Hinged segments enable oscillation on curved frames, reducing stress and noise while preserving structural integrity.
Segmented rigid arms pivot on rockrail fulcrums to eliminate localized pressure points from static frames.
A segmented saddle design uses resilient transverse rib members and a flexible spine member to distribute rider load across the horse's back.
An adjustable gullet mechanism in a composite saddle tree resolves the contradiction between structural stability and adaptability to changing horse morphology.
A flexible riding pad with shoulder flaps spaced by a recess transmits rider movements directly to the horse.
A girth pad featuring a central channel redirects pressure away from the horse's sternum to improve comfort.
Modular shim kit adjusts English saddle width via reproducible locking engagement on tree points.
Ball-joint mechanisms in the saddle tree allow pads to rotate and articulate, preventing muscle injuries from uneven pressure distribution.
A locking headplate with rotating arms and a screw mechanism adjusts saddle tree configuration while seated.
Hooks release tension when the saddle rests on the horse, allowing self-installation without manual unhooking.
Separate air cushions with barrier walls in a saddle pad maintain equal pressure, preventing air displacement and reducing horse pressure injuries.
An anatomically adjustable saddle tree uses a thickness-varying correction paddle to equalize weight distribution across misaligned seat bones.
Horizontal cloth mounting strap on saddle pad connects to vertical display loops, removing metal grommets that irritate horses and allow water penetration.
A buckle assembly with a spring latch and tongue pin secures stirrup strap length.
A horse riding saddle sensor mounts directly to the rigid tree structure to eliminate relative movement and vibration disturbances during measurement.
A flexible under-saddle uses porous polymer separation elements to create aeration chambers that drain sweat away from the horse's back.
Curved segments prevent spur entanglement while straight portions maintain tension, resolving safety hazards from conventional straight cinches.
A segmented saddle mount uses elastic straps to maintain constant tension while allowing rib cage expansion.
Pivoting joints between segmented saddle legs accommodate varying wither heights and back shapes, eliminating rigid gullet plates.
Segmented metal tubing and polymer coverings reduce rider sitz bone pressure while maintaining structural rigidity for pack loads.
A pivotable vertical panel with horizontal arms repositions within a trailer interior to provide direct access to stored equipment.
Removable support blocks adapt to patient morphology, ensuring correct stimulus transmission from the horse.
Segmented rigid bars rotate to conform to dynamic horse backs, eliminating localized pressure points from concentrated rider weight.
Segmented viscoelastic inserts in saddle frames absorb vibrations without adding bulk or complexity.
Layered polycarbonate flex-plates distribute pressure across the horse's back, reducing scapulae restriction and improving mobility.
A saddle uses flexible side panels and load distribution lines to transfer rider weight across multiple mounting points.
An internalized elastic unit drives a prong into a fastening strap hole, eliminating exposed springs that cause entanglement and safety risks.
Segmented gullet plate portions adjust radially to accommodate asymmetric horse bodies and muscle changes without expert refitting.
An electromechanical safety system for horseback riding uses position sensors to automatically release a rider from the harness.
A single-strand stirrup leather uses a strap-integrated stop member to secure the saddle buckle against pulling forces.