Kyosho Mini Inferno / Mini Inferno 09 Front Lower Arm Alloy by GPM MIF055  [MIF055]

Kyosho Mini Inferno /Mini Inferno 09 Alloy Front Lower Arm With E-clips & Pins & Delrin Collars - 1pr set - GPM MIF055
Price:
USD$21.90
Brand:
GPM
Model:
MIF055
GTIN:
4894538098754
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Alloy front lower arm for Mini Inferno

This GPM replacement front lower arm is designed for use on Kyosho Mini Inferno and Mini Inferno 09 RC buggies. Machined from alloy, the arm pair is supplied with E-clips, retaining pins and Delrin collars to restore or upgrade the front suspension mounting points without changing chassis geometry.

Technical focus is on fit and function: the alloy arm provides a stiffer mounting point than typical plastic arms, the Delrin collars act as low-friction spacers to control lateral play, and the included E-clips and pins match the original-style axle/pivot retention method for straightforward installation.

Installation notes: remove the wheel hub and old arm, transfer any factory spacers or bearings as required, fit the new arm with the supplied pins and Delrin collars, then secure with E-clips. Verify free suspension movement and check for binding before running. No vehicle modifications should be necessary when used with the listed Kyosho models.

Specifications

  • Item Front lower arm, includes E-clips, pins and Delrin collars, 1pr set
  • Material Alloy
  • Model Number MIF055
  • Compatibility Kyosho Mini Inferno, Mini Inferno 09

Use this alloy front lower arm to tighten front suspension response and replace worn plastic arms while retaining OEM fitment and hardware style.

Yes, the part is specified for Kyosho Mini Inferno and Mini Inferno 09 models as listed in the product title.
The package includes the alloy front lower arm pair plus E-clips, retaining pins and Delrin collars as stated.
Standard RC hand tools suffice, such as pliers for E-clips and a driver for hub removal; no special tools are required.
An alloy arm reduces flex at the mounting point versus plastic, offering crisper steering feedback and more consistent suspension geometry under load.

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