US 12,436,382 B2
Laser scanning unit and image forming apparatus
Takuto Kunimasa, Osaka (JP); and Jun Nakai, Osaka (JP)
Assigned to KYOCERA Document Solutions Inc., Osaka (JP)
Filed by KYOCERA Document Solutions Inc., Osaka (JP)
Filed on Sep. 11, 2024, as Appl. No. 18/882,577.
Claims priority of application No. 2023-189045 (JP), filed on Nov. 6, 2023.
Prior Publication US 2025/0147303 A1, May 8, 2025
Int. Cl. G03G 15/04 (2006.01); B41J 2/44 (2006.01); B41J 2/47 (2006.01); G02B 26/12 (2006.01); G03G 15/043 (2006.01)
CPC G02B 26/121 (2013.01) [B41J 2/442 (2013.01); B41J 2/471 (2013.01); G03G 15/0435 (2013.01)] 3 Claims
OG exemplary drawing
 
1. A laser scanning unit comprising:
a beam light source that emits beam light;
a polygon mirror including a plurality of mirror surfaces and a rotation shaft, the polygon mirror scanning the beam light by rotating while reflecting the beam light;
a motor board on which a motor is mounted, the motor rotating the rotation shaft of the polygon mirror;
a first photoelectric conversion element that is disposed apart from the motor board, the first photoelectric conversion element sensing the beam light reflected by each of the plurality of mirror surfaces of the polygon mirror;
a sensing target portion that is provided to the rotation shaft of the polygon mirror, the sensing target portion having a different light reflection characteristic from a light reflection characteristic of another portion of the rotation shaft in a circumferential direction;
a light sensor that is disposed apart from the motor board, the light sensor including a light emitting portion and a second photoelectric conversion element, the light emitting portion emitting light to the rotation shaft of the polygon mirror, the second photoelectric conversion element sensing light reflected by the rotation shaft of the polygon mirror;
an amplification circuit that amplifies a sense signal of the second photoelectric conversion element; and
a control device that controls a timing of starting to form an electrostatic latent image on a photoconductor by the beam light source for each of the plurality of mirror surfaces on a basis of a sense signal of the first photoelectric conversion element, wherein
the control device identifies a scanning surface of the plurality of mirror surfaces that is scanning the beam light on a basis of the sense signal of the second photoelectric conversion element amplified by the amplification circuit, and adjusts a pixel pitch of the electrostatic latent image for each scanning surface.