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OP07CCSAMAXIM ?N/a80avaiLow Offset Voltage Operational Amplifier


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OP07CCSA
Low Offset Voltage Operational Amplifier
19-0418; Rev 1; 8/95
General Description
The OP07 is a precision operational amplifier with
very low input offset voltage (10pV typ., 25pV max.
for the OP07A), input offset drift of 0.2pV/°C and low
input bias current of0.7nA. The wide input common
mode range of i14V combined with high CMRR of
110dB minimum (OP07A). plus high input impedance
and high open-loop gain make these devices particu-
larly useful for high-gain instrumentation applications.
The excellent linearity and gain accuracy are main-
tained at high open-loop gains, over both time and
temperature. The OP07 has become an industry
standard and Maxim's reliability and quality are
added advantages.
Applications
iAMLifll2al2AMl
Low Offset
Voltage Operatignal Amplifier
Features
. Ultra Low Offset Voltage: 10W
t Ultra Low Offset Voltage Drltt: 0.2uV/°C
. Ultra Stable vs. Time: 0.2pV/Monlh
. Ultra Low Nolse: 0.35;:va
. Wide Supply Voltage: A3V to i18V
. High Common Mode Input: i14V
. No External Components Required
. Fits AD510, 725, 108A/308A, 741 Sockets
Ordering Information
Precision Amplifiers PART TEMP. RANGE PACKAGE
Thermocouple Amplifiers OP07AJ -55''C to +125''C T0-99
Low Level Signal Processing (2P07d "5506 to t125''C TO-N
. . OP07EJ 0°C to +70°C TO-99
Medical Instrumentation
. . . 09070.1 tPC to r7ty'C TO-99
Strain Gauge Amplifiers OP07DJ tPC to +7000 TO-99
High Accuracy Data Acquisition 0mma 0°C to +70°c 8 Lead Plastic Dip
OP07CP 0°C to +70°C 8 Lead Plastic Dip
Pin Configuration OPO7DP 0°C to t70''C a Lead Plastic Dip
0P07AZ -55''C to +125°C 8 Lead Hermetic Dip
Top View Rn TRIM OP07Z -55°C to +125°C 8 Lead Hermetic Dip
OP07EZ tPC to +70°C 8 Lead Hermetic Dip
OP07CZ tPC to +70°C 8 Lead Hermetic Dip
OP07ECSA ty'C to +70°C 8 Lead Small Outline
0P07CCSA 0°C to +70°C 8 Lead Small Outline
OP07DCSA tPC to +70°C 8 Lead Small Outline
8 Lead TO-99 OP07D/D 0°C to +70°C Dice
W . Contact factory for dice specifications.
y TRIM 1 q
us Att [f mum. g :03 Tam Typical Operating Circuit
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8 Lead Dip 35:313. '
Vns mm l 1E1 Vus mm /sflllflt ‘
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High-Stability
8 Lead Sritall Outline Thermocouple Amplifier
MAXIM Maxim Integrated Products 1
Call to" free f.BtNN99tbtttttto for free samples or literature.
Low Offset
Voltage Operational Amplifier
ABSOLUTE MAXIMUM RATINGS
Total Supply Voltage (V* to W) ......................... i22V
Internal Power Dissipation ........................... 500mW
TO-99(0) - derate at 7.1mW/°C above +80°C
Hermetic Dip(Z) - aerate at 6.7mW/°C above +75°C
Plastic Dip(P) - derate at 5.6mW/''C above +36°C
Small Outline - darate at 5mW/°C above +55°C
Differential Input Voltage .............................. iaov
Input Voltage (Note 1) ................................. i22V
Note 1:
Storage Temperature Range ................. -65°C to +150°C
Operating Temperature Range
0P07AJ, 0P07AZ. OP07J and OPO7Z ..... -55°C to +125°C
All Other Parts Pr.......................... tPC to +70°C
Lead Temperature (Soldering, 10 sec) . . ........ +300°C
Duration of Output Short Circuit ........q.......... Indefinite
Junction Temperature (Tu) ................... -65''C to +160°C
For supply voltages less than i22v, the absolute maximum input voltage is equal to the supply voltage.
Slrsssas above those listed under "Atmotuttt Maximum Ratings" may cause permanent damage to the device. These are stress ratings only and functional
operation ot the device at these or any olhor conditions above thosa indicated in the operational sections of the sptttrititatiorts is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect devica reliability.
ELECTRICAL CHARACTERISTICS
(Vs = +-15V, TA = +25''C, unless otherwise noted.)
OPO'IA OPO‘I
PARAMETER SYMBOL CONDITIONS UNITS
MIN TYP MAX MIN TYP MAX
Input Offset Voltage Vos (Note 2) 10 ' 25 30 75 PV
Long Term Input . uV/
Offset Voltage Stability Vos/Time (Note 3) 0.2 1.0 0.2 “0 Month
Input Offset Current los 0.3 2.0 0.4 2.8 nA
Input Bias Current IE 10.7 12.0 tl.0 +_3.0 nA
Input Noise Voltage eN 94. 0.1 Hz to 10Hz (Note 4) 0.35 0.6 0.35 0.6 11V,”
. to =10Hz(Note 4) 10.3 18.0 10.3 18.0
g',eie'i'"' Voltage er: to = 100Hz (Note 4) 10.0 13.0 10.0 13.0 nVA/FE
to = 1000Hz (Note 4) 9.6 11.0 9.6 11.0
Input Noise Current IN P-P 0.1Hz to 10Hz (Note 4) 14 30 14 30 pAp_p
. f0 = 10Hz (Note 4) 0.32 0.80 0.32 0.80
l'e,uSlolsl'nsity IN to = 100Hz (Note 4) 0.14 0.23 0.14 0.23 pM/E
to =1000Hz(Note4) 0.12 0.17 0.12 _ 0.17
Input Resistance V
DifferentiaI-Mode Rm (Note 5) 30 80 20 © Mn
Input Resistance
Common-Mode Rm“ 200 200 Gn
Input Voltage Range IVR £13 t14 _+13 i14 V
Common-Mode -
Rejection Ratio CMRR vo, - t13V 110 126 110 126 dB
Power Supply w'
Rejection Ratio PSRR Vs t3V to i18V 4 10 4 10 MN
. Ru 2 2kn, Vo = tlov 300 500 200 500
'tfttitlrlif, Avo Ru 2 5000, Vo = t0.5V 150 400 150 400 V/mV
v5 = tml, (Note lil
RL 210kft $12.5 $13.0 $12.5 $13.0
Output Voltage Swing No RLz 2kfl $12.0 $12.8 112.0 $12.8 V
RLZ1kn _+10.5 112.0 t10.5 112.0
Note 2: OP07A grade Vos is measured one minute after application tof power, For all other grades Vos is measured approximately 0.5
seconds after application of power.
Note 3: Long-Term Input Offset Voltage Stability refers to the average trend line otVos vs. Time over extended periods after the first 30
days of operation. Excluding the initial hour of operation, changes in Vos during the first 30 operating days are typically
2.5yV. Parameter is sample tested.
N019 4: Sample tested.
Note 5: Guaranteed by design.
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