While retaining elements of the superb MR-03 layout, this new MR-04EVO2 chassis achieves significant performance improvements with modifications to your front suspension system and a lesser C of G that work in synergy with a sensored brushless motor. Both slim and wide tread settings are available by changing the lower and top plates regarding front side along with the steering tie pole. Adjustable wheelbase permits chassis establishing based on physical stature.
- While camber angle is optimized during cornering because of the move of the current upper arm design, the leading suspension system makes use of the newest kingpin-integrated knuckle to further improve camber stability. Geometric revision of caster and trail etc. delivers more linear maneuverability. Brand new spec front springs for the MR-04 with various hardness can be found as options.
- Front knuckle design features incorporated kingpin with optimized clearance using the kingpin ball for smoother operation. Ball bearings were changed to 3mm internal diameter for reduced rotational resistance.
- All 7 ball bearings are 3mm internal diameter for reduced rotational opposition to minimize friction loss.
- reduced mounting regarding the AAA batteries on the chassis realizes less center of gravity set alongside the MR-03. In combination with the chassis form, this improves security through corners as well as enhancing rate and control.
- Ball differential included as standard optimizes the rotational differences when considering left and right rear tires whenever turning. Additionally provides moderate slip action to improve traction when extortionate load is applied. Silver clear anodized complete to aluminum components creates a formidable design to complement performance.
- the brand new unit also supports high-speed communication with different high-end transmitters and receivers to realize unprecedented control response. Achieves transmission speeds of 0.99ms with KO devices (ADV mode) and 0.9ms with Futaba devices (EVO2 mode). *Previously 2.6ms ~ 3.0ms
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