*Pre-Order* Late September arrival subject to change ARKEDGE AE24X EVO-R 1/24 SCALE RWD RC DRIFT CHASSIS[Pre-Assembled]
AE24X EVO-R
1/24 RWD Drift Chassis
Core Positioning: Professional RWD drifting, made accessible.
01 | Professional RWD drifting, made accessible.
AE24X EVO-R is built for drivers entering professional small-scale RWD drifting, while still offering the tuning depth and chassis performance expected by experienced users. Based on a complete RWD drift chassis architecture, it reworks suspension, steering, drivetrain, material selection and packaging to lower the barrier to entry without sacrificing professional adjustability.
- 90–118mm Wheelbase
- Up to 86° Steering Angle
- Factory Pre-Assembled
02 | Professional RWD Drifting
Getting into professional 1/24 RWD drifting shouldn't have to start with a high chassis cost.
EVO-R was developed around a simple goal: make small-scale RWD drifting accessible to more drivers without sacrificing professional chassis architecture or adjustability.
From suspension geometry and steering setup to drivetrain layout and material selection, EVO-R is not a simplified chassis built down to a price. It is a complete platform developed from the start around the requirements of professional RWD drifting.
Lowering the barrier to entry — not the tuning ceiling.
03 | 200+ Precision Components
A compact chassis with a complete mechanical architecture.
Beneath EVO-R's compact dimensions are more than 200 individual precision components working together as one complete chassis.
From front and rear suspension and steering to the drivetrain, gearbox, chassis links and main structure, every section is designed around the real driving requirements of small-scale RWD drifting. The result is a complete RWD drift chassis engineered to balance rigidity, low weight, weight distribution, dynamic response and durability.
EVO-R is factory pre-assembled, so new drivers don't have to start by building more than 200 loose parts.
- 200+ Precision Components
- Factory Pre-Assembled
- Fully Adjustable RWD Architecture
04 | Every Material Chosen for Performance
Every Material Has a Purpose.
EVO-R does not simply chase “more metal.” Each material is selected according to the load, weight and functional requirements of the part. Injection-molded engineering materials are combined with strategically placed metal components to balance rigidity, toughness, weight and durability.
Injection-Molded Engineering Material
EVO-R's key structural components are injection molded. Stable production control helps maintain consistency in dimensions, structure and material behavior across batches, keeping assembly condition and baseline chassis performance consistent from one chassis to the next. The material itself is selected to balance chassis rigidity, toughness, weight and long-term durability.
Aluminum Alloy Gearbox
Provides a stable structural foundation for the compact gear drivetrain while helping maintain gear mesh and consistent overall assembly.
Aluminum Front Shock Tower
Reinforces a key load-bearing area of the front suspension and helps maintain stable suspension geometry.
TC4 Titanium Chassis Links
Combines low weight, strength and structural precision.
Brass Damper Pivots (Bearing Structure)
Balances durability and smooth movement while contributing to localized weight distribution.
Every material serves the same goal: better-balanced chassis rigidity, lower structural weight, improved weight distribution and clearer dynamic response.
05 | Redesigned for 1/24 RWD Drifting
Compact doesn't mean compromised.
EVO-R uses a low-profile, compact chassis layout designed around the space, weight and dynamic requirements of 1/24-scale RWD drifting.
Front suspension, steering, electronics, drivetrain and rear suspension are integrated within a limited chassis envelope. The layout stays compact while preserving room for tuning and different electronics combinations.
Cable routing is also optimized for the crowded packaging common to small-scale RC, helping keep electronics installation cleaner and reducing interference between wiring and moving mechanical parts.
- Low-Profile Chassis Architecture
- Compact Electronics Layout
- Optimized Weight Distribution
- Integrated Cable Management