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MOZA Racing

MOZA MRP Rudder Pedals

Regular price €369.00
Regular price Sale price €369.00
Sale
All-metal rudder control with Hall sensors, up to 150 mm travel and adjustable centering force.

The MOZA MRP Rudder Pedals provide independent rudder and brake input for PC flight simulation in a rigid, cockpit-ready assembly. A high-grade metal frame supports the swing-arm linkage, while contactless Hall-effect sensing measures both rudder movement and toe-brake input. Adjustable pedal geometry, interchangeable centering springs and an optional damper allow the controls to be adapted for different aircraft types, seating positions and resistance preferences.

Why choose this product?

  • The ±30° swing-arm mechanism and up to 150 mm rudder travel provide smooth, linear yaw control for taxiing, take-off, coordinated turns and landing.
  • Hall-effect rudder and brake sensors avoid mechanical contact at the sensing point, supporting accurate input and consistent long-term operation.

Product details

Metal construction and rudder mechanism

The MRP uses an aluminium-alloy housing with high-strength steel for the swing arm and pedal plates. The wide swing-arm mechanism provides up to 150 mm of travel and ±30° of rudder rotation, with adjustable end stops for limiting the movement to suit the aircraft profile or available cockpit space. Non-slip pads and mounting holes support floor use or fixed aluminium-profile installation.

Pedal geometry and braking

Pedal angle can be adjusted across the published 0–30° range, and the removable heel rest supports different foot positions. Each toe brake offers up to 20° of travel and is measured by a high-resolution Hall-effect sensor. Rudder centering force is changed with interchangeable springs, allowing a lighter setting for small aircraft or a firmer return force for larger aircraft.

Connections and optional resistance tuning

The pedals can operate as a standalone PC device through USB or connect by RJ11 to compatible MOZA flight hardware. They integrate naturally with the MOZA AY210 Force Feedback Yoke Bundle, while remaining usable with other PC flight-control systems. MOZA also offers an adjustable damper for additional resistance, but the current export handle conflicts with the public storefront handle, so that optional product is not linked in this import.

Compatibility

Platform: Windows PC.

Connection: standard USB for independent PC use or RJ11 for compatible MOZA flight-base integration.

Software: compatible with major PC flight simulators. Input assignment and calibration depend on the simulator and connected MOZA hardware.

Specifications

Dimensions
354 × 518 × 264 mm
Weight
8.0 kg
Housing
Aluminium alloy
Swing arm
High-strength steel
Rudder rotation
±30°
Rudder travel
Up to 150 mm
Pedal-angle adjustment
0–30°
Brake travel
0–20°
Sensors
Hall effect
Connections
USB and RJ11

What's in the box?

  • MOZA MRP Rudder Pedals × 1
  • Data cable × 1
  • Tool kit × 1
  • User manual × 1

Frequently asked questions

Can the MRP pedals work without a MOZA flight base?

Yes. The supplied data cable supports standard USB connection, allowing the pedals to operate as an independent PC flight-simulation device.

How are rudder and brake inputs measured?

MOZA uses high-precision contactless Hall-effect sensors for the rudder axis and both toe-brake inputs.

Can the pedal angle and centering force be adjusted?

Yes. Pedal angle is adjustable, the heel rest is removable and interchangeable springs change the rudder centering force.

Can the pedals be mounted to a cockpit?

Yes. They include mounting hardware and profile-compatible holes, while non-slip pads also support suitable floor installations.

What does the optional damper change?

The optional MRP damper adds adjustable resistance to the rudder movement, helping simulate heavier controls or additional aerodynamic and hydraulic resistance.

Please note: we make every effort to display products as accurately as possible. Colours, materials and finishes may vary slightly in real life due to studio lighting, screen settings, ambient light and product characteristics.

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