See how a vertically stacked cryostat compartment design with vibration isolation reduces measu
See how a continuous skew magnetizing yoke magnetizes block magnet poles at inclined angles to
Targeted local processing creates multi-dipole magnetic regions in elongated instruments for more accurate position and orientation tracking.
Custom electromagnet imprinting creates verifiable magnetic signatures on varied medical devices to improve tracking compatibility and accuracy.
Localized CNT edge heating reaches 750°F to demagnetize rare earth magnets and weaken adhesive bonds for safer standoff removal.
A permanent-magnet remanence check measures partial counter-magnetization to assess magnetic pigment coercivity without damaging security documents.
A Y-shaped three-coil layout concentrates radial magnetic flux to magnetize small multi-pole rotors with lower current and cost.
Gaussmeter-triggered demagnetization stops mold chase magnetism before it disrupts metal filler uniformity in IC package molding.
Selective electromagnet arrays imprint and verify custom magnetic dipole patterns on needles, guidewires, and stylets for compatible 3D tracking.
Stacked magnetising rings create different axial polarities in one ring magnet, cutting stray transverse fields and assembly complexity in turbomolecular pumps.
Adjustable magnetic poles let one demagnetization setup handle different rotor sizes and reduce flux without melting for easier magnet recycling.
Angled external-field magnetization sets different magnet layers in one process, stabilizing sensor elements and improving output symmetry and linearity.
A segmented magnetizer creates single-dipole and multipole signatures in one unit, simplifying 3D tracking of ferrous medical devices.
Movable magnet assemblies imprint distinct signatures on ferrous medical devices, enabling accurate simultaneous tracking in 3D space.
Unequal heteropolar flux through aligned magnetic bodies strengthens auxiliary magnets and helps form Halbach arrays with the desired magnetic force.
A magnetic shunt protects permanent magnets during high-temperature curing of composite restraints, cutting rotor production time and cost.
Pulsed recharging extends resonant demagnetization decay time, improving ferromagnetic material demagnetization with lower energy use.
Selectable magnet positioning imprints distinct signatures on ferrous medical devices, enabling simultaneous 3D tracking of multiple devices.
A two-stage magnetization sequence first pre-magnetizes the full ring, then strongly magnetizes small groups to limit surface flux variation.
Magnetic adsorption and shielding guide tiny light emitting elements onto receiving areas with higher alignment accuracy and fewer transfer errors.
Demagnetized regions in magnet segments cut torque ripple and cogging while preserving mechanical strength in permanent-magnet electric machines.
Pulsed recharging extends resonant demagnetization decay time, cutting energy loss and circuit complexity with one power source.
A dual-yoke flux path magnetizes deep bent-back rotor magnets through the rotor and shaft hole, improving coverage where external magnetization falls short.
A bent yoke and wound coil confine magnetic flux to a set range on linear members, reducing unwanted magnetization and improving uniformity.
Auxiliary coils redirect leakage flux in small multi-pole rotors, enabling internal magnetization without opposite magnetization or coil overload.
Multiple magnetizing coils and an auxiliary field concentrate rotor flux and prevent reverse magnetization from leakage.
A decaying AC field plus a DC offset degausses magnetized structures and counters Earth's field to protect sensitive circuits.
A funnel-based magnetizer cover creates a sterile barrier during magnetization, preventing contact with contaminated magnetizer surfaces.
Heating demagnetized ESP rotors for cleaning, then remagnetizing them in a fixture enables reuse without disassembling the rotor.
Synchronized transient currents generate compression force and orientation fields, boosting magnet density and anisotropy with a smaller structure.
Post-assembly magnetization simplifies axial flux rotor assembly and enables high-efficiency motors with lower-cost permanent magnets.
A decaying AC coil field in a shielded gauss chamber removes remanent magnetism and limits interference without complex degaussing steps.
Synchronized transient currents generate compression force and orientation fields together, raising magnet density and orientation without bulky electromagnets.
Axial magnetization skew lowers center flux density versus the ends to equalize electromagnetic force and reduce cogging torque.
Adjusting magnetization fields to reduce rotation noise in magnetoelastic torque sensors.