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The Qi4D LS is the fastest, lowest spinning head in the lineup. The reengineered head profile is designed to reduce drag and allows you to maximize clubhead speed for increased distance. Read more..
Extensive Tour feedback and computational fluid dynamics analysis were used in the development of the ultra-aerodynamic Qi4D LS head that resulted in lightning-fast speed. The LS head is the fastest and lowest-spinning head in the Qi4D lineup.
If you’re a discerning player that prioritizes playability, you’re sure to love the traditional shape of Qi4D LS that inspires confidence at address.
Extensive Tour feedback and computational fluid dynamics analysis were used in the development of the ultra-aerodynamic Qi4D LS head that resulted in lightning-fast speed. The LS head is the fastest and lowest-spinning head in the Qi4D lineup.
If you’re a discerning player that prioritizes playability, you’re sure to love the traditional shape of Qi4D LS that inspires confidence at address.
Qi4D LS features a new and improved roll radius that tightens spin rates at different vertical impact locations on the face. The result is increased consistency between drives struck both high and low on the face.
Additionally, 60x Carbon Twist Face™ helps shots struck out of the heel and toe stay more online for narrower downrange dispersion. The carbon face also provides weight savings which adds to the ball speed equation.

Through capturing and analyzing more than 11 million shots over the last 20 years, we’ve developed technology that allows fitters and everyday golfers just like you to identify your rotation through impact and play a shaft that matches your unique swing profile.
REAX™ shafts are the result of TaylorMade engineers utilizing Mitsubishi Chemical’s industry leading materials expertise and production processes to produce world-class shafts for a vast array of swing types.
Qi4D LS drivers employ time-tested and Tour-proven technologies.
A redesigned cut-through Speed Pocket™ reduces spin and protects ball speeds on low-face strikes for consistent performance, even on mis-hits.
Multi-material construction allows engineers to strategically place mass in areas of the club where it maximizes speed, stability and overall performance.
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