IP Library Granted Patent US 12687716
Granted Patent B2
US 12687716 · App. 18/044,014 · Granted Jul 21, 2026

Projection assembly for a head-up display (HUD) with p-polarized radiation

Inventors: Lisa Schmadtke (Würselen, DE); Jan Hagen (Bonn, DE); Jefferson Do Rosario (Aachen, DE); Stephan Gillessen (Alsdorf, DE)
Assignee: SAINT-GOBAIN SEKURIT FRANCE
G02B27/01B32B17/10036B60K35/00B60K35/23B60K35/60G02B27/0101B60K2360/334B60K2360/785
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Quick Facts
Patent No.
US 12687716
App. No.
18/044,014
Granted
Jul 21, 2026
Kind
B2
Abstract

A projection assembly for a head-up display (HUD), includes a windshield with an HUD region, inner and outer panes joined via a thermoplastic intermediate layer, and a projector directed at the HUD region having a radiation predominantly p-polarized. The windshield has a reflection coating for reflecting p-polarized radiation. The reflection coating has exactly one electrically conductive layer based on silver. A lower dielectric layer or layer sequence with a refractive index of at least 1.9 is arranged below the electrically conductive layer. An upper dielectric layer or layer sequence with a refractive index of at least 1.9 is arranged above the electrically conductive layer. The ratio of the optical thickness of the upper dielectric layer or layer sequence to the optical thickness of the lower dielectric layer or layer sequence is between 2.10 and 3.20. The reflection coating includes no dielectric layers with a refractive index less than 1.9.

Claims (39)

1 . A projection assembly for a head-up display (HUD), comprising:

a windshield with an HUD region, comprising an outer pane having an outer face and an inner face and an inner pane having an inner face and an outer face, wherein the inner face of the outer pane is joined to the inner face of the inner pane via a thermoplastic intermediate layer, and

a projector, which is directed at the HUD region;

wherein

a radiation of the projector is predominantly p-polarized, and

the windshield is provided with a reflection coating, which is adapted to reflect p-polarized radiation;

and wherein

the reflection coating has exactly one electrically conductive layer based on silver, a lower dielectric layer or lower dielectric layer sequence with a refractive index of at least 1.9 is arranged below the electrically conductive layer,

an upper dielectric layer or upper dielectric layer sequence with a refractive index of at least 1.9 is arranged above the electrically conductive layer,

a ratio of an optical thickness of the upper dielectric layer or upper dielectric layer sequence to an optical thickness of the lower dielectric layer or lower dielectric layer sequence is between 2.10 and 3.20,

the reflection coating includes no dielectric layers with a refractive index less than 1.9, and the windshield includes a sensor region, in which radiation passes through the reflection coating and is detectable by a sensor provided in the sensor region.

2 . The projection assembly according to claim 1 , wherein the ratio of the optical thickness of the upper dielectric layer or upper dielectric layer sequence to the optical thickness of the lower dielectric layer or lower dielectric layer sequence is between 2.14 and 3.10.

3 . The projection assembly according to claim 2 , wherein the ratio is between 2.30 and 2.98.

4 . The projection assembly according to claim 1 , wherein the sensor is affixed in the sensor region on the outer face of the inner pane.

5 . The projection assembly according to claim 4 , wherein the sensor is based on ultrasound, radar, lidar, and/or camera technology.

6 . The projection assembly according to claim 1 , wherein

exactly one lower dielectric layer with a refractive index of at least 1.9 is arranged below the electrically conductive layer, and/or

exactly one upper dielectric layer with a refractive index of at least 1.9 is arranged above the electrically conductive layer.

7 . The projection assembly according to claim 6 , wherein the exactly one lower dielectric layer with a refractive index of at least 1.9 includes silicon nitride, and/or wherein the exactly one upper dielectric layer with a refractive index of at least 1.9 includes silicon nitride.

8 . The projection assembly according to claim 1 , wherein

the lower dielectric layer sequence includes a first lower dielectric layer and a second lower dielectric layer, with a refractive index of at least 1.9 that are arranged below the electrically conductive layer, and/or

the upper dielectric layer sequence includes a first upper dielectric layer and a second upper dielectric layer, with a refractive index of at least 1.9 that are arranged above the electrically conductive layer.

9 . The projection assembly according to claim 8 , wherein

the first lower dielectric layer includes silicon nitride and the second lower dielectric layer includes zinc oxide, and/or

the first upper dielectric layer includes silicon nitride and the second upper dielectric layer includes zinc oxide.

10 . The projection assembly according to claim 1 , wherein

the lower dielectric layer sequence includes a first lower dielectric layer, a second lower dielectric layer, and a third lower dielectric layer, with a refractive index of at least 1.9 that are arranged below the electrically conductive layer, and/or

the upper dielectric layer sequence includes a first upper dielectric layer, a second upper dielectric layer, and a third upper dielectric layer, with a refractive index of at least 1.9 that are arranged above the electrically conductive layer.

11 . The projection assembly according to claim 10 , wherein

the first lower dielectric layer includes silicon nitride, the second lower dielectric layer includes tin oxide, and the third lower dielectric layer includes a mixed silicon-metal nitride, and/or

the first upper dielectric layer includes silicon nitride, the second upper dielectric layer includes tin oxide, and the third upper dielectric layer includes a mixed silicon-metal nitride.

12 . The projection assembly according to claim 11 , wherein the mixed silicon-metal nitride of the third lower dielectric layer and/or the third upper dielectric layer is mixed silicon-zirconium nitride or mixed silicon-hafnium nitride.

13 . The projection assembly according to claim 1 , wherein the reflection coating includes at least one metallic blocking layer, which is arranged above and/or below the electrically conductive layer and has a geometric thickness of less than 1 nm.

14 . The projection assembly according to claim 1 , wherein the outer pane is tinted or colored and has light transmittance of at least 80%.

15 . The projection assembly according to claim 1 , wherein the radiation of the projector is substantially purely p-polarized.

16 . The projection assembly according to claim 1 , wherein the radiation of the projector strikes the windshield with an angle of incidence of 55° to 70°.

17 . The projection assembly according to claim 1 , wherein the electrically conductive layer has a geometric thickness of 10 nm to 14 nm.

18 . The projection assembly according to claim 1 , wherein external surfaces of the windshield are arranged substantially parallel to one another.

19 . The projection assembly according to claim 1 , wherein the reflection coating is arranged on the surface of the outer pane or the inner pane facing the thermoplastic intermediate layer or within the thermoplastic intermediate layer.