Vehicular interior rearview mirror assembly with micro-LED display

US12508992B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12508992-B2
Application numberUS-202418892659-A
CountryUS
Kind codeB2
Filing dateSep 23, 2024
Priority dateAug 23, 2017
Publication dateDec 30, 2025
Grant dateDec 30, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A vehicular interior rearview mirror assembly includes a mirror head pivotable about a mirror support. A mirror reflective element of the mirror head includes a reflective region defined by a mirror reflector that is viewable by a driver of a vehicle viewing the mirror reflective element. A video display device includes a display screen that is operable to display video images. The display screen includes a plurality of micro-LEDs disposed at electrically conductive traces of a circuit element. A width dimension of individual micro-LEDs is less than 500 microns, and a length dimension of individual micro-LEDs is less than 500 microns. Current passed by individual micro-LEDs of the plurality of micro-LEDs when operated is less than 4 mA. The video display device is operable to display at the display screen video images derived from image data captured by a camera of the vehicle.

First claim

Opening claim text (preview).

The invention claimed is: 1 . A vehicular interior rearview mirror assembly, the vehicular interior rearview mirror assembly comprising: a mirror head pivotable about a mirror support; wherein the mirror support is configured to mount the vehicular interior rearview mirror assembly at an interior portion of a vehicle; wherein the mirror head comprises a mirror casing and a mirror reflective element; wherein the mirror reflective element comprises an electro-optic mirror reflective element having a front substrate and a rear substrate with an electro-optic medium disposed therebetween, and wherein the front substrate has a first surface and a second surface and the rear substrate has a third surface and a fourth surface, the second surface and the third surface opposing the electro-optic medium; wherein the mirror reflective element has a mirror reflector disposed at the rear substrate; wherein the mirror reflective element comprises a reflective region defined by the mirror reflector that, with the vehicular interior rearview mirror assembly mounted at the interior portion of the vehicle, is viewable by a driver of the vehicle viewing the mirror reflective element; a video display device, wherein the video display device comprises a display screen that, with the vehicular interior rearview mirror assembly mounted at the interior portion of the vehicle, is operable to display video images viewable by the driver of the vehicle; wherein the display screen comprises a plurality of micro-LEDs disposed at a circuit element; wherein the micro-LEDs are disposed at electrically conductive traces of the circuit element; wherein a width dimension of individual micro-LEDs of the plurality of micro-LEDs is less than 500 microns, and wherein a length dimension of individual micro-LEDs of the plurality of micro-LEDs is less than 500 microns; wherein current passed by individual micro-LEDs of the plurality of micro-LEDs when operated is less than 4 mA; wherein, with the vehicular interior rearview mirror assembly mounted at the interior portion of the vehicle, the video display device is operable to display at the display screen video images derived from image data captured by a camera of the vehicle; and wherein, with the vehicular interior rearview mirror assembly mounted at the interior portion of the vehicle, and when the video display device is operated to display video images, light emitted by the video display device is viewed by the driver of the vehicle viewing the mirror reflective element. 2 . The vehicular interior rearview mirror assembly of claim 1 , wherein the circuit element comprises a flexible circuit element. 3 . The vehicular interior rearview mirror assembly of claim 2 , wherein the flexible circuit element comprises a flexible polyimide film. 4 . The vehicular interior rearview mirror assembly of claim 2 , wherein the flexible circuit element comprises a flexible polyethylene terephthalate film. 5 . The vehicular interior rearview mirror assembly of claim 1 , wherein the plurality of micro-LEDs comprises at least 1,300 micro-LEDs disposed at the circuit element. 6 . The vehicular interior rearview mirror assembly of claim 1 , wherein the width dimension of individual micro-LEDs of the plurality of micro-LEDs is greater than 75 microns, and wherein the length dimension of individual micro-LEDs of the plurality of micro-LEDs is greater than 75 microns. 7 . The vehicular interior rearview mirror assembly of claim 1 , wherein the micro-LEDs are disposed at printed silver traces of the circuit element. 8 . The vehicular interior rearview mirror assembly of claim 1 , wherein the micro-LEDs are disposed at copper traces of the circuit element. 9 . The vehicular interior rearview mirror assembly of claim 1 , wherein packing density of micro-LEDs of the plurality of micro-LEDs at the circuit element is at least micro-LEDs per square centimeter. 10 . The vehicular interior rearview mirror assembly of claim 1 , wherein the packing density of micro-LEDs of the plurality of micro-LEDs at the circuit element is at least micro-LEDs per square centimeter. 11 . The vehicular interior rearview mirror assembly of claim 1 , wherein the packing density of micro-LEDs of the plurality of micro-LEDs at the circuit element is at least 30 micro-LEDs per square centimeter. 12 . The vehicular interior rearview mirror assembly of claim 1 , wherein the display screen comprises a diffuser. 13 . The vehicular interior rearview mirror assembly of claim 12 , wherein the diffuser comprises a plurality of layers of diffuser film, and wherein at least one layer of the plurality of layers of diffuser film comprises a phosphor conversion film. 14 . The vehicular interior rearview mirror assembly of claim 1 , wherein the mirror reflector is disposed at the third surface of the rear substrate of the mirror reflective element. 15 . The vehicular interior rearview mirror assembly of claim 1 , wherein the mirror reflector comprises a transflective mirror reflector that at least partially reflects light incident thereon and at least partially transmits incident light therethrough. 16 . The vehicular interior rearview mirror assembly of claim 15 , wherein the display screen is disposed behind the mirror reflective element, and wherein the display screen occupies at least 75 percent of the reflective region of the mirror reflective element. 17 . The vehicular interior rearview mirror assembly of claim 16 , wherein, with the vehicular interior rearview mirror assembly mounted at the interior portion of the vehicle, and when the video display device is operated to display video images, light emitted by the video display device passes through the mirror reflective element for viewing of displayed video images by the driver of the vehicle viewing the mirror reflective element. 18 . The vehicular interior rearview mirror assembly of claim 1 , wherein current passed by individual micro-LEDs of the plurality of micro-LEDs when operated is greater than 0.75 mA. 19 . The vehicular interior rearview mirror assembly of claim 1 , wherein current passed by individual micro-LEDs of the plurality of micro-LEDs when operated is greater than 1 mA and less than 2.5 mA. 20 . The vehicular interior rearview mirror assembly of claim 1 , wherein current passed by individual micro-LEDs of the plurality of micro-LEDs when operated is greater than 1.25 mA and less than 1.75 mA. 21 . The vehicular interior rearview mirror assembly of claim 1 , wherein the interior portion of the vehicle comprises an in-cabin side of a windshield of the vehicle. 22 . The vehicular interior rearview mirror assembly of claim 1 , wherein the plurality of micro-LEDs comprises a plurality of pixelate RGB micro-LEDs. 23 . The vehicular interior rearview mirror assembly of claim 1 , wherein micro-LEDs of the plurality of micro-LEDs are connected in parallel. 24 . The vehicular interior rearview mirror assembly of claim 1 , wherein micro-LEDs of the plurality of micro-LEDs are connected in series. 25 . A vehicular interior rearview mirror assembly, the vehicular interior rearview mirror assembly comprising: a mirror head pivotable about a mirror support; wherein the mirror support is configured to mount the vehicular interior rearview mirror assembly at an in-cabin side of a windshield of a vehicle; wherein the mirror head comprises a mirror casing an

Assignees

Inventors

Classifications

  • Package configurations · CPC title

  • characterised by the type of the output information, e.g. video entertainment or vehicle dynamics information; characterised by the purpose of the output information, e.g. for attracting the attention of the driver · CPC title

  • Matrix displays · CPC title

  • on or in rear view mirrors · CPC title

  • Light emitting diodes · CPC title

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What does patent US12508992B2 cover?
A vehicular interior rearview mirror assembly includes a mirror head pivotable about a mirror support. A mirror reflective element of the mirror head includes a reflective region defined by a mirror reflector that is viewable by a driver of a vehicle viewing the mirror reflective element. A video display device includes a display screen that is operable to display video images. The display scre…
Who is the assignee on this patent?
Magna Mirrors Of America Inc
What technology area does this patent fall under?
Primary CPC classification B60R1/12. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 30 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).