会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 31. 发明授权
    • Injection vessel and solution-enclosed injection vessel in use thereof
    • 注射容器和溶液密封注射容器在使用中
    • US6004299A
    • 1999-12-21
    • US528094
    • 1995-09-14
    • Kazuhiko AraiTadashi Inoue
    • Kazuhiko AraiTadashi Inoue
    • A61K9/08A61K31/715A61K31/728A61M5/178A61M5/31A61M5/34A61P19/02A61P43/00C08B37/08A61M5/315
    • A61M5/347A61M2005/3104A61M2005/3132A61M2005/3139
    • An injection vessel including a glass cartridge; a rubber stopper (front stopper) and a rubber stopper (end stopper) respectively fitted to a front side and a rear side of the glass cartridge slidably in an axial direction of the glass cartridge in close contact with an inner face of the glass cartridge; a luer lock hub attached to the front end side of the glass cartridge in which a nozzle thereof is protruded outwardly; a finger grip attached to the rear end side of the glass cartridge; a plungerrod for pressing the rubber stopper (end stopper); a nozzle cap covering the nozzle; and wherein a collar consisting of a separate member is protruded equivalently or more than the nozzle or a collar portion with an elevated height attached directly to the luer lock hub is provided at a surrounding of the nozzle of the luer lock hub whereby a front end height of the collar portion is equivalent to or higher than a height of the nozzle.
    • 一种包括玻璃筒的注射容器; 橡胶塞(前止动件)和橡胶塞(止挡件),其分别装配在玻璃盒的前侧和后侧上,该玻璃盒的前侧和后侧可滑动地沿玻璃盒的轴向方向与玻璃盒的内表面紧密接触; 连接到玻璃筒的前端侧的鲁尔锁紧毂,其中喷嘴向外突出; 附接到玻璃盒的后端侧的手指夹; 用于按压橡胶塞(止挡件)的柱塞; 覆盖喷嘴的喷嘴帽; 并且其中由分离的构件组成的套环等同于或大于喷嘴,或者在路厄锁定毂的喷嘴的周围设置具有直接附接到鲁尔锁定毂的高架的凸缘部,由此前端高度 的凸缘部的高度等于或高于喷嘴的高度。
    • 34. 发明授权
    • Image forming apparatus including a pulse width modulator
    • 图像形成装置,包括脉宽调制器
    • US5495278A
    • 1996-02-27
    • US304666
    • 1994-09-09
    • Yasuhiro OdaKazuhiko AraiKazuhiro Iwaoka
    • Yasuhiro OdaKazuhiko AraiKazuhiro Iwaoka
    • H04N1/29H04N1/405H04N1/21
    • H04N1/4056H04N1/29
    • In an image forming apparatus including a pulse-width modulating unit for subjecting an image-density signal to pulse-width modulation and an image-forming unit for forming an image in accordance with a pulse-width modulation signal outputted by the pulse-width modulating unit, an arrangement is provided such that the image is formed with a small number of lines when the image density is a low density, while the image is formed with a large number of lines when the image density is a medium/high density. In an example of the arrangement thereof, the pulse-width modulating unit has a unit for effecting modulation on the basis of a plurality of different modulation periods, and is provided with a selecting unit for selecting a modulation period of a pulse-width modulated wave to be outputted, in accordance with the image-density signal.
    • 在包括用于对图像浓度信号进行脉冲宽度调制的脉冲宽度调制单元和用于形成图像的图像形成单元的图像形成设备中,所述图像形成单元根据由脉冲宽度调制输出的脉冲宽度调制信号 单元,提供了一种布置,使得当图像浓度为低密度时,图像形成有少量的线,而当图像密度为中/高密度时,图像形成有大量的线。 在其布置的示例中,脉冲宽度调制单元具有用于基于多个不同调制周期进行调制的单元,并且设置有选择单元,用于选择脉宽调制波的调制周期 根据图像浓度信号输出。
    • 36. 发明授权
    • Image forming method and apparatus
    • 图像形成方法和装置
    • US5220357A
    • 1993-06-15
    • US933495
    • 1992-08-21
    • Masahiko KuboToshiaki SagaraKazuhiko Arai
    • Masahiko KuboToshiaki SagaraKazuhiko Arai
    • G03G15/01H04N1/29H04N1/405
    • G03G15/01H04N1/29H04N1/4056
    • Disclosed is an image forming apparatus and method for forming a color toner image on a transparent overhead projector film, characterized in that the product of the height of the color toner image construction h and the spatial frequency 1/.lambda. is 0.036 or less. The height of the image construction h can be determined by varying the toner weight per unit area on the transparent film and the spatial frequency 1/.lambda. can be determined by varying the resolution so that h/.lambda. the is 0.036 or less. An image forming apparatus comprises an electrostatic latent image receiving member, an electrostatic latent image forming means for forming an electrostatic latent image corresponding to an image signal having a predetermined number of screen lines on the electrostatic latent image receiving member, a transfer medium detecting means for detecting the transfer medium, and a pulse width modulation means for modulating the pulse width of the image signal based on the detection result from the transfer medium detecting means.
    • 公开了一种用于在透明高架投影仪膜上形成彩色调色剂图像的图像形成装置和方法,其特征在于,彩色调色剂图像构造h的高度和空间频率1 /λ的乘积为0.036或更小。 图像构造h的高度可以通过改变透明膜上的每单位面积的调色剂重量来确定,并且空间频率可以通过改变分辨率来确定1 /λ,使得h /λa为0.036或更小。 图像形成装置包括静电潜像接收部件,静电潜像形成装置,用于形成与静电潜像接收部件上具有预定数量的屏幕线的图像信号对应的静电潜像;转印介质检测装置, 检测转印介质,以及脉冲宽度调制装置,用于根据来自转印介质检测装置的检测结果调制图像信号的脉冲宽度。
    • 39. 发明申请
    • SEALED TYPE ROTARY COMPRESSOR
    • 密封式旋转式压缩机
    • US20100215525A1
    • 2010-08-26
    • US12688144
    • 2010-01-15
    • Hirotsugu OgasawaraTakahiro NishikawaYoshihisa KogureKazuhiko AraiHiroyuki Yoshida
    • Hirotsugu OgasawaraTakahiro NishikawaYoshihisa KogureKazuhiko AraiHiroyuki Yoshida
    • F04B17/03F04C29/02
    • F04C23/001F04C18/3564F04C23/008F04C29/026
    • An object of the present invention is to promote oil separation in a sealed container, thereby decreasing the amount of oil discharged to the outside of a compressor. The compressor comprises discharge hole provided at position facing the end surface of a rotor and through which a compressed refrigerant from first and second rotary compression elements is discharged into the sealed container; and a refrigerant flow path which is extended from a space surrounded with a coil end of a stator projecting from the end surface of the rotor to a rotary compression mechanism side to a space of an air gap between the rotor and the stator, to guide the compressed refrigerant discharged through the discharge hole to an electromotive element opposite to the rotary compression mechanism side. The outlet of this refrigerant flow path opposite to the rotary compression mechanism side faces the inner wall surface of the sealed container, and the volume of a space between the inner wall surface of the sealed container and the electromotive element is 1.5 times or more and 15 times or less that of a space between the rotary compression element and the electromotive element.
    • 本发明的目的是促进密封容器中的油分离,从而减少排出到压缩机外部的油量。 压缩机包括设置在面向转子端面的位置处的排出孔,来自第一和第二旋转压缩元件的压缩制冷剂通过该排出孔排出到密封容器中; 以及从从转子的端面突出的定子的螺旋端围绕的空间向旋转压缩机构侧延伸到转子和定子之间的空气间隙的制冷剂流路,以引导 通过排出孔排出的压缩制冷剂与旋转压缩机构侧相反的电动元件。 与旋转压缩机构侧相反的制冷剂流路的出口面向密封容器的内壁面,密封容器的内壁面与电动元件之间的空间的体积为1.5倍以上,15 以下的旋转压缩元件与电动元件之间的间隔。