IP Library Granted Patent US 10,451,998
Granted Patent B1
US 10,451,998 · App. 16/041,109 · Granted Oct 22, 2019

Toner level detection measuring an orientation of a rotatable magnet having a varying radius

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Quick Facts
Patent No.
US 10,451,998
App. No.
16/041,109
Granted
Oct 22, 2019
Kind
B1
Abstract

A toner level detection assembly for an electrophotographic image forming device according to one example embodiment includes a magnet connected to a rotatable shaft and rotatable with the shaft around an axis of rotation of the shaft. The magnet is pivotable independent of the shaft about a pivot axis that is spaced radially from the axis of rotation. A magnetic sensor is positioned to sense a magnetic field of the magnet at a point in a rotational path of the magnet and is configured to measure an orientation of the magnetic field of the magnet at the point in the rotational path of the magnet. Processing circuitry in communication with the magnetic sensor is configured to determine an estimate of an amount of toner in a toner reservoir correlating with the measured orientation of the magnetic field of the magnet at the point in the rotational path of the magnet.

Claims (29)

1. A toner level detection assembly for an electrophotographic image forming device, comprising:

a reservoir for storing toner;

a rotatable shaft positioned within the reservoir and having an axis of rotation;

a magnet connected to the rotatable shaft and rotatable with the rotatable shaft around the axis of rotation, the magnet is pivotable independent of the rotatable shaft about a pivot axis that is spaced radially from the axis of rotation such that a radial distance of the magnet from the axis of rotation varies as the magnet pivots about the pivot axis;

a magnetic sensor positioned to sense a magnetic field of the magnet at a point in a rotational path of the magnet around the axis of rotation and configured to measure an orientation of the magnetic field of the magnet at the point in the rotational path of the magnet; and

processing circuitry in communication with the magnetic sensor configured to determine an estimate of an amount of toner in the reservoir correlating with the measured orientation of the magnetic field of the magnet at the point in the rotational path of the magnet.

2. The toner level detection assembly of claim 1 , wherein the magnetic sensor is configured to measure a magnitude of each three-dimensional magnetic field component of the magnetic field of the magnet at the point in the rotational path of the magnet and the processing circuitry is configured to determine the estimate of the amount of toner in the reservoir correlating with the measured magnitudes of the three-dimensional magnetic field components of the magnetic field of the magnet at the point in the rotational path of the magnet.

3. The toner level detection assembly of claim 1 , wherein the processing circuitry is configured to determine a height of the magnet at the point in the rotational path of the magnet relative to the magnetic sensor based on the measured orientation of the magnetic field of the magnet at the point in the rotational path of the magnet and to determine the estimate of the amount of toner in the reservoir correlating with the determined height of the magnet at the point in the rotational path of the magnet relative to the magnetic sensor.

4. The toner level detection assembly of claim 1 , wherein the magnetic sensor is positioned along a vertically downward radius from the axis of rotation.

5. The toner level detection assembly of claim 1 , wherein the magnetic sensor is positioned lower than the axis of rotation.

6. A toner level detection assembly for an electrophotographic image forming device, comprising:

a reservoir for storing toner;

a rotatable shaft positioned within the reservoir and having an axis of rotation;

a magnet connected to the rotatable shaft and rotatable with the rotatable shaft around the axis of rotation, the magnet is pivotable independent of the rotatable shaft about a pivot axis that is spaced radially from the axis of rotation such that a radial distance of the magnet from the axis of rotation varies as the magnet pivots about the pivot axis;

a magnetic sensor positioned to sense a magnetic field of the magnet at a point in a rotational path of the magnet around the axis of rotation and configured to measure a magnitude of each three-dimensional magnetic field component of the magnetic field of the magnet at the point in the rotational path of the magnet; and

processing circuitry in communication with the magnetic sensor configured to determine a height of the magnet at the point in the rotational path of the magnet based on the measured magnitudes of the three-dimensional magnetic field components of the magnetic field of the magnet at the point in the rotational path of the magnet and to determine an estimate of an amount of toner in the reservoir correlating with the determined height of the magnet at the point in the rotational path of the magnet.

7. The toner level detection assembly of claim 6 , wherein the processing circuitry is further configured to detect a peak in a total magnitude of the magnetic field of the magnet and to determine the height of the magnet at the point in the rotational path of the magnet corresponding to the detected peak in the total magnitude of the magnetic field of the magnet.

8. The toner level detection assembly of claim 6 , wherein the magnetic sensor is positioned along a vertically downward radius from the axis of rotation.

9. The toner level detection assembly of claim 6 , wherein the magnetic sensor is positioned lower than the axis of rotation.

10. The toner level detection assembly of claim 6 , wherein the processing circuitry is configured to determine the height of the magnet at the point in the rotational path of the magnet relative to the magnetic sensor and to determine the estimate of the amount of toner in the reservoir correlating with the determined height of the magnet at the point in the rotational path of the magnet relative to the magnetic sensor.

11. A method for estimating an amount of toner in a reservoir of an electrophotographic image forming device, comprising:

rotating a shaft positioned in the reservoir;

by rotating the shaft, rotating around an axis of rotation of the shaft a magnet that is pivotable independent of the shaft about a pivot axis that is spaced radially from the axis of rotation, a radial distance of the magnet from the axis of rotation varying as the magnet pivots about the pivot axis;

detecting a magnetic field of the magnet at a point in a rotational path of the magnet around the axis of rotation;

determining an orientation of the magnetic field of the magnet at the point in the rotational path of the magnet;

determining a height of the magnet at the point in the rotational path of the magnet based on the determined orientation of the magnetic field of the magnet at the point in the rotational path of the magnet; and

estimating the amount of toner in the reservoir based on a predetermined correlation with the determined height of the magnet at the point in the rotational path of the magnet.

12. The method of claim 11 , wherein determining the orientation of the magnetic field of the magnet at the point in the rotational path of the magnet includes determining a magnitude of each three-dimensional component of the magnetic field of the magnet at the point in the rotational path of the magnet and determining the height of the magnet at the point in the rotational path of the magnet includes determining the height of the magnet at the point in the rotational path of the magnet based on the determined magnitudes of the three-dimensional components of the magnetic field of the magnet at the point in the rotational path of the magnet.

13. The method of claim 11 , further comprising determining a total magnitude of the magnetic field of the magnet and detecting a peak in the total magnitude of the magnetic field of the magnet, wherein determining the height of the magnet at the point in the rotational path of the magnet includes determining the height of the magnet based on the determined orientation of the magnetic field of the magnet corresponding to the detected peak in the total magnitude of the magnetic field of the magnet.

Assignments (5)
SECURITY INTEREST Recorded Jan 5, 2026
From: LEXMARK INTERNATIONAL, INC.
To: BANK TRUST COMPANY, NATIONAL ASSOCIATION
Reel/Frame 074202/0192 →
SECURITY INTEREST Recorded Jan 5, 2026
From: LEXMARK INTERNATIONAL, INC.
To: BANK TRUST COMPANY, NATIONAL ASSOCIATION
Reel/Frame 074202/0293 →
SECURITY INTEREST Recorded Sep 23, 2025
From: LEXMARK INTERNATIONAL, INC.
To: CITIBANK, N.A.
Reel/Frame 073007/0118 →
SECURITY INTEREST Recorded Sep 23, 2025
From: LEXMARK INTERNATIONAL, INC.
To: JEFFERIES FINANCE LLC
Reel/Frame 073007/0346 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2018
From: LEEMHUIS, MICHAEL CRAIG; DENTON, GARY ALLEN
To: LEXMARK INTERNATIONAL, INC.
Reel/Frame 046415/0246 →