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    • 32. 发明授权
    • Image forming apparatus and toner concentration sensor
    • 图像形成装置和调色剂浓度传感器
    • US08521047B2
    • 2013-08-27
    • US13220927
    • 2011-08-30
    • Satoru SasakiYoshiki KatayamaHirotada SekiNatsuyo HigashiShigetaka Kato
    • Satoru SasakiYoshiki KatayamaHirotada SekiNatsuyo HigashiShigetaka Kato
    • G03G15/00
    • G03G15/5058G03G2215/00063
    • An image forming apparatus includes a toner carrier, a toner image forming unit, and a toner concentration sensor. The toner carrier includes a transparent film. The toner image forming unit forms a toner image onto the toner carrier. The toner concentration sensor senses the concentration of toner on the toner carrier. The toner concentration sensor includes first and second light emitting elements and a light receiving element. The light emitting elements each radiate light directly or indirectly to the toner carrier. The light receiving element receives reflecting light originating from the light emitting elements. The first light emitting element radiates light having a wavelength of a predetermined reflectance resulting from direct radiation to the toner carrier. The second light emitting element radiates light having a wavelength that causes a lower reflectance resulting from direct radiation to the toner carrier than a reflectance resulting from radiation to the toner.
    • 图像形成装置包括调色剂载体,调色剂图像形成单元和调色剂浓度传感器。 调色剂载体包括透明膜。 调色剂图像形成单元在调色剂载体上形成调色剂图像。 调色剂浓度传感器感测调色剂载体上的调色剂浓度。 调色剂浓度传感器包括第一和第二发光元件和光接收元件。 发光元件各自直接或间接地将光直接照射到调色剂载体上。 光接收元件接收来自发光元件的反射光。 第一发光元件将具有由直接辐射产生的预定反射率的波长的光照射到调色剂载体。 第二发光元件将具有波长的光照射到对调色剂载体的直接辐射产生的较低的反射率,而不是由对辐射到调色剂的反射率。
    • 33. 发明申请
    • IMAGE FORMING APPARATUS AND TONER CONCENTRATION SENSOR
    • 图像形成装置和调色剂浓度传感器
    • US20120051770A1
    • 2012-03-01
    • US13220927
    • 2011-08-30
    • Satoru SasakiYoshiki KatayamaHirotada SekiNatsuyo HigashiShigetaka Kato
    • Satoru SasakiYoshiki KatayamaHirotada SekiNatsuyo HigashiShigetaka Kato
    • G03G15/00
    • G03G15/5058G03G2215/00063
    • An image forming apparatus includes a toner carrier, a toner image forming unit, and a toner concentration sensor. The toner carrier includes a transparent film. The toner image forming unit forms a toner image onto the toner carrier. The toner concentration sensor senses the concentration of toner on the toner carrier. The toner concentration sensor includes first and second light emitting elements and a light receiving element. The light emitting elements each radiate light directly or indirectly to the toner carrier. The light receiving element receives reflecting light originating from the light emitting elements. The first light emitting element radiates light having a wavelength of a predetermined reflectance resulting from direct radiation to the toner carrier. The second light emitting element radiates light having a wavelength that causes a lower reflectance resulting from direct radiation to the toner carrier than a reflectance resulting from radiation to the toner.
    • 图像形成装置包括调色剂载体,调色剂图像形成单元和调色剂浓度传感器。 调色剂载体包括透明膜。 调色剂图像形成单元在调色剂载体上形成调色剂图像。 调色剂浓度传感器感测调色剂载体上的调色剂浓度。 调色剂浓度传感器包括第一和第二发光元件和光接收元件。 发光元件各自直接或间接地将光直接照射到调色剂载体上。 光接收元件接收来自发光元件的反射光。 第一发光元件将具有由直接辐射产生的预定反射率的波长的光照射到调色剂载体。 第二发光元件将具有波长的光照射到对调色剂载体的直接辐射产生的较低的反射率,而不是由对辐射到调色剂的反射率。
    • 35. 发明授权
    • Fuel injection nozzle
    • 燃油喷嘴
    • US07798430B2
    • 2010-09-21
    • US11896538
    • 2007-09-04
    • Tokuji KuronitaSatoru Sasaki
    • Tokuji KuronitaSatoru Sasaki
    • F02M61/00
    • F02M61/182F02M61/1826F02M61/1833
    • A fuel injection nozzle is formed with a nozzle hole group including at least two individual nozzle holes, which are disposed close to each other. Fuel is injected through the nozzle hole group. In at least one combination of two adjacent individual nozzle holes included in the same nozzle hole group, at least one of the two adjacent individual nozzle holes is configured such that each of the at least one of the two adjacent individual nozzle holes has a diameter, the diameter increasing only toward a corresponding adjacent one of the two adjacent individual nozzle holes along a direction from an inside to an outside of the each of the at least one of the two adjacent individual nozzle holes, and the diameter being maximized at an outer opening of the each of the at least one of the two adjacent individual nozzle holes.
    • 燃料喷射喷嘴形成有喷嘴孔组,其包括彼此靠近设置的至少两个单独的喷嘴孔。 燃料通过喷嘴孔组注入。 在包括在相同喷嘴孔组中的两个相邻的独立喷嘴孔的至少一个组合中,两个相邻的独立喷嘴孔中的至少一个被构造成使得两个相邻的独立喷嘴孔中的至少一个喷嘴孔中的每一个具有直径, 直径相对于两个相邻的独立喷嘴孔中的至少一个相邻的独立喷嘴孔中的至少一个的内侧至外部的方向仅朝两个相邻的独立喷嘴孔中相应的相邻的一个喷嘴孔径增加,并且该直径在外部开口处最大化 的两个相邻的独立喷嘴孔中的至少一个的每一个。
    • 39. 发明申请
    • Fuel injection nozzle
    • 燃油喷嘴
    • US20080073452A1
    • 2008-03-27
    • US11896538
    • 2007-09-04
    • Tokuji KuronitaSatoru Sasaki
    • Tokuji KuronitaSatoru Sasaki
    • F02M61/18
    • F02M61/182F02M61/1826F02M61/1833
    • A fuel injection nozzle is formed with a nozzle hole group including at least two individual nozzle holes, which are disposed close to each other. Fuel is injected through the nozzle hole group. In at least one combination of two adjacent individual nozzle holes included in the same nozzle hole group, at least one of the two adjacent individual nozzle holes is configured such that each of the at least one of the two adjacent individual nozzle holes has a diameter, the diameter increasing only toward a corresponding adjacent one of the two adjacent individual nozzle holes along a direction from an inside to an outside of the each of the at least one of the two adjacent individual nozzle holes, and the diameter being maximized at an outer opening of the each of the at least one of the two adjacent individual nozzle holes.
    • 燃料喷射喷嘴形成有喷嘴孔组,其包括彼此靠近设置的至少两个单独的喷嘴孔。 燃料通过喷嘴孔组注入。 在包括在相同喷嘴孔组中的两个相邻的独立喷嘴孔的至少一个组合中,两个相邻的独立喷嘴孔中的至少一个被构造成使得两个相邻的独立喷嘴孔中的至少一个喷嘴孔中的每一个具有直径, 直径相对于两个相邻的独立喷嘴孔中的至少一个相邻的独立喷嘴孔中的至少一个的内侧至外部的方向仅朝两个相邻的独立喷嘴孔中相应的相邻的一个喷嘴孔径增加,并且该直径在外部开口处最大化 的两个相邻的独立喷嘴孔中的至少一个的每一个。
    • 40. 发明申请
    • Thermal head and manufacturing method thereof
    • 热敏头及其制造方法
    • US20060119666A1
    • 2006-06-08
    • US11287800
    • 2005-11-28
    • Sinya YokoyamaSatoru Sasaki
    • Sinya YokoyamaSatoru Sasaki
    • B41J2/05
    • B41J2/3351B41J2/3357
    • A thermal head includes printing dots disposed with a predetermined pitch; common electrode groups applying a common electrical potential to all of the printing dots; individual electrode groups individually connected to each of the printing dots, the common electrode groups and the individual electrode groups being arranged at predetermined intervals in each divided electrode group; driving ICs that are provided in each divided electrode groups, and selectively supply currents to the printing dots through each of the individual electrodes to selectively supply a current to each of the individual electrodes included in each of the electrode groups; and dummy resistor patterns formed at predetermined intervals in the regions between the adjacent electrode groups so as not to be connected to both the printing dots and the driving ICs.
    • 热敏头包括以预定间距设置的打印点; 公共电极组对所有印刷点施加公共电位; 各个电极组分别连接到每个印刷点,公共电极组和各个电极组以预定的间隔布置在每个划分的电极组中; 驱动设置在每个划分的电极组中的IC,并且通过每个单独电极选择性地向打印点提供电流,以选择性地向每个电极组中包括的每个单独电极提供电流; 以及在相邻电极组之间的区域中以预定间隔形成的虚拟电阻图案,以便不连接到两个印刷点和驱动IC。