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    • 2. 发明授权
    • Electron beam irradiation apparatus and electron beam irradiating method
    • 电子束照射装置和电子束照射法
    • US06737660B2
    • 2004-05-18
    • US10372419
    • 2003-02-24
    • Yoshihisa MiuraYuichi AkiHiroshi KawaseMasanobu YamamotoNaoki DateSetsuo NoriokaMitsuru KoizumiGakuo Komatsubara
    • Yoshihisa MiuraYuichi AkiHiroshi KawaseMasanobu YamamotoNaoki DateSetsuo NoriokaMitsuru KoizumiGakuo Komatsubara
    • G11B910
    • H01J37/18G11B7/261H01J37/305H01J37/3056H01J2237/162H01J2237/188
    • An electron beam irradiation apparatus in a partial vacuum method is structured with a static pressure floating pad 18 connected to a vacuum chamber 14 containing an electron beam column 15 and in a condition that the static pressure floating pad 18 is attached to a subject 1 to be irradiated without contacting, and an electron beam irradiating the subject 1 to be irradiated through an electron beam path 19 of the static pressure floating pad 18, whereby the vacuum chamber and the electron beam column can be maintained in the required degree of vacuum even in a condition that the static pressure floating pad 18 is separated from the subject 1 to be irradiated. A vacuum seal valve 30 including a piston to open and close the electron beam path 19 is provided within the static pressure floating pad 18. When the static pressure floating pad 18 is separated from the subject 1, the vacuum seal valve 30 is structured to be activated to close the electron beam path 19 so as to prevent the air from flowing into the vacuum chamber 14. In this structure, the vacuum seal valve 30 is formed with a round shaped cross section and in a tapered shape with a narrow tip so as to accomplish high vacuum seal without a gap, so that the degree of vacuum in the vacuum chamber and the electron beam column can surely be maintained.
    • 部分真空法中的电子束照射装置由连接到包含电子束柱15的真空室14的静压浮动垫18构成,并且在将静压浮动垫18附着到被检体1的状态下 照射不经接触的电子束,以及通过静压浮动垫18的电子束路径19照射待被检体1的电子束,由此即使在真空室和电子束柱中也可以将真空室和电子束柱保持在所需的真空度 条件是静压浮动垫18与待照射的被检体1分离。 在静压浮动垫18内设置包括打开和关闭电子束通道19的活塞的真空密封阀30.当静压浮动垫18与被检体1分离时,真空密封阀30构成为 激活以闭合电子束路径19,以防止空气流入真空室14.在该结构中,真空密封阀30形成为圆形截面并具有窄尖端的锥形形状,以便 实现高真空密封而没有间隙,从而可以确保真空室和电子束柱中的真空度。
    • 7. 发明申请
    • ELECTROSTATIC CHARGER AND IMAGE FORMING APPARATUS
    • 静电充电器和图像形成装置
    • US20120189348A1
    • 2012-07-26
    • US13499315
    • 2010-09-28
    • Masanobu YamamotoTakashi Tokuda
    • Masanobu YamamotoTakashi Tokuda
    • G03G15/02
    • G03G15/0291G03G21/206G03G2215/0132G03G2215/028G03G2221/1645
    • An electrostatic charger (32A) of an image forming apparatus (1) takes the air not containing dust inside from the outside of an image forming unit (101) by an air current generator (632A), and delivers an air current through a passage (43A) to an air-intake opening (524A) formed in a bottom face (521A) of a case (52A). The air current taken inside the case (52A) from the air-intake opening (524A) is directed by a guide plate (56A) and an air barrier (57A) to a tip portion (531A) of a discharge electrode (53A), and then passing the tip portion (531A), it is exhausted via an opening (520A) of the case (52A) through an exhaust duct (62A) from an air-exhaust opening (63A) to the outside of the image forming unit (101).
    • 图像形成装置(1)的静电充电器(32A)通过气流发生器(632A)从图像形成单元(101)的外部吸入不含灰尘的空气,并且通过通道( 43A)连接到形成在壳体(52A)的底面(521A)中的进气口(524A)。 从吸气口(524A)取出的壳体(52A)内的气流由导向板(56A)和空气阻挡部(57A)引导到放电电极(53A)的前端部(531A) 然后通过前端部分(531A),经由排气管道(62A)经由排气口(63A)经由外壳(52A)的开口(520A)排出到图像形成单元的外部 101)。
    • 9. 发明申请
    • STORAGE APPARATUS AND CONFIGURATION SETTING METHOD
    • 存储设备和配置设置方法
    • US20120036323A1
    • 2012-02-09
    • US13275643
    • 2011-10-18
    • Kashie ArakiMasanobu YamamotoTomoyuki KatoKei Sato
    • Kashie ArakiMasanobu YamamotoTomoyuki KatoKei Sato
    • G06F12/00
    • G06F3/0631G06F3/0605G06F3/0689
    • This storage apparatus has a plurality of physical devices for storing data sent from a host system, and includes a physical device group setting unit for setting a physical device group from the plurality of physical devices based on a policy file which lists matters to be operated and set by an administrator as parameters in advance, and information on the physical devices, a first logical device setting unit for setting a first logical device from the physical device group based on information on the physical device group and the policy file set with the physical device group setting unit, and a second logical device setting unit for setting a second logical device from the first logical device based the information on the first logical device and the policy file set with the first logical device setting unit.
    • 该存储装置具有多个物理装置,用于存储从主机系统发送的数据,并且包括:物理设备组设定单元,用于基于列出要运行的事项的策略文件来设置来自多个物理设备的物理设备组;以及 由管理员预先设置为参数,以及关于物理设备的信息,第一逻辑设备设置单元,用于基于关于物理设备组和与物理设备组合的策略文件的信息从物理设备组设置第一逻辑设备 组设定单元和第二逻辑设备设置单元,用于基于第一逻辑设备上的信息和利用第一逻辑设备设置单元设置的策略文件来设置来自第一逻辑设备的第二逻辑设备。
    • 10. 发明授权
    • Charging apparatus and image forming apparatus
    • 充电装置及成像装置
    • US08023863B2
    • 2011-09-20
    • US12275633
    • 2008-11-21
    • Rika HayashiToshiaki InoMasanobu Yamamoto
    • Rika HayashiToshiaki InoMasanobu Yamamoto
    • G03G15/02
    • G03G15/0291G03G2215/028
    • A charging apparatus is provided in which electrodes can be protected from corrosion induced by water content in the air, ozone, nitrogen oxide and the like and thereby lack of uniformity in charged potential on photoreceptor surface can be prevented, and in which a charged potential on photoreceptor surface can be kept in an adequate range for a longer period of time. As an electrode disposed in the charging apparatus for charging photoreceptor surface, an electrode formed with a protective layer made of nickel and phosphorus for surface protection is used. In the protective layer, phosphorus concentration and thickness proportion are each set to fall within a specified range.
    • 提供了一种充电装置,其中可以保护电极免受空气,臭氧,氮氧化物等中的水含量引起的腐蚀,从而可以防止感光体表面上的充电电位不均匀,并且其中带电电位 感光体表面可以保持在适当的范围内更长的时间。 作为设置在用于充电感光体表面的充电装置中的电极,使用形成有用于表面保护的由镍和磷制成的保护层的电极。 在保护层中,磷浓度和厚度比例分别设定在规定范围内。