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    • 4. 发明申请
    • Image forming apparatus
    • 图像形成装置
    • US20060093387A1
    • 2006-05-04
    • US11262950
    • 2005-11-01
    • Kazuto Hori
    • Kazuto Hori
    • G03G15/043
    • G03G15/043G03G2215/00084
    • In a laser beam printer, even when an inexpensive CPU having low throughput capacity is used, stable power can be obtained by following a sudden change in temperature of a laser chip. A control unit sets a scanning cycle for performing the automatic power control based on ambient temperature of a photoconductive drum and the number of continuously-printed sheets. Then, the control unit output a horizontal synchronizing signal to a laser driving circuit and causes a laser scan unit to output a scanning laser beam. Substantially, when scanning corresponds the scanning cycle, the automatic power control is performed based on an output signal of a photodiode. When scanning does not correspond to the scanning cycle, a horizontal synchronizing signal of the next line is output. Whereby, the scanning cycle for performing the automatic power control according to a change in temperature of the laser chip, thereby reducing loads applied to the control unit.
    • 在激光束打印机中,即使使用廉价的具有低吞吐能力的CPU,也可以通过跟随激光芯片的温度突然变化来获得稳定的功率。 控制单元基于感光鼓的环境温度和连续打印的片材的数量设置用于执行自动功率控制的扫描周期。 然后,控制单元向激光驱动电路输出水平同步信号,并使激光扫描单元输出扫描激光束。 基本上,当扫描对应于扫描周期时,基于光电二极管的输出信号执行自动功率控制。 当扫描不对应于扫描周期时,输出下一行的水平同步信号。 由此,用于根据激光芯片的温度变化执行自动功率控制的扫描周期,从而减少施加到控制单元的负载。
    • 5. 发明授权
    • Method of controlling image density
    • 控制图像浓度的方法
    • US5477312A
    • 1995-12-19
    • US262661
    • 1994-06-20
    • Kazuto Hori
    • Kazuto Hori
    • G03G15/00G03G21/00
    • G03G15/5041
    • A method of controlling image density includes imaging a pattern of reference density as a toner image on a photoconductor. The density of the toner image is detected by a reflection-type photosensor, and parameters on the image density are adjusted based upon the results of this detection. In this invention, prior to measuring the reference density toner image, the drive current for the reflection-type photosensor is varied, and output from the reflection-type photosensor is measured while no toner is present on the photoconductor. A reference value of the drive current for the reflection-type photosensor which permits output from the reflection-type photosensor to be a predetermined value is determined. Then, the drive current for the reflection-type photosensor for measuring the reference density toner image is set based on the reference drive current value.
    • 控制图像浓度的方法包括将参考密度图案作为感光体上的调色剂图像进行成像。 调色剂图像的浓度由反射型光电传感器检测,并根据该检测结果调整图像浓度参数。 在本发明中,在测量参考浓度调色剂图像之前,反射型光电传感器的驱动电流是变化的,并且在光电导体上不存在调色剂的同时测量反射型光电传感器的输出。 确定允许从反射型光电传感器输出的反射型光电传感器的驱动电流的参考值为预定值。 然后,基于参考驱动电流值设定用于测量基准浓度调色剂图像的反射型光电传感器的驱动电流。
    • 6. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US07453484B2
    • 2008-11-18
    • US11262950
    • 2005-11-01
    • Kazuto Hori
    • Kazuto Hori
    • B41J2/435
    • G03G15/043G03G2215/00084
    • In a laser beam printer, even when an inexpensive CPU having low throughput capacity is used, stable power can be obtained by following a sudden change in temperature of a laser chip. A control unit sets a scanning cycle for performing the automatic power control based on ambient temperature of a photoconductive drum and the number of continuously-printed sheets. Then, the control unit output a horizontal synchronizing signal to a laser driving circuit and causes a laser scan unit to output a scanning laser beam. Substantially, when scanning corresponds the scanning cycle, the automatic power control is performed based on an output signal of a photodiode. When scanning does not correspond to the scanning cycle, a horizontal synchronizing signal of the next line is output. Whereby, the scanning cycle for performing the automatic power control according to a change in temperature of the laser chip, thereby reducing loads applied to the control unit.
    • 在激光束打印机中,即使使用廉价的具有低吞吐能力的CPU,也可以通过跟随激光芯片的温度突然变化来获得稳定的功率。 控制单元基于感光鼓的环境温度和连续打印的片材的数量设置用于执行自动功率控制的扫描周期。 然后,控制单元向激光驱动电路输出水平同步信号,并使激光扫描单元输出扫描激光束。 基本上,当扫描对应于扫描周期时,基于光电二极管的输出信号执行自动功率控制。 当扫描不对应于扫描周期时,输出下一行的水平同步信号。 由此,用于根据激光芯片的温度变化执行自动功率控制的扫描周期,从而减少施加到控制单元的负载。
    • 7. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US5369473A
    • 1994-11-29
    • US67210
    • 1992-05-24
    • Kazuhiro OgawaKazuto Hori
    • Kazuhiro OgawaKazuto Hori
    • G03G15/00G03G15/02G03G21/00
    • G03G15/5041G03G2215/00042G03G2215/00054G03G2215/00075
    • An image forming apparatus is provided with a rotatable photosensitive member; an imaging assembly for exposing the surface of the photosensitive member to light so as to form an electrostatic latent image thereon and developing the electrostatic latent image; and a sensor arranged in the vicinity of and opposed to the surface of the photosensitive member, and adapted for detecting an imaging performance in a specific region on the surface of the photosensitive member. With the image forming apparatus thus constructed, measurement values vary only within a reduced range since an imaging performance of the photosensitive member is detected in a specific region on the photosensitive member.
    • 图像形成装置设置有可旋转感光构件; 用于将感光构件的表面暴露于光以便在其上形成静电潜像并显影静电潜像的成像组件; 以及布置在感光构件的表面附近并与感光构件的表面相对并且适于检测感光构件表面上的特定区域中的成像性能的传感器。 利用如此构造的图像形成装置,由于在感光构件的特定区域中检测到感光构件的成像性能,所以测量值仅在减小的范围内变化。
    • 8. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US07595813B2
    • 2009-09-29
    • US11713001
    • 2007-03-02
    • Kazuto Hori
    • Kazuto Hori
    • B41J2/385B41J2/41B41J27/00B41J2/435
    • H04N1/1135G03G15/04072G03G15/0435H04N1/032H04N2201/02418H04N2201/02427H04N2201/02441H04N2201/02483
    • In an image forming apparatus (1) utilizing electrophotographic technology, position and posture of a laser scan unit (5) with respect top a frame (13) is adjusted easily without cost rise and upsizing of the apparatus. Semicircular recesses (53) and an elongate hole (54) are formed at each of three fixing portions (52a, 52b and 52c) in the vicinities of side faces (51b) and a rear face (51c) of a housing (51) of the laser scan unit (5), and an adjuster 30 serving as a spacer is attached to each of the fixing portions (52a, 52b and 52c). Each adjuster (30) is elected among a plurality of kinds of adjustors respectively having different thicknesses manufactured by press working of metal plates commercially produced and having different thicknesses with using the same dies. The adjustor has a pair of semicircular engaging portions 30b and a coupling portion 30a perpendicular to and coupling the engaging portions (30b).
    • 在利用电子照相技术的图像形成设备(1)中,相对于框架(13),激光扫描单元(5)的位置和姿势被容易地调节,而不会增加设备的大小。 在三个固定部分(52a,52b和52c)的每个侧面(51b)和壳体(51)的侧面(51b)和后面(51c)附近形成有半圆形凹部53和长孔54, 激光扫描单元(5)和用作间隔物的调节器30附接到每个固定部分(52a,52b和52c)。 每个调节器(30)在具有不同厚度的多种调节器中选出,所述多个调节器通过使用相同的模具商业生产和具有不同厚度的金属板的冲压加工制造。 调节器具有一对半圆形接合部分30b和垂直于并联接接合部分(30b)的联接部分30a。
    • 9. 发明申请
    • Image forming apparatus
    • 图像形成装置
    • US20070211136A1
    • 2007-09-13
    • US11713001
    • 2007-03-02
    • Kazuto Hori
    • Kazuto Hori
    • B41J2/45
    • H04N1/1135G03G15/04072G03G15/0435H04N1/032H04N2201/02418H04N2201/02427H04N2201/02441H04N2201/02483
    • In an image forming apparatus (1) utilizing electrophotographic technology, position and posture of a laser scan unit (5) with respect top a frame (13) is adjusted easily without cost rise and upsizing of the apparatus. Semicircular recesses (53) and an elongate hole (54) are formed at each of three fixing portions (52a, 52b and 52c) in the vicinities of side faces (51b) and a rear face (51c) of a housing (51) of the laser scan unit (5), and an adjuster 30 serving as a spacer is attached to each of the fixing portions (52a, 52b and 52c). Each adjuster (30) is elected among a plurality of kinds of adjustors respectively having different thicknesses manufactured by press working of metal plates commercially produced and having different thicknesses with using the same dies. The adjustor has a pair of semicircular engaging portions 30b and a coupling portion 30a perpendicular to and coupling the engaging portions (30b).
    • 在利用电子照相技术的图像形成设备(1)中,相对于框架(13),激光扫描单元(5)的位置和姿势被容易地调节,而不会增加设备的大小。 在三个固定部分(52a,52b和52c)中的每个固定部分(52a,52b和52c)的侧面(51b)附近形成有半圆形凹部(53)和细长孔 激光扫描单元(5)的壳体(51)和用作间隔件的调节器30附接到每个固定部分(52a,52b和52c)。 每个调节器(30)在具有不同厚度的多种调节器中选出,所述多个调节器通过使用相同的模具商业生产和具有不同厚度的金属板的冲压加工制造。 调节器具有一对半圆形接合部分30b和与接合部分(30b)垂直并联接的联接部分30a。
    • 10. 发明授权
    • Image density control device having an original mounting element with a
vertically adjustable means
    • 图像浓度控制装置具有具有垂直调节装置的原始安装元件
    • US5506659A
    • 1996-04-09
    • US262660
    • 1994-06-20
    • Kazuto Hori
    • Kazuto Hori
    • G01N21/47G03G15/00G03G21/00
    • G03G15/605G03G15/5041G03G2215/00042
    • The present invention is directed to an image density control device in an image formation apparatus where a pattern of reference density on a sample original is exposed to light from an exposing light source to image the pattern on photoconductor, density of the resultant toner image is detected by a reflection-type photosensor, and parameters on image density are adjusted based upon results of detection by the reflection-type photosensor. In the image density control device in the image formation apparatus, the sample original is mounted on a cabinet of the image formation apparatus so that a distance from the exposing light source in illuminating the pattern of the reference density to the pattern of the reference density can be adjusted.
    • 本发明涉及图像形成装置中的图像浓度控制装置,其中样本原稿上的参考浓度图案暴露于来自曝光光源的光以对感光体上的图案成像,以检测所得到的调色剂图像的浓度 通过反射式光电传感器,根据反射式光电传感器的检测结果,调整图像浓度参数。 在图像形成装置中的图像浓度控制装置中,将样本原稿安装在图像形成装置的机壳上,使得在照射参考密度的图案到参考密度的图案时从曝光光源的距离可以 调整。