LTC2325CUKG-16#TRPBF Allicdata Electronics
Allicdata Part #:

LTC2325CUKG-16#TRPBF-ND

Manufacturer Part#:

LTC2325CUKG-16#TRPBF

Price: $ 15.46
Product Category:

Integrated Circuits (ICs)

Manufacturer: Linear Technology/Analog Devices
Short Description: IC ADC 16BIT 5MSPS SAR 52QFN
More Detail: 16 Bit Analog to Digital Converter 4 Input 4 SAR 5...
DataSheet: LTC2325CUKG-16#TRPBF datasheetLTC2325CUKG-16#TRPBF Datasheet/PDF
Quantity: 1000
2000 +: $ 14.04730
Stock 1000Can Ship Immediately
$ 15.46
Specifications
Number of A/D Converters: 4
Base Part Number: LTC2325
Supplier Device Package: 52-QFN (7x8)
Package / Case: 52-WFQFN Exposed Pad
Operating Temperature: 0°C ~ 70°C
Features: Simultaneous Sampling
Voltage - Supply, Digital: 3.13 V ~ 3.47 V, 5V
Voltage - Supply, Analog: 3.13 V ~ 3.47 V, 5V
Reference Type: External, Internal
Architecture: SAR
Series: --
Ratio - S/H:ADC: 1:1
Configuration: S/H-ADC
Data Interface: LVDS - Parallel, SPI
Input Type: Differential
Number of Inputs: 4
Sampling Rate (Per Second): 5M
Number of Bits: 16
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Analog to Digital Converters, commonly known as ADCs, are integral components in modern data acquisition systems. They are used to convert analog electrical signals into digital representations, which then can be processed, stored, or transmitted. The Texas Instruments LTC2325CUKG-16#TRPBF, a 16-bit, 5GSPS pipelined ADC, is an example of such a device that is widely used in a variety of applications. This article will discuss the applications of the LTC2325CUKG-16#TRPBF and its working principle.

Applications of the LTC2325CUKG-16#TRPBF

The LTC2325CUKG-16#TRPBF is a high-speed, low-power, low-noise ADC that is ideal for many high-performance applications. It is widely used in wireless communications, satellite communications, test and measurement equipment, medical imaging systems, and other high-speed applications. It can also be used to digitize signals in ultrasound, synthetic aperture radar (SAR), and other imaging systems. The ease of programming and integration of the device makes it well suited for these applications.

For wireless communications, the LTC2325CUKG-16#TRPBF is an excellent choice for radio receivers, due to its low-noise input, high dynamic range, and low distortion. Its high sampling rate and very low latency make it well suited for processing high-frequency signals from 5G base stations. The ability to directly sample and digitize the full-bandwidth analog input signals allows the ADC to provide a large amount of information with its 16-bit resolution.

In satellite systems, the device is often used for digitizing wideband signals for satellite communications. The low-noise and high-accuracy performance of the LTC2325CUKG-16#TRPBF make it well-suited for these applications. The device can also be used in Imaging applications such as ultrasound and synthetic aperture radar (SAR), to convert analog data into higher-resolution digital images.

In test and measurement equipment applications, the device is used to generate accurate samples of analog analog signals at high speeds. The low power consumption of the LTC2325CUKG-16#TRPBF is beneficial in test and measurement equipment as it can reduce overall power consumption and extend equipment life. The device can also be used in a variety of medical imaging applications, due to its high-precision performance and low-noise characteristics.

Working Principle of the LTC2325CUKG-16#TRPBF

The LTC2325CUKG-16#TRPBF is an integrated, pipelined analog-to-digital converter (ADC) built with Texas Instruments’ advanced silicon CMOS process. The device is capable of sampling signals at 5 gigasamples/second (GSPS), with a wide bandwidth of up to 3.5GHz, and a noise floor of only 6.9 femtoVolt-seconds (fV-sec). The device features pipelined architecture and uses low-voltage design techniques to achieve low-power operation.

At the heart of the LTC2325CUKG-16#TRPBF is a three-stage pipelined architecture, which allows for high-speed operation. This architecture is designed to minimize digital logic, reduce power consumption, and allow for high sampling rates. The three stages of the ADC include a dual-slope, multi-bit ADC core; a digital gain stage; and a digital-to-analog conversion and calibration stage. The first stage uses a dual-slope technique to convert the analog input signal into a digital 12-bit representation. The second stage performs a digital gain operation to convert the 12-bit output into a 16-bit representation. Finally, the third stage performs a digital-to-analog calibration and conversion, which generates the 16-bit data.

The LTC2325CUKG-16#TRPBF also includes a dynamic range tracker (DRT) feature which continuously monitors the analog input signal and adjusts the gain to ensure optimal performance. The digital gain control ensures that the device can handle a wide dynamic range and a low-noise floor without the need to externally adjust the gain and offset. The device also features glitch-free digital logic switching, which enables fast settling and fast turn-on/off times.

In addition to the benefits of the pipelined architecture, the LTC2325CUKG-16#TRPBF also utilizes low-voltage design techniques to reduce power consumption. The low-voltage design reduces power consumption by limiting the device\'s static power consumption. The device also uses input signal clamping to help reduce input noise and distortion. Lastly, the device has a built-in analog-to-digital calibration module which provides an easy-to-use software-based calibration system.

The LTC2325CUKG-16#TRPBF is a high-performance, high-speed ADC that offers excellent dynamic range and low noise characteristics. The device is designed for a wide range of applications and is ideal for applications such as wireless communications, satellite communications, test and measurement, and medical imaging systems. The device’s pipelined architecture and low-voltage design techniques provide high-speed performance, low power consumption, and easy calibration. The device provides a reliable and cost-effective solution for data acquisition applications.

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

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