IP Library Granted Patent US 10,675,954
Granted Patent B2
US 10,675,954 · App. 15/772,036 · Granted Jun 9, 2020

Windshield with electrically controllable sun visor

Inventors: Michael Labrot (Aachen, DE); Dieter Linnhoefer (Saint-Martin d'Uriage, DE)
Assignee: SAINT-GOBAIN GLASS FRANCE
B60J3/04B32B17/10036B32B17/1066B32B17/1077B32B17/10192B32B17/10339B32B17/10348B32B17/10504B32B17/10761B32B17/10788B32B17/10871B32B2250/40B32B2307/412B32B2605/006
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Quick Facts
Patent No.
US 10,675,954
App. No.
15/772,036
Granted
Jun 9, 2020
Kind
B2
Abstract

A windshield with an electrically controllable sun visor is described. The windshield includes an outer pane and an inner pane that are bonded to one another via an intermediate layer. According to one aspect, a functional element with electrically controllable optical properties is incorporated into the intermediate layer and above a central field of vision. The functional element is connected to the outer pane via a region of a first thermoplastic layer, and is connected to the inner pane via a region of a second thermoplastic layer. According to another aspect, the region of the first thermoplastic layer and/or the region of the second thermoplastic layer is tinted or colored.

Claims (42)

1. A Windshield with an electrically controllable sun visor, the windshield comprising:

an outer pane;

an intermediate layer; and

an inner pane bonded to the outer pane via the intermediate layer,

wherein above a central field of vision, a functional element with electrically controllable optical properties is incorporated into the intermediate layer,

wherein the functional element is connected to the outer pane via a region of a first thermoplastic layer, and is connected to the inner pane via a region of a second thermoplastic layer, and

wherein at least one of the region of the first thermoplastic layer and the region of the second thermoplastic layer is a tinted or colored region, and

wherein the functional element is divided by isolating lines into segments that can be electrically actuated separately.

2. The windshield according to claim 1 , wherein the intermediate layer is transparent in the central field of vision.

3. The windshield according to claim 1 , wherein the functional element is a polymer dispersed liquid crystal.

4. The windshield according to claim 1 , wherein the tinted or colored region has a transmittance in the visible spectral range of 10% to 50%.

5. The windshield according to claim 1 , wherein the tinted or colored region has a transmittance in the visible spectral range of 20% to 40%.

6. The windshield according to claim 1 , wherein the functional element comprises an edge seal that is formed by a transparent colorless adhesive and a transparent colorless adhesive tape.

7. The windshield according to claim 1 , wherein the functional element is peripherally surrounded by a third thermoplastic layer.

8. The windshield according to claim 7 , wherein the lower edge of the functional element is arranged flush with the third thermoplastic layer.

9. The windshield according to claim 1 , wherein the upper edge and the side edges of the functional element are obscured in through-vision by an opaque masking print.

10. The windshield according to claim 1 , wherein the first thermoplastic layer and the second thermoplastic layer comprise at least one of: polyvinyl butyral (PVB), ethylene vinyl acetate (EVA), and/or polyurethane (PU).

11. The windshield according to claim 1 , wherein the first thermoplastic layer and the second thermoplastic layer comprise polyvinyl butyral (PVB).

12. The windshield according to one of claim 1 , wherein the tinted or colored region protrudes beyond the lower edge of the functional element.

13. A Vehicle having a windshield, comprising:

a windshield including

an outer pane;

an intermediate layer; and

an inner pane bonded to the outer pane via the intermediate layer,

wherein above a central field of vision, a functional element with electrically controllable optical properties is incorporated into the intermediate layer,

wherein the functional element is connected to the outer pane via a region of a first thermoplastic layer, and is connected to the inner pane via a region of a second thermoplastic layer, and

wherein at least one of the region of the first thermoplastic layer and the region of the second thermoplastic layer is a tinted or colored region and

wherein the vehicle is devoid of a roof-mounted mechanically hinged sun visor, and

wherein the functional element is divided by isolating lines into segments that can be electrically actuated separately.

14. A method for producing a windshield with an electrically controllable sun visor,

the method comprising:

arranging in order, one atop another,

an outer pane,

a first thermoplastic layer,

a functional element with electrically controllable optical properties,

a second thermoplastic layer, and

an inner pane,

wherein the functional element is arranged in a region above a central field of vision, and

wherein the functional element is divided by isolating lines into segments that can be electrically actuated separately and

wherein the first thermoplastic layer and the second thermoplastic layer has a tinted or colored region that is arranged between the functional element and the outer pane and the inner pane, and

bonding the outer pane and the inner pane by lamination, thereby forming, from the first thermoplastic layer and the second thermoplastic layer, an intermediate layer with an incorporated functional element.

15. The method according to claim 14 , wherein the functional element is in the form of a multilayer film and is cut to size using a laser.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded May 16, 2025
From: SAINT-GOBAIN GLASS FRANCE
To: SAINT-GOBAIN SEKURIT FRANCE
Reel/Frame 071969/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2018
From: LABROT, MICHAEL; LINNHOEFER, DIETER
To: SAINT-GOBAIN GLASS FRANCE
Reel/Frame 045926/0254 →
Priority Claims (1)
EP 16160838 · Mar 17, 2016 · regional
Continuity (1)
Related Publication 20180281570A1 · Oct 4, 2018