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    • 1. 发明授权
    • High frequency interference prevention filter for electric instruments
    • 用于电器的高频防干扰滤波器
    • US4758805A
    • 1988-07-19
    • US664292
    • 1984-10-24
    • Toworu YamazakiTakashi Sakurai
    • Toworu YamazakiTakashi Sakurai
    • H01P1/203H02H9/00H03H7/01H01P1/20
    • H03H7/0123H02H9/005G01S13/931G01S2007/027G01S2013/9375G01S2013/9385
    • A high frequency filter for an electric instrument including a conductive casing insulated on a stationary structure, an internal electric circuit arranged within the casing, and a connector mounted on the casing for connecting the internal electric circuit to an external electric circuit. The filter comprises an insulation thin plate arranged between the connector and the internal electric circuit and being folded at its intermediate portion, a pair of conductive thin plates secured to opposite surfaces of the insulation thin plate and extending along the folded portion of the insulation thin plate, one of the conductive thin plates being connected at its one end to the connector and at its other end to the internal electric circuit, and the other conductive thin plate being connected to a portion of the casing to provide a short circuit. In such arrangement, the conductive thin plates are opposed to each other through the insulation thin plate to provide a distributed constant circuit.
    • 一种用于电气仪器的高频滤波器,包括在固定结构上绝缘的导电壳体,布置在壳体内的内部电路,以及安装在壳体上用于将内部电路连接到外部电路的连接器。 滤波器包括布置在连接器和内部电路之间并在其中间部分折叠的绝缘薄板,一对固定在绝缘薄板的相对表面上并沿着绝缘薄板的折叠部分延伸的导电薄板 其中一个导电薄板的一端连接到连接器,另一端连接到内部电路,另一个导电薄板连接到壳体的一部分以提供短路。 在这种布置中,导电薄板通过绝缘薄板彼此相对以提供分布常数电路。
    • 5. 发明申请
    • PRECURSOR FILM FOR RETARDATION FILMS, RETARDATION FILM, AND LIQUID CRYSTAL DISPLAY DEVICE
    • 用于延迟膜,延迟膜和液晶显示装置的前置膜
    • US20100149470A1
    • 2010-06-17
    • US12593537
    • 2007-09-25
    • Kyoko HinoToshihiko SuzukiHiroaki TakahataTakashi Sakurai
    • Kyoko HinoToshihiko SuzukiHiroaki TakahataTakashi Sakurai
    • G02F1/13363G02B1/08
    • G02B5/3083C08J5/18C08J2323/14C08J2353/00C09K19/02C09K19/544C09K2219/03Y10T428/1036
    • Provided is a film that is made of a propylene-based copolymer selected from among propylene-based random copolymers and propylene-based block copolymers, the film being useful as a precursor film for the production of a retardation film by stretching. The propylene-based copolymer forming the film contains crystals containing smectic crystals, wherein the percentage of smectic crystals to all the crystals of the propylene-based copolymer. The film has an in-plane retardation of 50 nm or less and a thickness falling within the range of 30 to 200 μm. The propylene-based copolymer is a copolymer that has a parameter (A) falling within the range of from 0.0007 to 0.1, the parameter (A) being calculated from Formula (1) defined for a stress-strain curve produced as a result of stretching a film made of the polymer at a tensile rate of 100 mm/minute at a temperature at which a stress of 0.8±0.1 MPa is produced at a strain of 200%: (A)=(B600−B200)/400  Formula (1) wherein B600 and B200 represent a stress (MPa) at a strain of 600% and a stress (MPa) at a strain of 200%, respectively.
    • 提供一种由丙烯类无规共聚物和丙烯类嵌段共聚物中选出的丙烯系共聚物制成的膜,该膜可用作通过拉伸制造延迟膜的前体膜。 形成该膜的丙烯类共聚物含有含有近晶构成的结晶,其中,近晶构成对丙烯系共聚物的全部结晶的百分比。 该膜的面内相位差为50nm以下,厚度为30〜200μm的范围。 丙烯类共聚物是参数(A)在0.0007〜0.1的范围内的共聚物,由作为拉伸结果生成的应力 - 应变曲线而定义的式(1)计算出的参数(A) 在200%的应变下,在应力为0.8±0.1MPa的温度下以100mm /分钟的拉伸速度由聚合物制成的膜:(A)=(B600-B200)/ 400式(1 ),其中B600和B200分别表示应变为600%的应力(MPa)和应变为200%的应力(MPa)。
    • 7. 发明授权
    • Comparing circuit, comparator, level determining circuit and threshold voltage setting method
    • 比较电路,比较器,电平确定电路和阈值电压设置方法
    • US07183811B2
    • 2007-02-27
    • US11019296
    • 2004-12-23
    • Masakiyo HorieTakashi Sakurai
    • Masakiyo HorieTakashi Sakurai
    • H03K5/22
    • H03K5/086H03K5/249
    • In a comparing circuit, an input signal switching circuit has a first input terminal, a second input terminal, a first output terminal and a second output terminal. The input signal switching circuit is configured to receive a first input signal inputted to the first input terminal and a second input signal inputted to the second input terminal. The input signal switching circuit is also configured to output the first input signal to switchably one of the first and second output terminals and the second input signal to other thereof in accordance with a switching signal. A comparator has a reverse input terminal and a non-reverse input terminal and configured to receive through the reverse input terminal a first signal outputted from the first output terminal, and receive through the non-reverse input terminal a second signal outputted from the second output terminal.
    • 在比较电路中,输入信号切换电路具有第一输入端子,第二输入端子,第一输出端子和第二输出端子。 输入信号切换电路被配置为接收输入到第一输入端的第一输入信号和输入到第二输入端的第二输入信号。 输入信号切换电路还被配置为根据切换信号将第一输入信号切换到第一和第二输出端中的一个,将第二输入信号输出到其它输入信号。 比较器具有反向输入端子和非反向输入端子,并且被配置为通过反向输入端子接收从第一输出端子输出的第一信号,并且通过非反向输入端子接收从第二输出端输出的第二信号 终奌站。
    • 8. 发明授权
    • Electrical power distribution installation for electrical power system
    • 电力系统配电安装
    • US06452769B1
    • 2002-09-17
    • US09391466
    • 1999-09-08
    • Toshio SohdeTakashi Sakurai
    • Toshio SohdeTakashi Sakurai
    • H02H300
    • H02H9/08H02H3/165H02J3/00Y10T307/305Y10T307/544
    • An apparatus and method applicable to an electric power distribution installation, the electrical power distribution installation comprising: at least one main common bus bar; a plurality of main transformers, each main transformer being configured to step down a received power supply voltage and to supply the stepped down power supply voltage to a load via the main common bus bar; and a plurality of power generators, each power generator being connected to the main common bus bar, and the apparatus comprising: a first grounding device including at least one grounding transformer connected to the main common bus bar, a neutral point of the grounding transformer being grounded in a form of a predetermined low impedance grounding; and a second grounding device connected to each neutral point of the power generators to always ground each neutral point directly in a form of a predetermined high resistance grounding.
    • 一种适用于配电装置的装置和方法,所述配电装置包括:至少一个主公共母线; 多个主变压器,每个主变压器被配置为降低接收的电源电压并且经由主公共母线将降压电源电压提供给负载; 以及多个发电机,每个发电机连接到所述主公共母线,所述装置包括:第一接地装置,包括连接到所述主公共母线的至少一个接地变压器,所述接地变压器的中性点为 以预定的低阻抗接地的形式接地; 以及连接到发电机的每个中性点的第二接地装置,以直接以预定的高电阻接地的形式直接接地每个中性点。
    • 10. 发明授权
    • Method for adjusting a threshold value of a vehicle-mounted device
employed in an automatic toll-collecting system
    • 用于调整在自动收费系统中使用的车载装置的阈值的方法
    • US5933097A
    • 1999-08-03
    • US83103
    • 1998-05-22
    • Takashi SakuraiIchiro Yoshida
    • Takashi SakuraiIchiro Yoshida
    • G07B15/00H04B7/26H04W4/04H04W88/02G08B1/00H04B1/40
    • G07B15/063
    • A vehicle-mounted device that enables adjustment by wireless communication from an external portion, of a threshold value employed for detecting strength of a radio wave emitted from a roadside device. A vehicle-mounted device is disposed within an electromagnetic-shield box, and radio waves for activating use are sent from an antenna within the electromagnetic-shield box to the vehicle-mounted device. The vehicle-mounted device, when activated by this radio wave for activating use, sends an activation acknowledgement signal. A computer determines whether the vehicle-mounted device has been activated according to the presence or absence of the activation acknowledgement signal. The computer sends a radio wave from the antenna to the vehicle-mounted device to set a threshold value in correspondence to the presence or absence of this activation, and sets the threshold value of the vehicle-mounted device. These operations are performed repeatedly to adjust the threshold value of the vehicle-mounted device to an appropriate value.
    • 一种能够通过来自外部部分的无线通信进行调节的车载装置,其用于检测从路边设备发射的无线电波的强度。 车载装置设置在电磁屏蔽箱内,用于激活使用的无线电波从电磁屏蔽箱内的天线发送到车载装置。 当该无线电波激活时,车载装置启动使用时,发送激活确认信号。 计算机根据存在或不存在激活确认信号来确定车载装置是否已经被激活。 计算机将无线电波从天线发送到车载装置,以根据该激活的存在或不存在来设置阈值,并设置车载装置的阈值。 重复执行这些操作,以将车载装置的阈值调整为适当的值。