IP Library Granted Patent US 8,891,985
Granted Patent B2
US 8,891,985 · App. 13/722,120 · Granted Nov 18, 2014

Bias power supply device and image forming apparatus

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Quick Facts
Patent No.
US 8,891,985
App. No.
13/722,120
Granted
Nov 18, 2014
Kind
B2
Abstract

A bias power supply device includes: a temperature detecting unit; a control signal generation unit generating and outputting an output frequency setting signal for setting a frequency of an alternating current power in accordance with a repetition frequency and a resonance frequency signal being set at a lower or higher repetition frequency according to the measured temperature; a waveform signal generation circuit generating a waveform signal for pulse-width modulation having a time constant for rising set by capacity and resistance based on the resonance frequency signal; a modulation circuit generating a pulse-width-modulated modulation signal based on the waveform signal and the output frequency setting signal; a switching circuit driven by the modulation signal; and a transformer having a first winding and a second winding, and supplying an alternating current power with a repetition frequency of the output frequency setting signal to an external load connected to the second winding.

Claims (27)

1. A bias power supply device comprising:

a temperature detecting unit that measures a temperature;

a control signal generation unit that generates and outputs an output frequency setting signal and a resonance frequency signal, the output frequency setting signal setting a frequency of an alternating current power in accordance with a repetition frequency, and the resonance frequency signal, in a case where the temperature measured by the temperature detecting unit corresponds to a higher temperature range of at least two predetermined temperature ranges, being set at a repetition frequency lower than a repetition frequency in a case of the measured temperature corresponding to a lower temperature range, and in a case where the temperature measured by the temperature detecting unit corresponds to the lower temperature range, being set at a repetition frequency higher than a repetition frequency in a case of the measured temperature corresponding to a higher temperature range;

a waveform signal generation circuit that generates a waveform signal to be used for pulse-width modulation, in which a time constant for rising is set by capacity and resistance based on the resonance frequency signal;

a modulation circuit that generates a modulation signal having been pulse-width modulated based on the waveform signal and the output frequency setting signal;

a switching circuit that is driven based on the modulation signal; and

a transformer provided with a first winding and a second winding, in which the switching circuit is connected to the first winding and a load provided outside is connected to the second winding, the transformer supplying an alternating current power with a repetition frequency of the output frequency setting signal to the load through the second winding.

2. The bias power supply device according to claim 1 , wherein the control signal generation unit generates the resonance frequency signal having a repetition frequency that is an integral multiple of a repetition frequency of the output frequency setting signal.

3. The bias power supply device according to claim 2 , further comprising a reference table prescribing a relation between the temperature and the repetition frequency of the resonance frequency signal,

wherein the control signal generation unit generates the resonance frequency signal having a repetition frequency obtained by reference to the reference table.

4. The bias power supply device according to claim 1 , further comprising a reference table prescribing a relation between the temperature and the repetition frequency of the resonance frequency signal,

wherein the control signal generation unit generates the resonance frequency signal having a repetition frequency obtained by reference to the reference table.

5. An image forming apparatus comprising:

an image carrier;

a charging unit that charges the image carrier;

an exposure unit that exposes the image carrier charged by the charging unit and forms an electrostatic latent image on the image carrier;

a developing unit that develops the electrostatic latent image formed on the image carrier by exposing the image carrier;

a transfer unit that transfers an image formed by developing onto a transfer-receiving body; and

a fixing unit that fixes the transferred image on the transfer-receiving body,

wherein, at least one of the charging unit and the developing unit includes a bias power supply device comprising:

a temperature detecting unit that measures a temperature;

a control signal generation unit that generates and outputs an output frequency setting signal and a resonance frequency signal, the output frequency setting signal setting a frequency of an alternating current power in accordance with a repetition frequency, and the resonance frequency signal, in a case where the temperature measured by the temperature detecting unit corresponds to a higher temperature range of at least two predetermined temperature ranges, being set at a repetition frequency lower than a repetition frequency in a case of the measured temperature corresponding to a lower temperature range, and in a case where the temperature measured by the temperature detecting unit corresponds to the lower temperature range, being set at a repetition frequency higher than a repetition frequency in a case of the measured temperature corresponding to a higher temperature range;

a waveform signal generation circuit that generates a waveform signal to be used for pulse-width modulation, in which a time constant for rising is set by capacity and resistance based on the resonance frequency signal;

a modulation circuit that generates a modulation signal having been pulse-width modulated based on the waveform signal and the output frequency setting signal;

a switching circuit that is driven based on the modulation signal; and

a transformer provided with a first winding and a second winding, in which the switching circuit is connected to the first winding and a load provided outside is connected to the second winding, the transformer supplying an alternating current power with a repetition frequency of the output frequency setting signal to the load through the second winding.

6. The image forming apparatus according to claim 5 , wherein the control signal generation unit generates the resonance frequency signal having a repetition frequency that is an integral multiple of a repetition frequency of the output frequency setting signal.

Assignments (2)
CHANGE OF NAME Recorded Aug 12, 2021
From: FUJI XEROX CO., LTD.
To: FUJIFILM BUSINESS INNOVATION CORP.
Reel/Frame 058287/0056 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2012
From: TANAKA, KOYA
To: FUJI XEROX CO., LTD.
Reel/Frame 029527/0455 →