Русские видео

Сейчас в тренде

Иностранные видео


Скачать с ютуб Introduction to 555 Timers | Basic Circuits в хорошем качестве

Introduction to 555 Timers | Basic Circuits 1 год назад


Если кнопки скачивания не загрузились НАЖМИТЕ ЗДЕСЬ или обновите страницу
Если возникают проблемы со скачиванием, пожалуйста напишите в поддержку по адресу внизу страницы.
Спасибо за использование сервиса savevideohd.ru



Introduction to 555 Timers | Basic Circuits

555 timers are an incredibly popular IC that is useful for timers, switches, LED blinking, and more, using a simple analog circuit and no programming. In this introduction to 555 timers, we discuss the pinout and review the internal circuitry and logic, which both gives it its name and drives its behavior. We explain the different 555 timer configurations, such as the monostable, bistable, and astable configurations though we get into more depth on those particular circuits in later tutorials. This video tutorial is based on the written tutorial that Jayesh created, so go check out the written portion that Jayesh did here: https://www.circuitbread.com/tutorial... 0:00 Introduction 0:41 What is a 555 timer? 2:38 Internal diagram of the 555 timer 4:04 The internal portions of the 555 timer 9:57 Why we care about the internals 10:57 Monostable, bistable, and astable configurations 13:15 Overview and summary 13:37 The toast will never pop up For electronics tools, tutorials, equations and more check out our site: https://www.circuitbread.com And check out our Friends of CircuitBread, who offer special discounts, product samples, resources and more to our users: https://www.circuitbread.com/friends CircuitBread is joining the fight to help people more easily learn about and use electronics. With an ever-growing array of equations, tools, and tutorials, we're striving for the best ways to make electronics and electrical engineering topics more accessible to everyone. Connect with CircuitBread: Discord ➤   / discord   Instagram ➤   / circuitbread   Facebook ➤   / circuitbread   Twitter ➤   / circuitbread  

Comments