MAX4092AUA-T Allicdata Electronics
Allicdata Part #:

MAX4092AUA-T-ND

Manufacturer Part#:

MAX4092AUA-T

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC OPAMP GP 500KHZ RRO 8UMAX
More Detail: General Purpose Amplifier 2 Circuit Rail-to-Rail 8...
DataSheet: MAX4092AUA-T datasheetMAX4092AUA-T Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Input Bias: 20nA
Base Part Number: MAX4092
Supplier Device Package: 8-uMAX
Package / Case: 8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C
Voltage - Supply, Single/Dual (±): 2.7 V ~ 6 V, ±1.35 V ~ 3 V
Current - Supply: 130µA
Voltage - Input Offset: 30µV
Series: Beyond-the-Rails™
Gain Bandwidth Product: 500kHz
Slew Rate: 0.2 V/µs
Output Type: Rail-to-Rail
Number of Circuits: 2
Amplifier Type: General Purpose
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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MAX4092AUA-T is a general-purpose, high-performance, low-voltage single-supply CMOS op amp designed to operate from 3V to 5.5V. It is specifically designed for low-voltage, single-supply systems using industrial and automotive battery sources. Its features include low offset voltage, low offset voltage drift, wide gain bandwidth, high precision and low input/output leakages. Because of these features, MAX4092AUA-T can be used in a wide range of linear amplifier applications, from low-voltage instrumentation amplifiers, to automotive temperature sensors and USB applications.The MAX4092AUA-T is a versatile, low voltage CMOS op amp designed to operate from a single 3V to 5.5V supply. It has a large common mode input range, wide gain bandwidth product, low input bias current, low offset voltage, low offset voltage temperature coefficient, low noise and low power consumption. The MAX4092AUA-T exhibits high precision performance even at 5.5V.In the field of instrumentation, the MAX4092AUA-T is a suitable choice for low voltage instrumentation amplifiers. It is suitable for amplifying current or voltage signals from 0.1μV to 10μV with high accuracy over a wide output range. The MAX4092AUA-T can provide high gain accuracy and high common mode rejection ratio for connecting to bridges and pixel detectors. In addition, its low input bias current and high common mode rejection ratio make it an ideal choice for amplifier stages in strain gauges and other precision sensors.The MAX4092AUA-T is also suitable for use as an op amp buffer. It provides a low input impedance and a high-impedance output suitable for driving low-impedance loads. The MAX4092AUA-T can be used as an active load with a low output impedance, enabling it to drive leds, transistors, relays, motors and loudspeakers. This makes it an ideal choice for controlling and driving actuators, providing an bufferred voltage amplification.The MAX4092AUA-T can also be used as a precision electrode buffer in analog-to-digital converters. Its low input current and high common mode rejection ratio enable it to accurately measure small analog signals. Additionally, its low noise specifications allow for the measurement of small signals with high precision.The working principle of MAX4092AUA-T is based on the main idea of a negative feedback topology. The output voltage of the op amp is fed back to its input in a closed loop manner. The amount of injected current from the inverting input determines the output voltage. The input bias current, offset voltage, and input/output impedances can be adjusted to obtain the desired closed-loop gain and bandwidth. The closed loop gain and bandwidth can also be adjusted according to the external feedback networks.In conclusion, MAX4092AUA-T is an excellent choice in a wide range of single-supply CMOS op amp applications, such as instrumentation, buffers, active loads and electrode buffers. Its high common mode rejection ratio and low input bias current allow it to accurately sense and measure small signals. Its closed loop topology enables it to provide high precision outputs even with wide output ranges.

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