Festo Pneumatic Piston Rod Cylinder - 1804964, 125mm Bore, 250mm Stroke, DSBC Series, Double Acting

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£595.21

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£714.25

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RS Stock No.:
202-1109
Mfr. Part No.:
DSBC-125-250-PPVA-N3
Brand:
Festo
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Brand

Festo

Manufacturer Series

DSBC

Model Number p

1804964

Stroke

250mm

Bore

125mm

Action

Double

Pneumatic Connection

G 1/2

Cushioning Type

Pneumatic Cushioning

Diameter

125mm

Maximum Operating Pressure

10 bar

ISO Standard

15552

Minimum Operating Temperature

-20°C

VDMA Standard

VDMA24364-B1/B2-L

Maximum Operating Temperature

+80°C

COO (Country of Origin):
HU

Festo DSBC Series Pneumatic Piston Rod Cylinder, Double Acting, 125mm Bore - DSBC-125-250-PPVA-N3


This pneumatic piston rod cylinder from Festo with a 125mm bore, part of the DSBC series offers high-performance in automation and mechanical applications. Its double action design ensures efficient operation in various industrial settings.

Features & Benefits


• Stroke length of 250mm for versatile use
• Adjustable cushioning at both ends for precise control
• Conforms to ISO 15552 standard for reliability
• Suitable for operating pressures from 0.2 to 10 bar
• Corrosion resistance classification of CRC 2 for durability
• Ambient temperature range of -20 to 80 °C for flexibility
• Internal thread mounting option for ease of installation

Applications


• Ideal for automation systems requiring precise positioning
• Suitable for use in machinery that requires controlled movement
• Used in industrial applications for efficient and reliable operation
• Commonly applied in pneumatic systems for smooth functionality

Can it be used in a high-pressure environment?


The pneumatic cylinder can operate within a pressure range of 0.2 to 10 bar, making it suitable for high-pressure settings.

Will it provide smooth and controlled movement?


Yes, the adjustable cushioning at both ends ensures precise and controlled movement in industrial applications.

Is it suitable for applications with specific positioning requirements?


Yes, it is ideal for automation systems that demand accurate positioning for optimal performance.

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