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    • 4. 发明授权
    • Optical scanning apparatus
    • 光学扫描装置
    • US5774251A
    • 1998-06-30
    • US740128
    • 1996-10-24
    • Yoshihito Sekikawa
    • Yoshihito Sekikawa
    • G02B26/12G02B26/08
    • G02B26/12
    • An optical scanning apparatus includes: a rotational polygonal mirror, on the side of which a plurality of reflecting surfaces are provided, the reflecting surfaces deflecting a beam of incident light in the primary scanning direction at a substantially equal angular velocity; a first optical system for forming a beam of light sent from the light source into an image long in the primary scanning direction in such a manner that the formed image strides over the plurality of deflecting surfaces; and an f.theta. lens for converging the beam of light deflected on the deflecting surface at a position close to the surface of the photoreceptor drum so that a spot of light irradiated on the photoreceptor drum can be moved at a substantially equal speed. In the optical scanning apparatus, the angles .alpha. and .beta. satisfy the following expression: (cos((.beta.+.alpha.).div.2)).div.(cos((.beta.-.alpha.).div.2)).gtoreq.0.75where .alpha. is the maximum deflection angle of the deflection luminous flux with respect to the optical axis of the .theta. lens, and .beta. is an angle formed between the optical axis of the first optical system projected in the subsidiary scanning direction and the optical axis.
    • 光学扫描装置包括:旋转多面镜,其侧面设置有多个反射表面,所述反射表面以大致相等的角速度在一次扫描方向上偏转入射光束; 第一光学系统,用于形成从所述光源发出的光束到所述主扫描方向上长的图像,使得形成的图像跨越所述多个偏转表面; 以及fθ透镜,用于使偏转在偏转表面上的光束会聚在靠近感光鼓表面的位置处,使得照射在感光鼓上的光点能够以基本相等的速度移动。 在光学扫描装置中,角度α和β满足以下表达式:(cos((beta + alpha)DIVIDED 2))DIVIDED(cos((β-α)DIVIDED 2))> / = 0.75其中α是最大值 偏转光通量相对于θ透镜的光轴的偏转角,β是在副扫描方向上投影的第一光学系统的光轴与光轴之间形成的角度。
    • 6. 发明授权
    • Optical scanning device
    • 光学扫描装置
    • US06304360B1
    • 2001-10-16
    • US09455454
    • 1999-12-06
    • Yoshihito Sekikawa
    • Yoshihito Sekikawa
    • G02B2608
    • G02B26/123B41J2/473H04N1/506
    • The optical scanning device of the present invention which handles plural light beams reduces the number of the optical components to the minimum, and thereby intends to reduce the cost, shrink the size, and secure high performance. The optical scanning device of the present invention minimizes the number of deflectors that deflect light beams with a constant angular velocity in a direction corresponding to the main scanning direction to one, and also minimizes the number of polygon mirrors included in the deflector and the number of rotation drive units of the polygon mirror each to one. Further, the device makes up two f&thgr; lens systems for converging the light beams into a specific size and scanning the beam spots with a substantially constant speed with two pairs of the f&thgr; lenses each, and disposes the f&thgr; lens systems on the both sides of the deflector. Two light beams each fall on and go out from the f&thgr; lens systems, and the deflector performs the main scanning of these four light beams.
    • 处理多个光束的本发明的光学扫描装置将光学部件的数量减少到最小,从而意图降低成本,缩小尺寸并确保高性能。 本发明的光学扫描装置将以与主扫描方向对应的方向上的恒定角速度的光束偏转到一个的偏转器的数量最小化,并且还使包括在偏转器中的多面镜的数量最小化 多面镜的旋转驱动单元分别为一个。 此外,该装置组成两个透镜系统,用于将光束会聚到特定尺寸,并且以两个大对的透镜各自以基本恒定的速度扫描光束点,并且将ftheta透镜系统放置在 导流板 两个光束每个都从ftheta透镜系统落下并离开,并且偏转器执行这四个光束的主扫描。
    • 7. 发明授权
    • Optical scanning device
    • 光学扫描装置
    • US6075636A
    • 2000-06-13
    • US196232
    • 1998-11-20
    • Yoshihito Sekikawa
    • Yoshihito Sekikawa
    • G02B26/10G02B26/12G02B26/08
    • G02B26/123
    • An optical scanning device comprises a multi-faceted rotating polygon mirror for deflecting an incident beam in main scanning direction, a first light source for bringing a first beam into incidence on the polygon mirror at an angle of +.alpha. with respect to a central line connecting from a rotation center of the polygon mirror to a central position of a scanned surface, the first light source arranged such that the first beam is deflected at an angle of -2.alpha. by while the polygon mirror rotates at an angle of .alpha., a second light source for bringing a second beam into incidence on the polygon mirror at an angle of -.alpha. with respect to the central line, the second light source arranged such that the second beam is deflected at an angle of -2.alpha. by while the polygon mirror rotates at an angle of .alpha., a first reflecting mirror for scanning the scanned surface by reflecting the deflected first beam, the first reflecting mirror arranged so one end portion thereof as to cross over the central line and to avoid an unnecessary beam from reflection faces adjoining to a normal reflection face of the polygon mirror, and a second reflecting mirror for scanning the scanned surface by reflecting the deflected second beam.
    • 光学扫描装置包括:多面旋转多面镜,用于沿主扫描方向偏转入射光束;第一光源,用于使第一光束相对于连接中心线以+α的角度入射在多面镜上 从所述多面镜的旋转中心到所述扫描表面的中心位置,所述第一光源被布置成使得所述第一光束以所述多角镜以α的角度以-2α的角度偏转, 光源,用于使第二光束相对于中心线以α的角度入射到多面镜上,第二光源被布置成使得第二光束以-2α的角度偏转,而多面镜 以α的角度旋转,第一反射镜,用于通过反射偏转的第一光束扫描扫描的表面,第一反射镜被布置成使其一端部交叉 并且避免来自与多面镜的正反射面相邻的反射面的不必要的光束,以及用于通过反射偏转的第二光束来扫描扫描表面的第二反射镜。
    • 8. 发明授权
    • Optical scanning apparatus
    • 光学扫描装置
    • US5793515A
    • 1998-08-11
    • US740074
    • 1996-10-24
    • Yoshihito Sekikawa
    • Yoshihito Sekikawa
    • G02B26/12G02B26/08
    • G02B26/12
    • An optical scanning apparatus includes: a rotational polygonal mirror, on the side of which a plurality of reflecting surfaces are provided, the reflecting surfaces deflecting a beam of incident light in the primary scanning direction at a substantially equal angular velocity; a first optical system for forming a beam of light sent from the light source into an image long in the primary scanning direction in such a manner that the formed image strides over the plurality of deflecting surfaces; and an f.theta. lens for converging the beam of light deflected on the deflecting surface at a position close to the surface of the photoreceptor drum so that a spot of light irradiated on the photoreceptor drum can be moved at a substantially equal speed. In the optical scanning apparatus, the angles .alpha. and .beta. satisfy the following expression: (cos((.beta.+.alpha.).div.2)).div.(cos((.beta.-.alpha.).div.2)).gtoreq.0.75where .alpha. is the maximum deflection angle of the deflection luminous flux with respect to the optical axis of the f.theta. lens, and .beta. is an angle formed between the optical axis of the first optical system projected in the subsidiary scanning direction and the optical axis.
    • 光学扫描装置包括:旋转多面镜,其侧面设置有多个反射表面,所述反射表面以大致相等的角速度在一次扫描方向上偏转入射光束; 第一光学系统,用于形成从所述光源发出的光束到所述主扫描方向上长的图像,使得形成的图像跨越所述多个偏转表面; 以及fθ透镜,用于使偏转在偏转表面上的光束会聚在靠近感光鼓表面的位置处,使得照射在感光鼓上的光点能够以基本相等的速度移动。 在光学扫描装置中,角度α和β满足以下表达式:(cos((β+α)DIVIDED 2))DIVIDED(cos((β-α)DIVIDED 2))> / = 0.75其中α是最大值 偏转光通量相对于θθ透镜的光轴的偏转角,β是在副扫描方向上投射的第一光学系统的光轴与光轴之间形成的角度。
    • 9. 发明授权
    • Optical scanning apparatus
    • 光学扫描装置
    • US5781325A
    • 1998-07-14
    • US574032
    • 1995-12-18
    • Yoshihito Sekikawa
    • Yoshihito Sekikawa
    • G02B26/12G02B26/08
    • G02B26/12
    • An optical scanning apparatus includes: a rotational polygonal mirror on the the side of which a plurality of reflecting surfaces are provided, the reflecting surfaces deflecting a beam of incident light in the primary scanning direction at a substantially equal angular velocity; a first optical system for forming a beam of light sent from the light source into an image long in the primary scanning direction in such a manner that the formed image strides over the plurality of deflecting surfaces; and an f.theta. lens for converging the beam of light deflected on the deflecting surface at a position close to the surface of the photoreceptor drum so that a spot of light irradiated on the photoreceptor drum can be moved at a substantially equal speed. In the optical scanning apparatus, the angles .alpha. and .beta. satisfy the following expression: (cos ((.beta.+.alpha.).div.2)).div.(cos ((.beta.-.alpha.).div.2)).gtoreq.0.75 where .alpha. is the maximum deflection angle of the deflection luminous flux with respect to the optical axis of the f.theta. lens, and .beta. is an angle formed between the optical axis of the first optical system projected in the subsidiary scanning direction and the optical axis.
    • 一种光学扫描装置,包括:旋转多面镜,其一侧设有多个反射表面,所述反射表面以基本相等的角速度在一次扫描方向上偏转入射光束; 第一光学系统,用于形成从所述光源发出的光束到所述主扫描方向上长的图像,使得形成的图像跨越所述多个偏转表面; 以及fθ透镜,用于使偏转在偏转表面上的光束会聚在靠近感光鼓表面的位置处,使得照射在感光鼓上的光点能够以基本相等的速度移动。 在光学扫描装置中,角度α和β满足以下表达式:(cos((β+α)DIVIDED 2))DIVIDED(cos((β-α)DIVIDED 2))> / = 0.75其中α是最大值 偏转光通量相对于θθ透镜的光轴的偏转角,β是在副扫描方向上投影的第一光学系统的光轴与光轴之间形成的角度。
    • 10. 发明授权
    • Light scanning device, optical device, and scanning method of optical device
    • 光扫描装置,光学装置和光学装置的扫描方法
    • US06172788B2
    • 2001-01-09
    • US09490077
    • 2000-01-24
    • Takayoshi SuzukiTsuneo TodaYoshihito Sekikawa
    • Takayoshi SuzukiTsuneo TodaYoshihito Sekikawa
    • G02B2608
    • G02B26/123H04N1/047H04N1/0473H04N1/1135H04N1/12H04N1/192H04N2201/03158H04N2201/03162H04N2201/0471H04N2201/04712H04N2201/04729H04N2201/04731H04N2201/04732H04N2201/04734H04N2201/04744H04N2201/04767H04N2201/04787H04N2201/04789H04N2201/04791
    • A light scanning device deflects a plurality of light beams by a deflecting means performs divided scanning on a single scanning line on a photoconductor with the plurality of deflected light beams. When the scanning line is scanned, a detecting means detects a light beam passing through a predetermined position in front of a position where the light beam first strikes an image forming range on the photoconductor. An oscillating means oscillates a specified number of clocks in a time interval from when the light beam is detected by the detecting means until it is detected thereby again. An adjusting means makes adjustments so as to irradiate a plurality of light beams based on clocks oscillated by the oscillating means. In a time interval after the light beam is detected by the detecting means until it is detected thereby again, a plurality of light beams are irradiated based on the specified number of clocks. Therefore, even if unevenness occurs in the deflecting speed of the deflecting means, dots can be formed at the same intervals in scanning a plurality of scanning lines. Thus, it is possible to prevent discontinuous joints occurring in each of the images formed with a plurality of light beams.
    • 光扫描装置通过偏转装置偏转多个光束,在多个偏转光束的光电导体上的单个扫描线上进行分割扫描。 当扫描线被扫描时,检测装置检测通过光束首先在光电导体上的图像形成范围的位置前面的预定位置的光束。 振荡装置在由检测装置检测到光束的时间间隔内振荡指定数量的时钟,直到被再次检测为止。 调整装置进行调整,以便基于由振荡装置振荡的时钟照射多个光束。 在通过检测装置检测到光束直至其被再次检测到的时间间隔之后,基于指定的时钟数来照射多个光束。 因此,即使偏转装置的偏转速度发生不均匀,也可以在扫描多条扫描线时以相同的间隔形成点。 因此,可以防止在形成有多个光束的每个图像中发生不连续的关节。