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Official Parker Hannifin distributor in Québec: machine control and motion

Cadence Automatisation is an official distributor of Parker Hannifin products in Québec.

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About

Connect control, motion and the machine's actual condition

Parker Hannifin brings together control, drive, linear-motion and monitoring technologies for industrial machines. Useful selection begins with the cycle, load, axes, I/O, operator interfaces and maintenance constraints rather than with an isolated component.

Cadence selection

Parker Hannifin catalog structured by family

Explore Parker Hannifin families and identify the technologies suited to your application.

Parker machine control

Orchestrate logic, motion and visualization

Parker machine control

Controllers, remote I/O and operator panels for building a coordinated machine architecture.

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Selection guide

Select a Parker architecture around machine motion and cycle

Parker families cover machine logic, motion energy, axis mechanics and condition data. Comparing them together helps avoid a motor or drive decision that overlooks control, network and real operating requirements.

Orchestrate logic, motion and visualization

Parker machine control: role and selection criteria

Controllers, remote I/O and operator panels for building a coordinated machine architecture. Cadence connects machine cycle, axis count, I/O, networks, operator interface, safety and maintenance to platform selection.

Key considerations

  • Catalogue technologies: PLC, PAC, Remote I/O, HMI.
  • Associated industrial contexts: Motion control, Connected industry and IIoT, Precision positioning.
  • The technology should remain aligned with machine logic and the expected motion result.

When to use it

For this family, verify the cycle, load, inertia, network, feedback and mechanical constraints of the axis.

View the product family

Control speed, torque and position

Parker drives and servo controllers: role and selection criteria

Variable-frequency and single- or multi-axis servo drives for industrial machines and processes. Selection considers power, load profile, regeneration, accuracy, industrial network, functional safety and software integration.

Key considerations

  • Catalogue technologies: VFD, Servo drive, Regeneration, EtherCAT.
  • Associated industrial contexts: Motion control, Energy efficiency, Precision positioning.
  • The technology should remain aligned with machine logic and the expected motion result.

When to use it

For this family, verify the cycle, load, inertia, network, feedback and mechanical constraints of the axis.

View the product family

Match torque, inertia and precision

Parker servo motors and gearheads: role and selection criteria

Rotary servo motors, direct drives and planetary gearheads for high-performance machine axes. Cadence sizes motor and mechanics by load, reflected inertia, speed, acceleration, backlash, stiffness and environment.

Key considerations

  • Catalogue technologies: Brushless servo, Direct drive, Planetary gearhead, Low backlash.
  • Associated industrial contexts: Motion control, Precision positioning, Robotics.
  • The technology should remain aligned with machine logic and the expected motion result.

When to use it

For this family, verify the cycle, load, inertia, network, feedback and mechanical constraints of the axis.

View the product family

Position a load on an axis

Parker linear actuators: role and selection criteria

Belt- or screw-driven actuators, guided positioners and linear motors for precision automation. The journey connects stroke, load, speed, accuracy, repeatability, guidance, orientation, environment and duty cycle.

Key considerations

  • Catalogue technologies: Linear actuator, Ball screw, Belt drive, Linear motor.
  • Associated industrial contexts: Motion control, Precision positioning, Industrial assembly.
  • The technology should remain aligned with machine logic and the expected motion result.

When to use it

For this family, verify the cycle, load, inertia, network, feedback and mechanical constraints of the axis.

View the product family

Measure before the machine drifts

Parker sensing and diagnostics: role and selection criteria

Pressure and position sensors, portable diagnostics and connected monitoring for fluid-power assets. Cadence connects variable, range, accuracy, frequency, connectivity, thresholds and maintenance process to the sensing strategy.

Key considerations

  • Catalogue technologies: IO-Link, Condition monitoring, Wireless sensor, Pressure switch.
  • Associated industrial contexts: Predictive maintenance, Connected industry and IIoT, Process instrumentation.
  • The technology should remain aligned with machine logic and the expected motion result.

When to use it

For this family, verify the cycle, load, inertia, network, feedback and mechanical constraints of the axis.

View the product family

Applications

Industrial applications for Parker technologies

Control and motion technologies are sized around the part, load profile and throughput. They are relevant when a machine must evolve its axes, productivity or diagnostics without losing architectural coherence.

OEM machines and multi-axis stations

Controllers, servo drives and actuators can be assessed as a whole when motion profiles and format changes determine the cycle.

Explore OEM and integrator solutions

Material handling and production equipment

Transfer, positioning and processing axes benefit from being connected to load, access and equipment-availability constraints.

Explore industrial applications

Packaging and line modernization

A modernization can connect motion, operator interface and diagnostics to make throughput and maintenance adjustments easier to understand.

Explore food-industry applications

Cadence guidance

Cadence, a Parker Hannifin partner in Québec

Cadence can help frame the variables that connect control and motion: load, inertia, travel, speed, cycle, sensor feedback, network, safety to validate and mechanical constraints. The goal is to prepare a coherent technical comparison before final configuration.

  • Map the machine cycle, axes and interfaces
  • Connect the drive, motor and axis mechanics
  • Prepare integration and maintenance criteria

Sources

Official Parker Hannifin references

The technologies and categories are cross-checked against the manufacturer's official pages. Links lead to the original documentation.

Parker Hannifin project

Need help scoping a Parker axis or architecture?

Describe the machine, required motion, load, cycle and existing interfaces. Cadence can help identify relevant families before final sizing.

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