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OP77AZPMIN/a52avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77EPADN/a771avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77EZPMIN/a10avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77FJADN/a23avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77FJPMIN/a1avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77FPPMIN/a33avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77FZADN/a417avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77GPADIN/a1avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77GSPMIN/a5646avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77HPPMIN/a11avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
OP77HSPMIN/a3360avaiNEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER


OP77GS ,NEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIERFEATURES . Outstanding Ga Linearity . Ultra High Gain ........................................ 50 ..
OP77HP ,NEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIERapplications. Low initial Vos drift and rapid stabilization time, combined with only 50mW power c ..
OP77HS ,NEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIERGENERAL DESCRIPTION The OP-77 significantly advances the state-of-the-art in preci- sion op amp ..
OP90 ,Precision, Low Voltage Micropower Operational AmplifierCHARACTERISTICS (V = 1.5 V to 15 V, T = 25C, unless otherwise noted.)S AOP90A/E OP90GParameter S ..
OP90AZ/883 ,Precision Low-Voltage Micropower Operational AmplifierCHARACTERISTICS (V = 1.5 V to 15 V, T = 25C, unless otherwise noted.)S AOP90A/E OP90GParameter S ..
OP90EZ ,PRECISION, LOW VOLTAGE MICROPOWER OPERATIONAL AMPLIFIERCHARACTERISTICS at Vs = i1.5V to i15V, TA = +25°C, unless otherwise noted. OP-MA/E OP-90F OP-90G ..
P4SMAJ12 , SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR(VOLTAGE - 5.0 to 220 Volts 400 Watt Peak Power Pulse)
P4SMAJ12CA , SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR(VOLTAGE - 5.0 to 220 Volts 400 Watt Peak Power Pulse)
P4SMAJ12CA , SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR(VOLTAGE - 5.0 to 220 Volts 400 Watt Peak Power Pulse)
P4SMAJ13A , SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR(VOLTAGE - 5.0 to 220 Volts 400 Watt Peak Power Pulse)
P4SMAJ150A , SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR(VOLTAGE - 5.0 to 220 Volts 400 Watt Peak Power Pulse)
P4SMAJ33A , SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR(VOLTAGE - 5.0 to 220 Volts 400 Watt Peak Power Pulse)


OP77AZ-OP77EP-OP77EZ-OP77FJ-OP77FP-OP77FZ-OP77GP-OP77GS-OP77HP-OP77HS
NEXT GENERATION OP07, ULTRALOW OFFSET VOLTAGE OPERATIONAL AMPLIFIER
ANALOG
Next Generation tpil7,
DEVICES Ultralow Offset Voltage Operational Amplifier
FEATURES
. Outstanding Gain Linearity
. Ultra High Gain ............................................ 5000V/mV Min
. Low Vos Over Temperature ................................ 60yV Max
. Excellent TCVos. .................... .. O.3uV/°C Max
. High PSRR ........................................................... 3pV/V Max
. Low Power Consumption ................................. 60mW Max
. Fits 0P-07, 725, 108A/308A, 741 Sockets
. Available in Die Form
ORDERING INFORMATION'
PACKAGE
OPERATING
CERDIP PLASTIC LCC TEMPERATURE
TO-99 8-PIN a-pm 20-PIN RANGE
OP77AJ" OP77AZ' - - MIL
OP77EJ OP77EZ - IND
_ - OP77EP - COM
OP77BJ' OP77BZ" - OP77BRC/883 MIL
OP77FJ OP/IFZ - - IND
- - OP77FP - COM
- - OP77GP - COM
- - OP77t3Stt - COM
- - OP77HP - XIND
- - OP77HStt - XIND
For devices processed in total compliance to MIL-SDT-883. add /883 after part
number. Consult factory for 883 data sheet.
, Burn-in is available on commercial and industrialtemperature range parts in
CerDIP, plastic DIP, and TO-can packages.
For availability and burn-in information on SO and PLCC packages, contact
your local sales office.
GENERAL DESCRIPTION
The OP-77 significantly advances the state-of-the-art in preci-
sion op amps. The OP-77's outstanding gain of 10,000,000 or
more is maintained over the full :10V output range. This excep-
tional gain-linearity eliminates incorrectable system nonlineari-
ties common in previous monolithic op amps, and provides
SIMPLIFIED SCHEMATIC
superior performance in high closed-loop-gain applications.
Low initial Vos drift and rapid stabilization time, combined with
only 50mW power consumption, are significant improvements
over previous designs. These characteristics, plus the exCep-
tional TCVOS of 0.3wVf'C maximum and the low Vos of 25yV
maximum, eliminates the need for Vos adjustment and in-
creases system accuracy over temperature.
PSRR of NNN (1 10dB) and CMRR of1.0p.VN maximum virtu-
ally eliminiate errors caused by power supply drifts and com-
mon-mode signals. This combination of outstanding character-
istics makes the OP-77 ideally suited for high-resolution instru-
mentation and other tight error budget systems.
Continued
PIN CONNECTIONS
vos TRIM nun vos TRIM
-m n n Vt s Vos TRIM
+IN Elk} slour vos TRIM 1 7 v+
v-l' B N.th
-thl 2 BOUT
EPOXY MlNI-DIP (P-Sufflx)
8-PIN IEP!!."."' DIP “N 3 “m
(Z-Suffix) 4 v- (CASE,
8-PIN SO
TO-99 (d -Sufflx)
OP-77BRC/883
(RC-Suffix)
'RZA' Rap
(OPTIONAL
'NOTE;
R2A AND R2B ARE MA RIB
ELECTRONICALLY I
ADJUSTED ON CHIP
AT FACTORY.
INVERTING
INVERTING O A A "
This product is available in six standard grades and five stan-
dard packages: the TO-99 can, the 8-pin mini-DIP in ceramic,
so or epoxy, and the 20-contact LCC.
The OP-77 is a direct or upgrade replacement forthe OP-07, 05,
725, or 108A op amps. 741 -types can be replaced by eliminat-
ing the Vos adjust pot. For higher precision performance referto
OP-177.
ABSOLUTE MAXIMUM RATINGS (Note 2)
Supply Voltage ................................................................. i22V
Differential Input Voltage ................ .. iSOV
Input Voltage (Note 1) m..................................................... i22V
Output Short-Circuit Duration ................................... Indefinite
Storage Temperature Range
J, Z, and RC Packages .............................. -65"C to +150°C
P Package n................................................. -65''C to +125°C
Operating Temperature Range
OP-77A, OP-77B (J, 2, RC) ....................... -55ot) to +125°C
OP-77E, OPP-77F (J, Z) .............................. -25t to +85°C
OP-77E, OP-NF, OP-77G (P, S) ......................... CPC to 70°
OP-77H (P, S), .............................................. -400C to +85°C
Junction Temperature (T,) .............................. -ti5t'C to +1500
Lead Temperature (Soldering, 60 sac.) ........................ +300°C
PACKAGE TYPE l, (Note 3) 910 UNITS
TO-99 (J) 150 18 t/W
8-Pin Hermetic DIP (Z) 148 16 cC/W
8-Pin Plastic DIP (P) 103 43 “CNV
20-Contact LCC (RC, TC) 98 38 'C/W
6-Pin so (S) 158 43 'ttVI
NOTES:
1. For supply voltages less than i22V, the absolute maximum input voltage is
equal to the supply voltage.
2. Absolute maximum ratings apply to both DICE and packaged parts, unless
otherwise noted.
3. 8A is specified far worst case mounting conditions, i.e., 8A is specified for
device in socket for T0, CerDIP, P-DIP, and LCC packages; l, is specified
for device soldered to printed circuit board for so package.
ELECTRICAL CHARACTERISTICS at VS = i15V, T, = +2550, unless otherwise noted.
' OP-77A OP-773
PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX UNITS
Input OffsetVoltage Vos - 10 25 - 20 60 WV
Long-Term Input Offset .
Voltage Stability AVOS/TIme (Note 1) - 0.2 - - 0.2 - pV/Mo
Input Offset Current los - 0.3 1.5 - 0.3 2.8 nA
Input Bias Current 1,3 Au 1.2 2.0 -0.2 1.2 2.8 nA
Input Noise Voltage elmp 0.1 Hz to 10Hz (Note 2) - 0.35 0.6 - 0.35 0.6 Fhlp-p
f0 = 10Hz (Note 2) - 10.3 18.0 - 10.3 18.0
Input Noise Voltage Density en 10 --- 100Hz (Note 2) - 10.0 13.0 - 10.0 13.0 V/V Hz
to = 1000Hz (Note 2) - 9.6 11.0 - 9.6 11.0
Input Noise Current “pp 0.1 HE to 10Hz (Note 2) - 14 30 - 14 30 pAp-p
f0 = 10H: (Note 2) - 0.32 0.80 - 0.32 0.80
Input Noise Current Density in fo = 100Hz (Note 2) - 0.14 0.23 - 0.14 0.23 pA/x/ Hz
f = 1000112 (Note 2) - 0.12 0.17 - 0.12 0.17
Input Resistance-
Differential-Mode RIN (Note 3) 26 " - 13.5 45 - Mn
Input Resistance-
Common-Mode RINCM - 200 - - 200 - GO
Input Voltage Range NR 113 t14 - 113 3:14 - V
Common-Mode Rejection Ratio CMR R Vc M a i13V - 0.1 1.0 _ 0.1 1.0 p.V/V
Power Supply Rejection Ratio PSRR Vs =:b3V no i18V - 0.7 3 - 0.7 3 pV/V
Large-Signal Voltage Gain Avo RL 2 2km. VO = 110V 5000 12000 - 2000 8000 - V/mV
RL 210k!) $13.5 KI 4.0 - $13.5 $14.0 -
Output Voltage Swing Vo RL 2 2kn 112.5 113.0 - 112.5 213.0 - V
RL 2r.1kn 112.0 i125 - $12.0 $12.5 -
Slew Rate SR RL it 2kn (Note 2) 0.1 0.3 - 0.1 0.3 - V/ps
Closed-Loop Bandwidth BW AvCL = +1 (Note 2) 0.4 0.6 - 0.4 0.6 - MHz
Open-Loop Output Resistance Ro - 60 - - 60 - n
. V = tISV No Load - 50 60 - so 60
Power Consumption Pd vs " WN, No Load - 3.5 4.5 - 3.5 4.5 mW
OlfsetAdjustment Range RP = 20kn - i3 - - 13 - mV
NOTES:
1. Long-Term Input Otfset Voltage Stability refers to the averaged trend line of
Vos vs Time over extended periods alter the first 30 days of operation.
Excluding the initial hour of operation, changes in Vos during the rest 30 ope!-
ating days are typically 2.5).LV.
2. Sample tested.
3. Guaranteed by design.
ELECTRICAL CHARACTERISTICS at Vs = i15V, -55° C S TA S +125°C, unless otherwise noted.
OP-77A 0P-77B
PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX UNITS
Input Offset Voltage vos - 25 60 - 45 120 11V
A53: :2: "01:: Offset ch03 (Note 1) - 0.1 0.3 - o 2 0% iN/oC
Input Offset Current log - 0.5 2.2 - 05 4.5 nA
Agerirfige Input Offset Current TCICS (Note 2) - 1.5 25 i 15 50 pA/°C
Input Bias Current In Hh2 2.4 4 -0.2 2.4 6 nA
ASE“ Input Bias Current TCIB (Note 2) - 8 25 - 15 35 pA/"C
Input Voltage Range NR t13 t13.5 - t13 143.5 - V
Common-Mode Rejection Ratio CMRR VCM = ur13V - 01 1.0 - 01 3 11W
éower Supply Rejection Ratio PSHH VS; t3Vto 1-18V - 1 3 - 1 5 PV/V
Large-Signal Voltage Gain Ac, Ru > 2kit, /, = t10V 2000 6000 - 1000 4000 - V/mV
Output Voltage Swing V0 HLEZKII tk i130 T, i1 :ISO - V
Power Consumption P; VS = 115V, No Load - 60 75 - 60 75 mW
NOTES:
I. OP-77A: TCVOS 15 100% tested.
2, Guaranteed by end-pant limits,
TYPICAL OFFSET VOLTAGE TEST CIRCUIT
TYPICAL LOW-FREQUENCY NOISE TEST CIRCUIT
"'---7
OP-77 "-o yo
vos . 4000
100SI ' 2
MTG OUTPUT
4.7;1F
_ T (mom FILTER)
INPUT REFERRED NOISE TOWS
OPTIONAL OFFSET NULLING CIRCUIT
BURN-IN CIRCUIT
Toki 10m
ELECTRICAL CHARACTERISTICS at Vs = i15V, TA = 25°C, unless otherwise noted.
OP-77E OP-77F 0P-77G/H
PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS
Input Offset Voltage Vos - 10 25 - 20 60 - 50 100 pV
Long-Term Vos .
- . - - 0.4 - - .4 -
Stability Vos/Time (Note 1) 0 3 0 pV/Mo
Input Offset Current los i 0.3 1.5 i 0.3 2.8 - 0.3 2.8 nA
Input Bias Current '3 -0.2 1.2 2.0 -0.2 1.2 2.8 -0.2 1.2 2.8 nA
0.1Hz to 10Hz
l . - 0.35 0.6 - 0.38 0.65 - 0.38 0.65 V
nput Noise Voltage en“, (Note 2) n W,
In ut Noise to=10Hz - 10.3 18.0 - 10.5 20.0 - 10.5 20.0
VZIta e Densit en 10 =100Hz (Note 2) i 10.0 13.0 - 10.2 13.5 - 10.2 13.5 nV/lez
g y fo =1000Hz - 9.6 11.0 - 9,8 11.5 - 9.8 11.5
Input Noise Current inp-p NS: tzo) 10Hz - 14 30 - 15 35 - 15 35 pAp,p
fo =10Hz - 0.32 0.80 - 0.35 0.90 - 0.35 0.90
Input Noise . P
Current Density In to =100Hz (Note 2) - 0.14 0.23 - 0.15 0.27 - 0.15 0.27 pA/V Hz
fo =1000Hz - 0.12 0.17 - 0.13 0.18 - 0.13 0.18
Input Resistance -
- . 4 - . -
DifferentiaI-Mode RIN (Note 3) 26 45 18 5 5 18 5 45 Mn
Input Resistance -
- - - 2 o - - -
Common-Mode RINCM 200 0 200 G!)
Input Voltage Range NR :13 i14 - :13 i141 - :13 $14 - V
Common-Mode
= i - 0.1 1. - .1 1. - .1 .
Rejection Ratio CMRR VCM 13V o 0 6 0 1 6 wNN
Tf" P'": y . PSRR Vs = i3V to i18V - 0.7 3.0 - 0.7 3.0 - 0.7 3.0 pV/V
Rejection Ratio
Large-Signal RL 2 2kn,
A 5000 12000 - 2000 6000 - 2000 6000 - V/mV
Voltage Gain V0 l/o = i10V
Out ut Volta e RL 210kn 113.5 i140 - i135 i140 - i135 i140 -
8an g Vo RL 2 2kn :125 113.0 - 112.5 :130 - t12.5 113.0 - v
g RL21kn 112.0 112.5 - $12.0 $12.5 - $12.0 $12.5 -
Slew Rate SR h P: 2kn (Note 2) 0.1 0.3 - 0.1 0.3 - 0.1 0.3 - V/ps
CIosed-Loop AVCL = fl
B " .6 - 0.4 0.6 - 0.4 0.6 - MH
Bandwidth W (Note 2) 0 0 E
Oper1-Loop Output Ro - 60 k - 60 - - 60 - n
Resistance
Vs; t 15V, No Load - 50 60 - 50 60 - 50 60
Power Consumption Po Vs = :3v, No Load - 3.5 4.5 - 3 5 4 5 - 3.5 4.5 m
Offset Adjustment RP: 20kfl - :3 - - :3 i - i3 - mV
NOTES:
l. Long-Term Input Offset Voltage Stability refers to the averaged trend [me
of Vos vs. Time over extended periods after the first 30 days of operation.
Excluding the initial hour of operation, changes in Vosduring the first 30
operating days are typically 2.5uV.
2. Sample tested.
3. Guaranteed by design.
ELECTRICAL CHARACTERISTICS at Vs = :15V, -250C s T, s +85°C for OP-77E/FJ and OP-77E/FZ, 0°C s TA s +70°C for
OP-77E/F/GP/GS, -40''C s TA s +85°C for OP-77HP/HS, unless otherwise noted.
OP-77E OP-77F OP-77G/H
PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS
J, Z Packages - 10 45 - 20 100 - - -
Input Offset Voltage Vos P Package - 10 55 - 20 100 - 80 150 "V
Average Input Offset J, 2 Packages - 0.1 0.3 - 0.2 0.6 - - - 0
Voltage Drift woos P Package (Note 1) - 0.3 0.6 - 0.4 1.0 - 0.7 1.2 "W o
mputOftsatCurrent los - 0.5 2.2 - 0.5 4.5 - 0.5 4.5 nA
Average Input Offset o
Current Drift TCIOS (Note 2) - 1.5 40 1.5 85 1.5 85 pA/ c
. E, F, G Grades -0.2 2.4 4.0 -0.2 2.4 6.0 -O.2 2.4 6.0
Input Bias Current its H Grade _ _ - _ - _ - 2.4 26.0 nA
Average Input Bias TCl (Note 2) e 40 15 60 - 15 so A/°C
Current Drift B h - p
Input Voltage Range IVR :130 213.5 - =13.0 113.5 - 213.0 113.5 - V
Common-Mode
Rejection Ratio CMRR vCM - s13V - 0.1 1.0 - 0.1 3.0 - 0.1 3.0 INN
Power Supply - - -
Heisman Ratio PSRR vs - AN tot18V - 1.0 3.0 1.0 5.0 1 o 5.0 uVN
Large-Signal R1. 2 2kg
_ - - v v
Voltage Gain Avo vo = :10v 2000 6000 1000 4000 1000 4000 /m
001001 Voltage v R 2 am ,12 113.0 - :12 113.0 - =12 t13.0 - v
Swing O L
Power Consumption l, VS = e15V, No Load - 60 " - 60 75 - 60 75 mW
NOTES:
1. 0P-77E: chos is 100% tested on J and 2 packages.
2. Guaranteed by end-point limits.
OPEN-LOOP GAIN LINEARITY
Vv TYPICAL h W 0P-77
PRECISION OP AMP
VIN = :IOV \
VX -""'S
F--ip ' OV l+10v G,
- _ - _ Ava x 650V/mV
- - - l - RL = 2kit
NOTES:
I, GAIN NOT CONSTANT CAUSES NONLINEAR ERRORS.
2. AVG SPEC lSONLV PART OF THE SOLUTION. AVO z 10,0COV/mV
3. CHECK YOUR OP AMP PERFORMANCE, ESPECIALLY AT TEMPERATURES. RL = Zkfl
Actual open-loop voltage gain can vary greatly at various output This is the output gain linearity trace for the new OP-77. The
voltages. All automated testers use end-point testing and there- output trace is virtually horizontal at all points, assuring ex-
fore only show the average gain. This causes errors in high tremely high gain accuracy. The average open-Ioop gain is truly
closed-loop gain circuits. Since this is so difficult for manufac- impressive - approximately 10,000,000.
turers to test, you should make your own evaluation. This simple
test circuit makes it easy. An ideal op amp would show a hori-
zontal scope trace.
ic,good price


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