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    • 3. 发明授权
    • Scroll fluid machine, scroll member and processing method thereof
    • 滚动流体机,滚动件及其加工方法
    • US5554017A
    • 1996-09-10
    • US368712
    • 1995-01-03
    • Hirokatsu KohsokabeHiroshi IwataKazuhiro EndohYasuhiro Oshima
    • Hirokatsu KohsokabeHiroshi IwataKazuhiro EndohYasuhiro Oshima
    • F01C1/02F01C1/04
    • F01C1/0246Y10T29/49236
    • A scroll fluid machine in which, even if volute bodies on the orbiting side and on the fixed side are different in material from each other, the volute bodies can be brought to their respective strengths equal to each other, dimension can be miniaturized or reduced, and internal leakage is reduced so that an attempt can be made to improve performance. In the scroll fluid machine, a curve of either one of an orbiting outward curve and a orbiting inward curve of a volute body on the orbiting side is formed by an algebraic spiral expressed by the following equation in the form of polar coordinates r=a.multidot..theta..sup.k (here, r: radius vector, .theta.: angle of deviation, a: coefficient, k: exponent). This curve and any one of a fixed outward curve and a fixed inward curve of the volute body on the fixed side are arranged with a phase difference of about 180 degrees. Thicknesses of respective volute walls on the orbiting side and on the fixed side are adequately or suitably changed.
    • 一种涡旋流体机械,其中,即使旋转侧和固定侧的涡卷体在材料上彼此不同,也可使蜗壳体的各自的强度彼此相等,尺寸可以小型化或减小, 并且内部泄漏减少,从而可以尝试提高性能。 在涡旋流体机器中,绕轨道侧的涡卷体的轨道向外曲线和轨道内弯曲中的任一个曲线由以下等式表示的代数螺旋形成,该曲线以极坐标r = k(这里,r:半径向量,θ:偏差角,a:系数,k:指数)。 该曲线和固定侧的蜗壳体的固定向外曲线和固定向内曲线中的任一个布置有大约180度的相位差。 旋转侧和固定侧的蜗壳壁的厚度充分或适当地改变。
    • 4. 发明授权
    • Scroll fluid machine, scroll member and processing method thereof
    • 滚动流体机,滚动件及其加工方法
    • US5427512A
    • 1995-06-27
    • US992051
    • 1992-12-17
    • Hirokatsu KohsokabeHiroshi IwataKazuhiro EndohYasuhiro Oshima
    • Hirokatsu KohsokabeHiroshi IwataKazuhiro EndohYasuhiro Oshima
    • F01C1/02F01C1/04
    • F01C1/0246Y10T29/49236
    • A scroll fluid machine in which, even if volute bodies on the orbiting side and on the fixed side are different in material from each other, the volute bodies can be brought to their respective strengths equal to each other, dimension can be miniaturized or reduced, and internal leakage is reduced so that an attempt can be made to improve performance. In the scroll fluid machine, a curve of either one of a orbiting outward curve and a orbiting inward curve of a volute body on the orbiting side is formed by an algebraic spiral expressed by the following equation in the form of polar coordinates r=a.multidot..theta..sup.k (here, r: radius vector, .theta.: angle of deviation, a: coefficient, k: exponent). This curve and any one of a fixed outward curve and a fixed inward curve of the volute body on the fixed side are arranged with a phase difference of about 180 degrees. Thicknesses of respective volute walls on the orbiting side and on the fixed side are adequately or suitably changed.
    • 一种涡旋流体机械,其中,即使旋转侧和固定侧的涡卷体在材料上彼此不同,也可使蜗壳体的各自的强度彼此相等,尺寸可以小型化或减小, 并且内部泄漏减少,从而可以尝试提高性能。 在涡旋流体机器中,绕轨道侧的涡卷体的轨道向外曲线和轨道向内曲线中的任一个曲线由以下方程表示的代数螺旋形成,其以极坐标r =轴θ k(这里,r:半径向量,θ:偏差角,a:系数,k:指数)。 该曲线和固定侧的蜗壳体的固定向外曲线和固定向内曲线中的任一个布置有大约180度的相位差。 旋转侧和固定侧的蜗壳壁的厚度充分或适当地改变。
    • 6. 发明申请
    • Printing System And Printer
    • 打印系统和打印机
    • US20120194864A1
    • 2012-08-02
    • US13360869
    • 2012-01-30
    • Yasuhiro OshimaHirotaka AkamatsuYasuhiro Furuta
    • Yasuhiro OshimaHirotaka AkamatsuYasuhiro Furuta
    • G06K15/02
    • G06F3/1236G06F3/1204G06F3/1224G06F3/1231G06F3/1247G06F3/1272G06F3/1287G06F3/1288G06F3/1292G06F3/1294G06K15/005H04L41/0806H04L43/0817H04L51/08H04L67/02H04L67/025
    • A printing server includes a registration request reception unit, a registration unit which allocates connection information for connection with the transmission origin of the registration request and an electronic mail address for receiving a printing request to the transmission origin of the registration request, a registration information transmission unit which transmits the registration information which has been allocated, a connection unit which receives the connection information and starts connection, a printing data generation unit which generates printing data, a printing waiting information transmission unit which transmits printing waiting information to the transmission origin of the XMPP connection request using XMPP when the printing data is generated, and a printing data transmission unit which receives an acquisition request for the printing data and transmits the printing data to the transmission origin of the acquisition request for the printing data according to the acquisition request for the printing data.
    • 打印服务器包括注册请求接收单元,注册单元,其分配用于与注册请求的发送来源连接的连接信息和用于接收对注册请求的发送来源的打印请求的电子邮件地址,注册信息传输 发送已经分配的注册信息的单元,接收连接信息并开始连接的连接单元,生成打印数据的打印数据生成单元,将打印等待信息发送到传送原稿的打印等待信息发送单元 在生成打印数据时使用XMPP的XMPP连接请求以及接收对打印数据的获取请求的打印数据发送单元,并且将打印数据发送到根据打印数据的获取请求的发送原点 e获取打印数据的请求。
    • 8. 发明申请
    • PRINTING APPARATUS AND PRINTING METHOD
    • 印刷装置和印刷方法
    • US20090303516A1
    • 2009-12-10
    • US12484912
    • 2009-06-15
    • Noriyuki SaiYasuhiro OshimaYoshihisa MotominamiTomohiro Takahashi
    • Noriyuki SaiYasuhiro OshimaYoshihisa MotominamiTomohiro Takahashi
    • G06F15/00
    • G03G15/50H04N1/40
    • The printing apparatus of the present invention comprises a scanner unit for reading an image in an original; an instruction unit for receiving an instruction from a user and instructing operation of reading the image with the scanner unit; and a printer unit for printing the image that has been read on a medium. In the printing apparatus of the present invention, each reading operations with the scanner unit is started by receiving an instruction from the user with the instruction unit when the reading operation is to be performed with the scanner unit for a plurality of number of times and a plurality of the images that have been read are to be printed in their respective predetermined positions on the medium. The printing apparatus makes it possible to perform N-up printing of a new procedure that is different from conventional N-up printing.
    • 本发明的打印装置包括用于读取原稿中的图像的扫描器单元; 指令单元,用于从用户接收指令并指示使用扫描器单元读取图像的操作; 以及用于打印已经在介质上读取的图像的打印机单元。 在本发明的打印装置中,当扫描器单元执行读取操作多次时,通过使用指令单元接收来自用户的指令来启动与扫描器单元的每个读取操作,以及 已经读取的多个图像将被打印在介质上各自的预定位置。 打印设备使得可以执行与常规N-up打印不同的新程序的N-up打印。
    • 9. 发明授权
    • Printing device, printing method, and program product therefor
    • 印刷装置,印刷方法和程序产品
    • US07354124B2
    • 2008-04-08
    • US10964823
    • 2004-10-15
    • Yasuhiro OshimaGoro Ishida
    • Yasuhiro OshimaGoro Ishida
    • B41J29/38B41B27/02
    • B41J29/393
    • Diverse initiator modules, member modules, and terminator modules are provided to actualize various functionalities of a printer in various combinations of these modules. A data processing path controller DPC arranges a sequence of plural modules to execute a selected printing process. Each module is not informed of the structures of the other modules in combination or the details of the processing executed by the other modules. Each module that allows a relevant module to read data therefrom and each module that allows a relevant module to write data therein are designed to respectively have a specific function for the data reading and a specific function for the data writing. In response to a call from the data processing path controller DPC, these modules transfer pointers of the corresponding functions to the individual relevant modules and accordingly allow the individual relevant modules to read data therefrom and write data therein.This arrangement of the invention ensures consistency of an additional functionality, which is to be newly incorporated in the printer, with multiple existing functionalities.
    • 提供了不同的启动器模块,成员模块和终端模块,以实现这些模块的各种组合的打印机的各种功能。 数据处理路径控制器DPC布置多个模块的序列以执行所选择的打印处理。 每个模块不被组合的其他模块的结构或由其他模块执行的处理的细节通知。 允许相关模块从其中读取数据的每个模块和允许相关模块在其中写入数据的每个模块被设计为分别具有用于数据读取的特定功能和用于数据写入的特定功能。 响应于来自数据处理路径控制器DPC的呼叫,这些模块将相应功能的指针传送到各个相关模块,并且因此允许各个相关模块从中读取数据并在其中写入数据。 本发明的这种布置确保将新结合在打印机中的附加功能与多个现有功能的一致性。