Sensor assembly with a non-contact surface cleaning system for cameras, sensors, lidar and the like

US11453370B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11453370-B2
Application numberUS-202117182666-A
CountryUS
Kind codeB2
Filing dateFeb 23, 2021
Priority dateFeb 23, 2021
Publication dateSep 27, 2022
Grant dateSep 27, 2022

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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

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A sensor assembly includes a sensor and a cover disposed adjacent to the sensor to protect the sensor. The cover has an inner cover surface and an outer cover surface opposite the inner cover surface. The inner cover surface faces the sensor, and the outer cover surface faces away from the sensor. The cover has a first end wall and a second end wall apart from the first end wall along a first direction. The sensor assembly includes a cleaning system having a wiper movable along the outer cover surface of the cover in the first direction to clean to the outer cover surface. The wiper is at least partly made of a wiper material, and the wiper material includes a hydrophilic material to facilitate removal of water from the outer cover surface of the cover.

First claim

Opening claim text (preview).

What is claimed is: 1. A sensor assembly, comprising: a sensor; a cover disposed adjacent to the sensor to protect the sensor, wherein the cover has an inner cover surface and an outer cover surface opposite the inner cover surface, the inner cover surface faces the sensor, and the outer cover surface faces away from the sensor, the cover has a first end wall and a second end wall apart from the first end wall along a first direction; a wiper movable along the outer cover surface of the cover in the first direction to clean the outer cover surface; wherein the wiper is at least partly made of a wiper material, and the wiper material includes a hydrophilic material to facilitate removal of water from the outer cover surface of the cover; wherein the wiper and the outer cover surface are spaced apart from each other by a gap to minimize wear of the cover while cleaning the outer cover surface with the wiper; and wherein the sensor assembly further includes a cleaner disposed adjacent to the cover to allow the wiper to directly contact the cleaner when the wiper moves linearly in the first direction relative to the outer cover surface of the cover, and the wiper is linearly movable toward and away from the cleaner in the first direction to remove water from the wiper when the wiper directly contacts the cleaner. 2. The sensor assembly of claim 1 , wherein the wiper has a cleaning surface and an outer support surface opposite the cleaning surface, the cleaning surface is spaced apart from the outer support surface along a second direction, the cleaning surface of the wiper faces the outer cover surface of the cover, the gap has a thickness that is between 100 micrometers and 500 micrometers to maximize cleaning while minimizing wear of the outer cover surface, the thickness of the gap is measured from the outer cover surface of the cover to the cleaning surface of the wiper along the second direction, and the second direction is perpendicular to the first direction. 3. The sensor assembly of claim 1 , wherein the cover is made of a transparent material, and the wiper material is softer than the transparent material to minimize wear of the cover. 4. The sensor assembly of claim 1 , wherein the cleaner is a first cleaner, and the sensor assembly further includes a second cleaner, wherein the first cleaner is disposed adjacent to the first end wall of the cover to allow the wiper to directly contact the first cleaner when the wiper moves relative to the outer cover surface of the cover, the second cleaner is disposed adjacent to the second end wall of the cover to allow the wiper to directly contact the second cleaner when the wiper moves relative to the outer cover surface of the cover, the wiper is linearly movable toward and away from the second cleaner in the first direction, the second cleaner is spaced apart from the first cleaner along the first direction, and each of the first cleaner and the second cleaner is configured to remove water from the wiper when the wiper directly contacts a respective one of the first cleaner and the second cleaner, and the first cleaner is a brush, the wiper is linearly movable relative to the cover in the first direction at 0.5 meters per second, the wiper includes a wiper body and a plurality of rounded protrusions extending from the wiper body. 5. The sensor assembly of claim 4 , wherein the wiper is linearly movable back and forth between, and inclusive of, the first cleaner and the second cleaner, the first cleaner is spaced apart from the first end wall in the first direction by a first void to allow the water removed from the outer cover surface by the wiper to flow away from the outer cover surface, the second end wall is spaced apart from the second cleaner in the first direction by a second void to allow the water removed from the outer cover surface by the wiper to flow away from the outer cover surface. 6. The sensor assembly of claim 1 , wherein the cover includes a coating, the coating is disposed on the outer cover surface, and the coating is made of a hydrophobic material to facilitate removal of water from the outer cover surface when the wiper moves along the outer cover surface. 7. The sensor assembly of claim 1 , wherein the cover includes a coating, the coating is disposed on the outer cover surface, and the coating is made of the hydrophilic material to aid the wiper in collecting water on the outer cover surface. 8. The sensor assembly of claim 1 , further comprising a heater in thermal communication with the wiper, wherein the heater is configured to apply thermal energy to the wiper to aid in removing snow from the outer cover surface. 9. The sensor assembly of claim 1 , wherein the wiper includes a wiper edge shaped as a wedge to facilitate removal of debris from the outer cover surface. 10. A cleaning system for a sensor, comprising: at least one rail; a wiper supported by the at least one rail to guide a linear movement of the wiper along an outer cover surface of a cover, wherein the wiper is configured to move in a first direction to clean to outer cover surface; wherein the wiper is at least partly made of a wiper material, and the wiper material includes a hydrophilic material to facilitate removal of water from the outer cover surface of the cover; wherein the wiper and the outer cover surface are spaced apart from each other by a gap to minimize wear of the cover while cleaning the outer cover surface with the wiper; and wherein the cleaning system further includes a cleaner disposed adjacent to the cover to allow the wiper to directly contact the cleaner when the wiper moves linearly in the first direction relative to the outer cover surface of the cover, and the wiper is linearly movable toward and away from the cleaner in the first direction to remove water from the wiper when the wiper directly contacts the cleaner. 11. The cleaning system of claim 10 , wherein the wiper has a cleaning surface and an outer support surface opposite the cleaning surface, the cleaning surface is spaced apart from the outer support surface along a second direction, the cleaning surface of the wiper faces the outer cover surface of the cover, the gap has a thickness that is between 100 micrometers and 500 micrometers to maximize cleaning while minimizing wear of the outer cover surface, the thickness of the gap is measured from the outer cover surface of the cover to the cleaning surface of the wiper along the second direction, and the second direction is perpendicular to the first direction. 12. The cleaning system of claim 10 , wherein the cover is made of a transparent material, and the wiper material is softer than the transparent material to minimize wear of the cover, the at least one rail is a first rail directly connected to the wiper, the cleaning system further includes a second rail directly connected to the wiper, the first rail is elongated along the first direction, the second rail is elongated along the first direction, the first rail is parallel to the second rail, the cleaning system further includes a first support directly connected to the cover, the cleaning system further includes a second support directly connected to the cover, each of the first support and the second support is a beam elongated along the second direction and configured to maintain the cover in a fixed position relative to the sensor, and the wiper is linearly movable relative to the cover at 1 meter per second, and the first support is spaced apart from the second support along the first direction. 13. The cleaning system of claim 10 , wherein the cleaner is a first cleaner, and the cleaning system further includes a second clea

Assignees

Inventors

Classifications

  • including means to prevent or remove the obstruction · CPC title

  • Housing arrangements · CPC title

  • by heating (B08B7/0035 takes precedence) · CPC title

  • of land vehicles · CPC title

  • with means to keep optical surfaces clean, e.g. by preventing or removing dirt, stains, contamination, condensation (G02B1/18 takes precedence; cleaning in general B08B) · CPC title

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What does patent US11453370B2 cover?
A sensor assembly includes a sensor and a cover disposed adjacent to the sensor to protect the sensor. The cover has an inner cover surface and an outer cover surface opposite the inner cover surface. The inner cover surface faces the sensor, and the outer cover surface faces away from the sensor. The cover has a first end wall and a second end wall apart from the first end wall along a first d…
Who is the assignee on this patent?
Gm Global Tech Operations Llc
What technology area does this patent fall under?
Primary CPC classification B60S1/566. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Sep 27 2022 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).