A pulse magnet device uses a diamagnetic block to compress magnetic flux density and improve field uniformity.
A flywheel device uses magnetic repulsion to levitate the rotor and eliminate mechanical bearing friction.
Serial connection plates replace bulky cables, reducing installation area and workload in accelerator systems.
A symmetrical electromagnetic holding magnet uses a segmented yoke and coil to reduce triggering current.
Rotating hubs expand or retract the coil winding layers to adapt magnetic field strength across applications.
A spiral conductor assembly generates controlled magnetic fields through precise azimuthal angle positioning.
Segmented U-shaped magnetic elements guide flux in a circular path, reducing leakage losses and improving charging efficiency.
An embedded coil in a neural probe generates magnetic fields for precise cranial nerve targeting, resolving localization challenges in deep brain regions.
A magnetic detacher uses a planar magnet assembly to disengage hard tag clamping mechanisms.
A controller manages electromagnet polarity to detach magnetic materials.
Coils redirect magnetic flux through pole pieces to minimize residual magnetism during workpiece detachment.
An electromagnetic device moves a hinged body to block accidental piston retraction during aircraft flap operation.
A magnetic clamp uses a displacement mechanism to move the magnet relative to the housing.
A display module uses magnetic repulsion to suspend itself between device cases during impact events.
Compressed elastic seal member prevents oil ingress and insulation faults caused by insulating resin peeling under vibration.
A projection on the insulating base material increases the bonding area with the substrate.
A sliding magnet in an electromagnetic adsorption bar adjusts length via magnetic repulsion, correcting substrate bending deformations during vacuum alignment.
An integrated solenoid housing eliminates air gaps to boost magnetic force while minimizing axial displacement of bearing points.
Segmented insulating layer stacking increases actuator function portion rigidity, reducing deformation and characteristic changes under bending stress.
A replaceable auxiliary magnetic core extends the emission point closer to tissue, maintaining sufficient flux density in confined spaces.
Briefcase-mounted roller generates 4000 Gauss fields to eliminate outsourcing delays.
Shielding device with sensing and offset circuits detects magnetic fields to generate counteracting fields, reducing noise in image data.