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Modern Op Amps: Stability Review
日期:
時間長度:
2018年 5月 14日
時間長度:
08:19
Why doesn't your op amp work in your application? Watch this video series to learn about some of the common reasons this can happen!
Modern Op Amps: Introduction
日期:
時間長度:
2018年 5月 14日
時間長度:
13:13
Why doesn't your op amp work in your application? Watch this video series to learn about some of the common reasons this can happen!
Low Power PIR Motion Detector Design: Analog vs. Digital Solutions
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2018年 5月 1日
時間長度:
06:22
This video covers the fundamentals of PIR motion detector design, and analyzes the differences between analog and digital solutions.
工廠自動化智慧升級 – TI 可編程邏輯控制解決方案先進 AI 模組
日期:
時間長度:
2018年 3月 19日
時間長度:
01:21:58
針對工廠自動化與智慧升級,TI提供一系列 PLC AI 模組,講師以深入淺出的方式介紹 PLC (Programmable Logic Control) 概述、AI 模組的介紹,最後以 TI 參考設計 TIDA-0064實際說明如何將TI產品用於終端產品設計中。
How to Design Transimpedance Amplifier Circuits
日期:
時間長度:
2018年 3月 14日
時間長度:
04:17
This video discusses how to design transimpedance amplifier circuits, which convert an input current to an output voltage.
10kW 3-Phase 3-Level SiC T-Type Inverter Reference Design
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時間長度:
2018年 3月 7日
時間長度:
04:59
Highlights TI's verified reference design that provides an overview on how to implement a three-level, three phase SiC based DC:AC T-type inverter stage
General Purpose Op Amps in Automotive Lighting
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2017年 11月 13日
時間長度:
08:20
This presentation will provide a quick overview of op amp building blocks that can be used in automotive lighting systems.
How to convert a TINA-TI model into a generic spice model
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時間長度:
2017年 10月 26日
時間長度:
03:04
In this short tutorial, you'll learn how to convert a TINA-TI model into a generic spice model that is compatible with other simulators.
Achieve Precise Measurement for Smoke Detector Designs
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時間長度:
2017年 10月 25日
時間長度:
06:26
This video provides an introduction to the internal components of typical smoke detectors.
Webinar - Precision Audio Op-amps and Headphone Amplifiers
日期:
時間長度:
2017年 9月 18日
時間長度:
42:25
Join a series of 4 free Webinars focusing on TI audio technologies and products!
OPA837 Ultra-Low-Power High-Speed Amplifier Overview
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時間長度:
2017年 8月 22日
時間長度:
04:48
The 105-MHz, OPA837 ultra-low-power amp is well-suited for use as a low-power 12 to 16-bit SAR ADC driver and for ultra-low-power active filter designs.
OPA838 Decompensated High-Speed Amplifier Overview
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時間長度:
2017年 8月 22日
時間長度:
04:13
The 300-MHz gain bandwidth product, OPA838 voltage feedback amp is well-suited for use as a low-power 12 to 14-bit SAR ADC driver or transimpedance amp.
LMH3401 7GHz Fully Differential High-Speed Amplifier Overview
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時間長度:
2017年 6月 27日
時間長度:
04:25
LMH3401 7-GHz, fully differential ultra-wide band amplifier provides a fixed gain of 16 dB and is well suited for use in DC to radio frequency applications.
Pros and cons of using an op-amp as a comparator
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時間長度:
2017年 6月 9日
時間長度:
11:31
In this video we discuss extra features integrated into some comparators, the use of op amps as comparators, and TI Precision Designs involving comparators.
How to solve comparator noise problems with hysteresis
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時間長度:
2017年 6月 8日
時間長度:
11:25
In this video we discuss how external noise can affect a comparator’s basic function, and how hysteresis can be used to solve noise problems.
How to solve comparator startup uncertainty with POR
日期:
時間長度:
2017年 6月 8日
時間長度:
11:41
In this video we discuss the difference between single and dual power supplies as well as the key AC and transient considerations of comparators.
Introduction to comparator functions
日期:
時間長度:
2017年 6月 8日
時間長度:
17:29
In this video we discuss the basic functionality of the analog comparator and some of its key specifications, including input offset voltage or Vos.
High accuracy AC analog input module for voltage and current measurement using high resolution precision ADC for protection relay
This training provides an overview of protection relays and the use of high accuracy analog front end for voltage and current measurement for protection relays.
Current feedback amplifiers - Slew rate
日期:
時間長度:
2017年 2月 20日
時間長度:
17:56
This video explains how a current feedback amplifier (CFB) can achieve superior slew-rate and signal bandwidth compared to a voltage feedback amplifier (VFB).