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    • 83. 发明授权
    • Information processing device, card device and information processing system
    • 信息处理设备,卡设备和信息处理系统
    • US07086087B1
    • 2006-08-01
    • US09599005
    • 2000-06-22
    • Masahiro KaminagaTakashi EndoMasaru OhkiTakashi TsukamotoHiroshi WataseChiaki TerauchiKunihiko NakadaNobutaka NagasakiSatoshi TairaYuuichirou NariyoshiYasuko Fukuzawa
    • Masahiro KaminagaTakashi EndoMasaru OhkiTakashi TsukamotoHiroshi WataseChiaki TerauchiKunihiko NakadaNobutaka NagasakiSatoshi TairaYuuichirou NariyoshiYasuko Fukuzawa
    • H04L9/00H04N7/167
    • G07F7/1008G06K19/063G06Q20/341G07F7/082
    • It is a technological object of the present invention to provide an information processing device, a card and a card system that have a high level of security. In order to achieve the object described above, the present invention provides a data processing apparatus comprising at least a first information processing device and a second information processing device connected to the first information processing device by a signal line, the data processing apparatus having a means for changing power consumption on the signal line during transmission of a signal through the signal line in accordance with an actual state of the power consumption that would be observed when the means were not used. Furthermore, the present invention also provides another data processing apparatus comprising at least a first information processing device and a second information processing device connected to the first information processing device by a signal line wherein, between at least either the first information processing device or the second information processing device and the signal line, a signal from the first information processing device or the second information processing device can be encrypted and a signal received from the signal line can be decrypted. In addition, the present invention also provides a further data processing apparatus comprising at least an information processing device, an information memory device and a signal line connected at least to the information processing device wherein at least in an operation to store information into the information memory device, the information is encrypted, and information stored in the information memory device can be decrypted.
    • 本发明的技术目的在于提供具有高安全性的信息处理装置,卡片和卡片系统。 为了实现上述目的,本发明提供了一种数据处理装置,包括至少第一信息处理装置和通过信号线连接到第一信息处理装置的第二信息处理装置,该数据处理装置具有装置 用于根据当不使用装置时将观察到的功耗的实际状态,在通过信号线的信号传输期间改变信号线上的功率消耗。 此外,本发明还提供了另一种数据处理装置,其至少包括通过信号线连接到第一信息处理装置的第一信息处理装置和第二信息处理装置,其中,在至少第一信息处理装置或第二信息处理装置 信息处理装置和信号线,可以加密来自第一信息处理装置或第二信息处理装置的信号,并且可以解密从信号线接收的信号。 另外,本发明还提供了一种数据处理装置,至少包括信息处理装置,信息存储装置和至少连接到信息处理装置的信号线,其中至少在将信息存储到信息存储器中的操作中 信息被加密,并且存储在信息存储装置中的信息可被解密。
    • 86. 发明授权
    • Piezoelectric device
    • US06531807B2
    • 2003-03-11
    • US10124486
    • 2002-04-18
    • Masako TanakaTakashi Endo
    • Masako TanakaTakashi Endo
    • H01L41053
    • H03H9/1021H01L2924/0002H03H9/0542H01L2924/00
    • A package has a first region and a second region on one principal plane, and has a base including a ceramic board where wiring patterns to connect a quartz crystal resonator element and an IC chip for its driving are formed. In the base, a first sidewall enclosing the first region is arranged on the top side of the board, and the quartz crystal resonator element is mounted in a first void space delimited in its internal, and the IC chip is mounted in a second void space delimited by a second sidewall enclosing the second region. The first sidewall is formed to be higher than the second sidewall, a metal cover is seam welded at the upper end thereof, and the first void space is sealed in a vacuum or nitrogen atmosphere. The IC chip of the second region is resin sealed. In addition to the miniaturization, thinning and high-accuracy frequency adjustment, the present invention reduces or eliminates the stray capacity caused by the adsorption of gas that is generated from electronic components and wiring, package/wiring structure, and the like to reduce or prevent the reduction of variable amount of frequency and displays a high frequency stability and aging characteristics. It is particularly suited to a high-frequency oscillator with a large variable amount of frequency.
    • 88. 发明授权
    • Error correcting Coriolis flowmeter
    • 科里奥利流量计误差校正
    • US5796012A
    • 1998-08-18
    • US788119
    • 1997-01-23
    • Shingo GomiHirokazu KitamiTakashi EndoKenichi MatsuokaKimihiro IchinoseOsamu FutagawaSeiji KobayashiKazuhide Kobayashi
    • Shingo GomiHirokazu KitamiTakashi EndoKenichi MatsuokaKimihiro IchinoseOsamu FutagawaSeiji KobayashiKazuhide Kobayashi
    • G01F1/84
    • G01F1/8413G01F1/8418G01F1/8436G01F1/849
    • A resonantly drivable straight tube type Coriolis flowmeter which is capable of correcting instrumental errors caused by a change in density and temperature of measurable fluid. A coaxial double tube body that is composed of an inner tube wherein fluid to be measured flows and an outer tube with a balance weight attached thereto for equalizing natural frequencies of the inner and outer tubes is driven at a resonant frequency having a constant amplitude. A change of fluid density causes a change of amplitude ratio of the inner tube and the outer tube, resulting in shifting of an instrumental error. At this time, a resonant frequency detecting circuit detects a resonant frequency without detecting the amplitude ratio. An instrumental error detecting circuit stores a relation between resonant frequencies and fluid densities and a relation between fluid densities and instrument errors and conducts correction of an instrumental error according to the detected resonant frequency. An instrumental error caused by thermal deformation of the inner tube and the outer tube which are different from each other in material and shape can be also corrected by using similar correcting means.
    • 可共振驱动的直管式科里奥利流量计,其能够校正由可测量流体的密度和温度变化引起的仪器误差。 一个同轴双管体,由其中待测量的流体流过的内管和连接有平衡重的外管组成,用于使内管和外管的固有频率均衡,以恒定振幅的共振频率被驱动。 流体密度的变化导致内管和外管的振幅比的变化,导致仪器误差的偏移。 此时,谐振频率检测电路在不检测振幅比的情况下检测谐振频率。 仪器误差检测电路存储共振频率和流体密度之间的关系以及流体密度与仪器误差之间的关系,并根据检测到的共振频率进行仪器误差的校正。 也可以通过使用类似的校正装置来校正由内管和外管在材料和形状上彼此不同的热变形引起的仪器误差。
    • 89. 发明授权
    • Drainage pump with a wall member connecting the outer edges of the
radial blades
    • 排水泵具有连接径向叶片的外边缘的壁构件
    • US5788457A
    • 1998-08-04
    • US786299
    • 1997-01-22
    • Masayuki ImaiTakashi EndoTatsushi Ninomiya
    • Masayuki ImaiTakashi EndoTatsushi Ninomiya
    • F04D29/22F04D29/66F04D29/28
    • F04D29/2277F04D29/669
    • A pump body 10 of a drainage pump 1A comprises a pump chamber 12, inlet 15, and outlet 17. A rotary vane 300 mounted in the pump body 10 is coupled to a motor mounted above the pump body 10, and comprises a shaft 310 and four large-radial blades 320. Formed below the large-radial blades 320 are small-radial blades 350 to make a liquid at the inlet rise. Lower edges of the large-radial blades 320 are connected together by a disk 350 having an opening at the center and interceptively dividing the surface of the liquid rising from the inlet. Thus the amount of the liquid in contact with the large-radial blades 320 above the disk 350 decreases, and the load to the rotary vane decreases. At the same time, bubbles, noise and vibrations caused by bubbles also decrease. By surrounding the outer circumference of the large-radial blades 320 with a ring member, return water W5 moving back from the outlet 17 when the pump stops is damped by the wall member 360 and returns smoothly to the inlet 15.
    • 排水泵1A的泵体10包括泵室12,入口15和出口17.安装在泵体10中的旋转叶片300联接到安装在泵体10上方的电动机,并且包括轴310和 四个大径向叶片320.在大径向叶片320的下方形成有小径向叶片350,以使入口处的液体升高。 大径叶片320的下边缘通过具有在中心处具有开口的盘350连接在一起,并且截断地分离从入口上升的液体的表面。 因此,与盘350上方的大径向叶片320接触的液体的量减少,并且对旋转叶片的负载减小。 同时,由气泡引起的气泡,噪音和振动也减少。 通过用环形构件围绕大径叶片320的外圆周,当泵停止时从出口17向后移动的返回水W5被壁构件360阻尼并平稳地返回到入口15。
    • 90. 发明授权
    • Drainage pump with interposed disk
    • 排水泵带插盘
    • US5628618A
    • 1997-05-13
    • US446074
    • 1995-05-19
    • Masayuki ImaiTakashi EndoTatsushi Ninomiya
    • Masayuki ImaiTakashi EndoTatsushi Ninomiya
    • F04D29/22F04D29/66F04D29/28
    • F04D29/2277F04D29/669
    • A pump body 10 of a drainage pump 1A comprises a pump chamber 12, inlet 15, and outlet 17. A rotary vane 300 mounted in the pump body 10 is coupled to a motor mounted above the pump body 10, and comprises a shaft 310 and four large-radial blades 320. Formed below the large-radial blades 320 are small-radial blades 350 to make a liquid at the inlet rise. Lower edges of the large-radial blades 320 are connected together by a disk 350 having an opening at the center and interceptively dividing the surface of the liquid rising from the inlet. Thus the amount of the liquid in contact with the large-radial blades 320 above the disk 350 decreases, and the load to the rotary vane decreases. At the same time, bubbles, noise and vibrations caused by bubbles also decrease. By surrounding the outer circumference of the large-radial blades 320 with a ring member, return water W5 moving back from the outlet 17 when the pump stops is damped by the wall member 360 and returns smoothly to the inlet 15.
    • 排水泵1A的泵体10包括泵室12,入口15和出口17.安装在泵体10中的旋转叶片300联接到安装在泵体10上方的电动机,并且包括轴310和 四个大径向叶片320.在大径向叶片320的下方形成有小径向叶片350,以使入口处的液体升高。 大径叶片320的下边缘通过具有在中心处具有开口的盘350连接在一起,并且截断地分离从入口上升的液体的表面。 因此,与盘350上方的大径向叶片320接触的液体的量减少,并且对旋转叶片的负载减小。 同时,由气泡引起的气泡,噪音和振动也减少。 通过用环形构件围绕大径叶片320的外圆周,当泵停止时从出口17向后移动的返回水W5被壁构件360阻尼并平稳地返回到入口15。