See how a polygonal-shaped absorbent towel eliminates excess material and improves wrapping sec
See how a disposable permeable container with locking means enables universal attachment to hai
See how a polygonal-shaped absorbent towel with curved edges conforms to the head, eliminating
See how a furniture-fastening unit and flexible connecting element enable hands-free baby hair
See how MEMS vibrating members replace traditional fans in drying devices, reducing noise and e
See how back-EMF monitoring during rotor oscillation enables safe motor restart without positio
See how a grip-receptacle positioning unit with magnetic or interference force secures a dryer
See how a dryer uses body-temperature sensing and pre-warm mode to gradually raise air temperat
See how magnetic positioning units secure a dryer grip in a stand receptacle, preventing uninte
See how a dryer stand with tilting and rotating receptacle adjusts air discharge direction auto
See how a magnetic positioning unit secures a handheld dryer in a stand at adjustable angles, e
See how a disposable container with permeable walls and locking means enables universal vaporiz
See how circularly arranged terminals enable a hair dryer to rotate freely in its charging stan
See how a cylindrical grip and flexible contact terminals enable a hair dryer to rotate freely
See how a dryer uses body-temperature sensing and pre-warm mode to minimize thermal shock and s
Flame temperature sensing detects low oxygen and combustion byproducts, then shuts down the catalytic heater to maintain safer air quality.
LED or projected visual cues mark the drying zone and hand sequence, helping users dry correctly without language-based instructions.
Flexible damping elements and motor-end sleeves isolate vibration in compact blow dryers while preserving mounting stability.
A hygroscopic absorption body feeds water to a pin electrode without Peltier cooling, enabling simpler heated personal care ionizers.
A carbon nanotube sheet replaces heat wires to dry hair more efficiently with lower battery power and gentler far-infrared heating.
A moisture-absorbing body stores ambient water when cool and releases it near a pin electrode during use, enabling ion generation without Peltier cooling.
Airflow-cooled motor winding dissipation in a compact hair dryer frame enables high air volume, lower vibration, and smaller multifunctional designs.
Randomized AC power sharing across dual heating elements stabilizes temperature while reducing periodic current draw, flicker, and breaker trips.
Randomized AC power cycling across dual heating elements stabilizes appliance current draw while maintaining target temperature.
An adjustable wall bar and slider hold hairdryers, mirrors, and phones hands-free while saving space in compact bathrooms.
Magnetic and fitted concentrator parts simplify hair dryer assembly while reducing flow resistance and maintaining stable 3D gas flow.
Separate air outlets, a hair engagement element, and a protruding nozzle enable mode changes without accessories, reducing burn risk and user confusion.
An insulated air guide and heater case layout block heat transfer to the housing, reducing burn risk while protecting internal components.
An insulating air guide around the heater module blocks heat transfer to the housing while preserving airflow and internal space for the battery.
A honeycomb heat-radiation structure and heating films improve heat uniformity in hair dryers while simplifying assembly of nested sleeves.
Segmented elbow blades split and redirect axial airflow into a radial outlet, improving heat and flow uniformity for faster hair styling.
A radial housing layout fits the heater assembly and PCB within a short axial length while maintaining airflow heating and heat dissipation.
A swivel accessory with two stable positions lets a hair styler reach the back of the head more comfortably while keeping airflow styling effective.
Nested honeycomb radiators and heating films improve heat uniformity, conduction, and assembly stability in a compact hair dryer module.
A grip feature creates an interference fit that secures hair dryer attachments without precise alignment or tools.
Divided center and side airflow diffuses through a mesh cylinder to dry hair more evenly while reducing high-speed impact and knots.
A two-fluid nozzle with a larger secondary orifice buffers pump fluctuations to stabilize mist output and suppress dripping.
Snap-fit shell and push button structures simplify hair dryer assembly while improving connection stability between the air cylinder and handle.
A ceramic resistive heater with thermal feedback keeps hair dryer temperatures below 300°C, reducing burn risk, noise, and hair damage.
Embedded heating in a flexible bonnet dries and styles wet hair hands-free with battery-powered portability and even heat distribution.
A glass-like bar inside the hair dryer attachment stores heat from airflow and transfers it by contact for styling after airflow drops.
A concentric outer duct uses induced cooling airflow and insulation to keep a compact handleless hairdryer housing at a safe grip temperature.
A rotor driven by the dryer airflow sweeps the outlet across multiple directions to widen hair coverage and reduce manual arm movement.
Curved multi-direction air passages shrink hair dryer duct volume while maintaining continuous airflow and limiting flow resistance.
Venturi-driven suction pulls short root hairs onto a heated styling surface, smoothing frizz while avoiding direct hot air exposure.
Curved diversion passages reroute airflow in 3D to shrink hair dryer duct size while maintaining stable, efficient flow.
A rotational hinge lets the dryer switch between straight and bent forms while preserving airflow and pressure for versatile styling.
A hinged body and balanced fan-heater layout keep airflow stable in straight and bent configurations for easier drying and styling.
Opposed secondary airflow guided over a curved surface uses the Coanda effect to smooth flyaways while keeping longer hairs aligned.
An attachment detection assembly identifies the hair dryer accessory and automatically adjusts airflow settings to keep performance stable.
A trapezoidal discharge path and relocated heater boost heated airflow volume while limiting case heating and burn risk.
An inner diffuser and side openings entrain extra air to boost drying airflow without a larger motor, keeping the hairdryer compact and light.
A trigger-actuated movable comb adjusts tension and positioning to style different hair types with less awkward handling.
Long hair dries unevenly in conventional equipment; segmented bonnet, extender, and tail zones coordinate airflow from roots to tips.
A horizontal motor and S-shaped rotary duct smooth airflow in a high-speed hair dryer, reducing turbulence and noise.
A movable comb section adjusts tooth spacing and tension for different hair types while keeping trigger operation ergonomic.
A double-duct guide mixes heated and unheated air streams to improve outlet temperature uniformity and reduce localized scalp heating.
A hollow-body container surrounds an air space to preserve strong airflow while dispensing care-product mist without reducing container volume.
Magnetic adsorbing members replace screws or clamps, making the hair dryer air nozzle easier to attach, detach, and replace securely.
A magnetically attached filter relocates coupling to the handle base, preventing accidental removal while supporting cleaning and repair.
Ribbed rubber or silicone surfaces and hook-and-loop fasteners keep blow dryer attachments in place, reducing reapplication and burn risk.
An integrated elastic band adapts to head size, preventing towel slippage and unraveling while supporting gentle, natural hair drying.
A pre-heating element warms internal airflow before the sensor, reducing delayed detection near the resistive winding.
A segmented hair dryer uses nested modules, linear airflow, and shock-absorbing sleeves to improve portability and comfort.
This case uses a reversible holder to switch between handheld and hands-free drying while adjusting airflow angle and height.
A retaining and alignment assembly identifies each attachment, enabling automatic airflow and heating adjustments for consistent operation.
Segmented air outlets and porous walls direct airflow away from the head, reducing scalp discomfort while maintaining drying speed.