IP Library Granted Patent US 9,541,445
Granted Patent B2
US 9,541,445 · App. 14/680,844 · Granted Jan 10, 2017

Optical level sensor for reflective liquids

Inventors: David A. Tence (Tualatin, OR); Matthew D. Savoy (Webster, NY); David B. Tait (West Linn, OR)
Assignee: Xerox Corporation
G01F23/2925B41J2/17566B41J2002/17573
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Quick Facts
Patent No.
US 9,541,445
App. No.
14/680,844
Filed
Apr 7, 2015
Granted
Jan 10, 2017
Kind
B2
Art Unit
2853
USPC
347/7
Abstract

An optical sensor enables a level of reflective fluid to be detected. The optical sensor includes a prism mounted at one end of a housing. The prism has an exterior surface that is parallel to the end of the housing and a width that corresponds to a width of the end of the housing. A photoemitter and a photodetector are mounted at another end of the housing to enable light emitted by the photoemitter to be reflected by the prism when the prism contacts reflective fluid and to enable light emitted by the photoemitter to pass out of the sensor when the prism is in contact with air.

Claims (28)

1. An optical sensor for detecting a presence and an absence of reflective fluid comprising:

a housing having at least one wall that encloses a volume and the at least one wall has a first end and a second end;

a base configured to close the first end of the at least one wall of the housing;

a photoemitter positioned in the base;

a photodetector positioned in the base; and

a prism configured to close the second end of the at least one wall of the housing, the prism having no sloped surfaces, at least one surface of the prism is parallel to the second end of the at least one wall of the housing, and the at least one surface of the prism has a width approximately equal to a width of the second end of the at least one wall of the housing to enable the photodetector to generate a signal indicative of whether a reflective fluid is contacting the prism.

2. The optical sensor of claim 1 , wherein the at least one wall of the housing is a cylinder having a same diameter at the first end and the second end and the prism is a cylinder and the at least one surface of the cylinder has a diameter that is approximately equal to the same diameter of the first end and the second end of the at least one wall of the housing.

3. An reflective fluid supply system for a printer comprising:

a volumetric container for storing reflective fluid;

a reservoir having an internal volume;

a pump configured to move reflective fluid from the volumetric container to the internal volume of the reservoir;

at least one sensor positioned within the internal volume of the reservoir, the at least one sensor being configured with a housing having at least one wall that encloses a volume and the at least one wall has a first end and a second end, a base configured to close the first end of the at least one wall of the housing, a photoemitter positioned in the base, a photodetector positioned in the base, and a prism configured to close the second end of the at least one wall of the housing, the prism having no sloped surfaces, at least one surface of the prism is parallel to the second end of the at least one wall of the housing, and the at least one surface of the prism has a width approximately equal to a width of the second end of the at least one wall of the housing to enable the photodetector to generate a signal indicative of whether a reflective fluid is contacting the prism of the at least one sensor; and

a controller operatively connected to the at least one sensor and the pump, the controller being configured to receive a signal from the at least one sensor indicative of whether the at least one sensor is contacting reflective ink within the internal volume of the reservoir and to operate the pump to move reflective fluid from the volumetric container into the internal volume of the reservoir in response to the signal from the at least one sensor indicating an absence of reflective fluid contacting the at least one sensor.

4. The system of claim 3 , wherein the at least one wall of the housing is a cylinder having a same diameter at the first end and the second end of the at least one wall and the prism is a cylinder having a diameter equal to the same diameter of the first end and the second end of the at least one wall of the housing of the at least one sensor.

5. The system of claim 3 , the at least one sensor further comprising:

a pair of sensors, each sensor in the pair of sensors being configured with a housing having at least one wall that encloses a volume and the at least one wall has a first end and a second end, a base configured to close the first end of the at least one wall of the housing, a photoemitter positioned in the base, a photodetector positioned in the base, and a prism configured to close the second end of the at least one wall of the housing, the prism having no sloped surfaces, at least one surface of the prism is parallel to the second end of the at least one wall of the housing, and the at least one surface of the prism has a width approximately equal to a width of the second end of the at least one wall of the housing to enable the photodetector to generate a signal indicative of whether a reflective fluid is contacting the prism, one of the sensors in the pair of sensors being positioned within the internal volume of the reservoir at a location where the signal generated by the one sensor indicates the reflective fluid level in the reservoir is approaching a floor of the reservoir when the signal indicates an absence of reflective fluid contacting the one sensor;

the other sensor in the pair of sensors being positioned within the internal volume of the reservoir at a location where the signal generated by the other sensor indicates the reflective fluid level in the reservoir is approaching a ceiling of the reservoir when the signal indicates a presence of reflective fluid contacting the other sensor; and

the controller is further configured to operate the pump in response to the signal from the one sensor indicating an absence of reflective fluid contacting the one sensor and to deactivate the pump in response to the signal from the other sensor indicating a presence of reflective fluid contacting the other sensor.

6. The system of claim 5 further comprising:

a volumetric container for storing non-reflective fluid;

another reservoir having an internal volume;

another pump configured to move non-reflective fluid from the volumetric container for storing non-reflective fluid to the internal volume of the other reservoir;

at least one sensor positioned within the internal volume of the other reservoir, the at least one sensor in the internal volume of the other reservoir being configured with a housing having at least one wall that encloses a volume and the at least one wall has a first end and a second end, a base configured to close the first end of the at least one wall of the housing, a photoemitter positioned in the base, a photodetector positioned in the base, and a prism configured to close the second end of the at least one wall of the housing, the prism having no sloped surfaces, at least one surface of the prism is parallel to the second end of the at least one wall of the housing, and the at least one surface of the prism has a width approximately equal to a width of the second end of the at least one wall of the housing to enable the photodetector to generate a signal indicative of whether a reflective fluid is contacting the prism to detect a presence and an absence of non-reflective fluid contacting the at least one sensor within the internal volume of the other reservoir; and

the controller being operatively connected to the at least one sensor in the internal volume of the other reservoir and the other pump, the controller being further configured to receive a signal from the at least one sensor in the internal volume of the other reservoir indicative of whether the at least one sensor is contacting non-reflective fluid within the internal volume of the other reservoir and to operate the other pump to move non-reflective fluid from the volumetric container for storing non-reflective fluid into the internal volume of the other reservoir in response to the signal from the at least one sensor within the internal volume of the other reservoir indicating an absence of non-reflective fluid contacting the at least one sensor in the internal volume of the other reservoir.

7. The system of claim 6 , the at least one sensor in the other reservoir further comprising:

a pair of sensors, each sensor in the pair of sensors being configured with a housing having at least one wall that encloses a volume and the at least one wall has a first end and a second end, a base configured to close the first end of the at least one wall of the housing, a photoemitter positioned in the base, a photodetector positioned in the base, and a prism configured to close the second end of the at least one wall of the housing, the prism having no sloped surfaces, at least one surface of the prism is parallel to the second end of the at least one wall of the housing, and the at least one surface of the prism has a width approximately equal to a width of the second end of the at least one wall of the housing to enable the photodetector to generate a signal indicative of whether a reflective fluid is contacting the prism, one of the sensors in the pair of sensors being positioned within the internal volume of the other reservoir at a location where the signal generated by the sensor indicates the non-reflective fluid level in the other reservoir is approaching a floor of the other reservoir when the signal indicates an absence of non-reflective fluid contacting the one sensor;

the other sensor in the pair of sensors being positioned within the internal volume of the other reservoir at a location where the signal generated by the other sensor indicates the non-reflective fluid level in the reservoir is approaching a ceiling of the reservoir when the signal indicates a presence of non-reflective fluid contacting the other sensor; and

the controller is further configured to operate the pump in response to the signal from the one sensor indicating an absence of non-reflective fluid contacting the one sensor and to deactivate the pump in response to the signal from the other sensor indicating a presence of non-reflective fluid contacting the other sensor.

Assignments (10)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2025
From: XEROX CORPORATION
To: GENESEE VALLEY INNOVATIONS, LLC
Reel/Frame 073562/0677 →
SECOND LIEN NOTES PATENT SECURITY AGREEMENT Recorded Jul 2, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 071785/0550 →
FIRST LIEN NOTES PATENT SECURITY AGREEMENT Recorded Apr 11, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 070824/0001 →
SECURITY INTEREST Recorded Feb 13, 2024
From: XEROX CORPORATION
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 066741/0001 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT RF 064760/0389 Recorded Feb 13, 2024
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: XEROX CORPORATION
Reel/Frame 068261/0001 →
SECURITY INTEREST Recorded Nov 20, 2023
From: XEROX CORPORATION
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 065628/0019 →
SECURITY INTEREST Recorded Jun 22, 2023
From: XEROX CORPORATION
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 064760/0389 →
RELEASE OF SECURITY INTEREST IN PATENTS AT R/F 062740/0214 Recorded May 18, 2023
From: CITIBANK, N.A., AS AGENT
To: XEROX CORPORATION
Reel/Frame 063694/0122 →
SECURITY INTEREST Recorded Nov 10, 2022
From: XEROX CORPORATION
To: CITIBANK, N.A., AS AGENT
Reel/Frame 062740/0214 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2015
From: TENCE, DAVID A.; SAVOY, MATTHEW D.; TAIT, DAVID B.
To: XEROX CORPORATION
Reel/Frame 035351/0577 →
Continuity (1)
Related Publication 20160298997A1 · Oct 13, 2016