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Description
Article no.: K.33028B
The MP11 chassis emerges from a bold reimagining, with a completely new design from the ground up,
blending cutting-edge innovation with original design DNA to establish a new platform for the next generation of the Inferno series.
The all-new body is engineered for peak aerodynamic efficiency, with a finely tuned front-to-rear
downforce balance that enhances stability, sharpens control, and pushes cornering speed to the limit.
New front and rear lower suspension arms support optional carbon plates for adjustable rigidity, adapting easily to varying surface grip levels. Updated droop screws reduce chassis friction for improved chassis wear.
High-rigidity aluminum lower suspension shaft holders are used to withstand the intense loads of off-road driving.
The suspension shafts are mounted via precision resin bushings, which can be interchanged to fine-tune toe angle and roll center geometry.
The aluminum front hub carriers feature a 12° kingpin angle which is increased from the previous MP10 TKI3 model and 18° caster angle.
This enhancement improves high-speed stability and boosts overall drivability.
The red anodized plate of the lightweight aluminum knuckle arm, designed for a 12° kingpin angle, is a separate part.
Compared to the MP10, the rear hub mounting position is set further outwards. This reduces the camber change rate, resulting in greater stability on high-grip surfaces and during high-speed driving.
By covering the joint part of the universal swing shaft with an aluminum cap, it has the effect of preventing splashing of grease and improved durability, as well as protecting a damage from dust.
It also protects the pins from falling off in case of damaging the joint parts.
The dogbone-style center drive shaft, retained from the MP10 TKI3, delivers improved traction and responsiveness, elevating overall driving dynamics.
The center differential holder features a new split upper-lower design, simplifying maintenance by enabling differential removal without disturbing the brake cam.
Return springs have also been added to the brake pad bolts for improved reliability.
Front and rear bulkheads feature a new design that separates the bearing holders from the bulkheads, enabling adjustable differential mounting height for precise grip tuning.
Larger differential pinion bearings are also employed to improve durability under high loads.
The front and rear bulkheads feature a split design, allowing for easier access to the differential and improved maintenance.
A mechanism has been incorporated to attach the sway centering collar, resulting in an unhindered stabilizing effect.
Battery for the R/C system has been repositioned further forward to adjust front-to-rear weight distribution.
This forward-biased center of gravity improves handling on rough terrain for more predictable, user-friendly control.
Two mounting positions are available for the hump receiver battery pack.
Optimal fuel supply to the carburetor and heat countermeasures through effective heat dissipation fins.
Additionally, a stopper has been added to the pressure tube connecting the fuel tank and muffler to prevent entanglement while driving.
Equipped with a resin stiffener to reinforce rear chassis rigidity. By swapping the separate insert plates, rear pitch and roll stiffness can be adjusted.
The bushings at the bulkhead base are replaceable. The standard plastic bushings are suitable for relatively high-grip surfaces and conditions with fewer bumps.
Additionally, by switching to rubber bushings, use on bumpytracks or low-grip surfaces becomes possible.
The rear wing stays are lighter than previous versions, and by swapping spacers placed between the wing
and the stays, you can adjust the rear wing's position both front-to-back and vertically.
The newly designed rear wing also features drilling guides on the flap to allow for customizable aerodynamic tuning.
The new wing is lightweight and rigid, providing greater downforce.
It features 16 pre-marked airflow holes that can be opened to fine-tune downforce for any track or condition.