SP Amp INSTR Amp Single 18V/36V 8-Pin

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Subtotal (1 tube of 75 units)*

£175.65

(exc. VAT)

£210.75

(inc. VAT)

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Units
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Per Tube*
75 - 75£2.342£175.65
150 +£2.283£171.23

*price indicative

RS Stock No.:
922-3259
Mfr. Part No.:
INA126U
Brand:
Texas Instruments
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Brand

Texas Instruments

Power Supply Type

Dual

Package Type

SOIC

Mounting Type

Surface Mount

Typical Single Supply Voltage

3 V, 5 V, 9 V, 12 V, 15 V, 18 V, 24 V, 28 V

Pin Count

8

Typical Dual Supply Voltage

±15V

Maximum Input Offset Voltage

0.25mV

Minimum Operating Temperature

-40 °C

Maximum Operating Temperature

+85 °C

Maximum Input Resistance

1GΩ

Minimum CMRR

83dB

Maximum Supply Current

0.2 mA

Dimensions

4.9 x 3.91 x 1.58mm

Length

4.9mm

Width

3.91mm

Height

1.58mm

Instrumentation Amplifiers, Single, Texas Instruments


The Instrumentation Amplifier ICs amplify the difference between two input signal voltages, while rejecting any signals that are common to both inputs. The DC precision and gain accuracy is maintained within a noisy environment, and also where large common-mode signals (AC power line frequency) are present.

The Texas Instruments INA126 and INA2126 are precision instrumentation amplifiers for accurate, low noise differential-signal acquisition. Their two-op-amp design provides excellent performance with low quiescent current (175 μA/channel). Combined with a wide operating voltage range of ±1.35 V to ±18 V, makes the INAx126 ideal for portable instrumentation and data acquisition systems.

Low Quiescent Current: 175 μA/channel
Wide Supply Range: ±1.35 V to ±18 V
Low Offset Voltage: 250-μV Maximum
Low Offset Drift: 3-μV/°C Maximum
Low Noise: 35 nV/√Hz
Low Input Bias Current: 25-nA Maximum
8-Pin PDIP, SOIC, VSSOP Surface-Mount Dual:
16-Pin PDIP, SOIC, SSOP


Instrumentation Amplifiers, Texas Instruments


Instrumentation amplifiers are composite differential amplifier blocks generally incorporating a classic three operational amplifier configuration. They provide high input impedance, very high common-mode rejection and allow differential gain to be accurately set via internal or external resistors. Differential amplifiers offer low DC offset and drift coupled with high open loop gain and low noise and are frequently used in high-precision test and measurement applications and electrically noisy environments.

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