See how a steamer insert positioned above the water fill line shields vegetables from microwave
See how local on-demand heating with microwaves or thermoelectric materials eliminates hot-wate
See how asymmetric protruding portions on a turntable provide self-positioning for a placing ta
See how cooperating latch members and a tilt-upward engagement system enable one person to inst
See how a nested two-chamber waveguide box integrates the magnetron and stirring assembly to re
See how solid-state RF microwave heating replaces thermal oil exchangers to achieve precise fry
See how a centrally positioned RF probe with segmented radiating parts enlarges the resonance a
See how cooperating latch members and a wall bracket enable single-person installation of over-
See how adaptive thermal sensing adjusts microwave power and duration based on real-time temper
See how RFID-based supply identification automatically configures galley equipment parameters,
See how solid-state RF heating with microwave circulation replaces thermal exchangers to achiev
See how a phosphate-oxide coating composition achieves 80%+ light transmittance and low-tempera
See how extracting the microwave generator from the lid and using a wave guide solves alignment
See how induction heating without water contact and partition-driven circulation prevent scale
See how on-demand local heating with wastewater heat exchange eliminates hot-water pipes, reduc
See how a parasitic antenna facing the power feed antenna enables impedance matching across var
See how a lever-and-roller mechanism detects turntable rotation to control heating and motor op
See how a movable parasitic antenna enables impedance matching through position adjustment rath
See how a heat sink thermally couples the power source to the fluid conduit, pre-heating fluid
See how a heat sink thermally couples the power source upstream to pre-heat fluid, converting w
See how a grid structure with flow channels enables efficient steam and cleaning fluid exchange
See how a grid structure with segmented flow channels attenuates microwave radiation by 20 dB w
See how RF-antenna heating and hot air circulation resolve uneven cooking in large frozen food
See how RFID-based food carrier detection eliminates manual tare adjustment, reducing weighing
See how a threaded adjusting device enables continuous heating plate reciprocation to match foo
See how a one-way clutch decouples the flywheel and a spring-loaded brake auto-engages during p
See how multiple coherent RF feeds with independent frequency, phase, and amplitude control res
See how multiple RF feeds and efficiency coefficient-of-variation analysis enable automatic pop
See how one air-cooled radiator dissipates heat from two magnetrons and two transformers, reduc
See how optical sensors and calibration data control heating elements to ensure even browning o
See how solid-state EM heating with real-time algorithm switching resolves microwave browning a
See how a flush-mounted turntable and segmented bottom plate enable side-by-side dish placement
See how machine learning enables real-time algorithm switching in solid-state ovens to adapt EM
See how a cylindrical cooking chamber with bottom-mounted microwave transmission and rotating a
Incremental stackable weight and venting apertures let one food press flatten thick or delicate foods evenly without trapping steam.
Inductive irises offset capacitive loading in a Brewster waveguide window, cutting reflections, overheating, and trapped mode buildup.
An integrated circulator, absorber, and source casing simplifies microwave oven assembly while improving heat dissipation for reflected power.
Directed microwave beams from electronically steered antennas sterilize recirculated air and aerosols by concentrating RF energy on pathogens.
A pivotable second waveguide lets engineers retune cavity field distribution for optimal microwave irradiation without opening the cavity.
Different waveguide lengths create phase shifts that rotate the chamber field, reducing standing waves and improving heating uniformity.
A cavity resonator concentrates microwaves around the substrate to speed aerosol heating in a smaller, more energy-efficient device.
Multiple RF modules vary frequency, phase, and power to suppress standing-wave hot spots and improve microwave heating uniformity.
A graded-index metamaterial water load focuses reflected microwaves into a spiral coolant tube to maintain absorption under temperature and flow changes.
A staged converter and energy-reserve circuit cuts generator power on door opening and discharges stored energy quickly to limit microwave leakage.
An integrated circulator housing combines the microwave source and heat sink to handle reflected power with lower cost and simpler thermal management.
Directed microwave beams sterilize recirculated air and surfaces by concentrating RF energy on airborne pathogens without stopping airflow.
Interconnected metal lattice patterns provide Joule heating while preserving radar-band microwave transmittance in harsh environments.
An offset cross-slot opening and coupling line layout improves directivity and separates traveling and reflected waves more accurately.
A two-stage energy reserve and door-state detection cut microwave leakage by forcing fast discharge when the oven door opens.
A cross-shaped waveguide opening and near-opening detector improve incident and reflected microwave separation in heating chambers.
Motorized vertical and horizontal microwave mounting improves access for different user heights while adapting to varied oven sizes and avoiding obstacles.
Movable solid-state microwave antennas cure and inspect pipeline linings faster, with precise energy control in bends and small-diameter pipes.
Web-interrupted bending slots in a microwave oven trap align resonance and suppress evanescent coupling to cut leakage radiation.
A movable solid-state microwave antenna cures fiber-composite pipe liners faster and more uniformly, even in small or curved pipes.
Microwave heating converts copper oxide in a SiC-flux solder to conductive copper while limiting oxidation and preserving high-temperature joint integrity.
Webs added to microwave trap bending slots cut frequency deviation and evanescent coupling, reducing door-edge microwave leakage.
Hardware backward-power detection cuts amplifier drive before reflected RF can damage a low-rated circulator in solid-state cooking.
Fast backward-power detection lets a low-rated circulator and dummy load protect a high-power RF amplifier from reflected waves.
An annular resonant circuit with arcuate inductors and gap capacitance enables low-voltage microwave output with high frequency stability.
A conductive member reshapes microwave electric field intensity to suppress local hot spots and make heating more uniform.
Front inlet and outlet airflow at different heights cools multiple heat sources and electric chambers to prevent overheating in built-in cooking appliances.
Segmented cover sections and securing devices stay mounted inside the microwave to prevent splatter while reducing handling, dirt, and misplacement.
Differential pan and stirrer rotation redistributes food in microwave heating to improve uniformity without sacrificing cooking speed.
Multiple microwave transmitters tune frequency, phase, and power to improve wafer heating uniformity while limiting dopant diffusion.
Flexible mesh flaps and reflective tunnel sections suppress microwave leakage at conveyor apertures while keeping mining material flowing.
Recipe data is converted into appliance-specific temperature, time, and power settings to improve cooking results across different ovens.
Fusing chamber climate data with microwave trap temperature gradients enables faster, more accurate load estimation for short cooking cycles.
Tilted and orthogonal antenna slots mix p-wave and s-wave microwave modes to improve temperature uniformity across circular substrates.
A resonance avoiding chamber limits microwave leakage at the camera opening while preserving a larger optical aperture for clearer cooking-chamber imaging.
Variable solid-state microwave power improves sealed-food heating and defrosting while preventing local overheating and partial cooking.
A spring-biased outer panel creates a two-step door release that prevents accidental microwave opening while preserving intentional access.
Switching-parameter feedback detects magnetron overheating and adjusts voltage or pulse width to extend service life in microwave heating.
Resonant frequency sensing adjusts RF power to heat the aerosol article only when properly positioned, reducing overheating from misplacement or debris.
A rolled sheet antenna with an integrated shielding portion contains microwave leakage while keeping the aerosol heating unit compact and easier to assemble.
A detachable conductor cavity enables easy cleaning of condensed aerosol while microwave heating avoids wire contamination and overheating.
Power feedback updates the microwave heating profile during smoking sessions to improve battery use and temperature control.
A metal enclosure, heat pipe, and heat sink jointly shield RF leakage and remove PCB source-circuit heat in compact aerosol generators.
Moisture sensing adjusts RF power and frequency during dielectric heating to keep aerosol articles heated evenly and preserve flavor.
Grounding the metal mesh in microwave door shielding glass cuts electromagnetic leakage while preserving a clear view for interior imaging.
A conductive connection grounds the metal-mesh shielding glass to curb electromagnetic leakage while keeping the cooker interior visible for imaging.
Microwave irradiation densifies aluminum scrap into high-density metal lumps, improving melting yield while reducing CO2 and oxidation.
A branched air duct lets one fan cool the inverter, magnetron, oven cavity, and door, cutting microwave oven complexity and cost.
Power targets are redistributed across microwave emitters to protect amplifiers from reflected waves while keeping cavity heating stable.
Segmented waveguides with tuning blocks route microwave energy into conveyor chambers more evenly while limiting leakage and reflection.
A microwave annealing device heats magnetic tunnel junctions using perpendicular electric fields to achieve rapid thermal processing.
Controller changes oscillation frequency discontinuously to minimize reflected wave intensity and protect the amplifier from damage.
Ferromagnetic carrier matrix converts RF energy to thermal heat, resolving microwave browning limitations while reducing device complexity.