While keeping aspects of the superb MR-03 design, the current MR-04EVO2 chassis achieves significant performance improvements with changes towards front suspension system system and a reduced C of G that assist synergy with a sensored brushless engine. Both slim and wide tread settings is found by changing the reduced and top meals in regards to the front component with the steering tie pole. Adjustable wheelbase enables framework developing based on real stature.
- While camber angle is optimized during cornering utilising the move the present top supply design, leading suspension system system uses the current kingpin-integrated knuckle to enhance camber stability. Geometric modification of caster and program etc. provides more linear maneuverability. Amazing spec front part springs the MR-04 with different hardness can be obtained as choices.
- Front knuckle design features included kingpin with optimized approval utilizing the kingpin ball for smoother procedure. Ball bearings had been changed to 3mm interior diameter for paid off rotational opposition.
- All 7 ball bearings are 3mm interior diameter for reduced rotational opposition to attenuate friction loss.
- paid off mounting for the AAA batteries on framework understands a reduced center of gravity compared to the MR-03. In conjunction with the framework type, this improves security through corners and boosting speed and control.
- Ball differential included as standard optimizes the rotational distinctions when contemplating staying and right back tires when switching. Additionally provides moderate slip action to enhance traction whenever excessive load is used. Silver clear anodized complete to aluminum components produces a formidable design to fit performance.
- This brand new device besides supports high-speed conversation with different high-end transmitters and receivers to comprehend unprecedented control reaction. Achieves transmission prices of 0.99ms with KO devices (ADV mode) and 0.9ms with Futaba products (EVO2 mode). *Previously 2.6ms ~ 3.0ms
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