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    • 3. 发明公开
    • Optical scanning apparatus
    • 光学扫描设备
    • EP0828173A3
    • 1998-09-09
    • EP97115273.1
    • 1997-09-03
    • SHARP KABUSHIKI KAISHA
    • Fujimoto, OsamuMatsuda, HideoShimazawa, YoichiOhnishi, KazuyukiSakagami, Hidekazu
    • G02B26/12H04N1/113
    • G02B26/126
    • The present invention is intended to reduce a fθ correction error by correcting an error of an object scanning speed which is produced because a reflecting point of a laser beam moves on a polygon mirror (12). In an inventive laser scanner (9), laser light emitted from a laser oscillator (10) is condensed into a beam by a condenser lens (11) at first. This laser beam is reflected by a polygon mirror (12) rotated by a scanning section (13) and is reflected again to a photoreceptor (4) by a curved reflecting mirror (14). A curved profile of a reflecting plane of the curved reflecting mirror (14) in the main scanning direction is formed so as to be asymmetrical on right and left bounding about a scanning center point (14c). Thereby, variation of speed for scanning the curved reflecting mirror (14) by the light reflected by the polygon mirror (12) may be canceled by the curved reflecting mirror (14) and a speed for scanning the object may be fixed almost at a predetermined speed.
    • 本发明旨在通过校正由于激光束的反射点在多角镜(12)上移动而产生的物体扫描速度的误差来减小fθ校正误差。 在本发明的激光扫描仪(9)中,首先从激光振荡器(10)发射的激光通过聚光透镜(11)会聚为光束。 该激光束被由扫描部13旋转的多面镜12反射,并通过曲面反射镜14再次反射到感光体4。 弯曲反射镜(14)的反射面在主扫描方向上的曲面轮廓形成为在围绕扫描中心点(14c)的左右不对称。 因此,由多面镜(12)反射的光扫描弯曲反射镜(14)的速度变化可以通过弯曲反射镜(14)抵消,并且用于扫描物体的速度可以几乎固定在预定的 速度。
    • 6. 发明公开
    • Optical scanning apparatus
    • OptischesAbtastgerät
    • EP0828173A2
    • 1998-03-11
    • EP97115273.1
    • 1997-09-03
    • SHARP KABUSHIKI KAISHA
    • Fujimoto, OsamuMatsuda, HideoShimazawa, YoichiOhnishi, KazuyukiSakagami, Hidekazu
    • G02B26/12H04N1/113
    • G02B26/126
    • The present invention is intended to reduce a fθ correction error by correcting an error of an object scanning speed which is produced because a reflecting point of a laser beam moves on a polygon mirror (12). In an inventive laser scanner (9), laser light emitted from a laser oscillator (10) is condensed into a beam by a condenser lens (11) at first. This laser beam is reflected by a polygon mirror (12) rotated by a scanning section (13) and is reflected again to a photoreceptor (4) by a curved reflecting mirror (14). A curved profile of a reflecting plane of the curved reflecting mirror (14) in the main scanning direction is formed so as to be asymmetrical on right and left bounding about a scanning center point (14c). Thereby, variation of speed for scanning the curved reflecting mirror (14) by the light reflected by the polygon mirror (12) may be canceled by the curved reflecting mirror (14) and a speed for scanning the object may be fixed almost at a predetermined speed.
    • 本发明旨在减少费用; 通过校正由于激光束的反射点在多面镜(12)上移动而产生的物体扫描速度的误差的校正误差。 在本发明的激光扫描仪(9)中,从激光振荡器(10)发射的激光首先由聚光透镜(11)聚光成束。 该激光束被由扫描部分(13)旋转的多面镜(12)反射,并被弯曲的反射镜(14)再次反射到感光体(4)。 弯曲反射镜(14)在主扫描方向上的反射平面的弯曲轮廓形成为在扫描中心点(14c)的左右两边不对称。 由此,可以通过弯曲反射镜(14)抵消由多面镜(12)反射的光来扫描弯曲反射镜(14)的速度变化,并且用于扫描物体的速度可以几乎固定在预定的 速度。
    • 9. 发明公开
    • Manual operating device
    • ManuelleBetätigungsvorrichtung
    • EP2535795A2
    • 2012-12-19
    • EP12004424.3
    • 2012-06-12
    • Sharp Kabushiki Kaisha
    • Ohnishi, Kazuyuki
    • G06F3/048
    • G06F3/0488G06F3/0421H04N1/00564
    • A manual operating device includes a display input device, an arm position sensing section, a physical position sensing section and a control section. The display input device includes a display section that displays an operating screen, and a touch panel. The arm position detecting section detects an arm of an operator at a plurality of positions in a right and left direction. The physical position sensing section detects a body of the operator at a plurality of positions in the right and left direction. The control section makes a determination as to whether it is right hand or left hand that the operator has touched the display input device with based on results detected by the arm position sensing section and the physical position sensing section, and then controls display of the display section based on the result of the right-or-left determination.
    • 手动操作装置包括显示输入装置,手臂位置检测部,物理位置检测部和控制部。 显示输入装置包括显示操作画面的显示部和触摸面板。 臂位置检测部分在左右方向的多个位置处检测操作者的手臂。 物理位置检测部分在左右方向的多个位置处检测操作者的身体。 控制部根据由臂位置检测部和物理位置检测部检测到的结果,判断是否是右手或左手操作者已经触摸了显示输入装置,然后控制显示器的显示 基于左右确定的结果。