Технически документи
Спецификации
Brand
MolexGender
Female
For Use With
MLX Connector Housing
Series
MLX
Minimum Wire Size mm²
0.5mm²
Minimum Wire Size (mm²)
0.5mm²
Maximum Wire Size mm²
2mm²
Termination Method
Crimp
Maximum Wire Size (mm²)
2mm²
Contact Plating
Tin
Minimum Wire Size AWG
20AWG
Minimum Wire Size (AWG)
20AWG
Contact Material
Brass
Maximum Wire Size AWG
14AWG
Maximum Wire Size (AWG)
14AWG
Series Number
42024
Maximum Contact Resistance
3.5mΩ
Minimum Operating Temperature
-55°C
Maximum Operating Temperature
+105°C
Страна на произход
India
Детайли за продукта
Molex MLX Crimp Terminals, 42024 and 42043 Series
Male pin and female receptacle crimp terminals for use in MLX series plug and socket housings. These terminals have a circular design and the male contacts have a split pin design for a reduction in mating force
Molex MLX Series (0.084in./2.13mm Ø)
Информацията за складовите наличности временно не е налична.
Моля, проверете отново по-късно.
€ 0,067
Each (In a Pack of 100) (ex VAT)
Стандарт
100
€ 0,067
Each (In a Pack of 100) (ex VAT)
Стандарт
100
Купете в насипно състояние
количество | Единична цена | Per Опаковка |
---|---|---|
100 - 900 | € 0,067 | € 6,70 |
1000 - 2900 | € 0,056 | € 5,62 |
3000+ | € 0,054 | € 5,38 |
Технически документи
Спецификации
Brand
MolexGender
Female
For Use With
MLX Connector Housing
Series
MLX
Minimum Wire Size mm²
0.5mm²
Minimum Wire Size (mm²)
0.5mm²
Maximum Wire Size mm²
2mm²
Termination Method
Crimp
Maximum Wire Size (mm²)
2mm²
Contact Plating
Tin
Minimum Wire Size AWG
20AWG
Minimum Wire Size (AWG)
20AWG
Contact Material
Brass
Maximum Wire Size AWG
14AWG
Maximum Wire Size (AWG)
14AWG
Series Number
42024
Maximum Contact Resistance
3.5mΩ
Minimum Operating Temperature
-55°C
Maximum Operating Temperature
+105°C
Страна на произход
India
Детайли за продукта
Molex MLX Crimp Terminals, 42024 and 42043 Series
Male pin and female receptacle crimp terminals for use in MLX series plug and socket housings. These terminals have a circular design and the male contacts have a split pin design for a reduction in mating force