EMERSON ? AVENTICS ISO Standard Cylinder - R480637904, 100mm Bore, 10mm Stroke, SSI Series, Double Acting

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£163.89

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£196.67

(inc. VAT)

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RS Stock No.:
272-679
Mfr. Part No.:
R480637904
Brand:
EMERSON ? AVENTICS
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Brand

EMERSON ? AVENTICS

Manufacturer Series

SSI

Model Number p

R480637904

Action

Double

Bore

100mm

Stroke

10mm

Pneumatic Connection

G 3/8

Port Connection

G 3/8

Piston Rod Thread Gender

Female

Cushioning Type

Elastic

Maximum Operating Pressure

10 bar

ISO Standard

ISO 15524

Minimum Operating Temperature

-20°C

Maximum Operating Temperature

+80°C

Stroke Interval Weight

0.168 @ 10 mm kg/mm

Test Weight

1.83 kg

COO (Country of Origin):
HU
The Aventics SSI series short-stroke cylinder represents a pinnacle of engineering excellence, expertly designed for applications requiring precise and compact actuation. This double-acting cylinder, with its innovative construction, delivers exceptional performance for assembly and clamping movements, making it ideal for environments where space is at a premium. Its lightweight design allows for straightforward mounting on mobile components, enhancing operational efficiency. Adhering to the latest ISO 15524 standards, the cylinder ensures compatibility and reliability across diverse industrial applications. With a variety of piston diameters and configurations available, this product caters to a broad spectrum of pneumatic needs, providing not just functionality but also adaptability tailored to specific operational demands.

Compact size facilitates installation in tight spaces
Lightweight design allows for easy integration into mobile machinery
High flexibility for sensor assembly to enhance performance
Efficient elastic cushioning reduces vibrations and improves durability
Available in multiple piston diameters to suit various applications
Designed in accordance with stringent ISO benchmarks for reliability
Utilises a well-thought-out connection methodology for seamless installation
Optimised profiles achieve a weight reduction of up to 30% compared to traditional models

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