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    • 1. 发明授权
    • Print job management device, print job management method and recording medium
    • 打印作业管理装置,打印作业管理方法和记录介质
    • US07916329B2
    • 2011-03-29
    • US11654066
    • 2007-01-16
    • Koji IizukaAkio Murata
    • Koji IizukaAkio Murata
    • G06F15/00G06F15/16
    • G06F3/1288G06F3/1204G06F3/121G06F3/1229G06F3/1234G06F3/1255G06F3/1259
    • A print job management device includes: a print job receiver, operable to receive a print job including print setting information on a setting of a printing operation to be executed by a printing device from a print job preparing device for preparing the print job; an acquirer, operable to acquire device status information on a status of the printing device from the printing device; and a print job issuer, operable to determine, based on the print setting information and the device status information, whether the printing operation can be performed by the printing device, the print job issuer issuing the print job to the printing device when the print job issuer determines that the printing operation cannot be performed by the printing device and the device status information indicates a predetermined status regarding a feed path and a printing medium of the printing device.
    • 打印作业管理装置包括:打印作业接收器,用于从用于准备打印作业的打印作业准备装置接收包括打印设备执行的打印操作的设置的打印设置信息的打印作业; 收货方,用于从所述打印装置获取关于所述打印装置的状态的装置状态信息; 以及打印作业发行者,其可操作以基于所述打印设置信息和所述设备状态信息来确定所述打印作业是否可以由所述打印装置执行所述打印操作,所述打印作业发行者在所述打印作业 发行者确定打印装置不能执行打印操作,并且装置状态信息指示关于打印装置的进给路径和打印介质的预定状态。
    • 3. 发明授权
    • Magnetic head
    • 磁头
    • US06538843B1
    • 2003-03-25
    • US09704492
    • 2000-11-02
    • Akio KuroeSayuri MuramatsuHirotsugu FusayasuAkio Murata
    • Akio KuroeSayuri MuramatsuHirotsugu FusayasuAkio Murata
    • G11B5127
    • G11B5/332
    • In a high-frequency impedance type magnetic head having high impedance and capable of efficiently detecting a change in impedance, an electrically conductive metal film is sandwiched between two soft magnetic films, and the two soft magnetic films form a portion of a magnetic path. The thickness of one soft magnetic film is smaller than the thickness of the other soft magnetic film. The electrically conductive metal thin film has a pair of electrodes at respective ends thereof, to which are connected an oscillator for applying a high frequency carrier signal to the electrodes and a high frequency amplifier having a demodulator circuit. Further, an electrically conductive metal film winding is provided, and a DC current is applied to the electrically conductive metal film winding at the time of reproduction, while on the other hand, a signal current is applied to the electrically conductive metal film winding at the time of recording.
    • 在具有高阻抗且能够有效地检测阻抗变化的高频阻抗型磁头中,导电金属膜被夹在两个软磁膜之间,并且两个软磁膜形成磁路的一部分。 一个软磁膜的厚度小于另一软磁膜的厚度。 导电性金属薄膜的各自的端部具有一对电极,连接有用于向电极施加高频载波信号的振荡器和具有解调电路的高频放大器。 此外,提供导电金属膜绕组,并且在再现时将DC电流施加到导电金属膜绕组,而另一方面,信号电流施加到导电金属膜绕组上的导电金属膜绕组 录音时间
    • 5. 发明授权
    • Portable optical reading apparatus having a trigger key for starting reading operation thereof
    • 具有用于开始读取操作的触发键的便携式光学读取装置
    • US06193159B1
    • 2001-02-27
    • US08858880
    • 1997-05-19
    • Maki MiyataAkihiko IuraAkio Murata
    • Maki MiyataAkihiko IuraAkio Murata
    • G06K710
    • G06K7/10851G06K7/10881
    • The invention provides a portable terminal apparatus for use to read information from an object of reading such as a bar code and process the information, which is improved in that a trigger key of an optical reading unit is located so as to be used readily by an operator to assure a high degree of operability. The portable terminal apparatus includes an apparatus body, an inputting section provided on the apparatus body for inputting processing information including data and an operation instruction, and an optical reading unit mounted on the apparatus body for irradiating light upon a reading object and receiving reflected light from the reading object to obtain read information of the reading object. The portable terminal apparatus is additionally provided with a reading function as the optical reading unit is mounted integrally on the apparatus body. A trigger key is allocated on the inputting section of the apparatus body for being manually operated to start a reading operation by the optical reading unit.
    • 本发明提供了一种用于从诸如条形码的读取对象读取信息并处理该信息的便携式终端装置,其被改进为光学读取单元的触发键被定位成易于被 操作员确保高度的可操作性。 便携式终端装置包括装置主体,设置在装置主体上用于输入包括数据和操作指令的处理信息的输入部分,以及安装在装置本体上用于将光照射在读取对象上并接收来自 读取对象获取阅读对象的读取信息。 便携式终端装置另外设置有读取功能,因为光学读取单元一体地安装在设备主体上。 触发键被分配在装置主体的输入部分上,用于手动操作以开始光学读取单元的读取操作。
    • 7. 发明授权
    • Deflection system
    • 偏转系统
    • US5828278A
    • 1998-10-27
    • US704102
    • 1996-08-28
    • Akio Murata
    • Akio Murata
    • H01J29/76H01F5/00
    • H01J29/762H01J2229/7033
    • A deflection system which improves picture distortion and misconvergence by eliminating the wrong winding of coil. in which a bobbin 20 for the deflection coil, whose partial cross section is of a funnel shape, is mounted on the outer peripheral surface of a cathode ray tube between a neck and a funnel for winding a deflection coil 26 thereon. When the deflection coil is wound from a bend onto the inner surface of a bobbin body, a coil layer regulating portion 40 is formed at a claw on the bend side. The coil layer regulating portion is a thick-wall portion formed on the inside of the claw on the bend side. By this thick-wall portion, a horizontal deflection coil 26 is wound on an average with respect to the bottom of respective bends 22 and 24 even when the horizontal deflection coil is wound from the bend 22, 24 onto the inner surface of the bobbin body. As a result, the coil is wound on an average with respect to a coil groove inside the bobbin, so that the wrong winding of coil is eliminated. Thereupon, the effective length of the coil and the coil distribution become symmetrical at the right and left of the bobbin 20, by which picture distortion and misconvergence can be improved.
    • 一种通过消除线圈绕组错误而改善图像失真和失会聚的偏转系统。 其中部分截面为漏斗形状的偏转线圈用线轴20安装在颈部和漏斗之间的阴极射线管的外周面上,用于在其上缠绕偏转线圈26。 当偏转线圈从弯曲部卷绕到筒管体的内表面上时,在弯曲侧的爪部形成有线圈层限制部40。 线圈层限制部是形成在弯曲侧的爪的内侧的厚壁部。 通过该厚壁部分,即使当水平偏转线圈从弯曲部22,24卷绕到线轴主体的内表面上时,水平偏转线圈26也相对于各个弯曲部22和24的底部平均地卷绕 。 结果,线圈相对于线圈架内的线圈槽平均地缠绕,从而消除了线圈的错误绕组。 于是,线圈的有效长度和线圈分布在线轴20的右侧和左侧对称,由此可以改善图像失真和失会聚。
    • 8. 发明授权
    • Magnetic thin film head of a single magnetic pole for perpendicular
recording and reproduction
    • 用于垂直记录和再现的单个磁极的磁性薄膜头
    • US5225953A
    • 1993-07-06
    • US817818
    • 1992-01-08
    • Toshiaki WadaAkio MurataHideki Mine
    • Toshiaki WadaAkio MurataHideki Mine
    • G11B5/127
    • G11B5/1278Y10T29/49067
    • A perpendicular magnetic recording/reproducing thin film head of the single pole type formed of a magnetic member provided on its main surface with a grooved portion, and a non-magnetic material filled in the grooves of the grooved portion, thin film conductor coils, an inter-layer insulation film and a main magnetic pole film, wherein at least the thin film conductor coils, the inter-layer insulation film and the main magnetic pole film are laminated on the magnetic member to form a return path. The magnetic member and the main magnetic pole film are connected at the return path and the thin film head has an exposed laminated end face adapted to be opposed to a recording medium and the magnetic member forming a return path appears on the exposed laminated end face and is formed with a portion having the same width as that of the main magnetic pole film and arranged in parallel with the main magnetic pole film and the remaining portions other than the parallel portion are arranged in non-parallel relationship with the main magnetic pole film.
    • 单极型的垂直磁记录/再现薄膜磁头由在其主表面上设有凹槽部分的磁性部件和填充在凹槽部分的槽中的非磁性材料形成,薄膜导体线圈, 层间绝缘膜和主磁极膜,其中至少薄膜导体线圈,层间绝缘膜和主磁极膜层叠在磁性构件上以形成返回路径。 磁性构件和主磁极膜在返回路径处连接,并且薄膜头具有适于与记录介质相对的暴露的层叠端面,并且形成返回路径的磁性构件出现在暴露的层叠端面上, 形成有与主磁极膜的宽度相同的部分,并且与主磁极膜平行布置,并且平行部分以外的其余部分与主磁极膜非平行地布置。
    • 9. 发明授权
    • Composite magnetic head
    • 复合磁头
    • US4953051A
    • 1990-08-28
    • US247518
    • 1988-09-22
    • Toshiaki WadaMasateru NoseJunichi NakaokaAkio Murata
    • Toshiaki WadaMasateru NoseJunichi NakaokaAkio Murata
    • G11B5/105G11B5/127G11B5/31G11B5/48
    • G11B5/3186G11B5/105G11B5/1278G11B5/3103G11B5/3176G11B5/488
    • A composite magnetic head is disclosed which is characterized by the fact that a magnetic head slider part and magnetic head core pieces both made of non-magnetic ceramic and provided on each of the opposed surfaces thereof with at least one layer of soft magnetic film produced in the form of sheet and subsequently shaped as required are integrally joined through the medium of glass members interposed between the opposed surfaces so as to give rise to a magnetic gap and an electromagnetic transducer coil is wound on the magnetic head core pieces.A composite magnetic head is further disclosed which is characterized by the fact that a magnetic head slider part and magnetic head core pieces, one made of an oxide magnetic material and the other made of a non-magnetic ceramic, are integrally joined through the medium of glass members interposed between pertinent opposed surfaces so as to give rise to a magnetic gap, the member made of the non-magnetic ceramic is provided on the opposed surface thereof with at least one layer of soft magnetic film produced in the form of sheet and subsequently shaped as required, and an electromagnetic transducer coil is wound on the magnetic head core pieces.
    • 公开了一种复合磁头,其特征在于磁头滑块部分和磁头芯片均由非磁性陶瓷制成,并且在其相对的每个表面上设置有至少一层软磁膜, 通过介于相对表面之间的玻璃构件的介质将片材的形状随后成形为一体,从而产生磁隙,并将电磁换能器线圈缠绕在磁头芯片上。 进一步公开了一种复合磁头,其特征在于,磁头滑块部分和磁头芯片,一个由氧化物磁性材料制成,另一个由非磁性陶瓷制成,通过介质 玻璃构件插入在相对的相对表面之间以产生磁隙,由非磁性陶瓷制成的构件在其相对表面上设置有至少一层以薄片形式制造的软磁膜,随后 并且电磁换能器线圈缠绕在磁头芯片上。
    • 10. 发明授权
    • Magnetic sensing element, magnetic sensor, and its manufacturing method
    • 磁传感元件,磁传感器及其制造方法
    • US07183767B2
    • 2007-02-27
    • US10506556
    • 2003-03-24
    • Sayuri MuramatsuKen TakahashiYoshihiro TosakiAkio Murata
    • Sayuri MuramatsuKen TakahashiYoshihiro TosakiAkio Murata
    • G01R33/02G01R33/00
    • G01R33/02
    • A conductive wire held between a first magnetic core of a soft magnetic film and a second magnetic core, the area of the cross-section, perpendicular to a magnetic path, of which is made partially smaller constitutes a magnetic detection device, and a DC current for generating a DC bias magnetic field and a high-frequency carrier signal are let to flow through the conductive wire. The DC current is selected so that the portion at which the cross-sectional area of the above-mentioned second magnetic core is made smaller has an appropriate DC bias magnetic field intensity. When this magnetic detection device is placed in an external magnetic field, the intensity of the DC bias magnetic field changes depending on the intensity of the external magnetic field; hence, the level of the carrier signal in the conductive wire changes. The change of the level of the carrier signal is output as the change of an electrical signal, whereby the intensity and direction of the magnetic field are detected.
    • 保持在软磁性膜的第一磁芯和第二磁芯之间的导线,垂直于磁路的横截面的面积部分较小构成磁检测装置,并且DC电流 用于产生DC偏置磁场和高频载波信号使其流过导线。 选择直流电流使得使上述第二磁芯的横截面积减小的部分具有适当的DC偏置磁场强度。 当该磁检测装置被置于外部磁场中时,直流偏置磁场的强度根据外部磁场的强度而变化; 因此,导线中的载波信号的电平变化。 输出载波信号电平的变化作为电信号的变化,由此检测磁场的强度和方向。