Serpent 402167 Suspension bracket L+R for Medius X26 steel EP (SER400052)  [SER402167]

Serpent SER402167 Suspension bracket l+r X26
Price:
USD$111,575.70
Brand:
Serpent
Model:
SER402167
Condition:
Brand New
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Suspension bracket for X26

This is an RC-scale suspension bracket set sold as left and right pieces for the Serpent X26 lineup, referenced under model SER402167. The parts are intended for direct replacement or upgrade on compatible Medius X26 steel EP kits and are presented as chassis suspension components rather than generic hardware.

Designed to serve the suspension mounting and geometry role, the brackets provide a stable mounting point for arms and associated pivot hardware. The description focuses on fit, installation considerations and how the brackets affect basic suspension setup rather than claiming performance gains.

Installation notes: check existing mounting hardware for wear, confirm alignment and torque values for mounting screws, and verify that associated ball bearings and suspension pins are compatible before final assembly. These brackets are described as part of routine maintenance and setup tasks on scale RC cars.

Specifications

  • Item Suspension bracket L+R
  • Material Steel
  • Model Number SER402167
  • Compatibility Medius X26 steel EP (SER400052)

Use these brackets when replacing worn suspension mounts or when restoring factory geometry on Medius X26 steel EP chassis; confirm parts and fasteners match your vehicle before installation.

They are specified for compatibility with Medius X26 steel EP (SER400052); verify the kit code and compare mounting points before purchase.
The listing describes the bracket pieces; confirm with the supplier whether fasteners are included or if existing hardware should be reused.
Steel brackets provide stiffness at the mount; when swapping materials check corner weight and suspension articulation during setup to maintain desired handling.
Inspect alignment, ensure pins and bearings rotate freely, and perform a short test run to confirm geometry and damping behavior before full use.

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