Inferno NEO Engine Mount Plate (t=4.0) - Kyosho IF290B  [KY-IF290B]

Kyosho IF290B - Engine Mount Plate(t=4.0/L,R)
Price:
CAD$15.92
Brand:
Kyosho
Model:
KY-IF290B
GTIN:
4548565514502
Condition:
Brand New
Quantity Discount
Unit Price You Save
2 $13.46 each $4.93 or 15%
3+ $12.78 each $9.42 or 20%
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Rigid Engine Mount for Inferno NEO 3.0 and 4.0

This RC engine mount plate is a Kyosho IF290B spare supplied as left and right halves marked L and R with a t=4.0 thickness designation. It forms the structural interface between the nitro motor and the chassis on Inferno NEO 3.0 and 4.0 models, providing a rigid mounting surface and consistent alignment when replacing or servicing the engine.

Fitment notes: the plate is manufactured to match the bolt pattern and spacing used on Inferno NEO platforms; installers should keep original mounting hardware and verify left/right orientation before final tightening. Typical installation involves removing the top deck and aligning the motor flange to set correct spur and pinion mesh with the gearbox.

Tuning and upkeep: replacing the mount plate can recover precise engine positioning after impacts or wear, and it serves as a stable baseline when adjusting engine setback or cooling clearances. As with all RC components, use standard workshop practice to secure hex screws and recheck alignment after a run or break-in.

Remark :
Due to limited stock availability, please notice that some Kyosho items may have to order from the factory and the ready time is around 4-6 weeks. Customer purchases the item is assumed to accept the waiting time which allows us to order directly from the manufacturer if the item is out of our warehouse.
The IF290B plate is intended for Inferno NEO 3.0 and Inferno NEO 4.0 chassis, matching the factory engine mounting layout for those models.
The t=4.0 label identifies the plate thickness variant. Use this code to confirm you have the correct thickness for your setup.
Check left and right halves before fitting, hand-start the mounting screws, set pinion-to-spur mesh by eye or using a shim, then tighten screws evenly and incrementally while verifying alignment.

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