IP Library › Granted Patent US 12,366,342
Granted Patent B2
US 12,366,342 · App. 18/725,065 · Granted Jul 22, 2025

Device for dehumidifying a closed casing

Inventors: Hassan Koulouh (Lamorlaye, FR); Cyril Rivier (Chatou, FR); Claudio Chiattelli (Le Blanc-Mesniil, FR); Michel Rinzler (Paris, FR); Alexandre Aubry (Paris, FR)
Assignee: AML SYSTEMS
F21S45/60B01D53/0438B01D53/261B01D2257/80B01D2258/06B01D2259/40096B01D2259/4566
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Quick Facts
Patent No.
US 12,366,342
App. No.
18/725,065
Granted
Jul 22, 2025
Kind
B2
Abstract

Device for dehumidifying a closed casing. The device for dehumidifying comprises a box comprising an inlet communicating with the interior of the closed casing and an outlet, a heating module able to be controlled to generate heat, a desiccant configured to adsorb moisture when it is not heated by the heating module and to return adsorbed moisture by desorption when it is heated by the heating module, a mobile plug able to be moved to alternately open and close the inlet and the outlet, a bias spring configured to move the mobile plug when the heating module does not heat the desiccant and a shape memory alloy spring configured to move the mobile plug when the heating module heats the desiccant, said shape memory alloy spring being able to be heated by the heating module at the same time as the desiccant. The device for dehumidifying is suited for dehumidifying any type of closed casing, it is cost efficient both in design and in power consumption, and it is easy to implement thanks to its small size and its simple design.

Claims (34)

1. Device for dehumidifying a closed casing, characterized in that it comprises at least:

a box defining a chamber comprising at least one inlet and one outlet, the inlet being configured so that the chamber communicates with the interior of the closed casing and the outlet being configured so that the chamber communicates with the exterior of the closed casing;

a heating module able to be controlled to generate heat;

a desiccant configured to adsorb moisture inside the chamber when said desiccant is not heated by the heating module and to return adsorbed moisture by desorption when said desiccant is heated by the heating module;

at least one mobile plug able to be moved alternately to at least a first position and a second position, said mobile plug being configured to open the inlet and close the outlet in the first position and to close the inlet and open the outlet in the second position;

a bias spring configured to move the mobile plug to the first position when the heating module does not heat the desiccant; and

a shape memory alloy spring able to be heated by the heating module at the same time as the desiccant, said shape memory alloy spring being configured to move the mobile plug in the second position when the heating module heats the desiccant,

the mobile plug comprising:

an adsorption flap configured to open the inlet when the mobile plug is in the first position and close the inlet when the mobile plug is in the second position; and

a desorption flap configured to close the outlet when the mobile plug is in the first position and open the outlet when the mobile plug is in the second position.

2. Device for dehumidifying according to claim 1 , characterized in that

the adsorption flap comprises a first sealing face configured to be pressed against or moved away from an input wall of the box containing the inlet to respectively open or close said inlet by being moved according to a translation movement along a first translation axis substantially perpendicular to the input wall,

the desorption flap comprises a second sealing face configured to be pressed against or moved away from an output wall of the box containing the outlet to respectively open or close said outlet by being moved according to a translation movement along a second translation axis substantially perpendicular to the output wall.

3. Device for dehumidifying according to claim 2 , characterized in that the adsorption flap is integral with the desorption flap, said adsorption flap and desorption flap being configured so that the first translation axis is coincident with the second translation axis, thus the mobile plug is moved to the first position and to the second position according to a single direction of translation.

4. Device for dehumidifying according to claim 1 , characterized in that,

the mobile plug comprises a first housing;

the heating module comprises a first guiding shape,

the bias spring being configured to be accommodated inside the first housing and mounted on the guiding shape so that said bias spring is able to push the mobile plug into the first position by resting against the heating module.

5. Device for dehumidifying according to claim 1 , characterized in that,

the heating module comprises a second housing;

the mobile plug comprises a second guiding shape,

the shape memory alloy spring being configured to be accommodated inside the second housing and mounted on the guiding shape so that said shape memory alloy spring is able to push the mobile plug into the second position by resting against the heating module.

6. Device for dehumidifying according to claim 1 , characterized in that the heating module comprises at least

a resistive element provided with at least a flexible printed circuit having a positive temperature coefficient ink, said resistive element being configured to generate heat,

a heat sink configured to dissipate the heat generated by the resistive element, the desiccant being attached to the heat sink so that said heat sink is able to transfer the heat generated by the resistive element to the desiccant.

7. Device for dehumidifying according to claim 5 , characterized in that the second housing of the heating module is made of a heat-conductive material and connected to the heat sink so that said second housing is able to transfer heat generated by the heating module to the shape memory alloy spring.

8. Device for dehumidifying according to claim 5 , characterized in that the heat sink of the heating module is provided with a flat shape.

9. Device for dehumidifying according to claim 1 , characterized in that the desiccant corresponds to at least one desiccant pad.

10. Device for dehumidifying according to claim 1 , characterized in that the desiccant is arranged around the heat sink of the heating module.

11. Device for dehumidifying according to claim 6 , characterized in that the desiccant is arranged on the heat sink of the heating module with a surface contact.

12. Device for dehumidifying according to claim 1 , characterized in that said device for dehumidifying comprises at least a first sealing element and a second sealing element arranged on the mobile plug so that the second sealing element is able to seal the outlet when the mobile plug is in the first position and the first sealing element is able to seal the inlet when the mobile plug is in the second position.

13. Device for dehumidifying according to claim 1 , characterized in that the box is provided with a round shape.

14. Vehicle headlamp comprising at least a closed casing housing a light source,

characterized in that said vehicle headlamp comprises a device for dehumidifying according to claim 1 , said device for dehumidifying being able to dehumidify the closed casing by being arranged on the vehicle headlamp so that the chamber of the box communicates with the interior of the closed casing via the inlet and communicates with the exterior of the closed casing via the outlet.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2024
From: KOULOUH, HASSAN; RIVIER, CYRIL; CHIATTELLI, CLAUDIO; RINZLER, MICHEL; AUBRY, ALEXANDRE
To: AML SYSTEMS
Reel/Frame 067986/0937 →
Priority Claims (1)
FR FR2200346 · Jan 17, 2022 · national
Continuity (1)
Related Publication 20250102130A1 · Mar 27, 2025
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