) — 082 0.80 — 082 0.80 Input Noise Current Density in fo= 100Hz (Note 3) — 014 023 — 014 023 pAN/ Hz f= 1000Hz (Note 3) = 01 017 = 012 017 Input Resistance — Differential: Mode Rw (Note 4) 308 20 60 Mo Input Resistance — Common-Mode Rincw — 200 — ~ 200 7 Ga Input Voltage Range VR £1380 414 - +190 «+14 - v Common-Mode Rejection Ratio CMRR Vom = +13V 110126 110128 dB Power Supply Rejection Ratio PSRR Vg = +3V to +18V . = 410 = 410 wv RL 22k, Vo=+10V 300 500 — 200 500 — Large-Signal Voltage Gain Avo Ry, 25000, Vo=+05V, _ _ vimv Vg = +3V (Note 4) 180 400 180 400 Ry 2 10k. £125 413.0 - £125 413.0 - Output Voltage Swing Vo RL=2k0. £120 +128 - +120 +128 - v Ruz tk 4105 +120 0 — #105 +1200 — Slew Rate sR R, > 2k (Note 3) 0.1 03 _ 0.1 03 _ Vus Closed-Loop Bandwidth Bw Avoi= +1 (Note 3) 04 06 - 04 06 - MHz Open-Loop Output Resistance Ro Vo=0,lo=0 - 60 - - 60 - a

7 Vg = +15V, No Load - 75 120 =- 75 120

Power Consumption Py Vg= £3, No Load - 4 6 - 4 6 mw Offset Adjustment Range. Rp=20kn -— +4 - -— 44 - mv NOTES: — 1. OP-07A grade Vos is measured approximately one minute after applica- Excluding the initial hour of operation, changes in Vog during the first 30 tion of power. For all other grades Vog is measured approximately 0.5 ‘operating days are typically 2.5yV — refer to typical performance curves. seconds after application of power. Parameter is sample tested. 2. Long-Term Input Offset Voltage Stability refers to the averaged trend line of 3. Sample tested. Vos vs. Time over extended periods after the first 30 days of operation. 4. Guaranteed by design. -2-

ELECTRICAL CHARACTERISTICS at Vs ~ + 15V, -55°C <= Ta <= + 125°C, unless otherwise noted. OP-07A OP-07 PARAMETER ‘SYMBOL ‘CONDITIONS MIN TYP MAX ‘MIN TYP MAX ‘UNITS Input Offset Voltage Vos (Note 1) —- % 60 — 60 200 WV ‘Average Input Offset Voltage Drift With- out External Trim TCVps__(Note 2) = 02 06 = 03 13 wee With External Trim TCVosn p= 20K (Note 3) = 0206 = 0318 wv Input Offset Current los — 08 4 — 12 36 nA “— input Offest Current TClos (Note 2) - 5 25 - 686 6 parc Input Bias Current Ip —- #1 4 — #2 46 nA on input Blea Current TCly (Note 2) —- 8 2% - 1% 60 parc Input Voltage Range IvR 213° «413.6 - 213° +135 _ v Common-Mode Rejection Ratio CMRR Vom = #13V 6138 0613 fo Power Supply Rejection Ratio PSRR Vg = +3V to +18V _ 5 20 _ 5 20 wv Large-Signal Voltage Gain Avo RL > 2k, Vo = 10 200 «40002 150 400 — v/mv Output Voltage Swing Vo RL 22k 212 +126 _ £12 +126 =_ v NOTES: 1. OP-07A grade Vog is measured approximately one minute after applica- tion of power. For all other grades Vg is measured approximately 0.5 seconds after application of power. 2. Sample tested. 3. Guaranteed by design. TYPICAL OFFSET VOLTAGE TEST CIRCUIT TYPICAL LOW-FREQUENCY NOISE TEST CIRCUIT ve -200K52 9 ree oN 9, => ‘ aK ooureur son von 3 $y. 478 ves + Le (rove FitteR INPUT REFERRED NOISE ~ 58.959 Sapggg- ~ 2008V/em = (SEE SCOPE PHOTO IN TYPICAL PERFORMANCE CURVES) PINOUTS SHOWN FOR J, P, AND Z PACKAGES: OPTIONAL OFFSET NULLING CIRCUIT BURN-IN CIRCUIT ote aon ove a 1 ‘ wNPUT O OUTPUT ° * 3 3

3 A 4

bv a —8v PINOUTS SHOWN FOR J, P, AND Z PACKAGES PINOUTS SHOWN FOR J, P, AND Z PACKAGES

ELECTRICAL CHARACTERISTICS at Vs = + 15V, Ta = 25°C, unless otherwise noted. OP-07E OP-07C OP-07D PARAMETER SYMBOL _ CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS Input Offset Voltage Vos (Note 1) - #0 — © 10 a wW Long-Term Vog Vog/Ti Note 2) - 08 13 — 04 20 - 0: stably /os/Time (Note 2) 03 18 os 30 AV/Mo Input Offset Current log, - 05 38 — 08 60 — 08 60 nA Input Bias Current Ig — 412 +40 — +18 +70 — +20 +2 nA O.1Hz to 10Hz Input Noise Voltage enpep (Not 3 — 035 06 — 038 065 — 0398 065 Wp-p fo= t0Hz — 103 180 — 105 20 — ws 200 oe it en fo = 100Hz (Note 3) — 100 130 — 02 135 — 03 185 nv/He ‘9 id fo = 1000Hz — 96 110 - 98 ons — 98 115 ; O.1Hz to 10Hz Input Noise Current —_inp-p (Now 3 - 6 390 - 6 35 - 6 3% PApp ; fo= toHz = 032 0.80 — 035 090 = 035 0.90 ne Ne it in fo = 100Hz (Note 3) — 014 0.28 — 018 027 — 018 027 pAh/He i fo = 1000Hz = 012 0.17 = 018 ote — 013 oe Input Resistance — voterentettnade RIN (Note 4) a a 3 a Ma Input Resistance — oie wade Rincm — wo — 120 a ca Input Voltage Range IVR +903 3 tw 390m v Common-Mode Vou=# - a - Rejection Ratio ceMRA fom = #130 106123 4 10 8 Power Supply Ve=43¥ PSRR - - 7 8 - Rejection Ratio s to+18V 5 7 2 ww RLE 2K, 200 500 - 120 400 - 120-400 - Vo=+10V Large-Signal A RL 25000. vimv i vo Le ‘Vonage Gain Vo= +0.5V 16040000 — 00 400 = - 4 - Vg = #3V (Note 4) RL2 10K. 225 230 0 — #120 413000 — #120 213000 — ae Voltage Yo RL> 2k +20 +28 — ans +1280 — +18 +128 — v ‘9 RU > tka +105 +120 — — #20 — — 2200 Slow Rate SR Ry > 2k0 (Note 3) 0108 a1 os on os Vins Closed-Loop Avon = +1 4 oo - rar - 408 Bandwidth Bw (Note 5) of 98 oe 8 ° Mie Open-Loop Output 7 Resistance Ro Yor 0.10) Vg=+15V, No Load - 7% 10 - 8 150 —- 0 150 Power P Ww Consumption — Pa Vg = 3V, No Load - 4 6 - 4 8 - 4 8 m Offset Adjustment Rp= 200 - 4 = rs —- mv Range ° NOTES: 1. Input Offset Voltage measurements are performed by automated test equipment approximately 0.5 seconds after application of power. 2. Long-Term input Oftset Voltage Stability refers to the averaged trend line of Vog vs. Time over extended periods atter the first 30 days of operation. Excluding the initial hour of operation, changes in Vos during the first 30 operating days are typically 2.5uV — refer to typical performance curves. Parameter is sample tested. 3. Sample tested. 4. Guaranteed by design. 5. Guaranteed but not tested -4-

ELECTRICAL CHARACTERISTICS at V, = +15V, 0°C = T, s +70°C for OP-O7E, and —40°C = T, = +85°C for OP-07C/D, unless otherwise noted. KLK—— $$ OP-07E OP-07C OP-07D PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP_MAK MIN TYP MAX UNITS Input Offset Voltage Vos (Note 1) = 6 — 85 280 — 5 260 wv ‘Average Input Ottset Voltage Drift with- out External Trim TCVpg_(Note 3) - 03 13 — 05 18 -— or 28 avec With External Trim TCVogq__Rp= 20kf2 (Note 3) = 03 13 — 04 16 - 07 25 src Input Offset Current log - 09 53 - 16 80 — 16 80 nA ‘Average Input Otfset - a 35 - - Curent belt TClog _—_—(Noto2) 2 6 2 60 parc Input Bias Current Ip, = +15 +65 — 422 +90 — +30 +4 nA ‘Average Input Bias - - = Current Drift TClp (Note 2) BS 50 1% 60 parc Input Voltage Range IVR 4180 4195 0 — 4130 +185 0 — 4180 4195 — v ‘Common-Mode i - - ejection Ratio OMAR Voy=+13V 103123 97 120 94 106 4B Power Supply = - - » #8 - Rejection Ratio PSRR Vg= £3V to +18V 7 8 Cr] “WN Large-Signal RL 2K - 00 400 — wo 4000 Voltage Gain Avo Vo=+10V wo 450 View Output Voltage + +2 + - sn 26 z - wing Yo RL 2K0 22 4128 £1 £126 v NOTES: 1. Input offset voltage measurements are performed by automated test equipment approximately 0.5 seconds after application of power. 2. Sample tested. 3. Guaranteed by design. ad

DICE CHARACTERISTICS (125°C TESTED DICE AVAILABLE) Ur (ar, a) o 4. BALANCE Lol i 2. INVERTING INPUT Te Wa call 3. NONINVERTING INPUT “yy =F Bi 4.v- — II 6. OUTPUT aS 7. V+ | Lal ACS 8. BALANCE | f as et ; 7 Se wow = a DIE SIZE 0.100 x 0.055 inch, 5500 sq. mils (2.54 X 1.40 mm, 3.56 sq. mm) WAFER TEST LIMITS at Vs= + 15V, Ta = 25°C for OP-07N, OP-07G and OP-07GR devices; Ta = 125°C for OP-O7NT and OP-07GT devices, unless otherwise noted. _ —_ OP-07NT OP-07N OP-07GT OP-07G OP-07GR PARAMETER SYMBOL CONDITIONS _ uMIT uMiT uMIT LiMiT: uMIT UNITS Input Offset Voltage Vos 140 40 210 80 150 yw MAX Input Offset Current log 40 20 56 28 60 _nAMAX Input Bias Current Ip +4 2 #6 3 47 _nAMAX Input Resistance _ Ditterentia-Mode FN (Note?) - 20 20 8 MAMIN Input Voltage Range WR 213 +13 213 213 +13 VMIN ‘Common-Mode Rejection Ratio CMAR Voy=+13V 100 110 109 ” - 100 dBMIN Power Supply = + Rejection Ratio PSRR Vg = +3V to t18V 20 10 20 10 30) wWV MAX RL = 10k - +125 - +120 £120 Output Voltage Swing Vo RL =2kn £120 £120 +120 2115 +115 VMIN Large-Signal RL=2kn Votage Gein Ao ybnerov 200 200 0 120 WmV MIN Differential Input +30 +30 +30 +30 +90 VMAX Voltage Power Consumption Py Vour= 0V = 120 ~ 120 150 mW MAX NOTES: 1. For 25°C characteristics of OP-O7NT and OP-07GT, see OP-O7N and 2. Guaranteed by design. OP-07G characteristics, respectively. - - Electrical tests are performed at wafer 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, Ta = +25°C, unless otherwise noted. OP-07NT OP-07N OP-07GT OP-07G OP-07GR PARAMETER SYMBOL CONDITIONS TYPICAL TYPICAL TYPICAL TYPICAL TYPICAL _ UNITS ‘Average Input . Offset Voltage Drift "CYos Rs=S0n o2 02 os 03 07 wee Nulled Input . . Offset Voltage Drift TCVogn Rg = 50, Rp= 20kN 02 02 03 03 o7 aPC ‘Average Input Oftsot Current Dritt_ TClos i § 8 8 id parc Slew Rate SR LEQ 03 03 03 03 Vs Closed-Lot ondwiathe Bw Aveou=+1 06 06 06 06 06 MHz

TYPICAL PERFORMANCE CHARACTERISTICS OPEN-LOOP GAIN vs OFFSET VOLTAGE CHANGE DUE TEMPERATURE = TO THERMAL SHOCK WARM-UP DRIFT

1000 S30 Sa

PEE Hwee] 3” gs [LPP yyy Ty 3s —T i golem PITT] = 600 s LET TTT Ty Ty yy © a5 | — __|— L

3 EP 5 COIN 5

a ear? Seeeee i, rare nore Z 2 es —— z as SEeSOSSSE MES () teenie = ——— eeereeree HACE Rae EEE Eee Tg | an a ee ra ‘TEMPERATURE (°C) ‘TIME (SEC) TIME AFTER POWER SUPPLY TURN-ON (MINUTES) MAXIMUM ERROR vs MAXIMUM ERROR vs MAXIMUM ERROR vs SOURCE RESISTANCE SOURCE RESISTANCE SOURCE RESISTANCE 10, — 10 12 2 e /| gos Fa 5 = i} ¢ 9 04 —— 202 < AS A 02 = INPUT BIAS CURRENT vs INPUT BIAS CURRENT vs INPUT OFFSET CURRENT vs DIFFERENTIAL INPUT VOLTAGE TEMPERATURE TEMPERATURE i” ATIVDIFF1< 10V) Ip < 2nd (OF 7A) aa ‘ * Vs=118V

2 H i 2 g3 =

@Lit tT Tyrer g Fa Eis eo t tT yy, Be = 3 orare POE goede PED Bet A

240 A we 5 “NI a 5” XN NX

Sooo"? B.S Sle SAAS 4 Zelatt d E | eae Fos SS EERE CELT Le ETT | DIFFERENTIAL INPUT VALUE (VOLTS) ‘TEMPERATURE (°C) ‘TEMPERATURE (*C} -7-

TYPICAL PERFORMANCE CHARACTERISTICS INPUT WIDEBAND NOISE vs TOTAL INPUT NOISE VOLTAGE BANDWIDTH (0.1Hz TO OP-07 LOW FREQUENCY NOISE vs FREQUENCY FREQUENCY INDICATED) caso sone" ‘ Sie et See

2 SSS Se 3 |

tN eer , 3 es a be Ser mer ese 2 of ee Sa

5 SS a Pm A

ERE THES) ACES >| .. iN aT »CUlID OPEN-LOOP GAIN vs CMRR vs FREQUENCY PSRR vs FREQUENCY POWER SUPPLY VOLTAGE "FT ETE] eo . SA TT Ts Pte “Lea Se oe 1 ALS A eS ETON ECCI RFRA A AA \\\\ Mos 000 0 SS “EE “COC TN OTIC [EERE =H PEN-LOOP CLOSED-LOOP RESPONSE MAXIMUM PUT SWIN: FREQUENCY RESPONSE GAIN CONFIGURATIONS We PREQUENGY S os -o on , PEASE EN Eo POON epee) EAA HEPceresc) b- ‘ SCONCE SEH TEES +f LL toe wt

TYPICAL PERFORMANCE CHARACTERISTICS MAXIMUM OUTPUT VOLTAGE POWER CONSUMPTION OUTPUT SHORT-CIRCUIT vs LOAD RESISTANCE vs POWER SUPPLY CURRENT vs TIME 2» 1000 a 38 Pec PT Pewee LLP TT TT am eel | ~ Eee SEL en eee ELL ee EUR | Vinten <a 08 v

5 DoT sonnei 3 BSS Sr | aA TLL

PL YAU TT on aeeeeeeee & IS LE BLATT HM 27 San ae a ® GARG REEE SAY i eeee oL_L UIE TTT wl LOCO TTT} Ld TTT a : me {AD RESTA To GROUND I) * TOTAL SURLY VOLTAGE, VeTO.V- (VOLT! {TE FRou OUTPUT BEING SHORTED MINUTE UNTRIMMED OFFSET VOLTAGE TRIMMED OFFSET VOLTAGE OFFSET VOLTAGE STABILITY vs TEMPERATURE vs TEMPERATURE vs TIME _ 6 20 ae * a a

3 Ew J A = [Histnemessye ee aE EEE

8 Rg = 1002 i, Po A se -ELTETT Try

ee oe 8 m| 13 oro | fl 7 | Fy per 15 Vino. TmeND nef a Ax 4 NK 4 opore vay, FA earimn REND LINE 928V 0 ue

5 HPN" s rn ee y t paces TREND LINE GeV

a P| | URS Zo5/_| | | 7 | A 50 INN TBH OT 2 LPP eerste fe ee a z N YY S.ftTTrPrrrer re 5 orm e LE SAY | ig EERE rrr a i WM = EEE EEE EH 2 3 ° ~16 HERE EEE EE 50 ° 50 100 50 o bol 100 12345678 9D 1 ‘TEMPERATURE (°C) TEMPERATURE (°C) ‘TIME (MONTHS) TYPICAL APPLICATIONS HIGH SPEED, LOW Vos, COMPOSITE AMPLIFIER ADJUSTMENT-FREE PRECISION SUMMING AMPLIFIER or ° Lard 2 7 wee 2 2 B sj fe 20 nn 3 . v “ ‘4 E20 MAN 3 Fo = 2 = ° “ “ = ~18v PINOUTS SHOWN FOR J, P, AND Z PACKAGES: PINOUTS SHOWN FOR J, P, AND Z PACKAGES

HIGH-STABILITY THERMOCOUPLE AMPLIFIER PRECISION ABSOLUTE-VALUE CIRCUIT Ro Ra as a 83 10k roKs2 10. —wa—— A SUNETION vy | 2Nb Zw } ‘ fo Hy i ? \\ _fo Ey 12 2 7 ! i a en is > => ae ‘ Lo 3 3 % To "Ov a ‘4 re 10K vA = 2 aN YA PINOUTS SHOWN FOR J, P, AND Z PACKAGES PINOUTS SHOWN FOR J, P, AND Z PACKAGES APPLICATIONS INFORMATION The OP-07 provides stable operation with load capacitance OP-07 series units may be substituted directly into 725, Of up to 500pF and + 10V swings; larger capacitances should 108A/308A* and OP-05 sockets with or without removal of be decoupled with a 500 decoupling resistor. external compensation or nulling components. Additionally, Stray thermoelectric voltages generated by dissimilar metals the OP-07 may be used in unnulled 741-type sockets. How- at the contacts to the input terminals can degrade drift per- ever, if conventional 741 nulling circuitry is in use, it should formance. Therefore, best operation will be obtained when be modified or removed to enable proper OP-07 operation. both input contacts are maintained at the same temperature, OP-07 offset voltage may be nulled to zero through preferably close to the package temperature. use of a potentiometer (see offset nulling circuit diagram). *T0-99 Package only -10-