LTC6401CUD-20#TRPBF Allicdata Electronics
Allicdata Part #:

LTC6401CUD-20#TRPBF-ND

Manufacturer Part#:

LTC6401CUD-20#TRPBF

Price: $ 2.52
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC ADC DRIVER DIFF 16-QFN
More Detail: ADC Driver IC Data Acquisition 16-QFN-EP (3x3)
DataSheet: LTC6401CUD-20#TRPBF datasheetLTC6401CUD-20#TRPBF Datasheet/PDF
Quantity: 1000
2500 +: $ 2.29409
Stock 1000Can Ship Immediately
$ 2.52
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: ADC Driver
Applications: Data Acquisition
Mounting Type: Surface Mount
Package / Case: 16-WFQFN Exposed Pad
Supplier Device Package: 16-QFN-EP (3x3)
Base Part Number: LTC6401
Description

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LTC6401CUD-20#TRPBF is a special purpose linear amplifier designed for application in an array of demanding electrical projects. This device combines an amplifier and a precision gain-setting circuit into an integrated package, making it well-suited for signal amplification and signal conditioning applications. The device operates over a range of 5V to 50V, with a maximum gain of 24dB and a 3-pole Butterworth low-pass filter.

Device Description

The LTC6401CUD-20#TRPBF is a low cost and highly integrated amplifier consisting of a low power, high precision impedance matching amplifier stage, a precision gain-setting circuit, and a 3-pole Butterworth low-pass filter. The gain-setting circuit utilizes a novel adaptive feedback architecture, allowing it to achieve high gain accuracy over wide temperature and supply ranges. The amplifier is capable of operating with supply voltages between 5V and 50V and providing gains of up to 24dB. The device has an excellent THD+N performance of 0.003% at 1kHz and a wide frequency response from 0.5Hz to 100kHz. The integrated 3-pole Butterworth low-pass filter provides linear phase characteristics and maximum group delay variations of 5ns at the zero crossings of the filter response.

Applications

The LTC6401CUD-20#TRPBF is designed for applications requiring precision gain control and reliable signal conditioning. It is ideal for general purpose signal gain control and amplification, as well as for use in signal conditioning of audio, RF, and data applications. It is suitable for use in systems such as signal measurement and analysis equipment, sound systems, wireless telecommunication systems, and automated test equipment.

Working Principle

The LTC6401CUD-20#TRPBF uses an adaptive feedback architecture to provide precision gain setting. The device consists of a low power amplifier with a gain-setting circuit connected in parallel with the input signal. The gain-setting circuit consists of a capacitor, which acts as a reducing element, and a current source, which works as an amplifier. The two components of the gain-setting circuit operate in tandem and provide the required gain setting. When the gain-setting capacitor is charged with a current, the current source generates a gain error signal, which is passed to the amplifier feedback network and adjusted to provide the desired gain. This adaptive feedback architecture ensures accurate gain control over a wide range of supply voltage and temperature, and also provides highly linear phase characteristics. The LTC6401CUD-20#TRPBF also features a 3-pole Butterworth low-pass filter, which provides excellent frequency response characteristics. This filter is designed to suppress high frequency noise, reduce signal distortion, and improve the selectivity of an amplifier circuit.

Conclusion

The LTC6401CUD-20#TRPBF is a special-purpose linear amplifier designed for a wide range of applications. Its innovative design combines a low power amplifier and a precision gain-setting circuit into an integrated package, making it well-suited for signal amplification and signal conditioning applications. This device provides high accuracy gains and superior frequency response characteristics, making it an ideal choice for precision and reliable signal conditioning.

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

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