VANQUISH H10 Optic Yokohama H10333 1mm stainless skid assembly for 1/10 H10
Engineering and fabrication notes
The H10333 skid kit is formed into dedicated front, centre and rear plates to provide continuous protection along the H10 lower shell. Material selection of 1mm stainless steel delivers controlled stiffness and abrasion resistance while preserving mounting geometry for direct attachment to the chassis threads.
Attachment strategy and load handling
Fastening uses the supplied Grade 12.9 black screws to secure each plate close to the underbody, reducing levered loading on vulnerable points. The plates are intended to act as sacrificial contact surfaces, absorbing repeated low energy impacts and limiting chassis deformation.
Compatibility and installation guidance
Designed specifically for VANQUISH H10 OPTIC variants, the kit aligns with reported mounting points for H10 OPTIC KIT and H10 Optic Yokohama RTR configurations. Installation requires standard M3 tools and verification of thread condition prior to torquing the Grade 12.9 fasteners.
Included components
Supplied items include front, centre and rear stainless plates plus a hardware pack: one 3x14 flat head screw and six 3x12 cap head screws, all Grade 12.9. These components are selected to ensure reliable clamp force and repeatable serviceability.
Application fitment and user profile
The H10333 is aimed at builders and operators who prioritise a robust underbody for display or active use. The skid improves resistance to abrasion and repeated impacts while remaining straightforward to remove for maintenance or replacement.
Specifications
- Brand: GPM
- Part Number: H10333
- Material: Stainless Steel
- Thickness: 1mm
- Fitment: VANQUISH H10 OPTIC YOKOHAMA compatible H10 platforms
- Included Hardware: 3x14 flat head screw x1, 3x12 cap head screws x6 (Grade 12.9)
- Electronic Speed Control (ESC): Not Included
The H10333 is a precision-formed stainless steel underbody protection kit for H10 Optic variants, engineered to improve wear resistance and preserve chassis geometry under repeated contact.