Tamiya MF01X Aluminium Front and Rear Magnet Body Mounts MF201FR by GPM  [MF201FR]

Tamiya MF01X Aluminium Front+Rear Magnet Body Mount -1set - GPM MF201FR
Price:
CAD$44.06
Brand:
GPM
Model:
MF201FR
GTIN:
4894538272499
Condition:
Brand New
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Aluminium magnet body mounts for MF01X front and rear

This aluminium front and rear magnet body mount set is made as an aftermarket accessory for the Tamiya MF01X chassis. The set replaces traditional body clips or posts with magnetic retention points so you can remove and refit the shell quickly during setup or between runs. It is intended for hobby use on MF01X cars to speed routine access and allow fine micro-adjustment of body location.

The focus is on practical durability: CNC-style aluminium for stiffness and long life, combined with embedded magnets for consistent seating. That repeatable engagement helps when you need frequent battery swaps, electronics checks, or small tuning changes without stressing plastic posts. These mounts add to existing body fixing points and do not change suspension, drivetrain, or steering geometry.

Specifications

  • Item: Front and rear magnet body mount set
  • Material: Aluminium
  • Model Number: MF201FR
  • Compatibility: Tamiya MF01X

Fit these mounts to simplify shell removal and ensure repeatable seating of the body on MF01X scale RC cars, cutting setup time between sessions.

They are designed for the MF01X mounting pattern; other bodies may fit only if the post spacing matches or if you trim and re-drill the shell to line up with the magnet mount locations.
Small retention magnets typically have negligible effect on standard RC electronics, but avoid placing them close to sensitive sensors or compasses and follow any guidance from your electronics manufacturer.
Most installs use existing body mounting holes; some shells or aftermarket bodies may need slight enlargement or trimming of holes to seat over the magnet posts accurately.
The magnetic mounts give repeatable body placement so aerodynamic balance and weight distribution remain consistent between runs, making incremental tuning easier to evaluate.

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