Техническая документация
Характеристики
Brand
ERNIКоличество контактов
80
Тип продукции
Гнездо печатной платы
Подтип
Разъем типа «плата-плата»
Количество рядов
2
Ток
1.7A
Шаг
1.27мм
Тип оконцовки
Припой
Материал корпуса
ЖКП-термопластик
Тип монтажа
Поверхностный монтаж
Ориентация
Прямой
Высота штабелирования
9.05mm
Серия
SMC
Минимальная рабочая температура
-55°C
Максимальная рабочая температура
125°C
Контакт - тип соединителя
Внутренний
Стандарты/одобрения
IEC 60512
Страна происхождения
Germany
Информация о товаре
ERNI SMC Series 1.27 mm High-Speed SMT Board to Board Connectors
SMC series 1.27 mm pitch high-speed SMT vertical mount board to board signal connectors with a compact space saving design and high contact density. These SMC stacking signal connectors offer high performance, high signal integrity and reliability. The contacts of these SMC high-speed mezzanine signal connectors provides a continuous impedance profile enabling high transmission rates of up to 3 Gbit/s. The contacts have an ultra reliable dual beam design that provides a low resistance enabling high electrical performance. The housings of these 1.27mm SMC connectors have mating face polarization to prevent mis-mating and insertion chamfers for accurate insertion. Locating pegs on the bottom of the connector allow precise positioning on the PCB before soldering. Soldering brackets provide a high retention force on the PCB and absorb mechanical stress enabling a robust SMT connection and resistance to high shock and vibration. These 1.27mm SMC stacking connectors have a wide operating temperature range of -55 to +125°C making them suitable for use in various environments. The design of these SMC 1.27 mm connectors makes them suitable for fully automated board assembly. These SMC 1.27 mm board to board SMT connectors are available with various stacking heights for design flexibility.
Информация о наличии не успела загрузиться
тг 3 012,78
тг 3 012,78 Each (ex VAT)
1
тг 3 012,78
тг 3 012,78 Each (ex VAT)
Информация о наличии не успела загрузиться
1
| Количество | Цена единицы |
|---|---|
| 1 - 19 | тг 3 012,78 |
| 20 - 74 | тг 2 503,20 |
| 75 - 299 | тг 2 275,23 |
| 300 - 599 | тг 2 172,42 |
| 600+ | тг 2 083,02 |
Техническая документация
Характеристики
Brand
ERNIКоличество контактов
80
Тип продукции
Гнездо печатной платы
Подтип
Разъем типа «плата-плата»
Количество рядов
2
Ток
1.7A
Шаг
1.27мм
Тип оконцовки
Припой
Материал корпуса
ЖКП-термопластик
Тип монтажа
Поверхностный монтаж
Ориентация
Прямой
Высота штабелирования
9.05mm
Серия
SMC
Минимальная рабочая температура
-55°C
Максимальная рабочая температура
125°C
Контакт - тип соединителя
Внутренний
Стандарты/одобрения
IEC 60512
Страна происхождения
Germany
Информация о товаре
ERNI SMC Series 1.27 mm High-Speed SMT Board to Board Connectors
SMC series 1.27 mm pitch high-speed SMT vertical mount board to board signal connectors with a compact space saving design and high contact density. These SMC stacking signal connectors offer high performance, high signal integrity and reliability. The contacts of these SMC high-speed mezzanine signal connectors provides a continuous impedance profile enabling high transmission rates of up to 3 Gbit/s. The contacts have an ultra reliable dual beam design that provides a low resistance enabling high electrical performance. The housings of these 1.27mm SMC connectors have mating face polarization to prevent mis-mating and insertion chamfers for accurate insertion. Locating pegs on the bottom of the connector allow precise positioning on the PCB before soldering. Soldering brackets provide a high retention force on the PCB and absorb mechanical stress enabling a robust SMT connection and resistance to high shock and vibration. These 1.27mm SMC stacking connectors have a wide operating temperature range of -55 to +125°C making them suitable for use in various environments. The design of these SMC 1.27 mm connectors makes them suitable for fully automated board assembly. These SMC 1.27 mm board to board SMT connectors are available with various stacking heights for design flexibility.
