Norgren PSA/802063/F1/500 ISOLine Cylinder - ISO 15552

Part Number: PSA/802063/F1/500
Manufacturer
Norgren
Part number
PSA/802063/F1/500

Quick Summary

PSA/802063/F1/500 Norgren ISOLine cylinder is designed to deliver precise piston position feedback for automated assembly and packaging lines. Without reliable feedback, cycle timing drifts and downtime increases as operators chase position data. This solution aligns with ISO 15552 dimensional standards and is designed for reliable operation from -20 to 80 °C and 1 to 12 bar, with a stainless steel piston rod for durability. Ideal for industrial automation and precise pneumatic control, leveraging a non-magnetic body and standard ISO footprint to simplify replacement and maintenance.

Product Information

Extended Description

PSA/802063/F1/500 Norgren: Position sensor provides an absolute analogue output | Accurate feedback of piston position from a resistance potentiometer for use in a wide variety of applications | Dimensional standard according to ISO 15552 | Voltage proportional to the stroke length of the cylinder
Medium
Compressed air
Operating Temperature
-20 ... 80 °C, -4 ... 176 °F
Operating Pressure
1 ... 12 bar, 14 ... 174 psi
Standard
ISO 15552
Port Size
G3/8
Cylinder diameter
63 mm
Stroke Length
500 mm
Operation
Double acting
Cushioning
No cushioning
Magnetic/Non-magnetic
Non-magnetic
Theoretical Force
1870 N
Materials - Barrel
Anodised aluminium
Materials - Piston Rod
Stainless steel (austenitic)
Range
PSA/802000/F1
Series
ISOLine
Brand
IMI Norgren
Feature: Absolute analogue position output from the integrated sensor. Benefit: Enables accurate closed-loop control and reduces cycle jitter, improving throughput on automated lines. Application: Packaging and assembly where precise stop positions drive yield. Feature: ISO 15552 standard bore 63 mm with a 500 mm stroke. Benefit: Standardized mounting and easier replacement across existing systems, minimizing integration risk. Application: Retrofit projects and new lines using common mounting footprints. Feature: Double-acting, no cushioning. Benefit: Faster, predictable actuation with minimal end-of-stroke delays, supporting high-speed indexing. Application: Pick-and-place and material handling. Feature: Anodised aluminium barrel and stainless steel piston rod (non-magnetic). Benefit: Durable, corrosion-resistant construction suited to harsh industrial environments. Application: Food and beverage or harsh workshop zones where long service life matters. Feature: G3/8 port and 1870 N theoretical force. Benefit: Broad air-line compatibility and solid actuation power for mid-range loads. Application: General automation tasks requiring reliable force delivery.

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FAQs

For reliable mounting, ensure ISO 15552 compatibility with a 63 mm bore and 500 mm stroke. Use the G3/8 port and confirm surface mounting aligns with standard cylinder footprints. Check available space for full stroke travel and consider orientation to optimize sensor access and wiring for the absolute position output.
The integrated resistance potentiometer provides an absolute analogue output proportional to piston position, enabling true closed-loop feedback. This reduces cycle-time variation, improves repeatability, and simplifies PLC or motion controller integration, delivering tighter process control and reduced scrap in automation tasks.
The 63 mm bore and 500 mm stroke support reliable bidirectional actuation, with no cushioning ensuring clear end-of-stroke signals. While ideal for precise positioning and indexing, verify available air supply and cycle time requirements against the cylinder’s mechanical limits to avoid overshoot or wear on high-frequency lines.
This cylinder complies with ISO 15552 dimensional standards for interchangeability and mounting. It operates across -20 to 80 °C and 1 to 12 bar, with a non-magnetic, corrosion-resistant design using anodised aluminium and stainless steel rod, suitable for a broad range of industrial environments.
Durable materials (anodised aluminium barrel, stainless steel rod) and a robust ISO-standard footprint reduce downtime and spare-part complexity. Absolute-position feedback minimizes rework, improving uptime and cycle accuracy, which translates to higher throughput and a faster return on investment in automated systems.