Openings in the resin member expose the core, allowing trapped air bubbles to escape and ensuring uniform filler coverage.
Segmented insulating barrier extensions cover winding ends to prevent electric discharges caused by trapped air bubbles within folded portions.
A circular inductor core uses a slotted wire guide to position windings and an insulating material for electrical isolation.
Pre-heating insulation fluid reduces volume variations, extending pressure compensator lifetime and lowering costs.
A 3D printed dielectric structure conforms to the electric field shape within a dry-type transformer.
Segmented transformer core design maintains independent magnetic paths to balance currents across multiple windings.
A housing with interconnected flow channels manages thermal loads in electromagnetic induction filters using liquid nitrogen.
Positioning discrete power components below the heat exchanger center drives self-circulating fluid flow, eliminating pumps and reducing complexity.
An interface layer bonds the circuit board to the magnetic core, ensuring a flat mounting surface.
Direct casting polymer composite spacers between magnetic core elements creates a rigid shunt reactor leg.
A 3D coil component uses a support substrate and lead-out portions to enable efficient heat dissipation.
A choke plug integrated into an inductor bobbin constrains fluid flow to regulate internal pressure.
A gas detection pump system circulates carrier gas through a semi-permeable membrane, eliminating valve wear and maintenance costs.
Two preformed thermoplastic films merge into a monolithic structure with integrated flat channels, resolving the complexity and cost of manual tube assembly.
A segmented resin case design enables complete insulating liquid filling in high-voltage isolation transformers.