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Электроника. Образ жизни

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Электроника. Образ жизни


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Электроника. Образ жизни

Выпуск 4 (04.11.02)

Этот выпуск посвятим полностью продолжению "транзисторной темы". Речь пойдёт о токе базы. /*Если бы лимит объёма письма рассылки был больше, вместились бы и "цифра", и кроссворд :( */

Аналоговая электроника

В предыдущих выпусках мы обходили вопрос тока базы. Принималось, что он очень маленький, и ни на что толком не влияет, кроме как на открытие, или закрытие транзистора.

Ток базы определяется сопротивлением, включенным между источником напряжения и базой.

Давайте сведём это сопротивление до минимума. Например - 1_Ом, и посмотрим, что получится:

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A6YW8Ke0W2kaE+++v
+
end
sum -r/size 9506/18282

"Базовое" сопротивление мало, и на нём практически не падает напряжение, поэтому источник +V как бы "тянет" за собой напряжение базы транзистора, а за ним и эмиттерное. Коллекторному напряжению ничего не остаётся, как "следовать" за эмиттерным.

Транзистор находится в режиме НАСЫЩЕНИЯ. /*Напряжение между эмиттером и коллектором равно нулю.*/

Давайте подумаем, а за счёт чего поднимается напряжение на эмиттере? Вспомним предыдущие выпуски..... Правильно, за счёт падения напряжения на эмиттерном резисторе. Падение создаётся током. Но каким?

Попробуем измерить ток всех выводов транзистора:

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6rHkv+EY++1g+
+
end
sum -r/size 42610/16883

/*Эмиттерный ток показан с отрицательным знаком, поскольку он ВЫТЕКАЕТ из транзистора.*/

Как видим, при линейном росте напряжения на базе, токи также меняются ("на глазок") линейно. Это ещё раз говорит о том, что параметры схемы в основном определяются элементами с ЛИНЕЙНЫМИ зависимостями! То есть - РЕЗИСТОРАМИ. /*Транзистор только пропускает ток, или нет. А также создаёт на себе фиксированное падение напряжения - база-эмиттер.*/

Итак, до насыщения базовый ток минимален. Ток коллектора полностью перетекает в эмиттер. Но потом, когда напряжение на коллекторном сопротивлении начинает уменьшаться, его ток постепенно снижается - зелёная линия на графике.

А эмиттерный ток как рос линейно, так и продолжает расти. За счёт тока базы!!!

Это важный момент, каким нельзя пренебрегать при создании электронных схем. Некоторые транзисторы (особенно с большим коэффициентом передачи тока) очень чувствительны к току базы, к его увеличению. И при проектировании нужно учитывать, чтобы ток базы (если уж транзистор "попадает" в такой режим работы) не должен превышать определённого табличного значения.

Максимальный ток базы для разных транзисторов различен, и лежит в очень широких пределах. Если падение напряжения "база-эмиттер" достаточно предсказуемо (0.6-0.7V, а у мощных - до нескольких вольт, но это - редкий случай), то максимально допустимый ток базы лежит в пределах от миллиампер, до ампер (3 порядка!). Поэтому обязательно нужно заглянуть в справочник и убедиться в том, что вы не "мучаете" транзистор.

Ток эмиттера также растёт, эмиттер как правило менее восприимчив к подобным испытаниям. Всё же чаще следует обращать внимание на ограничения по базе. Но на всякий случай, проверьте и "эмиттерные" ограничения. :)

Выводы.

Будьте всегда внимательны, "загоняя" транзистор всё дальше и дальше в насыщение. Проверяйте ток базы!

Владимир Медведь (с) v_bear@mail.ru


Рассылка "Электроника. Образ жизни" для тех, кто увлекается разработкой и ремонтом электронных схем. Она и для специалистов по аналоговой технике, и для "цифровиков". Каждый радиолюбитель сможет найти здесь что-то своё - узнать новости, спросить, где можно найти или скачать документацию к микросхеме, поделиться хитростями (как отремонтировать телефон, "оживить" компьютер), отгадать кроссворд по электронной тематике.

В рассылке можно будет задать свои вопросы по телефонии, цифровой и аналоговой схемотехнике, микроконтроллерам, интерфейсам, радиолюбительской технологии, программированию, интернету. Посоветоваться, как написать программу /*для контроллера или под какое-либо устройство*/. Главное - проявить смелость и послать свой вопрос.

"Электроника. Образ жизни" и для тех, кто ещё учится (с её помощью вы сможете написать реферат о том, что же такое резистор или конденсатор!), для тех, кто преподаёт, для тех, кто работает на заводе, в лаборатории или в офисе.

Если Вы чувствуете, что электроника - это ваш образ жизни - присоединяйтесь!



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