Apparatus for removing static electricity from charged articles existing
in clean space
    2.
    发明授权
    Apparatus for removing static electricity from charged articles existing in clean space 失效
    从清洁空间中收取的物品中移除静电电位的装置

    公开(公告)号:US5057966A

    公开(公告)日:1991-10-15

    申请号:US427686

    申请日:1989-10-13

    IPC分类号: H01T23/00 H02M9/06 H05F3/04

    CPC分类号: H01T23/00 H05F3/04

    摘要: An apparatus for removing static electricity from charged articles existing in a clean space, particularly in a clean room for the production of semiconductor articles, includes a AC ionizer having a plurality of needle-like emitters disposed in a flow of clean air. A discharge end of each emitter is coated with a dielectric ceramic material. Opposite conductors are also included which are respectively positioned apart from the discharge end of each emitter by a predetermined distance. Each opposite conductor is grounded. Emitters of some of the discharge pairs are connected to a high voltage AC source having added thereto negative voltage bias to thereby form pseudo negative pole emitters, and emitters of the other discharge pairs are connected to a high voltage AC source having added thereto a more positive voltage bias relative to the negative voltage bias to thereby form pseudo positive pole emitters.

    Sheet finishing apparatus
    6.
    发明授权
    Sheet finishing apparatus 失效
    片材整理设备

    公开(公告)号:US6109605A

    公开(公告)日:2000-08-29

    申请号:US40584

    申请日:1998-03-18

    IPC分类号: B65H29/40 B65H29/06

    摘要: In an sheet finishing apparatus for receiving a sheet on which an image has been formed by an image forming apparatus, and for ejecting the sheet after a front side thereof is reversed, the sheet finishing apparatus includes: a sheet conveyor for conveying the sheet fed from the image forming apparatus downstream; a sheet reversing device for receiving the sheet conveyed by the sheet conveyor, and for reversing the front side of the sheet by rotation; a sheet holder provided on a peripheral portion of the sheet reversing device for holding a leading edge portion of the sheet conveyed by the sheet conveyor, the sheet holder capable of being opened or closed; a sheet stopper for blocking the leading edge portion of the sheet to be stopped at a position where the front side of the sheet is reversed by a rotation of the sheet reversing device; and a sheet stacking member for stacking the sheet separated from the sheet reversing device by a further rotation of the reversing device after the leading edge of the sheet is blocked by the sheet stopper.

    摘要翻译: 在用于接收由图像形成装置形成图像的片材的片材整理装置中,并且用于在其前侧反转之后弹出片材,该片材整理装置包括:片材输送机,用于输送从 图像形成装置下游; 用于接收由纸张输送机输送的纸张并且用于通过旋转来反转纸张的前侧的纸张反转装置; 片材保持器,其设置在片材反转装置的周边部分上,用于保持由片材输送机输送的片材的前缘部分,该片材保持器能够被打开或关闭; 片材止动件,用于通过片材反转装置的旋转来阻止待停止的片材的前缘部分在片材的正面反转的位置; 以及片材堆叠部件,用于在片材的前缘被片止动件阻挡之后,通过反转装置的进一步旋转来堆叠从片材反转装置分离的片材。

    Conductive sheet and method for fabricating the same
    7.
    发明授权
    Conductive sheet and method for fabricating the same 有权
    导电片及其制造方法

    公开(公告)号:US09591751B2

    公开(公告)日:2017-03-07

    申请号:US14354339

    申请日:2012-09-27

    申请人: Takanori Yoshida

    发明人: Takanori Yoshida

    摘要: In a conductive sheet using a metal nanofiber, metal migration in a visible conductive pattern is eliminated. Also, the intervals of the conductive portion (separate sheet terminal) are shortened. On a substrate (26) is a conductive sheet (10), formed from a transparent conductive pattern (11) and a visible conductive pattern (16). The transparent conductive pattern comprises a first nanofiber layer (12) that is a layer including a metal nanofiber, and a first heat-insulating layer (29) adjacent to the first nanofiber layer. The visible conductive pattern (16) forms an underlayer pattern from a second nanofiber layer (17) that is a layer including a metal nanofiber, and a second heat-insulating layer (27) adjacent to the second nanofiber layer; and a top-layer pattern comprising a paste layer (18) that is a layer including a metal paste laminated on the underlayer pattern. The second heat-insulating layer (27) is a conductive sheet that is a layer including a metal nanofiber cut to a minimum size. The visible conductive pattern (16) forms a water-shielding layer (21) on the underlayer pattern, and forms the top-layer pattern on the water-shielding layer.

    摘要翻译: 在使用金属纳米纤维的导电片中,消除了可见导电图案中的金属迁移。 此外,导电部分(分开的片端子)的间隔缩短。 在基板(26)上是由透明导电图案(11)和可见导电图案(16)形成的导电片(10)。 透明导电图案包括作为包括金属纳米纤维的层的第一纳米纤维层(12)和与第一纳米纤维层相邻的第一绝热层(29)。 可见导电图案(16)从作为包括金属纳米纤维的层的第二纳米纤维层(17)和与第二纳米纤维层相邻的第二绝热层(27)形成底层图案; 以及包括作为层叠在下层图案上的包含金属糊的层的糊层(18)的顶层图案。 第二绝热层(27)是导电片,其是包含切割成最小尺寸的金属纳米纤维的层。 可见导电图案(16)在底层图案上形成水屏蔽层(21),并在水屏蔽层上形成顶层图案。

    Sheet processing apparatus
    8.
    发明授权
    Sheet processing apparatus 有权
    纸张处理设备

    公开(公告)号:US06283354B1

    公开(公告)日:2001-09-04

    申请号:US09211130

    申请日:1998-12-14

    IPC分类号: B42B112

    摘要: A sheet processing apparatus has a function of stapling sheets together, wherein the sheets are fed from an image forming apparatus one by one after images are formed on the sheets. The sheet processing apparatus includes a stapler to staple the sheets together, a sheet guide which guides the sheets along a sheet transporting path from the image forming apparatus to a position at which the sheets are stapled by the stapler, and a reference surface against which edges of the sheets are butted to stop movement of the sheets. The sheets are guided along the sheet transporting path by the sheet guide and the edges of the sheets are butted against the reference surface at a same position relative to a sheet conveying direction, irrespective of whether the sheet processing apparatus is in a stapling mode in which the stapler staples the sheets or a non-stapling mode in which the stapler does not staple the sheets, and irrespective of sizes of the sheets.

    摘要翻译: 片材处理装置具有将片材装订在一起的功能,其中在片材上形成图像之后,片材从图像形成装置逐一馈送。 片材处理装置包括用于将片材装订在一起的订书机,沿着片材传送路径将片材从成像设备引导到由订书机装订片材的位置的片材引导件, 的片材被对接以停止片材的移动。 片材通过片材引导件沿着片材传送路径被引导,并且片材的边缘相对于片材传送方向在相同位置处对着基准表面,而不管片材处理装置是否处于装订模式,其中 订书机装订纸张或非装订模式,其中订书机不装订纸张,并且与片材的尺寸无关。

    Sheet finishing apparatus
    9.
    发明授权
    Sheet finishing apparatus 失效
    片材整理设备

    公开(公告)号:US5984299A

    公开(公告)日:1999-11-16

    申请号:US32395

    申请日:1998-02-27

    摘要: A sheet finishing apparatus for finishing a sheet, on which an image has been formed, conveyed from an image forming apparatus, the sheet finishing apparatus includes: a sheet ejecting member for ejecting the sheet after finishing; and an exit tray for receiving the sheet ejected by the sheet ejecting member after finishing is conducted. The exit tray includes a movable exit tray member on which the sheet is stacked, and a stationary exit tray member for supporting the movable exit tray member. The movable exit tray member has a sheet stacking surface on which the sheet is stacked, and a stopper portion provided adjacent to the sheet ejecting member to bring an edge of the sheet into contact with the stopper portion. The movable exit tray member is pivotally supported around a supporting shaft provided on a leading edge portion of the stationary exit tray member. An edge portion of the movable exit tray member, which is adjacent to the sheet ejecting means, can be moved upward or downward according to the number of sheets stacked on the movable exit tray.

    摘要翻译: 一种用于整理其上形成图像的片材从成像设备输送的片材整理设备,该片材整理设备包括:片材排出构件,用于在整理之后弹出片材; 并且进行用于在精加工之后接收由片材排出构件排出的片材的出纸托盘。 出纸盘包括可堆放有片材的可移动出纸托盘构件,以及用于支撑可动出口托盘构件的固定出纸盘构件。 可移动出口托盘构件具有堆叠片材的片材堆叠表面,以及与片材排出构件相邻设置的止挡部分,以使片材的边缘与止动部分接触。 可移动出口托盘构件围绕设置在固定出口托盘构件的前缘部分上的支撑轴枢转地支撑。 可移动出口托盘构件的与片材排出装置相邻的边缘部分可以根据堆叠在可移动出口托盘上的片材的数量向上或向下移动。

    Apparatus for removing static electricity from charged articles existing
in clean space
    10.
    发明授权
    Apparatus for removing static electricity from charged articles existing in clean space 失效
    用于清洁存在于洁净空间的带电物品的静电的设备

    公开(公告)号:US5047892A

    公开(公告)日:1991-09-10

    申请号:US427682

    申请日:1989-10-13

    IPC分类号: H01T23/00 H05F3/04

    CPC分类号: H01T23/00 H05F3/04

    摘要: An apparatus for removing static electricity from charged articles existing in a clean space, particularly in a clean room for the production of semiconductor devices, includes an AC ionizer having a plurality of needle-like emitters disposed in a flow of clean air. A discharge end of each emitter is coated with a dielectric ceramic material. Opposite conductors are also included which are respectively positiond apart from each emitter by a predetermined distance. A DC voltage (or voltages) is applied to the opposite conductors. By adjusting the DC voltage (or voltages), the positive and negative ion concentration generated by each emitter is controlled. Further, a bias voltage may be added to the DC to increase the ion concentration.