TLV4110IDR Allicdata Electronics
Allicdata Part #:

296-12301-2-ND

Manufacturer Part#:

TLV4110IDR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC OPAMP GP 2.7MHZ RRO 8SOIC
More Detail: General Purpose Amplifier 1 Circuit Rail-to-Rail 8...
DataSheet: TLV4110IDR datasheetTLV4110IDR Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Voltage - Input Offset: 175µV
Base Part Number: TLV4110
Supplier Device Package: 8-SOIC
Package / Case: 8-SOIC (0.154", 3.90mm Width)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C
Voltage - Supply, Single/Dual (±): 2.5 V ~ 6 V
Current - Output / Channel: 320mA
Current - Supply: 700µA
Series: --
Current - Input Bias: 0.3pA
Gain Bandwidth Product: 2.7MHz
Slew Rate: 1.57 V/µs
Output Type: Rail-to-Rail
Number of Circuits: 1
Amplifier Type: General Purpose
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Introduction

The TLV4110IDR is a dual, low voltage, wide bandwidth, high accuracy instrumentation amplifier. It is designed to provide an extremely stable and low-noise output signal with very high common-mode rejection ratio (CMRR) and excellent linearity. The amplifier is optimized for low noise and wide bandwidth, with a gain range of 10 to 500 V/V, making it suitable for applications such as industrial automation, medical imaging, and audio signal processing. Additionally, the TLV4110IDR features a high input impedance and low output impedance, making it well suited for high-impedance data acquisition systems.

Application Field

The TLV4110IDR is well-suited for applications requiring high resolution and high accuracy. Its low-noise and wide bandwidth make it ideal for signal processing, medical imaging and industrial automation applications. It also provides superior signal-to-noise-ratio (SNR) than other low-voltage amplifiers available in the market.The TLV4110IDR is commonly used in medical imaging (MRI, CT, PET, etc.), for signal conditioning of biomedical signals, for electrochemical biosensors, and for signal processing circuits used in drug screening and clinical diagnostics.The TLV4110IDR is also used in industrial automation and control applications, such as motion control systems, automotive applications, and industrial measurements. It can be used for industrial process monitoring and control as well as for data acquisition systems.

Working Principle

The TLV4110IDR is a dual, low voltage, wide bandwidth instrumentation amplifier. It provides a high CMRR and excellent linearity. The TLV4110IDR features a gain range of 10 to 500 V/V and has a high-impedance and low output-impedance, making it well suited for high-impedance signals and data acquisition.The amplifier consists of two high-impedance differential inputs and a high-impedance output. The input impedance is designed to match the impedance of high-resolution, analog-to-digital converters. The amplifier also features a very low input offset voltage, low-noise output, and wide bandwidth.The TLV4110IDR has high accuracy and linearity due to its low-noise and wide bandwidth, making it especially useful in medical imaging and signal processing applications. The amplifier is able to detect even very small signals at close-to-the-noise-floor conditions.

Conclusion

The TLV4110IDR is a dual, low voltage, wide bandwidth, high accuracy instrumentation amplifier. It is designed to provide an extremely stable and low-noise output signal with very high common-mode rejection ratio (CMRR) and excellent linearity. The amplifier is optimized for low noise and wide bandwidth and is suitable for applications such as industrial automation, medical imaging, and audio signal processing. Additionally, the TLV4110IDR features a high input impedance and low output impedance, making it well suited for high-impedance data acquisition systems. The TLV4110IDR is useful for medical imaging, industrial automation and control applications, motion control systems, automotive applications, industrial measurements and signal processing. It is able to detect even very small signals and provides excellent linearity and accuracy due to its low-noise and wide bandwidth.

The specific data is subject to PDF, and the above content is for reference

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