The Fujikura Motore Speeder has been a favorite among golfers seeking maximum distance without sacrificing stability. Its innovative design provides a unique combination of lowspin and high launch.
First Impressions
Right out of the box, the Motore Speeder impresses with its distinctive red and black design and solid construction. Available in multiple weights, there's an option for various swing speeds.
The shaft features a low-launch, low-spin profile that promotes exceptional distance. The unique bend profile helps generate high ball speed while maintaining accuracy.
Technical Specifications
| Specification | Value |
|---|---|
| Shaft Weight | 60-80g |
| Flex Options | R, SR, S, X |
| Torque | 3.2-4.2° |
| Tip Diameter | 0.335" |
| Launch Angle | Low-Mid |
| Spin Level | Low |
| Kick Point | Low-Mid |
Build Quality
The build quality is exceptional. Fujikura's proprietary Rombax carbon fiber provides incredible stability without adding excessive weight.
The company's 30+ years of experience is evident in every aspect of the shaft's construction.
Performance Testing
Distance
Distance was exceptional, particularly for faster swingers. The low-spin profile helped maximize distance while maintaining accuracy.
Accuracy
Accuracy was surprisingly good for a distance-oriented shaft. The stable mid-section helped keep shots online.
Feel
The feel is best described as powerful and responsive. There's excellent energy transfer from the shaft to the ball.
Pros and Cons
Pros
- Exceptional distance
- Stable feel
- Multiple weight options
- Low spin performance
Cons
- May be too stiff for some
- Limited workability
Who Should Play This Shaft?
The Fujikura Motore Speeder is best suited for:
- Golfers seeking maximum distance
- Players with swing speeds 95+ mph
- Those wanting low spin
- Moderate to low handicappers
Final Verdict
The Fujikura Motore Speeder is an excellent distance shaft that doesn't sacrifice stability. It's a top choice for aggressive swingers.
Rating
The Motore Speeder earns 4 out of 5 stars for exceptional distance performance.