LTC6360IDD#PBF Allicdata Electronics
Allicdata Part #:

LTC6360IDD#PBF-ND

Manufacturer Part#:

LTC6360IDD#PBF

Price: $ 3.68
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC ADC DRIVER TRUE ZERO 8DFN
More Detail: ADC Driver IC Data Acquisition 8-DFN (3x3)
DataSheet: LTC6360IDD#PBF datasheetLTC6360IDD#PBF Datasheet/PDF
Quantity: 356
1 +: $ 3.33900
25 +: $ 2.21911
100 +: $ 1.82498
Stock 356Can Ship Immediately
$ 3.68
Specifications
Series: --
Packaging: Tube 
Part Status: Active
Type: ADC Driver
Applications: Data Acquisition
Mounting Type: Surface Mount
Package / Case: 8-WFDFN Exposed Pad
Supplier Device Package: 8-DFN (3x3)
Base Part Number: LTC6360
Description

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Introduction

The LTC6360IDD#PBF is an integrated circuit amplifier designed specifically for applications requiring a differential amplifier with high input impedance. It offers a high input differential gain of up to 24 dB, with a low distortion and noise performance over a wide frequency range. It includes an integrated voltage regulator, from which its output level and power can be regulated, allowing it to be tailored for a variety of applications. The LTC6360IDD#PBF has become a popular choice for applications in industrial, automotive, and consumer electronics markets.

Principles of Operation

The LTC6360IDD#PBF operates on the principle of a differential amplifier, which utilizes two input signals and a pair of complementary transistors to provide the required output. This principle is based on the notion of using two opposite (or complementary) inputs to generate an output signal that is proportional to the difference between the two inputs, referred to as the differential gain. In the case of the LTC6360IDD#PBF, the differential gain is typically between 10 and 24 dB, which allows it to detect small signal variations between two inputs.The two inputs are typically connected to two different sources of the same signal. The physical layout of the differential amplifier circuit arranges the complementary transistors in such a way that the signal is amplified, with a resultant signal at the output that is the difference between the two input signals. The LTC6360IDD#PBF is also designed to minimize differential phase errors (commonly referred to as phase differential) between the inputs, ensuring that the overall amplified signal is accurate and reliable.

Application Field

The LTC6360IDD#PBF is well suited for many applications, due to its high input differential gain and low distortion levels. Its wide frequency response makes it especially suitable for industrial and automotive applications. It is typically used for signal conditioning in transducer systems, such as microphones, thermocouples, and strain gauges. The high input impedance of the LTC6360IDD#PBF enables it to be connected directly to sensor inputs, eliminating the need for external buffering circuitry. This makes it suitable for applications that require low-noise signal amplification, such as audio applications. The wide frequency response also makes it suitable for high-frequency applications, such as medical imaging. The integrated voltage regulator also offers flexibility, as the output level and power can be varied to meet the requirements of specific applications. This makes it suitable for applications that require high-precision output levels, such as instrumentation, laboratory and test equipment, and waveform synthesis.

Conclusion

The LTC6360IDD#PBF is an integrated amplifier that offers a high input differential gain and low distortion levels. Its wide frequency response makes it suitable for applications in industrial, automotive, and consumer electronics markets. It is especially suited for sensing applications, due to its high input impedance and low noise performance. The integrated voltage regulator also makes it suitable for applications that require high precision output levels. Overall, the LTC6360IDD#PBF is an ideal choice for a variety of linear applications.

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

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