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146 Results

TI Precision Labs – ADCs: Determining a SAR ADC’s Linear Range when using Instrumentation Amplifiers

Date:
April 14, 2017

Duration:
09:17
This video shows how to design a front-end instrumentation amplifier drive circuit for linear operation.

TI Precision Labs – ADCs: DC Specifications – Input Capacitance, Leakage Current, Input Impedance, Reference Voltage Range, INL, and DNL

Date:
April 14, 2017

Duration:
14:23
This video highlights the key DC specifications of analog-to-digital converters (ADCs).
Coherent Sampling

TI Precision Labs – ADCs: Coherent Sampling and Filtering to Improve SNR and THD

Date:
April 14, 2017

Duration:
06:59
This video introduces the concept of coherent sampling and filtering for accurate characterization.

TI Precision Labs – ADCs: Calculating the Total Noise for ADC Systems

Date:
April 14, 2017

Duration:
10:11
This video walks through how to predict the overall system noise for an ADC, amplifier, and reference.

TI Precision Labs – ADCs: Building the SAR ADC Model

Date:
April 14, 2017

Duration:
12:17
This video walks through the process of creating a TINA Spice Model for a SAR ADC.
Alias and Anti-Alias Filters

TI Precision Labs – ADCs: Aliasing and Anti-aliasing Filters

Date:
April 14, 2017

Duration:
13:19
This video introduces the concept of frequency domain aliasing and why anti-aliasing filters are needed.
ACDC Specifications

TI Precision Labs – ADCs: AC & DC Specifications – Offset Error, Gain Error, CMRR, PSRR, SNR, and THD

Date:
April 14, 2017

Duration:
11:01
This video describes offset error, gain error, CMRR, PSRR, SNR, and THD.

TI Precision Labs - ADCs: Voltage Reference Overview

Date:
May 11, 2018

Duration:
12:13
This section covers reference specifications, to gain a deeper understanding of how the voltage reference impacts the performance of the ADC system.

TI Precision Labs - ADCs: Overview of Reference Drive Topologies

Date:
May 11, 2018

Duration:
14:27
This video introduces the reference buffer and other reference drive topologies, and how they impact ADC performance.
TI Precision Labs – ADCs

TI Precision Labs - ADCs

TI Precision Labs is the electronics industry’s most comprehensive online classroom for analog engineers. The on-demand courses and tutorials include introductory ideas about device architecture in addition to advanced, application-specific problem-solving, using both theory and practical knowledge. Use these hands-on courses to predict circuit performance and move seamlessly from abstract concepts to specific formulae in an easy-to-follow format. Industry experts present each topic in order to help reduce design time and move quickly from proof-of-concept to productization.

TI Precision Labs

Date:
October 17, 2017

Duration:
05:24
TI Precision Labs is the electronics industry’s first comprehensive online classroom for analog engineers.
THS4551 Fully Differential Amplifer Overview - ADC Driver

THS4551 Fully Differential Amplifier Overview

Date:
August 12, 2016

Duration:
05:17
THS4551 Low Noise, Precision, 150MHz, Fully Differential Amplifier Overview
Jitter vs SNR for High Speed ADCs

The Impact of Jitter on Signal to Noise Ratio (SNR) for High-Speed Analog-to-Digital Converters (ADCs)

Date:
July 31, 2017

Duration:
08:00
Considerations of Clock jitter, the impact on SNR, how to calculate it and minimize noise degradation for High-Speed Analog-to-Digital Converters.

Synchronizing Multiple JESD204B ADCs

Date:
June 11, 2015

Duration:
03:04
This video illustrates synchronizing two ADC12J4000 ADCs employing JESD204B interface

Synchronization of High Speed Multichannel JESD204B Compliant Clocks Part 3

Date:
July 25, 2018

Duration:
11:22
Learn about the high channel count clocking solution.

Synchronization of High Speed Multichannel JESD204B Compliant Clocks Part 2

Date:
July 25, 2018

Duration:
09:56
Learn about the JESD204B compliant high speed multichannel synchronized clocking architecture

Synchronization of High Speed Multichannel JESD204B Compliant Clocks Part 1

Date:
July 17, 2018

Duration:
07:50
Learn about the high speed multi-channel clocking requirements and challenges.

Solving bandwidth limitations with high speed converters

Date:
October 31, 2018

Duration:
13:40
Achieve wider bandwidth, lower latency and higher density with TI's high speed data converters.
Webinar: Solve smart meter design needs

Solve smart meter design needs in metrology, backup power, wireless communications & battery monitoring

Date:
May 10, 2019

Duration:
43:20
Introduction to new reference designs for smart meters

Signal Acquisition system using TI’s High Resolution SAR Converters

The report illustrates a differentially driven signal fed into TI’s 20 bit SAR ADC. This results in raw data available for data processing. This has zero latency and high linearity.

This TI design illustrate the CW Doppler signal conditioning for an ultrasound machine. The input signal bandwidth up to 100KHz and 128 differential signals from AFEs are summed together in a differential high speed amplifier and digitized with TI SAR ADC.

This presentation also addresses :

An adaptive circuit for adjusting the cut off frequency of anti-aliasing circuit in our explanations.

146 Results
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