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Wireless Multi-parameter Patient Monitor Demo
날짜:
기간::
2018년 6월 1일
기간::
04:01
A simple, wearable, wireless, multi-parameter, patient monitor operated using coin-cell battery and supporting raw data over Bluetooth® 5
Part V: Pre-Compliance EMC Tested Binary Input Module, TI design TIDA-00847
날짜:
기간::
2018년 6월 4일
기간::
06:21
Introduction to Binary input Architecture and details of TIDA-00847 TI design
SAR reference input: The CDAC
날짜:
기간::
2017년 4월 14일
기간::
09:58
The video provides insight into the origin of transient current pulses on the reference input of the SAR ADC.
Power distribution for SoC and FPGA applications
In this training series, we examine the power requirements of SoC and FPGA devices and discuss the optimal approach to powering them for specific use cases.
Synchronization of High Speed Multichannel JESD204B Compliant Clocks Part 1
날짜:
기간::
2018년 7월 17일
기간::
07:50
Learn about the high speed multi-channel clocking requirements and challenges.
Precision DACs (<=10MSPS) – Learning center
The Precision DAC Learning Center is a collection of technical content that will help guide you through the precision DAC design process.
How to synchronize high speed multi-channel clocks?
This training explains how to synchronize high speed multi-channel clocks used in high-speed end equipment with multi-channel transceiver system.
Synchronization of High Speed Multichannel JESD204B Compliant Clocks Part 2
날짜:
기간::
2018년 7월 25일
기간::
09:56
Learn about the JESD204B compliant high speed multichannel synchronized clocking architecture
Synchronization of High Speed Multichannel JESD204B Compliant Clocks Part 3
날짜:
기간::
2018년 7월 25일
기간::
11:22
Learn about the high channel count clocking solution.
Understanding the SAR reference input model
날짜:
기간::
2018년 9월 10일
기간::
13:24
In this section we gain a basic understanding of a custom SAR ADC reference input SPICE model based on datasheet parameters.
Developing the SAR reference input model
날짜:
기간::
2018년 9월 10일
기간::
18:55
This section shows how to configure all the different components in the model to verify the ADC reference input settling performance.
Understanding noise sources in delta-sigma ADC signal chain design
날짜:
기간::
2018년 10월 4일
기간::
01:00:19
How to minimize the effects of noise on your precision signal chain.
Find the right analog power controller for your design
날짜:
기간::
2018년 10월 30일
기간::
05:10
A walk-through of how to find and use TI's quick search to help you find the best PWM or PFC controller for your unique design needs!
Implementing Functional Safety in Motor drives
날짜:
기간::
2018년 11월 21일
기간::
10:36
This video demonstrates how safety functions can be integrated in variable speed drive systems.
Design a front-end to drive a differential ADC
날짜:
기간::
2018년 11월 29일
기간::
18:56
This video discusses which configuration is the better solution to drive a differential-input ADC: two discrete amplifiers or one fully differential amplifier.
Demystifying circuit design with Precision DAC Part 1
날짜:
기간::
2018년 12월 7일
기간::
14:53
Part 1: Speaker starts from a Precision DAC portfolio table to introduce the features as well as the popular application in the industrial market.
Demystifying circuit design with Precision DAC Part 2
날짜:
기간::
2018년 12월 7일
기간::
15:38
Part 2: In this speaker addresses the resistor ladder (3-bit), the theory and the way it works. Also introduce the R-2R DAC’s advantage, disadvantage and the ap
Demystifying circuit design with Precision DAC Part 4
날짜:
기간::
2018년 12월 10일
기간::
14:19
Part 4: In this part, the speaker further introduces Glitch and its sources, major carry transition, glitch vs. DAC structure, glitch reduction techniques … etc
How to design high-accuracy CT-based split-phase electricity meters using standalone metrology ADCs
How to design electricity meters using the ADS131M04 standalone delta-sigma metrology ADCs and the use of TIDA-010037 reference design.
How to design 1-phase shunt electricity meters using standalone metrology ADCs
How to design electricity meters using the ADS131M04 standalone delta-sigma metrology ADCs and the use of TIDA-010036 reference design.