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    • 1. 发明授权
    • Corona discharge means in an image formation apparatus
    • 电晕放电装置在图像形成装置中
    • US4141644A
    • 1979-02-27
    • US793851
    • 1977-05-04
    • Tadashi SatoAkiyoshi TorigaiToshirou KasamuraHidetoshi Tanaka
    • Tadashi SatoAkiyoshi TorigaiToshirou KasamuraHidetoshi Tanaka
    • G03G15/02G03G15/05G03G15/00
    • G03G15/051
    • This specification discloses an invention relating to the relationship between a latent image bearing member such as screen-like photosensitive medium and a corona discharger used to form a latent image on the latent image bearing member. More particularly, the corona discharger is divided into a plurality of dischargers so that when the sum of the length of the corona discharger for the formation of the latent image and the length of the latent image bearing member is greater than the length in the direction of movement of an endless support member supporting the latent image bearing member, the plurality of dischargers may selectively discharge corona in accordance with the rotational position of the latent image bearing member. By this, the latent image bearing member may be prevented from being dually charged and the length of the latent image bearing member may be minimized to contribute to reduction in size of the image formation apparatus.
    • 本说明书公开了与潜像承载部件上形成潜像的潜像承载部件如丝网状光敏介质和电晕放电器的关系的发明。 更具体地,电晕放电器被分成多个放电器,使得当用于形成潜像的电晕放电器的长度和潜像承载部件的长度的总和大于 支撑潜像承载部件的环形支撑部件的运动,多个放电器可以根据潜像承载部件的旋转位置选择性地排出电晕。 由此,可以防止潜像承载部件被双重充电,潜影承载部件的长度可以最小化,从而有助于减小图像形成装置的尺寸。
    • 4. 发明授权
    • Double-side image forming apparatus
    • 双面图像形成装置
    • US4845528A
    • 1989-07-04
    • US135555
    • 1987-12-16
    • Tomohiro AokiKazuo KawakuboKatsushi FuruichiKiyokazu NamekataHidetoshi TanakaYoshikuni TohyamaToshirou KasamuraToshio Honma
    • Tomohiro AokiKazuo KawakuboKatsushi FuruichiKiyokazu NamekataHidetoshi TanakaYoshikuni TohyamaToshirou KasamuraToshio Honma
    • G03G15/23
    • G03G15/234
    • A double-sided image forming apparatus having first and second input devices respectively for entering function data for desired image formation functions and for entering the number of copies to be formed. A memory is provided to store the function data, and a storage compartment is provided to store sheets during duplex copying. An image forming device is arranged to operate in two procedures: a first procedure in which image formation is effected on the sheet's first side in accordance with first function data, and a second procedure in which image formation is effected on the other side in accordance with a second, different, function data. A controller controls the image forming device so that entry of number data and function data is permitted before the first procedure begins, but so that entry of only function data and not number data is permitted after completion of the first procedure. A detecting device is provided to detect the presence of sheets in the storage compartment, and the controller operates until sheets are no longer detected.
    • 一种双面图像形成装置,具有分别用于输入所需图像形成功能的功能数据和输入要形成的份数的第一和第二输入装置。 提供存储器以存储功能数据,并且提供存储隔间以在双面复印期间存储纸张。 图像形成装置被布置成以两个步骤操作:根据第一功能数据在片材的第一面上进行图像形成的第一过程,以及根据第一功能数据在另一侧进行图像形成的第二过程 第二个不同的功能数据。 控制器控制图像形成装置,使得在第一过程开始之前允许数字数据和功能数据的输入,但是在完成第一过程之后仅允许输入功能数据而不允许数字数据。 提供检测装置以检测存储室中的片材的存在,并且控制器操作,直到不再检测到片材。
    • 7. 发明授权
    • Ion modulated image forming apparatus
    • 离子调制图像形成装置
    • US3964827A
    • 1976-06-22
    • US525196
    • 1974-11-19
    • Hidetoshi TanakaToshiro KasamuraTadashi Sato
    • Hidetoshi TanakaToshiro KasamuraTadashi Sato
    • G03G15/05G03G15/044
    • G03G15/051
    • In an image forming apparatus wherein a primary electrostatic latent image is formed on a photosensitive screen having a multitude of tiny openings therein and then an ion flow is modulated by the primary electrostatic latent image to thereby form a secondary electrostatic latent image on a chargeable member, the secondary electrostatic latent image formation occurs with both the screen bearing the primary electrostatic latent image thereon and the chargeable member being moved in the same direction and at the same velocity but with a corona discharge device for forming the secondary electrostatic latent image on the chargeable member being moved in the direction opposite to the direction of movement of the screen and chargeable member.
    • 在其中在其中具有多个微小开口的感光屏上形成初级静电潜像,然后离子流被初级静电潜像调制从而在可充电部件上形成二次静电潜像的图像形成装置中, 二次静电潜像形成发生在其上具有主静电潜像的屏幕上,并且可充电部件以相同的方向和相同的速度移动,但是用于在可充电部件上形成二次静电潜像的电晕放电装置 沿着与屏幕和可充电构件的移动方向相反的方向移动。
    • 9. 发明申请
    • SYNCHRONOUS SEMICONDUCTOR DEVICE, AND INSPECTION SYSTEM AND METHOD FOR THE SAME
    • 同步半导体器件及其检测系统及其方法
    • US20100052727A1
    • 2010-03-04
    • US12614713
    • 2009-11-09
    • Hiroyuki SUGAMOTOHidetoshi TanakaYasushige Ogawa
    • Hiroyuki SUGAMOTOHidetoshi TanakaYasushige Ogawa
    • G01R31/28
    • G11C8/08G01R31/31701G11C29/34
    • The present invention provides a synchronous semiconductor device suitable for improving the efficiency of application of electrical stresses to the device, an inspection system and an inspection method thereof in order to efficiently carry out a burn-in stress test. A command latch circuit having an access command input will output a low-level pulse in synchronism with an external clock. The pulse will pass through a NAND gate of test mode sequence circuit and a common NAND gate to output a low-level internal precharge signal, which will resent a word line activating signal from the control circuit. Simultaneously, an internal precharge signal passing through the NAND gate will be delayed by an internal timer a predetermined period of time to output through the NAND gate a low-level internal active signal, which will set a word line activating signal from the control circuit.
    • 本发明提供一种同步半导体装置,其适用于提高对装置的电应力的效率,检查系统及其检查方法,以便有效地进行老化应力试验。 具有访问命令输入的命令锁存电路将输出与外部时钟同步的低电平脉冲。 脉冲将通过测试模式序列电路的NAND门和公共NAND门,以输出低电平的内部预充电信号,这将使来自控制电路的字线激活信号重新发出。 同时,通过NAND门的内部预充电信号将被内部定时器延迟预定时间段,以通过NAND门输出低电平内部有效信号,该低电平内部有效信号将设置来自控制电路的字线激活信号。
    • 10. 发明授权
    • Synchronous semiconductor device, and inspection system and method for the same
    • 同步半导体器件及其检测系统及方法相同
    • US07663392B2
    • 2010-02-16
    • US12112782
    • 2008-04-30
    • Hiroyuki SugamotoHidetoshi TanakaYasushige Ogawa
    • Hiroyuki SugamotoHidetoshi TanakaYasushige Ogawa
    • G01R31/28G11C7/00
    • G11C8/08G01R31/31701G11C29/34
    • The present invention provides a synchronous semiconductor device suitable for improving the efficiency of application of electrical stresses to the device, an inspection system and an inspection method thereof in order to efficiently carrying out a burn-in stress test. A command latch circuit having an access command input will output a low-level pulse in synchronism with an external clock. The pulse will pass through a NAND gate of test mode sequence circuit and a common NAND gate to output a low-level internal precharge signal, which will reset a word line activating signal from the control circuit. Simultaneously, an internal precharge signal passing through the NAND gate will be delayed by an internal timer a predetermined period of time to output through the NAND gate a low-level internal active signal, which will set a word line activating signal from the control circuit.
    • 本发明提供了一种同步半导体装置,其适用于提高对装置的电应力的效率,检查系统及其检查方法,以便有效地执行老化压力试验。 具有访问命令输入的命令锁存电路将输出与外部时钟同步的低电平脉冲。 脉冲将通过测试模式序列电路的NAND门和公共NAND门,以输出低电平的内部预充电信号,这将使来自控制电路的字线激活信号复位。 同时,通过NAND门的内部预充电信号将被内部定时器延迟预定时间段,以通过NAND门输出低电平内部有效信号,该低电平内部有效信号将设置来自控制电路的字线激活信号。