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OP113N/a23avaiLow Noise, Low Drift Single-Supply Operational Amplifiers
OP213N/a39avaiDual Low Noise, Low Drift Single-Supply Operational Amplifiers
OP413ADN/a1avaiLow Noise, Low Drift Single-Supply Operational Amplifiers


OP213 ,Dual Low Noise, Low Drift Single-Supply Operational AmplifiersCHARACTERISTICSR = 2 kW 14 14 VOutput Voltage Swing High VOH LR = 2 kW,L–40∞C £ T £ +85∞C 13.9 13.9 ..
OP213EP ,Low Noise, Low Drift Single-Supply Operational AmplifiersCHARACTERISTICSOffset Voltage V OP113 75 150 μVOS–40°C ≤ T ≤ +85°C 125 225 μVAOP213 100 250 μV–40°C ..
OP213ES ,Low Noise, Low Drift Single-Supply Operational AmplifiersCHARACTERISTICSOffset Voltage V OP113 125 175 μVOS–40°C ≤ T ≤ +85°C 175 250 μVAOP213 150 300 μV–40° ..
OP213ES ,Low Noise, Low Drift Single-Supply Operational AmplifiersFEATURESSingle- or Dual-Supply Operation 8-Lead Narrow-Body SO 8-Lead Plastic DIPLow Noise: 4.7 nV/ ..
OP213ES-REEL , Low Noise, Low Drift Single-Supply Operational Amplifiers
OP213FP ,Low Noise, Low Drift Single-Supply Operational AmplifiersSpecifications subject to change without notice.–2– REV. COP113/OP213/OP413(@ V = +5.0 V, T = +258C ..
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OP113-OP213-OP413
Low Noise, Low Drift Single-Supply Operational Amplifiers
REV. E
Low Noise, Low Drift
Single-Supply Operational Amplifiers
PIN CONNECTIONSFEATURES
Single- or Dual-Supply Operation
Low Noise: 4.7 nV/÷Hz @ 1 kHz
Wide Bandwidth: 3.4 MHz
Low Offset Voltage: 100 �V
Very Low Drift: 0.2 �V/�C
Unity Gain Stable
No Phase Reversal
APPLICATIONS
Digital Scales
Multimedia
Strain Gages
Battery-Powered Instrumentation
Temperature Transducer Amplifier
GENERAL DESCRIPTION

The OP113 family of single supply operational amplifiers
features both low noise and drift. It has been designed for
systems with internal calibration. Often these processor-based
systems are capable of calibrating corrections for offset and gain,
but they cannot correct for temperature drifts and noise. Opti-
mized for these parameters, the OP113 family can be used to
take advantage of superior analog performance combined with
digital correction. Many systems using internal calibration oper-
ate from unipolar supplies, usually either 5 V or 12 V. The
OP113 family is designed to operate from single supplies from 4 V
to 36 V, and to maintain its low noise and precision performance.
The OP113 family is unity gain stable and has a typical gain
bandwidth product of 3.4 MHz. Slew rate is in excess of 1 V/ms.
Noise density is a very low 4.7 nV/÷Hz, and noise in the 0.1 Hz to
10 Hz band is 120 nV p-p. Input offset voltage is guaranteed
and offset drift is guaranteed to be less than 0.8 mV/∞C. Input
common-mode range includes the negative supply and to within
1 V of the positive supply over the full supply range. Phase reversal
protection is designed into the OP113 family for cases where
input voltage range is exceeded. Output voltage swings also include
the negative supply and go to within 1 V of the positive rail. The
output is capable of sinking and sourcing current throughout
its range and is specified with 600 W loads.
Digital scales and other strain gage applications benefit from the
very low noise and low drift of the OP113 family. Other applica-
tions include use as a buffer or amplifier for both A/D and D/A
sigma-delta converters. Often these converters have high resolu-
tions requiring the lowest noise amplifier to utilize their full
potential. Many of these converters operate in either single supply
or low supply voltage systems, and attaining the greater signal
swing possible increases system performance.
The OP113 family is specified for single 5 V and dual ±15 V
operation over the XIND—extended industrial (–40∞C to +85∞C)
temperature range. They are available in plastic and SOIC
surface mount packages.
8-Lead Narrow-Body SO8-Lead Plastic DIP
8-Lead Narrow-Body SO8-Lead Plastic DIP
14-Lead Plastic DIP16-Lead Wide-Body SO
OP113/OP213/OP413–SPECIFICATIONS
ELECTRICAL CHARACTERISTICS (@ VS = �15.0 V, TA = 25�C unless otherwise noted.

NOTES
OP113/OP213/OP413
ELECTRICAL CHARACTERISTICS

NOTESLong-term offset voltage is guaranteed by a 1000 hour life test performed on three independent lots at 125∞C, with an LTPD of 1.3.Guaranteed specifications, based on characterization data.
Specifications subject to change without notice.
(@ VS = 5.0 V, TA = 25�C unless otherwise noted.)
OP113/OP213/OP413
ABSOLUTE MAXIMUM RATINGS1

Supply Voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±18 V
Input Voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±18 V
Differential Input Voltage . . . . . . . . . . . . . . . . . . . . . . ±10 V
Output Short-Circuit Duration to GND . . . . . . . . . Indefinite
Storage Temperature Range
P, S Packages . . . . . . . . . . . . . . . . . . . . . . –65∞C to +150∞C
Operating Temperature Range
OP113/OP213/OP413E, F . . . . . . . . . . . . . –40∞C to +85∞C
Junction Temperature Range
P, S Packages . . . . . . . . . . . . . . . . . . . . . . –65∞C to +150∞C
Lead Temperature Range (Soldering, 60 sec) . . . . . . . 300∞C
NOTESAbsolute maximum ratings apply to both DICE and packaged parts, unless
otherwise noted.qJA is specified for the worst-case conditions, i.e., qJA is specified for device in
socket for cerdip, P-DIP, and LCC packages; qJA is specified for device sol-
dered in circuit board for SOIC package.
ORDERING GUIDE

*Not for new designs; obsolete April 2002.
CAUTION

ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000V readily
accumulate on the human body and test equipment and can discharge without detection. Although
the OP113/OP213/OP413 features proprietary ESD protection circuitry, permanent damage may
occur on devices subjected to high-energy electrostatic discharges. Therefore, proper ESD precautions
are recommended to avoid performance degradation or loss of functionality.
TPC 1a.OP113 Input Offset (VOS) Distribution
@ ±15 V
TPC 1b.OP213 Input Offset (VOS) Distribution
@ ±15 V
TPC 1c.OP413 Input Offset (VOS) Distribution
@ ±15 V
TPC 2a.OP113 Temperature Drift (TCVOS)
Distribution @ ±15 V
TPC 2b.OP213 Temperature Drift (TCVOS)
Distribution @ ±15 V
TPC 2c.OP413 Temperature Drift (TCVOS)
OP113/OP213/OP413
TPC 3.OP113 Input Bias Current vs. Temperature

TPC 4.Output Swing vs. Temperature and RL @ 5 V
TPC 5.Channel Separation
TPC 6.OP213 Input Bias Current vs. Temperature
TPC 7.Output Swing vs. Temperature and RL @ ±15 V
TPC 8.Open-Loop Gain vs. Temperature @ 5 V
TPC 9.OP413 Open-Loop Gain vs. Temperature

TPC 10.Open-Loop Gain, Phase vs. Frequency @ 5 V
TPC 11.Closed-Loop Gain vs. Frequency @ 5 V
TPC 12.OP213 Open-Loop Gain vs. Temperature
TPC 13.Open-Loop Gain, Phase vs. Frequency @ ±15 V
TPC 14.Closed-Loop Gain vs. Frequency @ ±15 V
OP113/OP213/OP413
TPC 15.Gain Bandwidth Product and Phase Margin vs.
Temperature @ 5 V
TPC 16.Voltage Noise Density vs. Frequency
TPC 17.Common-Mode Rejection vs. Frequency @ 5 V

TPC 18.Gain Bandwidth Product and Phase Margin vs.
Temperature @ ±15 V
TPC 19.Current Noise Density vs. Frequency
TPC 20.Common-Mode Rejection vs. Frequency @ ±15 V
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