Introduction to the Tamiya Z Wing-Magnum
The Tamiya Z Wing-Magnum is a celebrated model in the Mini 4WD series, designed by renowned artist Tetsuhiro Koshita. This model is inspired by the popular Japanese Mini 4WD cartoon "Let's & Go!" and marks a milestone in its 20th anniversary celebrations. The Z Wing-Magnum is built on the AR Chassis, known for its aerodynamic efficiency and robust design.
Body Design and Inspiration
The Z Wing-Magnum features an aerodynamic body crafted from durable ABS plastic, characterized by sharply-defined lines and a front intake that enhances cooling during high-speed runs. Its design not only pays homage to its animated origins but also offers practical benefits for racing enthusiasts.
AR Chassis Features
Utilizing the AR Chassis, this model emphasizes aerodynamics and durability. The chassis supports easy maintenance and customization, making it ideal for racers looking to fine-tune their vehicles for optimal performance. The inclusion of a 130 motor ensures reliable power delivery.
Customization and Upgrade Potential
Racers can enhance the Z Wing-Magnum's performance through various upgrades. Options include swapping out motors for higher torque variants, experimenting with different tire compounds, or adjusting gear ratios to suit specific track conditions. The model's 3.5:1 gear ratio provides a balanced mix of speed and control.
Assembly Considerations
This model comes as a snap-together kit, requiring minimal tools for assembly. Enthusiasts can personalize their build by modifying the front cowls, allowing for a customized appearance reminiscent of its animated counterpart.
Specifications
- Chassis Type: AR (Aero)
- Motor Compatibility: Standard 130 single-shaft motor included
- Body Material: ABS Plastic
- Gear Ratio: 3.5:1
- Wheel Type: Fluorescent Green 5-spoke with 26mm low-profile tires
The Tamiya Z Wing-Magnum is a versatile choice for both collectors and racers. Its blend of aerodynamic styling, solid construction, and customization options make it suitable for competitive racing environments.