IP Library Patent Application 10951728
Patent Application
App. No. 10/951,728

Image recording apparatus and light-quantity correcting method

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Quick Facts
Patent No.
US None
App. No.
10/951,728
Filed
Sep 29, 2004
Art Unit
2861
USPC
347/5
Abstract

An image recording apparatus for recording a gradation image on a photosensitive material has a light-emitting element array in which a plurality of light-emitting elements are arranged in a horizontal scanning direction, vertical scanning means for moving the light-emitting element array and the photosensitive material relatively in a vertical scanning direction, and a drive unit for controlling light-emitting time of each light-emitting element according to image data representing the gradation image. A deviation in light quantity between the light-emitting elements is calculated when the light-emitting elements are caused to emit light in a steady state. After the deviation in light quantity is corrected, a deviation in response characteristic between the light-emitting elements is calculated when the light-emitting elements are caused to emit light in pulsed form before they reach the steady state. The deviation in light quantity and the deviation in response characteristic are corrected when recording the gradation image.

Claims (33)

1 . A light quantity correcting method for use in an image recording apparatus for recording a gradation image on a photosensitive material, comprising

a light-emitting element array in which a plurality of light-emitting elements are arranged in a horizontal scanning direction,

vertical scanning means for moving said light-emitting element array and said photosensitive material relatively in a vertical scanning direction approximately perpendicular to said horizontal scanning direction, and

drive means for controlling light-emitting time of each of said plurality of light-emitting elements according to image data representing said gradation image,

the light-quantity correcting method comprising the steps of:

calculating a deviation in light quantity between said light-emitting elements when said light-emitting elements are caused to emit light in a steady state;

calculating a deviation in response characteristic between said light-emitting elements when said light-emitting elements are caused to emit light in pulsed form before they reach said steady state, after said deviation in light quantity is corrected; and

correcting said deviation in light quantity and said deviation in response characteristic when recording said gradation image.

2 . The light-quantity correcting method as set forth in claim 1 , wherein said deviation in response characteristic is calculated according to an exposure amount, exposed by each of said light-emitting elements when said light-emitting elements are caused to emit light in pulsed form for a predetermined time close to response time of a light-emitting element of said light-emitting elements which is slowest in response time.

3 . The light-quantity correcting method as set forth in claim 2 , wherein said exposure is calculated by integrating the light intensity of each light-emitting element in light-emitting time.

4 . The light-quantity correcting method as set forth in claim 1 , wherein said deviation in light quantity is calculated according to light intensities of said plurality of light-emitting elements.

5 . The light-quantity correcting method as set forth in claim 1 , wherein said deviation in light quantity is corrected by multiplying at least either one of a drive voltage, drive current, or light-emitting time of each light-emitting element by a correction coefficient.

6 . The light-quantity correcting method as set forth in claim 5 , further comprising the step of storing said light-emitting element and said correction coefficient in a look-up table so that they correspond to each other;

wherein said multiplication is performed by employing said correction coefficient read out from said look-up table, for each of said light-emitting elements.

7 . The light-quantity correcting method as set forth in claim 1 , wherein said deviation in response characteristic is corrected by adding a correction value to at least either one of a drive voltage, drive current, or light-emitting time of each light-emitting element.

8 . The light-quantity correcting method as set forth in claim 7 , further the step of storing said light-emitting element and said correction value in a look-up table so that they correspond to each other;

wherein said addition is performed by employing said correction value read out from said look-up table, for each of said light-emitting elements.

9 . An image recording apparatus for recording a gradation image on a photosensitive material, comprising:

a light-emitting element array in which a plurality of light-emitting elements are arranged in a horizontal scanning direction;

vertical scanning means for moving said light-emitting element array and said photosensitive material relatively in a vertical scanning direction approximately perpendicular to said horizontal scanning direction;

drive means for controlling light-emitting time of each of said plurality of light-emitting elements according to image data representing said gradation image;

light-quantity-deviation calculation means for calculating a deviation in light quantity between said light-emitting elements when said light-emitting elements are caused to emit light in a steady state;

response-deviation calculation means for calculating a deviation in response characteristic between said light-emitting elements when said light-emitting elements are caused to emit light in pulsed form before they reach said steady state, after said deviation in light quantity is corrected; and

correction means for correcting said deviation in light quantity and said deviation in response characteristic when recording said gradation image.

10 . The image recording apparatus as set forth in claim 9 , wherein said response-deviation calculation means calculates said deviation in response characteristic according to an exposure amount, exposed by each of said light-emitting elements when said light-emitting elements are caused to emit light in pulsed form for a predetermined time close to response time of a light-emitting element of said light-emitting elements which is slowest in response time.

11 . The image recording apparatus as set forth in claim 10 , further comprising means for calculating said exposure by integrating the light intensity of each light-emitting element in light-emitting time.

12 . The image recording apparatus as set forth in claim 9 , wherein said light-quantity-deviation calculation means calculates said deviation in light quantity according to light intensities of said plurality of light-emitting elements.

13 . The image recording apparatus as set forth in claim 9 , wherein said correction means corrects said deviation in light quantity by multiplying at least either one of a drive voltage, drive current, or light-emitting time of each light-emitting element by a correction coefficient.

14 . The image recording apparatus as set forth in claim 13 , further comprising a look-up table where said light-emitting element is caused to correspond to said correction coefficient;

wherein said correction means performs said multiplication by employing said correction coefficient read out from said look-up table, for each of said light-emitting elements.

15 . The image recording apparatus as set forth in claim 9 , wherein said correction means corrects said deviation in response characteristic by adding a correction value to at least either one of a drive voltage, drive current, or light-emitting time of each light-emitting element.

16 . The image recording apparatus as set forth in claim 15 , further comprising a look-up table where said light-emitting element is caused to correspond to said correction value;

wherein said correction means performs said addition by employing said correction value read out from said look-up table, for each of said light-emitting elements.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2007
From: FUJIFILM HOLDINGS CORPORATION (FORMERLY FUJI PHOTO FILM CO., LTD.)
To: FUJIFILM CORPORATION
Reel/Frame 018904/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2005
From: SETO, YASUHIRO
To: FUJI PHOTO FILM CO., LTD.
Reel/Frame 016378/0225 →