Phoenix Contact MCV Series Pluggable Terminal Block, 2-Contact, 3.5 mm Pitch, 1 Row, 1843606

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We don't know if this item will be back in stock, RS intend to remove it from our range soon.
RS Stock No.:
268-4731
Mfr. Part No.:
1843606
Brand:
Phoenix Contact
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Brand

Phoenix Contact

Number of Contacts

2

Product Type

Pluggable Terminal Block

Pitch

3.5mm

Number of Rows

1

Current

8A

Housing Material

Polybutylene Terephthalate

Minimum Wire Size mm²

0.2mm²

Maximum Wire Size mm²

1.5mm²

Connector Gender

Male

Wire Connection Method

Pin

Colour

Green

Voltage

160 V

Standards/Approvals

VDE Zeichengenehmigung, IECEE CB Scheme, EAC, cULus Recognised, CSA

Series

MCV

RoHS Status: Exempted

COO (Country of Origin):
DE

Phoenix Contact MCV 1.5/2-G-3.5 Series Pluggable Terminal Block, 8A Current Rating, 3.5mm Pitch - 1843606


This pluggable terminal block is a primary component in electrical connection systems designed to facilitate reliable connectivity in various applications. It features a straight header with a 3.5mm pitch, making it suitable for wave soldering processes. The product is constructed from PBT material, ensuring durability and longevity in performance.

Features & Benefits


• Offers secure connections with self-locking plugs

• Compact size ideal for space-constrained designs

• Rated for 8A current and 160V voltage applications

• Manufactured from copper alloy for optimal conductivity

• Easy installation through wave soldering techniques

• Individual position coding enhances assembly accuracy

Applications


• Utilised in industrial automation for reliable signal transmission

• Commonly used in electronic control systems for various devices

• Integrated within machinery as a connector for components

• Designed for use in electrical panels requiring compact connections

What is the electrical rating for maximum load usage?


The terminal block is rated for a maximum load current of 8A and a voltage rating of 160V, ensuring optimal conductance in various scenarios.

How does the solder termination method benefit installation?


The solder termination method allows for a strong, permanent connection that enhances reliability in high-vibration environments, ideal for industrial applications.

What materials are used in the construction for durability?


This product is made from PBT, which is known for its high thermal stability and resistance to chemical degradation, thus providing longevity in challenging conditions.

Phoenix Contact MC & MCV PCB headers - 3.81 mm pitch


The MC & MCV range of PCB headers from Phoenix contact are well known, and versatile connectors. They feature multiple connection technologies so that you can use one header for multiple different uses, all while having a premium build. The range all feature a 3.81 mm pitch and can be mounted via wave soldering straight onto your motherboard or any PCB. Furthermore, these connectors are mounted vertically so this allows you to arrange them in multi-row arrangements on your PCB.

The housings are made from a green PBT (Polybutylene terephthalate) making them sturdy thanks to PBT's great properties, this, in turn, means these PCB headers can be used in some extreme conditions. Both MC & MCV series can work in temperatures from -40°C up to 100°C.

Features and benefits:


  • Mounted via through-hole and soldered, will allow you to use these connectors worldwide

  • Total flexibility with your design - one header accepts multiple connections technologies so you can use one series of headers

  • Pitch of 3.81mm for compatibility with most other connectors

  • Shrouded pins provide extra protection to your connection and can offer sturdy connections overtime

  • Nominal current of 8A

  • What is a PCB header?


    A PCB header is a type of connector that is used on printed circuit boards, most commonly motherboards to allow you to connect other accessories or cables into a single connector on the circuit board. They come in different shapes and sizes and can be mounted in various ways. The MC & MCV series are all recommended to be wave soldered onto the PCB.

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