Festo Branching Module for MS

Subtotal (1 unit)*

£161.95

(exc. VAT)

£194.34

(inc. VAT)

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RS Stock No.:
202-1861
Mfr. Part No.:
MS6-FRM-1/2-Y
Brand:
Festo
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Brand

Festo

For Manufacturer Series

MS

Accessory Type

Branching Module

Product Type

Branching Module

Series

MS

COO (Country of Origin):
HU

Festo Series MS Manifold Block, Branching Module - MS6-FRM-1/2-Y, Numeric Part Number: 529854


This manifold block is a versatile pneumatic branching module ideal for enhancing the efficiency of pneumatic control systems. Featuring a compact design, it supports a standard nominal flow rate of up to 14,700 l/min in the main flow direction. Constructed from die-cast aluminium, this product is suitable for various industrial automation components and can operate effectively in challenging environments.

Features & Benefits


• Optional mounting position provides flexibility during installation
• Standard nominal flow rates optimise system performance
• Compatible with lubricated operation to enhance longevity
• Corrosion resistance class CRC 2 offers durability
• RoHS-compliant materials ensure environmental standards are met
• Designed for ambient temperatures between -10°C and 40°C

Applications


• Suitable for compressed air and inert gases in industrial settings
• Used in food processing environments due to compliance with safety standards
• Ideal for integrating into existing pneumatic control systems
• Commonly employed in various automation machinery for efficient airflow management

What is the operating medium suited for this module?


It is designed for use with compressed air as per ISO 8573-1:2010 and can also handle inert gases, making it versatile for different applications.

What temperature range can it effectively operate in?


The module is capable of operating within a media and ambient temperature range of -10°C, making it suitable for environments with low temperatures.

How does the product handle lubrication requirements?


Lubricated operation is possible

however, lubrication will always be necessary to maintain optimal performance under these conditions.

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