IP Library › Granted Patent US 10,286,877
Granted Patent B2
US 10,286,877 · App. 14/721,331 · Granted May 14, 2019

System and method for cleaning a vehicle-mounted optic lens

Inventors: Robert Lopez Galera (Barcelona, ES); Carlos Esteller Pitarch (Barcelona, ES); Miguel Mota López (Barcelona, ES)
Assignee: FICO TRANSPAR, S.A.
B60S1/0848B08B3/02B60S1/481B60S1/52B60S1/54B60S1/56B60S1/528B60S1/544
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,286,877
App. No.
14/721,331
Granted
May 14, 2019
Kind
B2
Abstract

The present invention refers a system and a method for automatically cleaning an optic lens mounted on a vehicle, by spraying a washing liquid to remove any type of dirt from the lens such as a clear image or optic signal can be captured anytime, where an air pump is provided including a variable volume compression chamber to pressurize a volume of air, and a washing liquid conduit is communicated with a liquid nozzle and with the air pump, such as the air pump can be operated by the flow of pressurized washing liquid, such as the same flow of pressurized washing liquid is used to clean the optic surface, and to operate the air pump and generate a blast of air to blow off any liquid drop from the optic lens.

Claims (26)

1. System for cleaning a vehicle-mounted optic surface, comprising:

a washing liquid nozzle and a liquid flow control device communicated with the washing liquid nozzle for controlling the flow of liquid therethrough,

an air nozzle and an air flow control device communicated with the air nozzle for controlling the flow of air therethrough,

an air pump having an inlet opening and an outlet opening, wherein the outlet opening is communicated with the air flow control device,

a washing liquid conduit connected with the liquid flow control device,

wherein the air pump includes a variable volume compression chamber to pressurize a volume of air, said compression chamber being communicated with the outlet opening,

wherein the washing liquid conduit is additionally communicated with the air pump inlet opening, such that the air pump can be operated by a flow of pressurized washing liquid, and

wherein the system is configured such that air pressure builds up in the compression chamber while the air flow control device is closed and the air pump is operated by the flow of pressurized washing liquid, and

wherein the system is additionally configured to open the air flow control device once a predetermined level of air pressure is reached inside the compression chamber, to produce a blast of pressurized air on the optic surface.

2. System according to claim 1 , wherein the air pump comprises a tubular body, and a displaceable plunger housed inside the tubular body, such that the compression chamber is defined by the tubular body and the plunger, and wherein the air pump additionally comprises a spring coil housed in the compression chamber, such that the plunger is biased by the spring coil towards the inlet opening.

3. System according to claim 1 , further comprising a liquid pump communicated with the washing liquid conduit to supply a pressurized washing liquid to the liquid flow control device and to the air pump.

4. System according to claim 3 , further comprising a washing liquid reservoir communicated with the liquid pump.

5. System according to claim 3 , wherein the air pump and the liquid pump are adapted in such a manner that an air pump plunger is driven by a flow of pressurized washing liquid pumped by the liquid pump, to reduce the volume of the compression chamber and generate a volume of pressurized air.

6. System according to claim 3 , further comprising a control unit operatively associated with the air flow control device, with the liquid flow control device and with the liquid pump for commanding their operation, and wherein the control unit is adapted to carry out at least one cleaning cycle.

7. System according to claim 6 , wherein the control unit is adapted to carry out a cleaning cycle wherein first a predetermined amount of pressurized washing liquid is dispensed onto the optic surface by opening the liquid flow control device, and subsequently the air flow control device is opened such that pressurized air is applied onto the optic surface to blow off any drop of washing liquid from the optic surface.

8. System according to claim 6 , wherein the air flow control device and the liquid flow control device are electrovalves, and wherein the control unit is an electronic programmable device.

9. System according to claim 1 , further comprising a support having an opening and the optic surface is mounted at that opening, and wherein the liquid nozzle and the air nozzle are mounted in the support, and they are arranged to respectively dispense washing liquid and project an air flow onto the optic surface.

10. System according to claim 9 , wherein the air pump, the air control device and the liquid control device are mounted in the support.

11. System according to claim 9 , wherein part of the support is configured in the form of a housing, and wherein the system further comprises an optic sensor placed inside that housing and operatively arranged with respect to the optic surface.

12. System according to claim 1 , wherein the air pump is provided with a one-way valve communicated with the compression chamber, the one-way valve being configured to allow air to enter into the compression chamber during expansion of the same, and to prevent air from entering into the chamber during compression of the same.

13. System according to claim 1 , wherein the optic surface is an optic lens or a cover window.

14. System according to claim 1 wherein the air control device is an electro-valve, and it is arranged at least in part, inside the air pump.

15. The system according to claim 1 , wherein the air flow control device comprises an electrovalve, and wherein the liquid flow control device comprises an electrovalve.

16. The system according to claim 15 , wherein the system is configured to increase liquid pressure inside the air pump when the liquid flow control device is closed.

17. Method for cleaning a vehicle-mounted optic lens providing the system of claim 1 ; generating a flow of pressurized washing liquid and supplying this flow of pressurized washing liquid to the liquid flow control device, and to the compression chamber to generate a volume of pressurized air, and

dispensing a burst of pressurized washing liquid and dispensing pressurized air onto the optic lens according to a pre-determined cleaning sequence.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2015
From: LOPEZ GALERA, ROBERT; ESTELLER PITARCH, CARLOS; MOTA LOPEZ, MIGUEL
To: FICO TRANSPAR, S.A.
Reel/Frame 035793/0755 →
Priority Claims (1)
EP 14382188 · May 27, 2014 · regional
Continuity (1)
Related Publication 20150343999A1 · Dec 3, 2015
Cited By (3)
US 12,196,342 US 12,202,446 US 12,441,275