See how a single integral filtering surface across hinged frame structures prevents fluff leaka
See how projections and sealing elements create airtight channels between heat exchangers to pr
See how temperature sensing and hot air thawing prevent drainage pump damage from frozen conden
See how angled plate-like appendix elements secure dryer moisture sensor electrodes in small ap
See how a mesh lint filter and spray tube extract lint from condensate water before heat-exchan
See how a U-shaped carrier mounted above the drum's rotational axis protects delicate items whi
See how a composite seal combining memory foam and a low-friction layer reduces air leakage and
See how flow guide ribs in a dryer's hot air channel stabilize cooling water flow, prevent spla
See how a multi-layer stacked heat exchanger increases heat transfer capacity in a compact volu
See how a plastic coating on the drum fold creates a smooth, wide roller surface to reduce nois
See how an automatic brush-and-scraper system cleans the fluff trap filter wall in place, elimi
See how a tumble dryer control device calculates an emptying time window before the condensate
See how a two-phase heater control method balances evaporation rate and energy use by cycling O
See how an upstream lint filter with spray cleaning and sloped collection prevents lint from bi
See how forced fresh air delivery to the burner prevents incomplete combustion and soot in comm
See how a dryer controller measures motor current during acceleration and maintaining stages to
See how a two-portion support device uses resilient engagement to enable quick perfume cartridg
See how positioning an air-to-air heat exchanger below the drum extracts excess heat, enables f
See how a dual-device dryer reduces heater power dynamically to operate basket and drum drying
See how a bypass flow path in a heat pump clothes dryer manages evaporation and condensation pr
See how a heat pump dryer transfers excess compressor heat to condensate water, reducing ambien
See how a filter insert merges bag, holder, and closure into one removable unit to reduce user
See how a dryer measures laundry amount by analyzing motor current during acceleration and dece
See how a marine dryer recovers diesel engine cooling water heat through air-water and gravity
See how motor current measurement during drum rotation detects laundry weight, enabling adaptiv
See how an obstructing region integrated into the filter prevents laundry from jamming between
See how a self-contained filter cleaner uses rubber flaps and flexible fingers to remove lint w
See how a lint filter assembly uses an electrical connector to verify correct positioning, prev
See how profiled half-shell openings with foam seals isolate refrigerant pipe vibrations and re
See how an upward-directed air duct prevents cooling air from aerating floor lint in dryers, re
See how a dual-compartment liquid collector separates clean condensate from dirty cleaning liqu
See how smooth curved air ducts eliminate flanges and sharp bends to reduce pressure drops, tur
See how a dryer detects laundry amount from drying time and adjusts steam supply to prevent ove
See how speed-adaptive end cycle conditions prevent false dryness detection in dryers when drum
See how embedding electrodes in injection-molded bulkhead surfaces eliminates gaps that trap la
See how coordinated drum and fan speed control compensates for reduced drum rotation with incre
Ceiling downflow and oblique upward recirculation improve air mixing in a laundry cabinet, cutting drying time and energy use.
Sensors mounted inside the rotating dryer drum use NFC to transfer moisture data, improving reading accuracy and drying control.
Varying passage openings create a throughput gradient that guides liquid flow and deposits impurities in a preferred direction for fuller, repeatable use of filter space.
A common back-channel dryer layout supports both heat pump and condenser models, cutting manufacturing effort while preserving airflow and heat control.
Variable compressor and fan control keeps the dryer circuit board cool under high drying loads, preventing overheating and cutting energy use.
An electrically actuated lock keeps the removable liquid container secured during operation to prevent hot or hazardous liquid spills.
Axial drying air enters one drum end and exits the other, avoiding blocked wall perforations while improving drying efficiency and energy use.
Opposed water jets inside condenser air channels dislodge lint and fibers, restoring heat transfer and cutting drying time and energy use.
A fast-opening rinse tank releases stored condensate water as a surge to clear lint from a dryer evaporator without pumps or complex hardware.
A bypass mixes saturated and drum air in a closed-cycle dryer to cut condensation energy use while improving airflow and heat transfer.
Preheating plus air-channel temperature sensing estimates condenser water flow without a flow sensor, reducing wasted water, time, and damage risk.