Optical scanning device and image forming apparatus including the same
US-9223131-B2 · Dec 29, 2015 · US
US9057975B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9057975-B2 |
| Application number | US-201314103001-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 11, 2013 |
| Priority date | Dec 13, 2012 |
| Publication date | Jun 16, 2015 |
| Grant date | Jun 16, 2015 |
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An image forming apparatus includes first and second photosensitive members; first and second light sources; a rotatable polygonal mirror; a first signal output portion; and a second signal output portion. The first light source emits the light at timing on the basis of the first signal, and the second light source emits the light at timing on the basis of the second signal so that latent images are formed on the first and second photosensitive members, respectively, and then are developed with developers to form developer images on the first and second photosensitive members, respectively, and then an image is formed by superposing the developer images. Before output of a second signal from the second signal output portion is started, the first light source emits the light on the basis of a first signal to start formation of the latent image on the first photosensitive member.
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What is claimed is: 1. An image forming apparatus for starting image formation on the basis of a print command, comprising: first and second light sources each for emitting light according to image data; a rotatable polygonal mirror including a plurality of reflecting facets, wherein said rotatable polygonal mirror deflects the light emitted from said first light source toward a first photosensitive member and deflects the light emitted from said second light source toward a second photosensitive member; a first signal output unit for outputting a first signal by receiving, in a predetermined position, the light emitted from said first light source and deflected by said rotatable polygonal mirror; and a second signal output unit for outputting a second signal at timing on the basis of the first signal and a correction value, wherein the correction value is set for each reflecting facet of said rotatable polygonal mirror, wherein said first light source emits the light according to the image data based on a time when the first signal is outputted and said second light source emits the light according to the image data based on a time when the second signal is outputted so that latent images are formed on the first and second photosensitive members, respectively, wherein said second signal output unit starts the output of the second signal after a lapse of a predetermined period from start of the output of the first signal by said first signal output unit after said image forming apparatus receives the print command, and wherein after said image forming apparatus receives the print command and before the output of the second signal is started, said first light source starts light emission according to the image data. 2. An image forming apparatus according to claim 1 , wherein the light emitted from said first light source and the light emitted from said second light source at the same timing are incident on different reflecting facets of said rotational polygonal mirror to illuminate the first and second photosensitive members therewith, respectively. 3. An image forming apparatus according to claim 1 , further comprising: a belt contactable to the first and second photosensitive members, wherein with respect to a movement direction of a surface of said belt, a contact portion between the first photosensitive member and said belt is provided upstream of a contact portion between the second photosensitive member and said belt. 4. An image forming apparatus according to claim 3 , wherein the latent images formed on the first and second photosensitive members, respectively, are developed with developers to form developer images, and wherein the developer images are superposedly transferred from said first and second photosensitive members onto said belt. 5. An image forming apparatus according to claim 3 , wherein the latent images formed on the first and second photosensitive members, respectively, are developed with developers to form developer images, and wherein the developer images are superposedly transferred from the first and second photosensitive members onto a recording material conveyed on said belt. 6. An image forming apparatus according to claim 1 , wherein in the predetermined period, said second signal output unit derives the correction value, for correcting the first signal for each reflecting facet of said rotational polygonal mirror, and then generates and outputs the second signal for each reflecting facet of said rotational polygonal mirror on the basis of the correction value and the first signal, and wherein in a period in which a step of deriving the correction value by said second signal output unit is executed, said first light source starts light emission on the basis of the first signal to form the latent image on the first photosensitive member. 7. An image forming apparatus according to claim 6 , wherein the step of deriving the correction value by said second signal output unit includes a step of deriving the correction value on the basis of an interval between adjacent first signals outputted for each reflecting facet of said rotatable polygonal mirror. 8. An image forming apparatus according to claim 1 , wherein the latent image formed on the first photosensitive member is developed with a yellow developer. 9. An image forming apparatus according to claim 1 , wherein the latent image formed on the first photosensitive member is developed with a magenta developer. 10. An image forming apparatus according to claim 1 , wherein the first signal is outputted for each reflecting facet of said rotatable polygonal mirror by said first signal output unit, and the second signal is outputted for each reflecting facet of said rotatable polygonal mirror by said second signal output unit. 11. An image forming apparatus according to claim 1 , wherein a latent image formation position is determined, with respect to a main scan direction, when the latent image is formed on the first photosensitive member by the light emission of said first light source after a lapse of the predetermined period from the output of the first signal, and is determined, with respect to the main scan direction, when the latent image is formed on the second photosensitive member by the light emission of said second light source after a lapse of a predetermined period from the output of the second signal.
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