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    • 52. 发明授权
    • Bolt-equipped connector
    • 螺栓连接器
    • US5639257A
    • 1997-06-17
    • US588885
    • 1996-01-19
    • Shinji YamaguchiKatsuji ShimazawaHiroshi Takeda
    • Shinji YamaguchiKatsuji ShimazawaHiroshi Takeda
    • H01R13/621H01R13/627
    • H01R13/6215
    • The invention provides a bolt-equipped connector in which the bolt will be mounted when the connector is mated with a counter connector. Engaging protrusions (25a, 26a) of a bolt holder (20) are engaged with engaging portions (15b, 16b), whereby the bolt holder (20) is fitted to a holder mounting hole (13) of a housing (11) of a male connector (10). In this state, the bolt (40) is pushed into the bolt holder (20) at the time of mating with a female connector. Engaging pieces (44b, 44c) of a stop ring (44) additionally provided to the bolt (40) are engaged with a step portion (22b) of the bolt holder (20), so that the bolt (40) is rotatably held to the housing (11) via the bolt holder (20). Then, a male screw portion (41) of the bolt (40) is screwed in a screw hole of the female connector, whereby the connectors are mated with each other.
    • 本发明提供了一种螺栓配备的连接器,其中当连接器与对接连接器配合时,螺栓将被安装。 螺栓保持器(20)的接合突起(25a,26a)与接合部分(15b,16b)接合,由此螺栓保持器(20)装配到壳体(11)的保持器安装孔(13) 公连接器(10)。 在该状态下,在与母连接器配合时,将螺栓(40)推入螺栓保持架(20)。 额外提供给螺栓(40)的止动环(44)的接合件(44b,44c)与螺栓保持器(20)的台阶部分(22b)接合,使得螺栓(40)可旋转地保持 所述壳体(11)经由所述螺栓保持器(20)。 然后,将螺栓(40)的外螺纹部(41)拧入阴连接器的螺纹孔中,由此连接器相互配合。
    • 53. 发明授权
    • Display control device
    • 显示控制装置
    • US5606338A
    • 1997-02-25
    • US309411
    • 1994-09-20
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • Hiroshi TakedaShigeaki YoshidaKoyo Katsura
    • G09G5/18G09G5/12G09G1/08
    • G09G5/12
    • A CRT (cathode ray tube) controller for controlling one CRT device in an interlace mode has a synchronizing circuit of bi-directional construction, in order to make possible synchronous operation of the CRT controller with other circuits (other CRT controllers or a TV system). When the CRTC is used as a master circuit of a CRT display system, a synchronizing signal is derived from the synchronizing circuit in synchronization with a count signal of a vertical scanning counter and an output of an interlace controller of the CRTC, and is supplied to a synchronizing terminal of the other CRTCs. Scanning counters and a flip-flop for controlling an interlace operation of the other CRTCs are reset to their initial state in synchronization with the synchronizing signal. When the CRTC is used as a slave circuit, scanning counters and a flip-flop of the CRTC are reset to their initial state in synchronization with the external synchronizing signal.
    • 用于以隔行模式控制一个CRT器件的CRT(阴极射线管)控制器具有双向结构的同步电路,以便使CRT控制器与其他电路(其它CRT控制器或TV系统)可以同步操作, 。 当CRTC用作CRT显示系统的主电路时,与垂直扫描计数器的计数信号和CRTC的隔行控制器的输出同步地从同步电路导出同步信号,并将其提供给 其他CRTC的同步终端。 用于控制其他CRTC的隔行扫描的扫描计数器和触发器与同步信号同步地被复位到其初始状态。 当CRTC用作从电路时,与外部同步信号同步,将扫描计数器和CRTC的触发器复位到初始状态。
    • 54. 发明授权
    • Internal circulation type centrifugal extractor
    • 内循环型离心萃取器
    • US5254075A
    • 1993-10-19
    • US801667
    • 1991-12-02
    • Shin-ichi NemotoRyo ShimizuHiroshi TakedaTomio Kawata
    • Shin-ichi NemotoRyo ShimizuHiroshi TakedaTomio Kawata
    • B01D11/04G21C19/46B04B1/00
    • B01D11/0461
    • A centrifugal extractor for making liquid-liquid extraction by bringing an organic phase and an aqueous phase into mutual contact and utilizing centrifugal force. A rotor rotating at a high speed is disposed inside a cylindrical casing having inlets for both phases. Draw ports for both phases are disposed at an upper portion of the rotor. An organic phase/aqueous phase mixture mixed at the bottom of the casing enters the rotor from the bottom of the rotor, and is subjected to phase separation by centrifugal force. The separated phases are withdrawn from respective draw ports. Part of the organic phase discharged from the organic phase draw port is refluxed to the bottom of the casing by a reflux cover fitted to the upper part of the rotor. The flow rate of the organic phase thus refluxed is added to the flow rate of the organic phase introduced from outside into the casing. Therefore, the flow rate ratio can be brought close to 1 inside the extractor, even if the flow rate of the aqueous phase is greater than that of the organic phase.
    • 一种用于通过使有机相和水相相互接触并利用离心力进行液 - 液萃取的离心萃取器。 高速旋转的转子设置在具有两相入口的圆筒形壳体的内部。 两相的牵引端口设置在转子的上部。 混合在壳体底部的有机相/水相混合物从转子的底部进入转子,通过离心力进行相分离。 分离的相从相应的抽出口排出。 从有机相抽出口排出的有机相的一部分通过装配在转子上部的回流罩回流到壳体的底部。 将由此回流的有机相的流量与从外部引入壳体的有机相的流量相加。 因此,即使水相的流量大于有机相的流量比,流量比可以在萃取器内部接近1。
    • 58. 发明授权
    • Display controller
    • 显示控制器
    • US4757310A
    • 1988-07-12
    • US626992
    • 1984-07-02
    • Koyo KatsuraHideo MaejimaHiroshi Takeda
    • Koyo KatsuraHideo MaejimaHiroshi Takeda
    • G06F3/153G06F3/14G09G1/02G09G5/14G09G5/32G09G5/36G09G5/377G09G5/39G09G5/395G09G5/397G09G1/16
    • G09G5/36G09G5/363G09G5/39G09G5/397
    • In an image displaying field where there is a tendency which will increase the data to be handled in accordance with the high integration of a display device, a CRT controller according to the present invention improves the superposed display and the responsiveness of the display and drawing operations by dividing a unit clock into a predetermined number to function with high speed and a multifunction display. When image data are to be inputted to or outputted from a refresh memory corresponding to a display frame, the memory content and the display address are assigned at a ratio of 1:n to effect the processings in parallel. As a result, the time period utilized by the display cycle of the prior art can be assigned to the drawing operation so that the processing can be speeded up while making it easier than the prior art to effect the superposed display of letters, symbols and drawings. The resultant effect is that it is unnecessary to increase the number of refresh memories corresponding to the displayed frame and that the external parts can be simplified to contribute to the improvement in the reliability.
    • 在根据显示装置的高集成度存在将增加要处理的数据的趋势的图像显示领域中,根据本发明的CRT控制器改进了叠加显示和显示和绘图操作的响应性 通过将单位时钟分割成预定数量以高速功能和多功能显示。 当图像数据要被输入到与显示帧相对应的刷新存储器中时,以1:n的比例分配存储器内容和显示地址以并行地进行处理。 结果,可以将现有技术的显示循环所使用的时间段分配给绘制操作,使得可以加速处理,同时使现有技术更容易实现字母,符号和图纸的叠加显示 。 所产生的效果是不需要增加对应于所显示的帧的刷新存储器的数量,并且可以简化外部部件以有助于提高可靠性。
    • 59. 发明授权
    • Electronic device, display, image processing apparatus and electronic calculating apparatus
    • 电子装置,显示器,图像处理装置和电子计算装置
    • US08711133B2
    • 2014-04-29
    • US13045114
    • 2011-03-10
    • Akira ImaiTaisuke OmiYoshiaki NishizakiKazuo KoikeKenichi YamadaTasuku KoharaTsuyoshi EndohHiroshi TakedaHiroki Tsuruoka
    • Akira ImaiTaisuke OmiYoshiaki NishizakiKazuo KoikeKenichi YamadaTasuku KoharaTsuyoshi EndohHiroshi TakedaHiroki Tsuruoka
    • G06F3/038G09G5/00
    • H04N1/00408H04N1/00411H04N1/00413H04N1/00474H04N2201/0094
    • Provided are a control panel or a display as well as an image processing apparatus and an electronic calculating apparatus using the electronic device or the display, the electronic device and the display each using a light transmissive solar cell for electric power generation so as to allow a solar cell part and a display part to be disposed to overlap an input part so that a larger electric power than the conventional cases can be generated without increasing the size of the whole operation panel and the whole display. An electronic device of the present invention includes: a display part capable of electrically and magnetically changing a display region and displaying of a display content displayed in the display region; a solar cell part that transmits light in a visible light region; and an input part that detects whether or not any part of the display region is manipulated, and that transmits light in a visible light region. The solar cell part and the input part are disposed on a display surface side of the display part in such a manner to form layers. An electric power generated by the solar cell part allows the electronic device to change what is displayed in the display part and detect a manipulation of the input part.
    • 提供了一种控制面板或显示器以及使用电子设备或显示器的图像处理设备和电子计算设备,电子设备和显示器,每个使用用于发电的透光太阳能电池,以允许 太阳能电池部分和显示部分被设置成与输入部分重叠,使得可以产生比常规情况更大的电力,而不增加整个操作面板和整个显示器的尺寸。 本发明的电子设备包括:显示部,能够电气地,磁地改变显示区域,显示显示在显示区域中的显示内容; 在可见光区域透过光的太阳能电池部分; 以及输入部,其检测所述显示区域的任何部分是否被操纵,并且在可见光区域中透射光。 太阳能电池部分和输入部分以形成层的方式设置在显示部分的显示表面侧上。 由太阳能电池部分产生的电力允许电子设备改变在显示部分中显示的内容并检测输入部分的操纵。
    • 60. 发明授权
    • Method of manufacturing a magnetic disk
    • 制造磁盘的方法
    • US08567044B2
    • 2013-10-29
    • US13223060
    • 2011-08-31
    • Hiroshi TakedaKen-ichi NishimoriTomotaka YokoyamaTadashi Tomonaga
    • Hiroshi TakedaKen-ichi NishimoriTomotaka YokoyamaTadashi Tomonaga
    • G11B5/127H04R31/00
    • G11B5/82B82Y10/00G11B5/743G11B5/8404G11B5/855
    • A defect inspection is performed for each of glass substrates by a surface defect detector. The distance from the center of the glass substrate to a detected defect, as a radius of a nonmagnetic region to be formed circular, is recorded along with an ID assigned to the glass substrate. Such defect information is recorded in a defect list using a printer or recorded in an RFID tag using an RFID writer. The defect list or the RFID tag is attached to a glass-substrate case. Each glass substrate and its defect information are in one-to-one correspondence and are provided to a customer as a magnetic disk manufacturer. Based on the obtained defect information, the customer manufactures magnetic disks each being a discrete track recording medium having the nonmagnetic region formed at the position where the defect is present.
    • 通过表面缺陷检测器对玻璃基板进行缺陷检查。 将从玻璃基板的中心到检测到的缺陷的距离作为形成圆形的非磁性区域的半径与分配给玻璃基板的ID一起被记录。 使用打印机将这样的缺陷信息记录在缺陷列表中,或者使用RFID写入器记录在RFID标签中。 缺陷列表或RFID标签附着在玻璃基板外壳上。 每个玻璃基板及其缺陷信息是一一对应的,并作为磁盘制造商提供给客户。 基于获得的缺陷信息,客户制造磁盘,每个磁盘都是具有在存在缺陷的位置处形成的非磁性区域的离散轨道记录介质。