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    • 71. 发明授权
    • Printer apparatus
    • 打印机装置
    • US07267500B2
    • 2007-09-11
    • US10865949
    • 2004-06-14
    • Masahiro TsuchiyaYukihiro MoriSumio Watanabe
    • Masahiro TsuchiyaYukihiro MoriSumio Watanabe
    • B41J11/00
    • B41J11/70B26D1/085B26D5/08B26D7/2628B26D2007/2685B41J15/042Y10T83/9411
    • A printer apparatus includes a first module including a fixed blade, and a second module being detachably attached to the first module, the second module including a movable blade, wherein the fixed blade includes an overlap portion and the movable blade includes an overlap portion overlapping with the overlap portion of the fixed blade when the first and second modules are detachably attached, and wherein at least one of the overlap portion of the movable blade and the overlap portion of the fixed blade has an inclination portion, which inclination portion in the case of the overlap portion of the movable blade inclines away from the fixed blade, and in the case of the overlap portion of the fixed blade inclines away from the movable blade.
    • 一种打印机装置包括:第一模块,包括固定刀片,第二模块可拆卸地连接到第一模块,第二模块包括可动刀片,其中固定刀片包括重叠部分,并且可动刀片包括与 当第一和第二模块可拆卸地安装时,固定刀片的重叠部分,并且其中可动刀片的重叠部分和固定刀片的重叠部分中的至少一个具有倾斜部分,该倾斜部分在 可动刀片的重叠部分从固定刀片倾斜,并且在固定刀片的重叠部分偏离可动刀片的情况下。
    • 73. 发明授权
    • Printer and cutter
    • 打印机和切割机
    • US07059793B2
    • 2006-06-13
    • US10765922
    • 2004-01-29
    • Yukihiro MoriMasahiro TsuchiyaSumio WatanabeFumio SakuraiKunihiko Funada
    • Yukihiro MoriMasahiro TsuchiyaSumio WatanabeFumio SakuraiKunihiko Funada
    • B41J11/66B41J11/70
    • B26D5/08B26D1/085B41J11/70
    • A printer with automatic cutter, provided with a built-in type cutting section. The printer includes a printing section, a cutting section arranged downstream of the printing section in a paper feeding direction, a support mechanism for supporting the printing section and the cutting section, and a drive source provided in the cutting section. The printing section acts to provide a print to printing paper fed continuously thereto. The cutting section includes a fixed blade and a movable blade which cooperate with each other to cut the printing paper, the fixed blade and the movable blade being shiftable relative to each other between a cooperative mutually-adjoining position and an uncooperative mutually-remote position. The support mechanism includes a first support member supporting the fixed blade of the cutting section and a second support member supporting the movable blade of the cutting section, the first support member being fixedly arranged to specify an operative printing point in the printing section and the second support member being shiftably arranged relative to the first support member. The drive source generates a driving force to move the movable blade on the second support member, the drive source being mounted on the first support member.
    • 具有自动切割机的打印机,内置有切割部分。 打印机包括打印部分,在送纸方向上布置在打印部分下游的切割部分,用于支撑打印部分和切割部分的支撑机构以及设置在切割部分中的驱动源。 打印部分用于向连续供给的打印纸提供打印。 切割部分包括固定刀片和可动刀片,它们彼此协作以切割打印纸,固定刀片和可动刀片可以在协作的相互邻近位置和不协调的相互远离的位置之间相对于彼此移动。 所述支撑机构包括支撑所述切割部分的固定刀片的第一支撑部件和支撑所述切割部分的所述可动刀片的第二支撑部件,所述第一支撑部件被固定地布置成指定所述打印部分中的操作打印点, 支撑构件相对于第一支撑构件可移动地布置。 驱动源产生驱动力以将可动刀片移动到第二支撑构件上,驱动源安装在第一支撑构件上。
    • 75. 发明授权
    • Method of forming on a semiconductor substrate a capacitor electrode having hemispherical grains
    • 在半导体衬底上形成具有半球形晶粒的电容器电极的方法
    • US06362044B1
    • 2002-03-26
    • US09665134
    • 2000-09-19
    • Akira ShimizuYukihiro MoriSatoshi Takahashi
    • Akira ShimizuYukihiro MoriSatoshi Takahashi
    • H01L218242
    • H01L28/84
    • An improved capacitor electrode made of polysilicon having a rough surface on a semiconductor substrate is formed by (a) removing a spontaneous oxidation film adhering to an amorphous silicon surface; (b) heating the amorphous silicon to a designated temperature; (c) spraying SiH4 at a designated temperature on the amorphous silicon to form an amorphous silicon/polysilicon mixed-phase active layer on the surface; (d) annealing at a designated temperature to form an HSG so as to roughen the amorphous silicon surface; (e) PH3-annealing the HSG-forming polysilicon, wherein PH3 is introduced at a designated concentration at the start of heating to a designated temperature; and (f) nitriding the amorphous silicon surface at the stated temperature by continuously introducing NH3 gas instead of PH3.
    • 通过(a)去除附着在非晶硅表面上的自发氧化膜,形成由半导体衬底上具有粗糙表面的多晶硅制成的改进的电容器电极; (b)将非晶硅加热至指定温度; (c)在指定温度下在非晶硅上喷涂SiH4,以在表面上形成非晶硅/多晶硅混合相活性层; (d)在指定温度退火以形成HSG,以粗化非晶硅表面; (e)对形成HSG的多晶硅进行PH3退火,其中在加热开始时以指定浓度引入PH3至指定温度; 和(f)通过连续引入NH 3气体代替PH 3,在所述温度下氮化非晶硅表面。
    • 77. 发明授权
    • Cleaning device for a photosensitive element
    • 感光元件清洁装置
    • US06269236B1
    • 2001-07-31
    • US09479677
    • 2000-01-07
    • Yukihiro MoriShinichi Higo
    • Yukihiro MoriShinichi Higo
    • G03G2100
    • G03G21/0035
    • A cleaning device removes residual toner on the outer surface of a photosensitive element by bringing a brush into contact with the outer surface of the photosensitive element after an electrostatic latent image on the outer surface of the photosensitive element is developed into a toner image by the reversed development method. The electric resistance value between the brush and photosensitive is in the range of 103 to 108 &OHgr;cm, and the density thereof is in the range of 30000 to 100000 bristles/(inch)2. A DC voltage having a polarity opposite from the charging polarity of the toner and being in the range of 100 to 300 V in absolute value is applied to the brush after an AC voltage having a frequency of 100 to 2000 Hz and an interpeak voltage of 400 to 700 V is superimposed thereon. Further, the brush is rotated in a direction opposite from the rotating direction of the photosensitive element in its portion held in contact with the photosensitive element. Accordingly, the cleaning device can suppress the adhesion of the toner to the outer surface of the photosensitive element by fusion and the scraping of the photosensitive element while maintaining a satisfactory cleaning performance.
    • 清洁装置通过在感光元件的外表面上的静电潜像被显影成调色剂图像之后,通过使电刷与感光元件的外表面接触而将感光元件的外表面上的残留调色剂除去 开发方法。 刷子和感光体之间的电阻值在103〜108欧姆·厘米的范围内,其密度在30000〜100000刷毛/(英寸)2的范围内。 具有与调色剂的充电极性相反的极性并且绝对值为100至300V的直流电压在具有100至2000Hz的频率和峰间电压为400的AC电压之后施加到电刷 至700V。 此外,刷子在与感光元件保持接触的部分中沿与感光元件的旋转方向相反的方向旋转。 因此,清洁装置可以通过熔化和感光元件的刮擦来抑制调色剂对感光元件的外表面的粘附,同时保持令人满意的清洁性能。
    • 78. 发明授权
    • Method for forming polycrystal silicon film for semiconductor elements
    • 半导体元件用多晶硅膜形成方法
    • US06211077B1
    • 2001-04-03
    • US09337797
    • 1999-06-22
    • Akira ShimizuYukihiro MoriAtsuki Fukazawa
    • Akira ShimizuYukihiro MoriAtsuki Fukazawa
    • H01L2144
    • H01L28/84H01L27/1085
    • A rough surface made of a doped polycrystal silicon film is formed on an amorphous silicon film disposed on a semiconductor substrate, by a method including the steps of: (a) activating dangling bonds present on a surface of an amorphous silicon film; (b) forming an amorphous silicon-polysilicon mixed-phase layer on the surface of the amorphous silicon film by contacting the dangling bonds with a gas containing silane gas and dopant gas while controlling the ratio of dopant gas to silane gas to bind silicon atoms and dopant atoms to the dangling bonds; and (c) annealing the amorphous silicon-polysilicon mixed-phase layer to form polysilicon grains therefrom, thereby forming a rough surface made of doped polysilicon film. Doping can be conducted after formation of the polysilicon grains.
    • 通过包括以下步骤的方法,在设置在半导体衬底上的非晶硅膜上形成由掺杂多晶硅膜制成的粗糙表面:(a)激活存在于非晶硅膜表面上的悬挂键; (b)通过使悬浮键与含有硅烷气体和掺杂剂气体的气体接触,同时控制掺杂剂气体与硅烷气体的比例以结合硅原子而在非晶硅膜的表面上形成非晶硅 - 多晶硅混合相, 掺杂原子到悬挂键; 和(c)使非晶硅 - 多晶硅混合相层退火以形成多晶硅晶粒,从而形成由掺杂多晶硅膜制成的粗糙表面。 可以在形成多晶硅晶粒之后进行掺杂。