IP Library › Granted Patent US 12,484,677
Granted Patent B2
US 12,484,677 · App. 17/773,551 · Granted Dec 2, 2025

Infrared hairdryer

Inventors: Frédéric Gilsoul (Hermalle-sous-Argenteau, BE); Liam Malone (Cambridgeshire, GB); Robinson Udale (Cumbria, GB)
Assignee: BABYLISS FACO SRL
A45D20/12
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Quick Facts
Patent No.
US 12,484,677
App. No.
17/773,551
Granted
Dec 2, 2025
Kind
B2
Abstract

An infrared hairdryer of the present disclosure includes a housing with an air inlet and an air outlet. The housing includes a motorized fan, an infrared radiation source for emitting IR radiant heat, and a back reflector positioned between the fan and the infrared emitter. A filter is positioned at the outlet of the hairdryer, allowing IR wavelengths comprised between 1.2 μm and 15 μm, preferably between 2 and 8 μm to leave the hairdryer and stopping the IR wavelengths out of this range. The infrared source has a thermal inertia allowing the infrared source to reach a temperature up to 1000° C. in less than 10 seconds, preferably in less than 5 seconds.

Claims (31)

1 . An infrared (IR) hairdryer ( 1 ) comprising:

a housing ( 7 ) with an air inlet ( 8 ) and an air outlet ( 9 ), the housing ( 7 ) including a motorized fan ( 4 );

an infrared radiation source ( 2 ) for emitting IR radiant heat;

a back reflector positioned between the fan ( 4 ) and the infrared radiation source ( 2 );

a filter ( 6 ) positioned at the outlet ( 9 ) of the hairdryer and configured to allow IR wavelengths comprised between 1.2 μm and 15 μm to leave said hairdryer and stopping IR wavelengths outside of 1.2 μm and 15 μm;

wherein the infrared source ( 2 ) has a thermal inertia allowing the infrared source ( 2 ) to reach a temperature up to 1000° C. in less than 10 seconds.

2 . The infrared hairdryer according to claim 1 , wherein the infrared radiation source ( 2 ) comprises a mesh or an etched foil.

3 . The infrared hairdryer according to claim 2 , wherein the etched foil has a thickness comprised between 30 and 150 μm.

4 . The infrared hairdryer according to claim 2 , wherein the mesh or the etched foil is arranged in a disc-shaped surface having a surface area greater than 30 cm 2 .

5 . The infrared hairdryer according to claim 2 , wherein the etched foil is made of FeCrAl alloy.

6 . The infrared hairdryer according to claim 2 , wherein the etched foil is maintained in the hairdryer ( 1 ) by a holder ( 13 ) made of mica allowing an electrical insulation.

7 . The infrared hairdryer according to claim 1 , wherein the infrared radiation source has a power density comprised between 5 and 15 W/m 3 .

8 . The infrared hairdryer according to claim 1 , wherein the filter ( 6 ) is a silicon window filter.

9 . The infrared hairdryer according to claim 1 , wherein the back reflector ( 5 ) is an anodized parabolic reflector made of aluminum.

10 . The infrared hairdryer according to claim 1 , wherein a side reflector ( 14 ) is provided to reflect peripheral radiation emitted by the infrared radiation source, said side reflector ( 14 ) being ring-shaped.

11 . The infrared hairdryer according to claim 1 , further comprising a deflector ( 11 ) to deviate a peripheral air stream along walls of the housing ( 7 ).

12 . The infrared hairdryer according to claim 11 , further comprising an air stream separator ( 15 ) having a central channel ( 12 ) to separate the air stream into two substreams, a central substream and a peripheral substream.

13 . The infrared hairdryer according to claim 1 , further comprising an outlet grid ( 10 ) at the air outlet ( 9 ) configured to prevent a user to be in contact with the filter ( 6 ).

14 . The infrared hairdryer according to claim 1 , wherein the motorized fan ( 4 ) is radial.

15 . The infrared hairdryer according to claim 1 , wherein the filter positioned at the outlet of the hairdryer is configured to allow IR wavelengths of 2 to 8 μm.

16 . The infrared hairdryer according to claim 1 , wherein the thermal inertia of the infrared source allows the infrared source to reach a temperature of up to 1000° C. in less than 5 seconds.

17 . The infrared hairdryer according to claim 3 , wherein the thickness of the etched foil is 50 to 120 μm.

18 . The infrared hairdryer according to claim 4 , wherein the surface area of the disc-shaped surface is greater than 40 cm 2 .

19 . The infrared hairdryer according to claim 7 , wherein the power density of the infrared radiation source is 10 W/m 3 .

20 . An infrared (IR) hairdryer, comprising:

a housing having an air inlet and an air outlet;

a fan disposed in the housing and configured to cause an airflow to pass from the air inlet to the air outlet;

an infrared radiation source disposed in the housing and configured to emit IR radiant heat;

a back reflector between the fan and the infrared radiation source;

a filter disposed at the air outlet and configured to allow only IR wavelengths of 1.2 μm to 15 μm to leave the hairdryer;

wherein the infrared radiation source has a thermal inertia allowing the infrared source to reach a temperature of 1000° C. in less than 10 seconds.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME PREVIOUSLY RECORDED AT REEL: 059717 FRAME: 0582. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded May 2, 2022
From: GILSOUL, FRÉDÉRIC; MALONE, LIAM; UDALE, ROBINSON
To: BABYLISS FACO SPRL
Reel/Frame 059843/0967 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2022
From: GILSOUL, FRÉDÉRIC; MALONE, LIAM; UDALE, ROBINSON
To: BABYLISS FACO SRL
Reel/Frame 059717/0582 →
Priority Claims (1)
EP 19219027 · Dec 20, 2019 · regional
Continuity (1)
Related Publication 20220378165A1 · Dec 1, 2022
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