2025 Ferrari F80 vs Dream Project WTAC Nissan S15
AI Telemetry Verdict:In this head-to-head, the 2025 Ferrari F80holds the statistical edge in Performance Index (998). For the technical touge passes of Mount Fuji, the Dream Project WTAC Nissan S15is the superior technical chassis due to its refined lateral G-force profile.

2025 Ferrari F80
Ferrari
Dream Project WTAC Nissan S15
Nissan"The 2025 Ferrari F80 dominates the competition with superior Performance Index, making it the clear choice for all-around festival racing."
| 2025 Ferrari F80 | Metric | Dream Project WTAC Nissan S15 |
|---|---|---|
| 998 | Performance Index | 980 |
| 9.8 | Speed | 8.2 |
| 9.8 | Handling | 9.9 |
| 10 | Acceleration | 9.6 |
| 10 | Launch | 9 |
| 9.9 | Braking | 9.8 |
| 1 | Offroad | 1 |
| 250 | Top Speed (MPH) | 195 |
| 3362 | Weight (lbs) | 2300 |
| AWD | Drivetrain | RWD |
| 3,000,000 | Price (CR) | 850,000 |
📈 Technical Data Analysis:
Speed & Acceleration Analysis
When it comes to straight-line performance, the 2025 Ferrari F80 boasts a speed rating of 9.8, while the Dream Project WTAC Nissan S15 hits 8.2.
The 2025 Ferrari F80 has the edge in top-end velocity, reaching 250 MPH compared to the Dream Project WTAC Nissan S15's 195 MPH.
Handling & Cornering Dynamics
In the tight technical sections of the Mount Fuji passes, handling is everything. The 2025 Ferrari F80 features a handling score of 9.8, whereas the Dream Project WTAC Nissan S15 manages 9.9.
The Dream Project WTAC Nissan S15 maintains superior stability through high-speed sweepers, minimizing the risk of traction loss.
Launch & Braking Efficiency
Off the line, the 2025 Ferrari F80 uses its 10 launch rating to grip and go, while the Dream Project WTAC Nissan S15 relies on its 9 rating.
Braking from high speeds is equally critical; the 2025 Ferrari F80 stops with a score of 9.9, while the Dream Project WTAC Nissan S15 records 9.8.
🏁 Race Scenario Breakdown
Higher top speed rating allows for sustained high-velocity overtaking.
Superior braking and handling allow for more aggressive entry and exit speeds.
Suspension travel and tire compound optimization for loose surfaces.