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Twin-guide Cylinder Model: MCGD
Twin-guide Cylinder Model: MCGD

Twin-guide Cylinder Model: MCGD

MOQ : 1 Piece

Twin-guide Cylinder Model: MCGD Specification

  • Shape
  • Rectangular block with parallel guide rods
  • Machine Type
  • Pneumatic actuators
  • Type
  • Twin-guide Cylinder
  • Material
  • Aluminum alloy body
  • Use
  • Guiding positioning applications in a variety of machines
  • Application
  • Twin-guide cylinder suitable for precision guiding
  • Usage & Applications
  • Industrial automation positioning and guiding
 
 

About Twin-guide Cylinder Model: MCGD

Twin-guide Cylinder Model: MCGD

Tube I.D. 12,16,20,25,32 (mm). The user may use as plate slide type or body slide type according to his requirement.

Features

  • Can be used as plate slide type or body slide type.
  • The air cylinder and guide share a compact design which enables the cylinder to work smoothly along its stroke.
  • The cylinder is extremely rigid and strong.
  • Flush fitting sensor available.
  • Magnetic as standard.

Specifications :

Acting type

Double acting

Tube I.D. (mm)

12,16,20,25,32

Port size

M5 0.8,PT1/8

Medium

Air

Operating pressure range

1~9.9 kgf/cm2

Proof pressure

15 kgf/cm2

Ambient temperature

5~ 60 (No freezing)

Lubrication

Not required

Cushion

With rubber cushion pad

Sensor switch

RCE, RCE1







Precision-Guided Motion for Automation

The MCGD Twin-guide Cylinder offers superior guidance and positioning, crucial in modern automation systems. Its parallel guide rods combined with a durable aluminum alloy body provide robust performance and long service life, ensuring minimal deviations during repetitive movements. This makes it indispensable in applications demanding precise, repeatable linear motion, including packaging, assembling, and material handling machinery.


Engineered for Lasting Performance

Crafted from high-quality aluminum alloy, this cylinder features a rectangular block design that enhances structural integrity and guides actuators through meticulously controlled paths. Its resilience to demanding operating conditions and ease of maintenance make it a preferred choice for OEMs, distributors, and end-users seeking reliable automation components in India.

FAQs of Twin-guide Cylinder Model: MCGD:


Q: How does the Twin-guide Cylinder Model: MCGD ensure accurate positioning in industrial automation?

A: The Twin-guide Cylinder Model: MCGD utilizes parallel guide rods housed within a robust aluminum alloy body to minimize lateral movement, providing consistent and precise linear motion essential for automation tasks.

Q: What types of machines or processes are best suited for the MCGD twin-guide cylinder?

A: This cylinder is ideal for machines requiring guided linear motion, such as conveyors, pick-and-place systems, material handling units, and high-precision assembly lines. Its design supports any process where accurate positioning and guidance are crucial.

Q: When should a twin-guide cylinder be preferred over a standard pneumatic cylinder?

A: A twin-guide cylinder should be chosen when your application demands high-precision linear guidance and minimal deviation, especially under side loads or in installations where stability and repeatability are paramount.

Q: Where in India can the MCGD Twin-guide Cylinder be acquired?

A: The MCGD twin-guide cylinder is available through authorized distributors, importers, and suppliers across major industrial hubs throughout India. Contact your nearest automation components distributor for availability.

Q: What is the process for installing the MCGD Twin-guide Cylinder in existing machinery?

A: Installation involves mounting the cylinder onto the machine frame using compatible brackets, connecting the pneumatic supply, and calibrating the movement range to match application requirements. Always refer to the manufacturers guidelines for specific mounting procedures.

Q: How can users benefit from integrating the MCGD twin-guide cylinder into their automation solutions?

A: Integrating the MCGD twin-guide cylinder enhances system precision, extends equipment lifespan due to reduced wear, and improves repeatability and reliability in automation processes, ultimately increasing productivity and reducing operational downtime.

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