EMERSON – AVENTICS Pneumatic Piston Rod Cylinder - 0822406361, 50mm Bore, 10mm Stroke, KHZ Series, Single Acting

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£92.20

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£110.64

(inc. VAT)

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RS Stock No.:
271-743
Mfr. Part No.:
0822406361
Brand:
EMERSON ? AVENTICS
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Brand

EMERSON ? AVENTICS

Manufacturer Series

KHZ

Model Number p

0822406361

Stroke

10mm

Bore

50mm

Action

Single

Pneumatic Connection

G 1/8

Port Connection

G 1/8

Piston Rod Thread Gender

Female

Cushioning Type

Elastic

Maximum Operating Pressure

10 bar

Minimum Operating Temperature

-25°C

Maximum Operating Temperature

+80°C

COO (Country of Origin):
HU
The Aventics Series KHZ short-stroke cylinder is expertly designed for applications where space is at a premium. This innovative cylinder guarantees efficient operation with a piston diameter of 50 mm and a stroke length of 10 mm, allowing for precise movements within tight quarters. Its single-acting functional principle means the cylinder retracts without the need for pressure, ensuring simplified integration into existing machinery. Constructed from high-quality materials, including an aluminium cylinder tube and stainless steel piston rod, this model offers robust performance even under rigorous environmental conditions. Recognising the industry standards, it operates efficiently at ambient temperatures ranging from -25 °C to 80 °C and is suitable for a variety of operational settings. The attention to detail in the design, including elastic cushioning and a standard industry scraper, makes it a reliable choice for demanding industrial tasks.

Compact design ideal for limited installation spaces
Single-acting operation for straightforward setup
Elastic cushioning enhances shock absorption for smoother performance
Wide ambient temperature range accommodates diverse environments
Sturdy construction ensures longevity and resilience
Designed for seamless integration with existing machinery
Low weight facilitates easier handling and installation
Standard oil content of compressed air guarantees consistent performance
High extract and retracting piston forces enhance efficiency

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