This case uses hollow shells, filler materials, weight ports, and interchangeable hosels to tune center of gravity and moment of inertia.
An iron golf club face insert uses localized welds and a separated sole weight bar to reduce welding and preserve flexibility.
A polymeric flexure joint lets the strike face translate elastically at impact, tuning launch loft and spin while preserving head integrity.
Independent cavities and localized materials tune CG and MOI while a thin face supports ball speed and structural integrity.
A recessed removable weight and fastener let engineers adjust golf club mass, center of gravity, and moment of inertia after manufacturing.
A pre-formed carbon fiber tip isolates the bend, enabling straight putter shafts while preserving loft and lie angles.
This case uses localized face thickness changes to balance mass, structural integrity, MOI, CG location, and COR in iron clubs.
Thin wall zones, a recessed face plate, and a sole weight improve manufacturing ease, ball speed, and forgiveness.
Thin, shallow driver faces raise ball speed while preserving USGA CT limits.
A sole weight channel shifts mass properties for forgiveness and ball speed while a fixed fastener secures each position.
A metallic front, lightweight aft shell, and ribbon support balance rigidity, sound, and weight distribution in golf club heads.
Strategic high-density weighting positions the CG forward and low, targeting reduced spin without sacrificing launch angle or forgiveness.
A low-density upper section and high-density lower section raise MOI while maintaining ideal weight and reducing vibration.
Bonding tape, vacuum compression, and heat curing improve joint durability while preserving discretionary mass distribution.
A bonded reinforcement layer supports a thinner metallic faceplate, balancing higher ball speed, durability, and CT limits.
A recessed removable weight and fastener let players adjust mass, center of gravity, and moment of inertia after manufacturing.
Upper and lower alignment aids help position the golfer’s eyes for accurate putting.
Inclined microgrooves channel water toward scorelines, helping an iron golf club head maintain backspin in wet conditions.
Rubber and epoxy fillers tune CG and MOI, while a thin grooved face and back wall balance energy transfer and impact integrity.
A golf club face plate uses angled regional thickness to improve CT consistency while maintaining flexibility within USGA limits.
This case uses segmented, repositionable weights to tune center of gravity and moment of inertia for launch control and forgiveness.
A lap joint bonds a lightweight crown to titanium while aligning the parting line.
Flexure-shaped lattices help golf club faceplates store impact energy, raise ball speed, and disperse stress concentrations.
Co-molding uses bonding material and retainers to join titanium and steel, supporting MOI, durability, sound, and ball speed.
An adjustable elastomer supports the striking face to reduce deflection, equalize ball speed, and improve impact sound.
This putter uses matching tapered grips for a stable hand connection and canted aim lines to compensate for heel and toe putting.
Grooves with filler redistribute mass in the golf club head, tuning CG and MOI for improved ball speed and carry distance.
A tubular handle uses opposing helical edges and recessed phalanx areas to improve grip, tactile sensitivity, and airflow.
A thickened center and rearward stress-reducing ring support a thinner face for ball speed, durability, and structural rigidity.
Variable material concentration across the putter face helps maintain ball speed and consistent energy transfer on off-center impacts.
A softer center and harder heel-toe regions balance impact response for more uniform ball speed across the putter face.
A removable hosel sleeve and mechanical fastener make shaft changes easier while enabling consumer adjustment of loft, lie, and face angle.
Cascading sole and back cavity structures distribute stress, shift bending, and store spring energy for higher ball speed.
This case uses crown and sole boundary radii plus local face ratios to improve golf club contact and energy transfer.
This case uses calibrated narrow grooves and capillary action to improve wet-condition grip, durability, and feel.
Primary and secondary color features on the club head address alignment perception errors that can cause slices and hooks.
A softer center and harder periphery help normalize ball speed across putter strikes while improving impact feel and sound.
Explore how non-uniform face thickness and a pressed damping element manage energy for steadier distance and sound.
Rib portions, ports, and a variable-density sleeve tune CG and MOI while preserving total mass for improved club performance.
Segmented density zones and high-density weighting place the CG forward and low, reducing spin while retaining launch angle and forgiveness.
This case uses regional face thickness and COR weighting to improve force transfer at likely impacts while keeping CT below threshold.
This case positions golf clubhead CG near the sole and heel, using a rear hollow structure to balance launch, stability, and face strength.
A hollow, detachable handle stores and enables fluid consumption while reducing the burden of carrying refreshments during golf.
A slotted weight assembly and adjustable components let golfers customize balance and fit for more consistent swings.
Segmented ports and filler weights adjust CG and MOI, improving launch, spin, forgiveness, and shot direction across swing types.
This case balances fairway-wood forgiveness and turf playability through lateral CG placement, thin crown regions, and a flexible face.
This case uses curved crown radii and a trip step to reattach airflow, reducing drag while retaining high moment of inertia.
Angled glass and carbon ply arrangements reinforce the golf club face while balancing consistency, feel, sound, and manufacturability.
A nested inner wall and sole channel support face deflection, improving launch consistency and ball speed across strikes.
This golf club head uses a thin crown and controlled CG placement to preserve ballspeed, launch, and forgiveness from turf.