Apertures in localized club-head zones distribute impact force, cutting peak face stress and enabling a thinner, durable face.
A sloped muscle portion and arcuate blade interface reposition mass toward the face center for improved impact feel and efficiency.
A chassis with fastened heel and toe weights enables post-assembly tuning of center of gravity and moment of inertia.
A crown-shaped hand support and tubular shaft holder accommodate arthritis or missing fingers while securing the golf club.
A one-piece carbon-fiber body and sandwich structure reduce head weight while enabling counterweight and center-of-gravity adjustments.
This case shows how rear-sole weight members and a reinforced strikeface balance high launch, ball speed, and off-center forgiveness.
A polymeric composite toe insert and temporary backstop balance face flex, ball speed, durability, and improved impact acoustics.
Sole slots help an iron club head absorb impacts and improve off-center consistency.
A multi-material body, dense internal weight, filler, and shelf manage weight distribution while preserving COR and forgiveness.
A twisted striking face uses location-specific bulge and roll contours to reduce spin variation and stabilize off-center ball flight.
This golf club case combines forward shaft flex with center-of-gravity positioning to improve head speed and impact alignment.
A stiffened golf club head uses variable face thickness and composite crown construction to meet CT limits with consistent performance.
This golf club head uses welded and non-welded edge portions to balance attachment reliability, strength, and flexibility.
A shaft connection socket and shell apertures distribute impact force, cutting peak face stress by up to 25% while preserving durability.
A removable hosel, convex or flat faces, and interchangeable weights tailor one putter to different strokes and face-angle errors.
This case uses internal and external mass portions plus localized fillers to raise MOI and lower CG while controlling weight.
This golf club head offsets the perceived ideal impact location and uses alignment indicia to support consistent swings.
A sole channel enables movable weight adjustment for CG tuning, while mechanical attachment supports consumer modification and rigidity.
A convex crown and heel-toe-rear weighting increase inertia while limiting CG projection, helping preserve ball speed and reduce drag.
Adjustable weighting tunes loft and center of gravity through a movable sole channel.
Composite crown and sole inserts, adjustable weights, and a sole COR feature help balance launch, playability, and mis-hit forgiveness.
A movable weight member tunes center of gravity and moment of inertia while thin face construction supports ball speed.
A heat-shrinkable sleeve conforms over worn sports grips, adding ridges for friction and enabling quick, cost-effective replacement.
Electronic paper displays provide customizable topline alignment cues and impact-location feedback on a golf club head.
A toe- and top-line-ward stiffened region preserves high COR while reducing asymmetric deformation, sidespin, and rightward deviation.
Contrasting crown and face zones guide perceived face angle, helping golfers align shots and reduce lateral dispersion.
This case uses welded and non-welded edge portions to balance strike-plate attachment, club-head strength, and flexibility.
A radiused composite face plate, thin wall zones, and sole weight position the center of gravity for lower spin and better energy transfer.
Internal ribs, posts, and thickened walls raise vibration frequencies in lightweight hollow golf club heads for improved impact sound.
This golf club head case uses sole weighting, loft, and Ixx control to improve launch and distance across swing speeds.
This case uses contrasting crown and face color zones to reduce alignment errors, improving shot consistency and accuracy.
This case uses a thermoplastic composite sole insert with overmolded ribs and weight tracks to improve support and mass placement.
This case uses hard-tooled crown-to-face alignment features to reduce painting variability and improve golfers’ perceived alignment.
This case uses localized weighting and material choices to raise MOI-X and MOI-Y while controlling MOI-Z, MOI-SA, and CG.
A heel-to-toe sole channel moves the weight member to tune center of gravity, face angle, and loft for varied swings.
Sole indentations increase club-head volume and moment of inertia within USGA constraints.
Segmented ports accept polymer fillers to tune mass distribution, CG, and MOI while reducing impact noise and vibration.
This case uses similar length, weight, and lie angle across golf clubs to simplify swing learning while preserving varied lofts.
A bulged sole positions the weight member between the crown and bottom surface to increase right-left MOI while lowering center of gravity.
Segmented weight ports enable dynamic center of gravity adjustment, resolving trade-offs between swing adaptability and structural complexity.
Segmented body and hosel components allow dynamic reconfiguration, resolving the trade-off between manufacturing simplicity and user customization needs.
A golf club grip uses crosslinked rubber with large spherical silica particles to increase surface friction.
An adjustable stance trainer resolves foot positioning complexity by using a rotatable rear foot pedal and angled riser to guide proper swing mechanics.
A multi-material striking face uses a lightweight core to reduce weight while maintaining structural integrity.
Segmented cavities break down vortices to lower drag force, increasing club head speed while maintaining low manufacturing complexity.
Dimples with non-parallel major axes delay airflow separation on the hosel, reducing drag during the downswing.
A steel golf club head design lowers the center of gravity through strategic mass redistribution within a homogeneous structure.
A golf club head weight assembly uses a slidable weight and cover to adjust center of gravity positioning.
Thin-walled crown regions increase launch angle while thick-walled areas maintain structural rigidity to improve hitting impression.
Angled grooves on the putter face create visual alignment aids and minimize dispersion on off-center hits without altering the traditional head shape.