See how real-time water quality detection triggers automatic drainage during idle periods to pr
See how user-defined quiet intervals coordinate ice maker processes to reduce noise emission wh
See how partitioned refrigerant spaces enable direct thermal contact and uniform cooling distri
See how a thermal freezing channel replaces mechanical crushing to produce multiple ice sizes,
See how temperature feedback corrects door-state detection errors to prevent ice melt and avoid
See how feedback-controlled magnetic and electric fields maintain water in a supercooled liquid
See how removable metal plates with projection connectors enable easy evaporator disassembly, r
See how a freezing region in the ice discharge channel uses controlled cooling to bond small ic
See how a dual-passage refrigeration system with solenoid-controlled ice making and cooling cir
See how parallel refrigerant flow paths and optimized cross-sectional areas stabilize flow spee
See how a segmented sealing ring with nested inner and outer portions prevents displacement und
See how a remote dry cooler uses pressure-based control to cool ice makers without direct elect
See how staged cooling with multiple preset temperatures and preliminary heating expels air fro
See how concentric elongate troughs around a central cooling source use controlled fluid flow a
See how dividing the conductive protrusion into cooling and insulating sections enables spheric
See how a bypass valve and dynamic compressor control enable clear ice production using low or
See how a dedicated evaporator coil enables ice production in the fresh food compartment, elimi
See how an ultrasonically sealed plastic housing and insulation layer prevent frost, corrosion,
See how a conductive ice mold, water dispenser, and dual-pitch guide ramp integrate into a refr
See how segmented refrigerant circuits and independent tray cooling prevent thermal stress crac
See how internal tubes and copper foam inside a deformed evaporator tube increase refrigerant-s
See how a covered evaporator assembly with dual insulation layers reduces extraneous heat trans
See how dynamic fan speed control synchronized with compressor cycles maintains stable ice-maki
See how segmented evaporators with independent refrigerant chambers cool large ice billets unif
Direct conductive wall cooling removes the backplate heat barrier, speeding ice formation while improving cleaning access and hygiene.
See how an ice maker drains its water reservoir when the bin is full to prevent stagnant water
See how adjusting the rate of temperature change in an ice maker enables production of both cle
See how heated metal core material fills spiral gaps between refrigerant pipe and ice-making tu
See how a ramp-surface distributor with weir and surface-tension curve achieves uniform water f
See how relocating the icemaker to the fresh food compartment eliminates frost buildup and wate
See how a slanted freeze plate with a two-piece water distributor ensures uniform ice formation
See how alternating cold and hot coolant circuits enable rapid temperature variations, reduce e
See how a two-piece integrated distributor with ramp and weir features directs water uniformly
See how a bypass conduit and flow regulating device control evaporator temperature during ice h
See how partitioned flow paths and local heat transfer surfaces enable ice separation without s
See how a water flow path joins the supply path to adjust sherbet ice salinity dynamically for
See how damper control synchronizes refrigerating-compartment cooling with ice-making stages to
See how a movable ice-making tray adjusts distance from the cooling device to switch between ra
See how an automated ice-making chest with quench trays and temperature sensors rapidly cools b
See how a single freeze plate attached to two independent refrigeration circuits enables higher
See how oleophilic cold plates with controlled water distribution and feedback-based fault dete
See how a dual-evaporator refrigerator system uses segmented cooling paths and preliminary fan
See how periodic heating of the water inlet pipe during first water feeding prevents ice blocka
See how a secondary water supply melts ice on the mold exterior to enable clear ice production
See how inserting a heater into the evaporator refrigerant flow path enables quiet ice separati
See how a refrigerant tube in direct thermal contact with an ice mold enables ice production in
See how pressure-difference detection triggers de-icing before ice accumulation interrupts seaw
Iron oxide ferrofluid added inline to recirculating water boosts heat capacity while lowering cost and stability barriers in industrial heat transfer.
A conductive tray bottom and insulated upper walls freeze water upward so air bubbles escape, producing clear ice without drains or costly processing.
A flow sensor and controller meter ice-maker fill volume despite pressure changes, while shifting water priority to the dispenser when needed.
A heat pipe and heat block shift freezing to the tray contact surface so air and impurities escape, producing clearer ice without a harvest heater.
Incremental water injection and mold rotation freeze cavity sidewalls first, removing trapped air to produce clear ice spheres efficiently.
Liquid-cooled movable enclosures with quick connections create precise temperature zones in different refrigerator locations without complex air routing.