A flexible drive shaft transmits high-speed motor rotation to a reduction wheel system.
Composite tourmaline ceramics replace mechanical pulse stimulation with gentle fields to relieve pain without harming the nervous system.
A segmented massager features a convex movable part driven by an internal mechanism to reciprocate for targeted stimulation.
Magnetic mounting plates enable secure fixation of anatomical vibrators to clothing, resolving instability issues during movement.
Individually controllable vibration motors in a massage roller minimize floor noise and conserve battery by deactivating sets in contact with the ground.
A belt-driven twist pulley enables independent translation and rotation of a haptics device head, resolving poor movement control in compact vibrators.
Web application connects user devices to adult toys via network for remote actuation.
Motor-driven swinging bars overcome body resistance by slapping vaginal walls for stronger stimulation.
Elasticated straps secure a small frenulum vibrator, while independent frequency and amplitude controls address weight trade-offs from high amplitude.
A respiratory cupping device uses a weighted head and flexible shaft to amplify vibration upon impact.
Combining vacuum drainage with acoustic shock wave therapy, this method ensures even active substance distribution while removing toxic secretions.
Adjustable arms on a dorsal brace enable independent self-massage of hard-to-reach back areas, eliminating the need for external assistance or bulky chairs.
Curved rotation contours exceed channel radial limits, resolving limited user experience from straight-line massagers.
A handheld light guide pain reliever uses a vibrator and light-emitting device to reduce patient discomfort during dental procedures.
A telescopic rotating shaft enables independent extension and rotation within a single massage component assembly.
Rotating massage balls and thermal conduction in a portable body alleviate lower back pain while eliminating the time cost of professional appointments.
An asymmetric vibration plate driven by magnetic repulsion resolves insufficient vibration transmission in footwear.
Segmented resonators in a flexible base reduce tremor amplitude without adding bulk, improving patient comfort and adjustability.
Dual fingers swing in a crossed manner to increase radial deformation and stimulation force on the inner cavity wall surface.
A handheld massager uses a linkage driving apparatus to swing movable sheets opposite each other, creating a pinch action within a flexible sleeve.
Interchangeable massage tips use mechanical dampers to adjust impact force, preventing fascia damage from uncontrolled percussion.
A telescopic rotating motor drives a nested frame assembly to extend and rotate a cup body for multi-axis massage.
A Z-shaped handle design with a perpendicular secondary grip improves force control and maneuverability in confined spaces.
A liquid-tight plug element integrates charging electrodes and a PCB antenna to support wireless data communication in massage devices.
Integrated contact lens sensors detect eyelid state via reflected light and pressure changes, eliminating external bulky equipment.
A hand-held electroacoustic device uses piezoelectric vibration to stimulate mechanoreceptors.
Segmented members and nesting extensions resolve the contradiction between limited motion variety and increased device complexity.
Thermally responsive polymeric cores allow in vivo reshaping, resolving the trade-off between manufacturing precision and multi-use adaptability.
Segmented flexible arms retain bent positions to deliver clitoral and G-spot vibration without blocking vulva-to-vulva contact during scissoring.
Inducing specific physiological responses like gastric emptying modifies the autonomic balance, addressing inadequate symptom relief in dysautonomia patients.
Splined shafts drive a nozzle carriage that pivots individual nozzles, resolving the trade-off between massage versatility and device complexity.
An active medical device classifies ventilatory drops using real-time physiological parameters to trigger targeted anti-hypopnea therapy.
A mobile massage device uses an inflatable structure to deliver kneading and tapping services while maintaining a compact form factor.
An energy wave generator emits waves with specific densities to improve cell metabolism.
A wearable rehabilitation device uses accelerometers to detect vibration output from eccentric rotating mass motors.
Automated monitoring system compares timing against thresholds to verify correct patient movement, reducing decubitus sore risk.
A miniaturized vibration apparatus uses a high-speed rotating eccentric ball to generate centrifugal force within a compact cavity.
Vibration cavities enable a single rod to adapt to user dimensions, reducing device complexity and cost.
A tissue treatment stick uses a vibrating section with an edge to penetrate deep muscle layers.
Segmented handles extend from the housing to provide a secure grip interface, resolving slipping issues during intense vibration.
A low intensity vibration device uses an accelerometer and controller to maintain precise oscillatory acceleration on the top plate assembly.
Acoustic wave therapy replaces invasive surgery with non-invasive stimulation, eliminating pain while enhancing female sexual arousal.
A human body vibrating device uses a flexible package and sticker to transmit vibration to the user.
Segmenting the robotic arm into independent segments enables six linear directions and circular motion, resolving single-axis limitations.
An eccentric wheel converts rotary motor rotation into reciprocating rod movement, addressing limited massage modes in compact portable devices.
A wall-mounted frame supports an interchangeable back engagement member that abuts a user's back for scrubbing, massaging, or heat treating.
Magnetic field actuation drives vibrating bodies within a platform structure, resolving the trade-off between vibration intensity and synchronization accuracy.
A portable massage device uses rotating and percussion heads to drive a deformable contact segment that changes shape during operation.
A motorized contraction ball uses a reduction gearbox to rotate equidistant positioning shafts and balls for automatic multi-directional stimulation.