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    • 1. 发明授权
    • Image reading apparatus and method
    • 图像读取装置及方法
    • US06718071B2
    • 2004-04-06
    • US09949788
    • 2001-09-12
    • Mitsuhiro YoshidaTamio AmagaiNoriaki YamazakiHiroyuki MaruyamaTakeshi Kimura
    • Mitsuhiro YoshidaTamio AmagaiNoriaki YamazakiHiroyuki MaruyamaTakeshi Kimura
    • G06K936
    • G06K9/3283H04N1/00681H04N1/00718H04N1/00737H04N1/00745H04N1/0075
    • The invention provides an image reading apparatus and method capable of performing skew error correction at high speed. In an image reading apparatus that conveys a stacked medium along a conveyance path, reads an image of the medium being conveyed, and discharges the medium after reading the image, the apparatus comprises calculation means for calculating the amount of skew of the medium while being conveyed, and correction means for correcting the amount of skew of the medium in accordance with the amount of skew calculated by the calculation means. The correction means comprise determination means for determining whether correction for the amount of skew should be performed or not, and control means for correcting the amount of skew of the medium. The calculation means comprise medium detection means for detecting the state of the medium conveyed along the conveyance path, and calculate the amount of skew from the detected result of the state of the medium. The control means comprise correction control means for correcting the amount of skew based on the amount of skew of the medium calculated by the calculation means when the determination means determine to correct the amount of skew. The calculation means comprise image reading means for reading an image of the medium conveyed along the conveyance path at a position closer on the conveyance path to the discharging side than the medium detection means, and calculate the amount of skew from the image data of the medium read by the image reading means.
    • 本发明提供能够高速进行偏斜纠错的图像读取装置和方法。 在沿输送路径输送堆叠介质的图像读取装置中,读取正在输送的介质的图像,并且在读取图像之后对介质进行放电,该装置包括计算装置,用于在传送介质的同时计算介质的歪斜量 以及校正装置,用于根据由计算装置计算的偏斜量来校正介质的偏斜量。 校正装置包括确定装置,用于确定是否应执行对偏斜量的校正;以及控制装置,用于校正介质的偏斜量。 计算装置包括用于检测沿着传送路径传送的介质的状态的介质检测装置,并根据检测到的介质状态的结果来计算偏斜量。 控制装置包括校正控制装置,用于当确定装置确定校正歪斜量时,基于由计算装置计算的介质的偏斜量来校正偏斜量。 计算装置包括图像读取装置,用于读取在比介质检测装置更靠近到排出侧的输送路径的位置处沿着传送路径传送的介质的图像,并且根据介质的图像数据计算偏斜量 由图像读取装置读取。
    • 4. 发明授权
    • Poultry raising system, poultry raising method and luminescent device for raising poultry
    • 家禽养殖系统,家禽养殖方法和家禽养殖发光装置
    • US08468976B2
    • 2013-06-25
    • US12864111
    • 2009-01-13
    • Satoshi KakimiNoriaki YamazakiNaoki KakimiYozo Fukugawa
    • Satoshi KakimiNoriaki YamazakiNaoki KakimiYozo Fukugawa
    • A01K31/00
    • A01K31/18A01K31/19A01K45/00F21K9/23F21Y2115/10
    • A poultry raising system includes a poultry house and facilities attached to the poultry house. The facilities include lighting facilities irradiating poultry with light; and the lighting facilities include a semiconductor light source, for irradiation with light having peak wavelength in the range of 550 to 650 nm emitted from the semiconductor light source. The light in this wavelength range has positive influence on sexual maturation, appetite, need for sleep and condition of internal organs. Light of shorter peak wavelength includes ultraviolet rays that cause stress on the poultry and attract insects. Light of longer wavelength includes infrared rays that increase temperature of the poultry and of the poultry house. It is possible to emit light having peak wavelength in a specific range effective to growth and fattening. Because of high electricity-to-light conversion efficiency, high economic efficiency can be attained, and CO2 emission can be reduced. Risk of shattering of a globe by abrupt cooling can be reduced, and temperature increase in the poultry house can be prevented. Longer life reduces danger, labor and cost of exchange. Thus, meat and egg yield can be increased and economical efficiency can be improved.
    • 家禽养殖系统包括家禽舍和附属于家禽舍的设施。 设施包括照明家禽照明设施; 并且照明设备包括半导体光源,用于从半导体光源发射的具有在550至650nm范围内的峰值波长的光照射。 这种波长范围内的光线对性成熟,食欲,睡眠需要和器官状况都有积极的影响。 较短峰值波长的光包括紫外线,引起家禽的压力并吸引昆虫。 较长波长的光包括增加家禽和禽舍温度的红外线。 可以发射具有对生长和育肥有效的特定范围的峰值波长的光。 由于电光转换效率高,可以实现高经济效益,可以降低二氧化碳排放量。 可以降低突然冷却导致地球破裂的危险,并可以防止禽舍的温度升高。 更长的寿命减少了危险,劳动力和交换成本。 因此,可以提高肉和蛋的产量,并且可以提高经济效率。
    • 5. 发明授权
    • Photographic developing apparatus and electrifying apparatus
    • 照相显影装置和通电装置
    • US5887233A
    • 1999-03-23
    • US895556
    • 1997-07-16
    • Jun AbeNoriaki YamazakiAkihiko NodaShinichi KuramotoShota Oba
    • Jun AbeNoriaki YamazakiAkihiko NodaShinichi KuramotoShota Oba
    • G03G15/08G03G15/02
    • G03G15/0812G03G15/0806
    • A photographic developing apparatus which visualizes a latent image formed on an image carrier is disclosed which includes:a developing powder carrier provided so as to be opposite to the image carrier;a layer forming member for forming a thin layer of developing powder over a circumferential surface of the developing powder carrier;a charge imparting member which is provided so as to be opposite to the developing powder carrier and causes an electric field between the charge imparting member and the developing powder carrier; andan electrification control member which is interposed between the charge imparting member and the developing powder carrier, and limits an ionization area caused by electric discharge in the electric field by receiving an intermediate electric potential between the electric potential of the charge imparting member and the electric potential of the developing powder carrier.
    • 公开了一种使形成在图像载体上的潜像可视化的照相显影装置,其包括:设置成与图像载体相对的显影粉末载体; 用于在显影粉末载体的圆周表面上形成显影粉末薄层的层形成部件; 电荷赋予构件,其设置成与显影粉末载体相对,并且在电荷施加构件和显影粉末载体之间引起电场; 以及带电控制构件,其插入在电荷施加构件和显影剂载体之间,并且通过在电荷赋予构件的电位和电荷赋予构件之间接收中间电位来限制由电场中的放电引起的电离区域 显影粉末载体的潜力。
    • 6. 发明申请
    • POULTRY RAISING SYSTEM, POULTRY RAISING METHOD AND LUMINESCENT DEVICE FOR RAISING POULTRY
    • 提升系统,提升方法和提升装置的发光装置
    • US20100294205A1
    • 2010-11-25
    • US12864111
    • 2009-01-13
    • Satoshi KakimiNoriaki YamazakiNaoki KakimiYozo Fukugawa
    • Satoshi KakimiNoriaki YamazakiNaoki KakimiYozo Fukugawa
    • A01K31/18F21V33/00
    • A01K31/18A01K31/19A01K45/00F21K9/23F21Y2115/10
    • A poultry raising system includes a poultry house and facilities attached to the poultry house. The facilities include lighting facilities irradiating poultry with light; and the lighting facilities include a semiconductor light source, for irradiation with light having peak wavelength in the range of 550 to 650 nm emitted from the semiconductor light source. The light in this wavelength range has positive influence on sexual maturation, appetite, need for sleep and condition of internal organs. Light of shorter peak wavelength includes ultraviolet rays that cause stress on the poultry and attract insects. Light of longer wavelength includes infrared rays that increase temperature of the poultry and of the poultry house. It is possible to emit light having peak wavelength in a specific range effective to growth and fattening. Because of high electricity-to-light conversion efficiency, high economic efficiency can be attained, and CO2 emission can be reduced. Risk of shattering of a globe by abrupt cooling can be reduced, and temperature increase in the poultry house can be prevented. Longer life reduces danger, labor and cost of exchange. Thus, meat and egg yield can be increased and economical efficiency can be improved.
    • 家禽养殖系统包括家禽舍和附属于家禽舍的设施。 设施包括照明家禽照明设施; 并且照明设备包括半导体光源,用于从半导体光源发射的具有在550至650nm范围内的峰值波长的光照射。 这种波长范围内的光线对性成熟,食欲,睡眠需要和器官状况都有积极的影响。 较短峰值波长的光包括紫外线,引起家禽的压力并吸引昆虫。 较长波长的光包括增加家禽和禽舍温度的红外线。 可以发射具有对生长和育肥有效的特定范围的峰值波长的光。 由于电光转换效率高,可以实现高经济效益,可以降低二氧化碳排放量。 可以降低突然冷却导致地球破裂的危险,并可以防止禽舍的温度升高。 更长的寿命减少了危险,劳动力和交换成本。 因此,可以提高肉和蛋的产量,并且可以提高经济效率。
    • 7. 发明授权
    • Sheet feeder and jam detecting method
    • 进纸器和卡纸检测方法
    • US07568695B2
    • 2009-08-04
    • US11331063
    • 2006-01-13
    • Ryoichi YasukawaMinoru MasudaSatoshi IshidaNoriaki Yamazaki
    • Ryoichi YasukawaMinoru MasudaSatoshi IshidaNoriaki Yamazaki
    • B65H7/02
    • G03G15/6567G03G15/6561G03G2215/00548G03G2221/1675
    • A transporter is adapted to transport a sheet in a first direction. At least three detectors are disposed at a downstream side of the transporter in the first direction. Each of the detectors is operable to detect passing time of a leading end edge of the sheet. A processor is operable to calculate: a first angle of the sheet with respect to the first direction based on a first difference of the passing time detected by first two of the detectors and a first distance between the first two of the detectors; and a second angle of the sheet with respect to the first direction based on a second difference of the passing time detected by second two of the detectors and a second distance between the second two of the detectors, and operable to detect a jam in case that a value of an angular difference between the first angle and the second angle is larger than a prescribed value.
    • 输送器适于在第一方向上输送片材。 至少三个检测器在第一方向上设置在运送器的下游侧。 每个检测器可操作以检测片材的前端边缘的通过时间。 处理器可操作地基于由前两个检测器检测到的通过时间的第一差异和第一两个检测器之间的第一距离来计算纸张相对于第一方向的第一角度; 并且基于由第二检测器检测到的通过时间的第二差异和第二两个检测器之间的第二距离,片材相对于第一方向的第二角度,并且可操作以在第二个检测器 第一角度与第二角度之间的角度差值大于规定值。
    • 9. 发明授权
    • Electrostatic charge regulator, method for making same, and image forming method using same
    • 静电荷调节剂,其制造方法和使用其的成像方法
    • US06517961B1
    • 2003-02-11
    • US09603841
    • 2000-06-26
    • Takeshi AgataNoriaki YamazakiKei Shimotani
    • Takeshi AgataNoriaki YamazakiKei Shimotani
    • B32B900
    • H01C7/108H01C17/06533H01C17/06553
    • An electrostatic charge regulator capable of holding an electric charge in a stable state and superior in environmental stability, as well as a method for making the electrostatic charger regulator and an image forming method using the electrostatic charge regulator, are disclosed. The electrostatic charge regulator has a surface layer containing a non-linear resistor on a base member such as a carrier, a developer sleeve, a developer blade, or a transfer belt. The electrostatic charge regulator is obtained by forming on the base member a surface layer by using a thin film of a composite metal oxide or by using dispersion of powder of the composite metal oxide in a high molecular compound, the composite metal oxide being prepared using at least one metal selected from Group A metals (Zn, Ti, Si, Al, Zr) and at least one metal selected from Group B metals (Bi, Sb, C, Y, La, Pr, Sc, Ce, Sn, Pb). The image forming method uses the above electrostatic charge regulator to form an image.
    • 公开了能够将电荷保持在稳定状态并且环境稳定性优异的静电电荷调节器以及制造静电充电器调节器的方法和使用静电电荷调节器的图像形成方法。 静电电荷调节器具有在诸如载体,显影剂套筒,显影剂刮刀或转印带的基底构件上含有非线性电阻器的表面层。 通过使用复合金属氧化物的薄膜或通过使复合金属氧化物的粉末分散在高分子化合物中,在基体上在基体上形成表面层,得到静电荷调节剂,复合金属氧化物使用 选自A族金属(Zn,Ti,Si,Al,Zr)和选自B族金属(Bi,Sb,C,Y,La,Pr,Sc,Ce,Sn,Pb)中的至少一种金属的至少一种金属, 。 图像形成方法使用上述静电电荷调节器来形成图像。
    • 10. 发明授权
    • Electrostatic printing method
    • 静电印刷法
    • US4029826A
    • 1977-06-14
    • US511278
    • 1974-10-02
    • Keita NakanoKiyoshi HorieNoriaki Yamazaki
    • Keita NakanoKiyoshi HorieNoriaki Yamazaki
    • G03G15/10G03G15/11G03G13/10
    • G03G15/102
    • An electrostatic printing method for developing an electrostatic latent image on a recording member by first developing the image by the "electrostatic developing" method in which a liquid developer comprising an insulating liquid vehicle and a solid colorant is electrostatically attracted and applied only to the electrostatic latent image, and then further developing the image, by "liquid developing" in which an insulating liquid miscible with the vehicle used in the electrostatic developing step and containing substantially no coloring matter is applied to the image and non-image areas on the recording member, whereby some of the solid colorant attracted to the electrostatic image is charged and migrates to any image portion not developed by the electrostatic developing step.
    • 一种通过首先通过“静电显影”方法将静电潜像显影在记录部件上的静电印刷方法,其中包含绝缘液体载体和固体着色剂的液体显影剂被静电吸引并仅施加于静电潜像 图像,然后进一步显影图像,通过“液体显影”,其中与静电显影步骤中使用的车辆可混合并且基本上不含色素的绝缘液体被施加到记录部件上的图像和非图像区域, 由此吸附到静电图像的一些固体着色剂被充电并迁移到由静电显影步骤未显影的任何图像部分。