IP Library Patent Application 13048571
Patent Application
App. No. 13/048,571

IMAGE FORMING DEVICE WHICH INCLUDES AT LEAST ONE MOTOR THAT GENERATES MOTIVE POWER BY CURRENT

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Quick Facts
Patent No.
US None
App. No.
13/048,571
Abstract

An image forming device includes a motor which generates motive power by current, a component driven by the motive power of the motor, and a motor current waveform determining unit which determines a condition of the image forming device on the basis of a current waveform of the current flowing through the motor while the motor is being driven. Accordingly, the image forming device which is capable of determining the condition of the device while suppressing an increase in the number of components and preventing reduction of productivity can be provided.

Claims (44)

1 . An image forming device including at least one motor configured to generate motive power by current, the image forming device comprising:

a component driven by the motive power of said motor; and

a determining unit configured to determine a condition of said image forming device on the basis of a current waveform of current flowing through said motor while said motor is being driven.

2 . The image forming device according to claim 1 , wherein said motor is a stepper motor.

3 . The image forming device according to claim 1 , wherein said current waveform in the state where load applied to said motor while said motor is driving said component is maximum and said current waveform in the state where said load is minimum are different from each other.

4 . The image forming device according to claim 3 , further comprising:

a first setting unit to set said current waveform corresponding to the case where said load has a reference magnitude;

a second setting unit to set said current waveform corresponding to the case where said load has a magnitude greater than said reference magnitude;

a third setting unit to set said current waveform corresponding to the case where said load has a magnitude smaller than said reference magnitude; and

a detecting unit to detect said current waveform; wherein

said determining unit detects said load by determining, with reference to said current waveform corresponding to the case where said load has said reference magnitude, whether said current waveform has a shape that is closer to a shape of said current waveform corresponding to the case where said load has a magnitude greater than said reference magnitude or to a shape of said current waveform corresponding to the case where said load has a magnitude smaller than said reference magnitude.

5 . The image forming device according to claim 1 , wherein

said component includes a toner bottle for storing toner for use in image formation, and

said determining unit detects the toner level in said toner bottle on the basis of a current waveform of the current flowing through the motor that is driving said toner bottle.

6 . The image forming device according to claim 5 , wherein in the case where said toner level in said toner bottle is a predetermined level or less, said determining unit displays, on a panel used for displaying a message to a user, a message prompting the user to prepare a new toner bottle.

7 . The image forming device according to claim 1 , wherein

said component includes a hopper for relaying toner being supplied, and

said determining unit detects the toner level in said hopper on the basis of a current waveform of the current flowing through the motor that is driving said hopper.

8 . The image forming device according to claim 7 , wherein in the case where said toner level in said hopper is a predetermined level or less, said determining unit displays, on a panel used for displaying a message to a user, a message prompting the user to replace a toner bottle with a new one.

9 . The image forming device according to claim 1 , wherein said determining unit detects load applied to said motor while said motor is driving said component, on the basis of a shape of said current waveform.

10 . The image forming device according to claim 1 , further comprising an inflection point recognizing unit configured to recognize an inflection point from a rising edge of said current waveform, wherein

said determining unit detects load applied to said motor while said motor is driving said component, on the basis of said inflection point.

11 . A method for controlling an image forming device including at least one motor configured to generate motive power by current, the method comprising steps of

causing said motor to generate the motive power by the current to drive a component by the motive power of said motor; and

determining a condition of said image forming device on the basis of a current waveform of current flowing through said motor while said motor is being driven.

12 . The method for controlling the image forming device according to claim 11 , wherein said motor is a stepper motor.

13 . The method for controlling the image forming device according to claim 11 , wherein said current waveform in the state where load applied to said motor while said motor is driving said component is maximum and said current waveform in the state where said load is minimum are different from each other.

14 . The method for controlling the image forming device according to claim 13 , further comprising steps of:

setting said current waveform corresponding to the case where said load has a reference magnitude;

setting said current waveform corresponding to the case where said load has a magnitude greater than said reference magnitude;

setting said current waveform corresponding to the case where said load has a magnitude smaller than said reference magnitude; and

detecting said current waveform; wherein

said determining step includes a step of detecting said load by determining, with reference to said current waveform corresponding to the case where said load has said reference magnitude, whether said current waveform has a shape that is closer to a shape of said current waveform corresponding to the case where said load has a magnitude greater than said reference magnitude or to a shape of said current waveform corresponding to the case where said load has a magnitude smaller than said reference magnitude.

15 . The method for controlling the image forming device according to claim 11 , wherein

said component includes a toner bottle for storing toner for use in image formation, and

said determining step includes a step of detecting the toner level in said toner bottle on the basis of a current waveform of the current flowing through the motor that is driving said toner bottle.

16 . The method for controlling the image forming device according to claim 15 , wherein said determining step includes a step of, in the case where said toner level in said toner bottle is a predetermined level or less, displaying on a panel used for displaying a message to a user, a message prompting the user to prepare a new toner bottle.

17 . The method for controlling the image forming device according to claim 11 , wherein

said component includes a hopper for relaying toner being supplied, and

said determining step includes a step of detecting the toner level in said hopper on the basis of a current waveform of the current flowing through the motor that is driving said hopper.

18 . The method for controlling the image forming device according to claim 17 , wherein said determining step includes a step of, in the case where said toner level in said hopper is a predetermined level or less, displaying on a panel used for displaying a message to a user, a message prompting the user to replace a toner bottle with a new one.

19 . The method for controlling the image forming device according to claim 11 , wherein said determining step includes a step of detecting load applied to said motor while said motor is driving said component, on the basis of a shape of said current waveform.

20 . The method for controlling the image forming device according to claim 11 , further comprising a step of recognizing an inflection point from a rising edge of said current waveform, wherein

said determining step includes a step of detecting load applied to said motor while said motor is driving said component, on the basis of said inflection point.

Assignments (3)
MERGER Recorded Feb 13, 2014
From: KONICA MINOLTA BUSINESS TECHNOLOGIES, INC.
To: KONICA MINOLTA HOLDINGS, INC.
Reel/Frame 032214/0569 →
CHANGE OF NAME Recorded Feb 13, 2014
From: KONICA MINOLTA HOLDINGS, INC.
To: KONICA MINOLTA, INC.
Reel/Frame 032214/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2011
From: YABUKI, SHINICHI; AKASHI, HIRONORI; FURUKAWA, KUNIO
To: KONICA MINOLTA BUSINESS TECHNOLOGIES, INC.
Reel/Frame 026036/0365 →