Internal stopper structures absorb shock vibration in the vacuum sealed cavity, enabling deeper water operation while maintaining Brownian noise performance.
L-shaped elastic member suspends vibrator in housing to distribute force uniformly, reducing stress concentration and extending service life.
A toroid-shaped transducer with multilayer PVDF films generates acoustic waves in water.
A dual-stage boost circuit segments voltage transformation to drive ultrasonic vibration in aerosol atomizers.
Controller segments vibration waveform data into packets for a linear motor driving module using DMA transmission.
Segmented elastic pieces with vibration arms separate first and second order frequencies to prevent polarization while maintaining motor power.
Vibrational stimuli activate collection or shedding modes to prevent ingress into internal recesses.
A haptic actuator uses complex mass trajectories to generate vertical vibrations and taps within thin consumer electronics packages.
Segmented boosters with pipe section mounts transmit bending forces while isolating axial vibrations across temperature ranges.
A force generating device uses a link unit to move transfer parts along an imaginary sphere for precise wave energy control.
A resonant turning actuator uses a joint part with a stress relaxation section to fix the spring material and maintain precision.
A sound absorbing portion on the substrate end surface intercepts ultrasonic waves to suppress multiple reflections.
Real-time temperature monitoring adjusts vibration amplitude and pressurizing force to suppress bonding strength degradation during ultrasonic processing.
Aligning a ring seal with an ultrasonic head nodal plane prevents vibration wear, reducing manufacturing complexity and improving polymer homogeneity.
A transducer assembly embeds cavities within a substrate to anchor piezoelectric membranes and drive ultrasonic waves.
Integrating the electric motor into the unbalance exciter eliminates belt drive wear and noise from internal combustion engines.
A linear vibration motor uses a magnetic material portion on the frame inner surface to stabilize the movable element orientation during reciprocating motion.
Single-pass screed assembly merges auger striking, cylinder compacting, and vibratory finishing to reduce puddler requirements and operational time.
A monocrystalline piezoelectric substrate generates acoustic waves to atomize liquid into a fine mist.
A central disk drives equidistant eccentric shafts via a connecting yoke to oscillate a compacting drum.
Direct cavity formation in the bonding layer eliminates sacrificial residues that reduce ultrasonic signal accuracy.
Integrates non-vibrating capacitors into the CMUT chip to shrink probe volume while maintaining reception sensitivity.
Dual-modulus vibration plate segments absorb crosstalk energy to stabilize resonance frequency.
A corrugated annular support connects the rotary sealer horn to the hollow shaft.
A bias shift eliminator circuit monitors ramp-up and ramp-down charges of a piezoelectric element to correct voltage levels.
Interchangeable adapter assemblies couple diverse cleaning tools to a sonic vibration device for versatile surface treatment.
A linear resonant actuator uses an electromechanical polymer mounted on a substrate to generate vibration through electrostatic stimulation.
Sandwich vibrating motor between rib surfaces to transmit tactile feedback, eliminating sponge absorption that blocks vibration transmission.
Parylene shielding prevents chemical degradation of piezoceramic discs without degrading damping properties or mounting flexibility.
Positioning an air-emission ultrasonic transducer above the froth drains liquid films and suppresses persistent three-phase froths without slurry immersion.
A watertight housing design for ultrasonic lens cleaning uses a bracket and adhesive to secure the optical lens.
Nesting the actuator inside the hollow shaft reduces volume and manufacturing complexity while enhancing rotational dynamics.
Ultrasonic vibration replaces thermal heating to boost production speed and yield while preventing mechanical failure.
Periodic active and passive listening modes reduce power consumption while maintaining precise fingerprint detection on curved mobile surfaces.
An integrated pleated shell eliminates elastomeric boot wear and assembly complexity while maintaining watertight integrity.
Variable compensating plates correct non-uniform membrane bow in CMUT wafers, reducing yield loss from electrical and acoustical variations.
Curved support boundaries distribute stress to prevent film damage during left-right vibration expansion.
Asymmetrical permanent magnet positioning eliminates negative stiffness to improve electromagnetic utilization efficiency in linear vibration motors.
An intermediary adapter filters erratic strain from non-tuned structures, ensuring consistent ultrasonic output and reliable closed-loop regulation.
A lateral support absorbs transverse forces without distorting welding forces, resolving gap height stability issues caused by fluctuating material thickness.
Electromagnetic drive generates horizontal vibration through resonance, eliminating mechanical friction to extend lifespan while maintaining compact dimensions.
Segmented vibration mechanisms increase displacement while protecting piezoelectric elements, ensuring reliable removal of water droplets from the lens surface.
A damped vibration absorber unit connects to an ultrasonic converter at a standing wave node via a coupling element.