Tehnička dokumentacija
Tehnički podaci
Brand
Phoenix ContactPluggable Terminal Block Type
Plug
Number Of Contacts
2
Pitch
3.5mm
Series
MC 1.5/ 2-ST-3.5
Number Of Rows
1
Body Orientation
Straight
Mounting Type
Cable Mount
Termination Method
Screw
Current Rating
8A
Voltage Rating
320 V
Colour
Green
Material
Polyamide
Depth
11.1mm
Length
7mm
Zemlja podrijetla
Germany
Detalji o proizvodu
Phoenix Contact MINI COMBICON MC 3.5mm Terminal Block Plug Connectors
The 1840379 from Phoenix Contact is a brilliant and well-known PCB terminal block. It comes from Phoenix's brilliant range of 'MINI COMBICON MC' connectors and has a 3.5mm pitch, 0.14 – 1.5mm2 screw connection and horizontal wire entry. This PCB terminal block is massively versatile and allows connection of many products due to is worldwide known connection method and features a minimal temperature rise thank to its maximum contact force.
Phoenix Contact MINI COMBICON 3.5mm Two Part Terminal Blocks
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Provjerite ponovno kasnije.
€ 3,85
Each (bez PDV-a)
€ 4,50
Each (s PDV-om)
1
€ 3,85
Each (bez PDV-a)
€ 4,50
Each (s PDV-om)
1
Kupujte na veliko
količina | Jedinična cijena |
---|---|
1 - 9 | € 3,85 |
10 - 24 | € 3,50 |
25 - 49 | € 3,25 |
50 - 99 | € 3,10 |
100+ | € 2,90 |
Tehnička dokumentacija
Tehnički podaci
Brand
Phoenix ContactPluggable Terminal Block Type
Plug
Number Of Contacts
2
Pitch
3.5mm
Series
MC 1.5/ 2-ST-3.5
Number Of Rows
1
Body Orientation
Straight
Mounting Type
Cable Mount
Termination Method
Screw
Current Rating
8A
Voltage Rating
320 V
Colour
Green
Material
Polyamide
Depth
11.1mm
Length
7mm
Zemlja podrijetla
Germany
Detalji o proizvodu
Phoenix Contact MINI COMBICON MC 3.5mm Terminal Block Plug Connectors
The 1840379 from Phoenix Contact is a brilliant and well-known PCB terminal block. It comes from Phoenix's brilliant range of 'MINI COMBICON MC' connectors and has a 3.5mm pitch, 0.14 – 1.5mm2 screw connection and horizontal wire entry. This PCB terminal block is massively versatile and allows connection of many products due to is worldwide known connection method and features a minimal temperature rise thank to its maximum contact force.