Grooved coil connection terminal accommodates wire and lid body for welding, preventing cracks and abnormal heat under high current.
Adjusting induction hob coil switching times to overlap power density spectra, eliminating local minima that cause broadband interference noise.
Induction heating melts a gel coating on sealed encasements to release aerosol, preventing combustion toxins and internal fouling.
Misaligning an electromagnetic heating coil creates a high-temperature zone that resolves slow fogging speeds in electronic vaporization devices.
An alternating magnetic and insulator structure guides flux to the heating part while suppressing temperature increases in the generating component.
Segmented ferrite and conductive mesh shields with thermal insulation reduce electromagnetic leakage and prevent housing overheating.
Variable coil winding matches heating intensity to wick absorption profiles, preventing carbonization and ensuring consistent aerosol generation.
Segmented induction coils heat drum bottoms and walls, resolving uneven heat distribution while insulating the base to prevent spark risks.
A control unit adjusts induction coil heat input to ensure uniform austenitization temperature across the component surface.
Build-up welding fuses aluminum bronze to the roll core, eliminating thermal expansion loosening and maintaining conductivity during high-speed rotation.
DC voltage application generates Joule heat in the induction coil to evaporate water, preventing insulation degradation from coolant mist condensation.
An aerosol provision system moves the generating medium between heater positions to control heating.
An inductor gas escape device deflects cooling liquid from the heating zone using a directed gas stream.
Movable magnetic cores adjust flux distribution to prevent end overheating while maintaining uniform temperature across varying sheet widths.
Active MOSFET gate drivers replace passive inductors to eliminate voltage spikes and power loss in high-frequency magnetic field generators.
Optical sensor detects contact surface contamination to maintain aerosol generation performance.
A double-sided flat inductor assembly uses an extraction apparatus to rapidly remove the heating unit after simultaneous induction processing.
Arranging elongated ring-shaped windings in two directions creates a closed area for uniform heating, reducing device complexity and control costs.
Electromagnetic induction heats the sheet element to reduce particle size and harmful substances while maintaining high viscosity liquid flow.
Segmented magnetic bodies redirect flux to prevent heat accumulation on concave gear portions.
Eddy currents heat carbon fibre repair patches uniformly, avoiding thermal blanket damage and eliminating conductive additive requirements.
A vapor provision apparatus uses a reservoir housing channel to guide a liquid transport element.
A movable heater assembly pierces a sealed liquid reservoir to deliver fluid, preventing leakage and protecting electrical components during storage.
Segmented susceptor design with variable thickness compensates for skin effect to achieve uniform heating of large-diameter wafers.
Composite magnetic inserts reduce manufacturing costs and extend device lifetime by enabling injection moulding while enhancing field strength.
A controller determines apparent resistance to regulate an induction source and heat a susceptor assembly.
Cut-defined receptacle protrusions increase heat transfer surface area to improve aerosol generation efficiency while reducing manufacturing complexity.
A cylindrical-helical induction coil uses a wire recess pattern to reduce the radial distance between the coil and the susceptor.
A perpendicular auxiliary member redistributes magnetic flux to eliminate hot spots and ensure uniform temperature distribution on turbine blade edges.