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8-DIP
Integrated Circuits (ICs)

INA129P

Active
Texas Instruments

PRECISION, LOW POWER INSTRUMENTATION AMPLIFIERS

8-DIP
Integrated Circuits (ICs)

INA129P

Active
Texas Instruments

PRECISION, LOW POWER INSTRUMENTATION AMPLIFIERS

Technical Specifications

Parameters and characteristics for this part

SpecificationINA129P
-3db Bandwidth1.3 MHz
Amplifier TypeInstrumentation
Current - Input Bias2 nA
Current - Output / Channel15 mA
Current - Supply700 µA
Mounting TypeThrough Hole
Number of Circuits1
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Package / Case0.3 in
Package / Case8-DIP
Package / Case7.62 mm
Slew Rate4 V/µs
Supplier Device Package8-PDIP
Voltage - Input Offset10 µV
Voltage - Supply Span (Max) [Max]36 V
Voltage - Supply Span (Min) [Min]4.5 V

INA129-HT Series

High Temperature Precision, Low Power Instrumentation Amplifiers

Part-3db BandwidthPackage / CasePackage / Case [y]Package / Case [x]Operating Temperature [Max]Operating Temperature [Min]Mounting TypeAmplifier TypeCurrent - SupplyVoltage - Input OffsetSlew RateCurrent - Input BiasCurrent - Output / ChannelVoltage - Supply Span (Max) [Max]Voltage - Supply Span (Min) [Min]Supplier Device PackageNumber of CircuitsPackage / CasePackage / Case
8-SOIC
Texas Instruments
1.3 MHz
8-SOIC
3.9 mm
0.154 in
125 °C
-40 °C
Surface Mount
Instrumentation
700 µA
25 çV
4 V/µs
2 nA
15 mA
36 V
4.5 V
8-SOIC
1
Texas Instruments-INA129SJD Instrumentation Amplifiers INST Amp Single ±18V 8-Pin SBCDIP Tube
Texas Instruments
1.3 MHz
8-CDIP
210 °C
-55 °C
Through Hole
Instrumentation
700 µA
25 çV
4 V/µs
2 nA
15 mA
36 V
4.5 V
8-CDIP
1
7.62 mm
0.3 in
8-SOIC
Texas Instruments
1.3 MHz
8-SOIC
3.9 mm
0.154 in
125 °C
-40 °C
Surface Mount
Instrumentation
700 µA
25 çV
4 V/µs
2 nA
15 mA
36 V
4.5 V
8-SOIC
1
CFP (HKQ)
Texas Instruments
1.3 MHz
8-CSOIC
5.65 mm
0.22 in
210 °C
-55 °C
Surface Mount
Instrumentation
700 µA
25 çV
4 V/µs
2 nA
15 mA
36 V
4.5 V
8-CFP
1
8-SOIC
Texas Instruments
1.3 MHz
8-SOIC
3.9 mm
0.154 in
125 °C
-40 °C
Surface Mount
Instrumentation
700 µA
25 çV
4 V/µs
2 nA
15 mA
36 V
4.5 V
8-SOIC
1
8-SOIC
Texas Instruments
1.3 MHz
8-SOIC
3.9 mm
0.154 in
125 °C
-40 °C
Surface Mount
Instrumentation
700 µA
25 çV
4 V/µs
2 nA
15 mA
36 V
4.5 V
8-SOIC
1
8-DIP
Texas Instruments
1.3 MHz
8-DIP
85 °C
-40 °C
Through Hole
Instrumentation
700 µA
10 µV
4 V/µs
20 nA
15 mA
36 V
4.5 V
8-PDIP
1
7.62 mm
0.3 in
INA129SKGD1
Texas Instruments
1.3 MHz
Die
125 °C
-55 °C
Surface Mount
Instrumentation
700 µA
25 çV
4 V/µs
2 nA
15 mA
36 V
4.5 V
0-XCEPT
1
8-DIP
Texas Instruments
1.3 MHz
8-DIP
85 °C
-40 °C
Through Hole
Instrumentation
700 µA
10 µV
4 V/µs
2 nA
15 mA
36 V
4.5 V
8-PDIP
1
7.62 mm
0.3 in

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyBulk 50$ 6.01
50$ 6.01
Tube 1$ 10.47
1$ 10.47
10$ 9.46
10$ 9.46
50$ 9.02
50$ 9.02
100$ 7.83
100$ 7.83
250$ 7.48
250$ 7.48
500$ 6.82
500$ 6.82
1000$ 5.94
1000$ 5.94
NewarkEach 1$ 12.04
10$ 11.50
25$ 11.14
50$ 10.56
100$ 10.18
250$ 9.77
500$ 9.59
Texas InstrumentsTUBE 1$ 8.26
100$ 6.74
250$ 5.29
1000$ 4.49

Description

General part information

INA129-HT Series

The INA128-HT and INA129-HT are low-power, general-purpose instrumentation amplifiers offering excellent accuracy. The versatile three-operational-amplifier design and small size make them ideal for a wide range of applications. Current-feedback input circuitry provides wide bandwidth even at high gain. A single external resistor sets any gain from 1 to 10000. The INA128-HT provides an industry-standard gain equation; the INA129-HT gain equation is compatible with the AD620.

The INA128-HT and INA129-HT are laser trimmed for very low offset voltage (25 µV Typ) and high common-mode rejection (93 dB at G ≥ 100). These devices operate with power supplies as low as ±2.25 V, and quiescent current of 2 mA, typically. Internal input protection can withstand up to ±40 V without damage.

Texas Instruments' high-temperature products use highly optimized silicon (die) solutions with design and process enhancements to maximize performance over extended temperatures.