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AD708ADN/a5avaiUltralow Offset Voltage Dual Op Amp


AD708 ,Ultralow Offset Voltage Dual Op AmpCHARACTERISTICSOffset Voltage 80 50 30 μVT to T 150 75 50 μVMIN MAXOffset Voltage Drift 1.0 0.4 0.3 ..
AD708AH ,Ultralow Offset Voltage Dual Op Ampspecifications are guaranteed after 5 minutes of operation at T = +25°C.A2Matching is defined as th ..
AD708AQ ,Ultralow Offset Voltage Dual Op AmpSpecifications in boldface are tested on all production units at final electrical test. Results fr ..
AD708AQ. ,Ultralow Offset Voltage Dual Op AmpSpecifications subject to change without notice.1ABSOLUTE MAXIMUM RATINGSMETALIZATION PHOTOGRAPHSup ..
AD708BQ ,Ultralow Offset Voltage Dual Op AmpCharacteristics30 mV max Offset Voltage Match0.3 mV/8C max Offset Voltage Drift Match130 dB min CMR ..
AD708BQ ,Ultralow Offset Voltage Dual Op AmpFEATURESCONNECTION DIAGRAMSVery High DC PrecisionTO-99 (H) Package30 mV max Offset Voltage0.3 mV/8C ..
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ADC1241CMJ ,Self-Calibrating 12-Bit Plus Sign mP-Compatible A/D Converter with Sample-and-HoldADC1241Self-Calibrating12-BitPlusSignmP-CompatibleA/DConverterwithSample-and-HoldNovember1994ADC124 ..
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ADC12451CIJ ,Dynamically-Tested Self-Calibrating 12-Bit Plus Sign A/D Converter with Sample and Hold [Life-time buy]FeaturesOn request, the ADC12451 goes through a self-calibrationYSelf-calibration provides excellen ..
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AD708
Ultralow Offset Voltage Dual Op Amp
CONNECTION DIAGRAMS
TO-99 (H) Package
Plastic (N ), and Cerdip (Q) Packages

REV.BUltralow Offset Voltage
Dual Op Amp
FEATURES
Very High DC Precision
30 mV max Offset Voltage
0.3 mV/8C max Offset Voltage Drift
0.35 mV p-p max Voltage Noise (0.1 Hz to 10 Hz)
5 Million V/V min Open Loop Gain
130 dB min CMRR
120 dB min PSRR
Matching Characteristics
30 mV max Offset Voltage Match
0.3 mV/8C max Offset Voltage Drift Match
130 dB min CMRR Match
Single Version: AD707
Available in 8-Pin Plastic Mini-DIP,
Hermetic Cerdip and TO-99 Metal Can
Packages, Chips and /883B Parts Available.
PRODUCT DESCRIPTION

The AD708 is a very high precision, dual monolithic operational
amplifier. Each amplifier individually offers excellent dc precision
with the best available max offset voltage and offset voltage drift
of any dual bipolar op amp. In addition, the matching specifica-
tions are the best available in any dual op amp.
The AD708 sets a new standards for dual precision op amps by
providing 5 V/μV min open loop gain and guaranteed max input
voltage noise of 350 nV p-p (0.1 Hz to 10 Hz). All dc specifica-
tions show excellent stability over temperature, with offset
voltage drift typically 0.1 μV/°C and input bias current drift of
25 pA/°C max. Both CMRR (130 dB min) and PSRR (120 dB
min) are an order of magnitude improved over any available
single monolithic op amp except the AD707.
The AD708 is available in four performance grades. The
AD708J is rated over the commercial temperature range of 0°C
to +70°C and jis available in a plastic mini-DIP package. The
AD708A and AD708B are rated over the industrial temperature
range of –40°C to +85°C and are available in a cerdip and TO-
99 package. The AD708S is rated over the military temperature
range of –55°C to +125°C and is available in cerdip and TO-99
packages. Military versions are available processed to MIL-
STD-883B, Rev. C.
APPLICATION HIGHLIGHTS
The combination of outstanding matching and individual
specifications make the AD708 ideal for constructing high
gain, precision instrumentation amplifiers.The low offset voltage drift and low noise of the AD708
allows the designer to amplify very small signals without
sacrificing overall system performance.The AD708’s 10 V/μV typical open loop gain and 140 dB
common-mode rejection make it ideal for precision
applications.Unmounted dice are available for hybrid circuit applications.The AD708 is an improved replacement for the LT1002.
AD708–SPECIFICATIONS(@ +258C and 615 V dc, unless otherwise noted)
NOTESInput offset voltage specifications are guaranteed after 5 minutes of operation at TA = +25°C.Matching is defined as the difference between parameters of the two amplifiers.
All min and max specifications are guaranteed. Specifications in boldface are tested on all production units at final electrical test. Results from those tests are used to
calculate outgoing quality levels.
Specifications subject to change without notice.
ABSOLUTE MAXIMUM RATINGS1

Supply Voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±22 V
Internal Power Dissipation2
Input Voltage3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±VS
Output Short Circuit Duration . . . . . . . . . . . . . . . . Indefinite
Differential Input Voltage . . . . . . . . . . . . . . . . . . +VS and –VS
Storage Temperature Range (Q, H) . . . . . . . –65°C to +150°C
Storage Temperature Range (N) . . . . . . . . . –65°C to +125°C
Lead Temperature Range (Soldering 60 sec) . . . . . . . . +300°C
NOTES
1Stresses above those listed under “Absolute Maximum Ratings” may cause
permanent damage to the device. This is a stress rating only and functional
operation of the device at these or any other conditions above those indicated in
the operational section of this specification is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.
2Thermal Characteristics
8-Pin Plastic Package:θJC = 33°C/Watt, θJA = 100°C/Watt
8-Pin Cerdip package:θJC = 30°C/Watt, θJA = 110°C/Watt
8-Pin Metal Can Package:θJC = 65°C/Watt, θJA = 150°C/Watt.
3For supply voltages less than ±22 V, the absolute maximum input voltage is
equal to the supply voltage.
METALIZATION PHOTOGRAPH

Dimensions shown in inches and (mm).
Contact factory for latest dimensions.
AD708
ORDERING GUIDE

*N = Plastic DIP; Q = Cerdip; H = Hermetic Metal Can.
(VS = 615 V and TA = +258C unless otherwise noted)AD708–Typical Characteristics

Figure 20.Typical Distribution of Input
Bias Current Match
Crosstalk from Thermal Effects of Power Dissipation
AD708–Matching Characteristics

Figure 19.Typical Distribution of Offset
Voltage Drift Match
Figure 18.Typical Distribution of Offset
Voltage Match
Figure 21.Typical Distribution of Input
Offset Current Match
Figure 22.PSRR Match vs.
Temperature
Figure 23.CMRR Match vs.
Temperature
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