EMERSON – AVENTICS Pneumatic Compact Cylinder - 0822391605, 20mm Bore, 30mm Stroke, KPZ Series, Double Acting

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£102.15

(exc. VAT)

£122.58

(inc. VAT)

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RS Stock No.:
271-689
Mfr. Part No.:
0822391605
Brand:
EMERSON ? AVENTICS
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Brand

EMERSON ? AVENTICS

Manufacturer Series

KPZ

Model Number p

0822391605

Action

Double

Bore

20mm

Stroke

30mm

Pneumatic Connection

M5

Port Connection

M5

Piston Rod Thread Gender

Female

Cushioning Type

Elastic

Maximum Operating Pressure

10 bar

Maximum Operating Temperature

+80°C

Minimum Operating Temperature

-20°C

COO (Country of Origin):
HU
The Aventics compact cylinder from the series KPZ combines versatility and reliability, tailored for various industrial applications. With its adherence to the NFE 49004 standards, it offers a robust design ideal for demanding environments. Engineered for double-acting functionality, this cylinder integrates elastic cushioning for enhanced performance and minimal wear. Its compact design does not compromise on power, delivering impressive extracting and retracting forces. Whether you require precision or durability, this cylinder stands as a dependable choice for optimal functionality in diverse mechanical setups. Designed with attention to thermal resilience, it operates effectively across a wide temperature range, ensuring efficiency in heating and cooling processes. With multiple mounting options and configurations available, it emerges as a practical solution for automation and machinery where space is limited yet performance is paramount.

Compact design optimises space utilisation in installations
Double-acting functionality enhances operational efficiency
Elastic cushioning provides smooth operation and reduced wear
Variability in piston diameter ensures compatibility with various systems
Temperature resilience allows use in extreme environmental conditions
Multiple certification options enable compliance with industry standards
Magnetised piston enhances detection capabilities for position sensing
Lightweight materials contribute to overall system efficiency