Crossover-connected multi-layer sense coils improve magnetic field modulation for more accurate, noise-robust angular position measurement.
A guided dynamic seal lets the bushing conductor expand and contract without leakage, reducing wear, eccentricity, and corrosion.
Different winding widths redistribute core flux density more evenly, helping inductors carry higher current without magnetic saturation.
A nickel or precious metal coating lets a co-sintered transformer avoid low-oxygen processing while preserving oxidation resistance and conductivity.
Controlled iron-cobalt distribution and surface coating help magnetic cores reduce core loss while preserving high permeability.
A tuned mix of large and small soft magnetic particles cuts core loss while preserving DC superimposition and high packing density.
Controlling large-particle spacing in soft magnetic powder improves DC superimposition while reducing core loss and preserving permeability.
Controlling bent-zone hardness in laminated grain-oriented steel cuts strain, lowers iron loss, and reduces residual stress after annealing.
A two-layer winding arrangement limits interlayer parasitic capacitance, preserving resonance frequency and common mode noise suppression.
Controlled die heating and feed-roll pressure suppress deformation twins, enabling continuous wound core production with low iron loss.
Stacked conductor layers and separation areas expand magnetic body volume, raising inductance while reducing leakage flux.
Variable spacing of laser-formed deformable portions follows measured grain size to cut iron loss and improve magnetic flux in coated steel sheets.