IP Library Granted Patent US 9,041,757
Granted Patent B2
US 9,041,757 · App. 13/910,854 · Granted May 26, 2015

Image forming apparatus in which the light irradiated on a non-imaging portion is adjusted

Inventors: Masahiro Hayakawa (Odawara, JP); Kengo Kawamoto (Irvine, CA)
Assignee: Canon Kabushiki Kaisha
G03G15/80G03G15/047G03G2215/0132
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Quick Facts
Patent No.
US 9,041,757
App. No.
13/910,854
Granted
May 26, 2015
Kind
B2
Abstract

An image forming apparatus including a control unit configured to cause the light irradiation unit to irradiate the photosensitive member at an image forming portion to which toner particles adhere with light emitted from the light source by a first light emission amount, and cause the light irradiation unit to irradiate the photosensitive member at a non-image forming portion to which no toner particles adhere with light emitted from the light source by a second light emission amount that is smaller than the first light emission amount. The image forming apparatus further includes an adjusting unit configured to adjust the first light emission amount and the second light emission amount, and an acquisition unit configured to acquire information relating to a speed of surface of the photosensitive member. The adjusting unit is configured to change the second light emission amount according to information acquired by the acquisition unit.

Claims (47)

1. An image forming apparatus capable of executing a plurality of modes for forming an image on a recording medium, among which a speed of a surface of a plurality of photosensitive members differ, the image forming apparatus comprising:

the plurality of the photosensitive members provided for each of a plurality of colors;

a plurality of charging units provided for each of a plurality of colors and configured to charge the plurality of photosensitive members;

a plurality of light irradiation units provided for each of a plurality of colors and configured to irradiate the plurality of photosensitive members charged by the charging units with light emitted from a light source to form a latent image;

a plurality of developing units provided for each of a plurality of colors and configured to form a toner image by causing toner particles to adhere to the latent image;

a control unit configured to cause the light irradiation unit to irradiate the photosensitive members at an image forming portion to which toner particles adhere with light emitted from the light source by a first light emission amount, and cause the light irradiation unit to irradiate the photosensitive members at a non-image forming portion to which no toner particles adhere with light emitted from the light source by a second light emission amount that is smaller than the first light emission amount;

an adjusting unit configured to adjust the first light emission amount and the second light emission amount; and

an acquisition unit configured to acquire information relating to the speed of the surface of the photosensitive members in a mode to be executed among the plurality of modes,

wherein the adjusting unit is configured to change the second light emission amount according to the information acquired by the acquisition unit

wherein a power source voltage of a power source, or a converted voltage obtainable by converting the power source voltage using a converter, is applied via an element having stationary voltage drop characteristics to divide and/or reduce the voltage to the plurality of charging units corresponding to the plurality of colors and to the plurality of developing units corresponding to the plurality of colors.

2. The image forming apparatus according to claim 1 , wherein the adjusting unit includes

a first current adjusting unit configured to adjust a first drive current that causes the light source to emit light by the first light emission amount, and

a second current adjusting unit configured to adjust a second drive current that causes the light source to emit light by the second light emission amount,

wherein the second current adjusting unit is configured to change the second light emission amount by adjusting the second drive current based on the information acquired by the acquisition unit.

3. The image forming apparatus according to claim 2 , wherein the first light emission amount and the second light emission amount can be independently controlled by the first current adjusting unit and the second current adjusting unit, respectively.

4. The image forming apparatus according to claim 2 executing a first mode and a second mode for forming an image on a recording medium, wherein the light irradiation unit includes a rotating polygonal mirror that has n (n is an integer equal to or greater than 3) reflection surfaces, which can reflect the light emitted from the light source of the light irradiation unit to irradiate the photosensitive members,

the control unit is configured to cause the light irradiation unit to perform an m (n>m, and m is an integer equal to or greater than 1) face skipping operation in irradiating the surfaces of the rotating polygonal mirror with the light from the light source,

in the second mode, the control unit is configured to set the speed of the surface of the photosensitive members to be lower than a speed in the first mode for forming image on the recording medium, and set a rotational speed of the rotating polygonal mirror to be higher than a speed in the first mode, and further set the second light emission amount to be greater than an amount in the first mode by causing the light irradiation unit to perform the face skipping control.

5. The image forming apparatus according to claim 1 , wherein the light source includes a plurality of light emitting units, and the adjusting unit is configured to change the second light emission amount by deactivating a part of the plurality of light emitting units.

6. The image forming apparatus according to claim 1 , wherein the adjusting unit is configured to change the first light emission amount according to the information acquired by the acquisition unit.

7. The image forming apparatus according to claim 1 further comprising:

a single power source as the power source,

wherein a power source voltage of the single power source, or a converted voltage obtainable by converting the power source voltage using a converter, or a voltage obtainable by dividing and/or reducing the power source voltage or the converted voltage using an element having stationary voltage drop characteristics is applied to the plurality of charging units, and

a converted voltage obtainable by converting the power source voltage using a converter, or a voltage obtainable by dividing and/or reducing the power source voltage or the converted voltage using an element having stationary voltage drop characteristics is applied to the plurality of developing units.

8. The image forming apparatus according to claim 1 further comprising:

a first single power source and a second single power source as the power source,

wherein a first power source voltage of the first single power source, a first converted voltage obtainable by converting the first power source voltage using a converter, or a first voltage obtainable by dividing or reducing the first power source voltage or the first converted voltage using an element having stationary voltage drop characteristics is applied to the plurality of charging units, and

wherein a second power source voltage of the second single power source, a second converted voltage obtainable by converting the second power source voltage using a converter, or a second voltage obtainable by dividing or reducing the second power source voltage or the second converted voltage using an element having stationary voltage drop characteristics is supplied to the plurality of developing units.

9. An image forming apparatus capable of executing a plurality of modes for forming an image on a recording medium, among which a speed of a surface of a photosensitive member differs, the image forming apparatus comprising:

the photosensitive member;

a charging unit configured to charge the photosensitive member;

a light irradiation unit configured to irradiate the photosensitive member charged by the charging unit with light emitted from a light source to form a latent image;

a developing unit configured to form a toner image by causing toner particles to adhere to the latent image;

a control unit configured to cause the light irradiation unit to irradiate the photosensitive member at an image forming portion to which toner particles adhere with light emitted from the light source by a first light emission amount, and cause the light irradiation unit to irradiate the photosensitive member at a non-image forming portion to which no toner particles adhere with light emitted from the light source by a second light emission amount that is smaller than the first light emission amount;

an adjusting unit configured to adjust the first light emission amount and the second light emission amount; and

an acquisition unit configured to acquire information relating to the speed of the surface of the photosensitive member in a mode to be executed among the plurality of modes,

wherein the adjusting unit is configured to change the second light emission amount according to the information acquired by the acquisition unit

wherein the light source includes a plurality of light emitting units, and the adjusting unit is configured to change the second light emission amount by deactivating a part of the plurality of light emitting units.

10. The image forming apparatus according to claim 9 , wherein the adjusting unit includes

a first current adjusting unit configured to adjust a first drive current that causes the light source to emit light by the first light emission amount, and

a second current adjusting unit configured to adjust a second drive current that causes the light source to emit light by the second light emission amount,

wherein the second current adjusting unit is configured to change the second light emission amount by adjusting the second drive current based on the information acquired by the acquisition unit.

11. The image forming apparatus according to claim 10 , wherein the first light emission amount and the second light emission amount can be independently controlled by the first current adjusting unit and the second current adjusting unit, respectively.

12. The image forming apparatus according to claim 10 executing a first mode and a second mode for forming an image on a recording medium, wherein the light irradiation unit includes a rotating polygonal mirror that has n (n is an integer equal to or greater than 3) reflection surfaces, which can reflect the light emitted from the light source of the light irradiation unit to irradiate the photosensitive members,

the control unit is configured to cause the light irradiation unit to perform an m (n>m, and m is an integer equal to or greater than 1) face skipping operation in irradiating the surfaces of the rotating polygonal mirror with the light from the light source,

in the second mode, the control unit is configured to set the speed of the surface of the photosensitive members to be lower than a speed in the first mode for forming image on the recording medium, and set a rotational speed of the rotating polygonal mirror to be higher than a speed in the first mode, and further set the second light emission amount to be greater than an amount in the first mode by causing the light irradiation unit to perform the face skipping control.

13. The image forming apparatus according to claim 9 , wherein the adjusting unit is configured to change the first light emission amount according to the information acquired by the acquisition unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 20, 2014
From: HAYAKAWA, MASAHIRO; KAWAMOTO, KENGO
To: CANON KABUSHIKI KAISHA
Reel/Frame 032713/0489 →
Priority Claims (2)
JP 2012-131294 · Jun 8, 2012 · national
JP 2013-099735 · May 9, 2013 · national
Continuity (1)
Related Publication 20130328992A1 · Dec 12, 2013