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    • 31. 发明授权
    • Data processing device and data processing system
    • 数据处理装置和数据处理系统
    • US08077065B2
    • 2011-12-13
    • US12730978
    • 2010-03-24
    • Yoshimi IsoKakeru KimuraTadashi MatsushimaYuji Shimizu
    • Yoshimi IsoKakeru KimuraTadashi MatsushimaYuji Shimizu
    • H03M1/00
    • H03M1/1009H03M1/1028H03M1/12H03M1/183
    • In AD conversion of a voltage under measurement, data continuity is ensured between the result of conversion after amplification by using an amplifier circuit and the result of direct conversion without using the amplifier circuit. In AD conversion operation using a DA converter circuit, an amplifier circuit, and an AD converter circuit under the direction of a control circuit, an analog signal output from the DA converter circuit is directly converted by the AD converter circuit, and also the analog signal is converted therein after amplified by the amplifier circuit with an expected gain of 2n (“n” represents a positive integer). Based on resultant data thus obtained, a gain of the amplifier circuit and an offset thereof are calculated. An analog signal under measurement to be enhanced in bit precision is subjected to amplification by the amplifier circuit and conversion by the AD converter circuit, the offset calculated as mentioned above is subtracted from the result of the conversion, and the result of the subtraction thus performed is multiplied by a ratio of the expected gain to the gain calculated as mentioned above so as to cancel a gain error. Then, based on data with the gain error canceled, acquisition of bit-extended conversion result data is performed to ensure continuity between data having different degrees of bit precision.
    • 在测量电压的AD转换中,通过使用放大器电路在放大后的转换结果与不使用放大器电路的直接转换结果之间确保数据连续性。 在AD转换电路的AD转换动作,放大电路和AD转换电路的控制电路的指导下,从DA转换电路输出的模拟信号由AD转换电路直接转换,模拟信号 在放大器电路放大后以预期的增益为2n转换(“n”表示正整数)。 基于这样获得的结果数据,计算放大器电路的增益及其偏移。 通过放大电路进行放大电路的放大和AD转换电路的转换,将由比特精度提高的模拟信号进行放大,从转换结果中减去如上所述计算出的偏移量,进行相减的结果 乘以预期增益与如上所述计算的增益的比率,以消除增益误差。 然后,基于取消增益误差的数据,执行比特扩展转换结果数据的采集,以确保具有不同位精度的数据之间的连续性。
    • 32. 发明申请
    • Blow molding device
    • 吹塑装置
    • US20100092600A1
    • 2010-04-15
    • US12585801
    • 2009-09-24
    • Soji HamajiYasuaki NakamuraYuji Shimizu
    • Soji HamajiYasuaki NakamuraYuji Shimizu
    • B29C49/00
    • B29C49/20B29C49/04B29C2049/2008B29C2049/2013B29C2049/2073B29L2031/7172
    • A blow molding device capable of securely holding a built-in part in a prescribed position in an interior of a blow molded article with a compact equipment. The blow molding device includes a blow mold and a built-in part holding unit. The built-in part holding unit includes a holding rod adapted to hold the built-in part and arranged to freely advance and retreat to be removed from the blow mold. The blow mold includes a slide core in each of two mold members so as to freely advance and retreat relative to a cavity of the blow mold, and a drive control pin in each of mating faces of split two mold members, and the drive control pin and the slide core are linked with a linking member. The slide core is driven with the drive control pin such that when the blow mold is closed, the slide core retreats from an interior of the cavity to a molding surface defining the same at the same speed as the closing speed of the blow mold.
    • 一种吹塑装置,其能够使用紧凑的设备将内置部件牢固地保持在吹塑成型制品的内部的规定位置。 吹塑装置包括吹塑模具和内置部件保持单元。 内置部件保持单元包括固定杆,该保持杆适于保持内置部件并被布置成自由前进和后退以从吹塑模具中移出。 吹塑模具包括两个模具构件中的每一个中的滑动芯,以相对于吹塑模具的空腔自由前进和后退;以及分开的两个模具构件的每个配合面中的驱动控制销,驱动控制销 并且滑动芯与连接构件连接。 滑动芯由驱动控制销驱动,使得当吹塑模具关闭时,滑动芯从空腔的内部退回到以与吹塑模具的关闭速度相同的速度限定其的模制表面。
    • 34. 发明申请
    • Apparatus for Producing Trichlorosilane
    • 三氯硅烷生产设备
    • US20090202404A1
    • 2009-08-13
    • US12226202
    • 2007-10-23
    • Toshiyuki IshiiHideo ItoYuji Shimizu
    • Toshiyuki IshiiHideo ItoYuji Shimizu
    • B01J19/24
    • C01B33/1071B01J12/007B01J19/02B01J19/243B01J2219/00135B01J2219/00155B01J2219/0272
    • An apparatus for producing trichlorosilane, including: a reaction vessel in which a supply gas containing silicon tetrachloride and hydrogen is supplied to produce a reaction product gas containing trichlorosilane and hydrogen chloride; a heating mechanism that heats the interior of the reaction vessel; a gas supply section that supplies the supply gas in the reaction vessel; and a gas discharge section that discharges the reaction product gas from the reaction vessel to the outside, wherein a reaction passageway is formed in the interior of the reaction vessel, in which a plurality of small spaces partitioned by a plurality of reaction tubular walls that have different inner diameters and are substantially concentrically disposed communicate by flow penetration sections formed alternately in lower portions and upper portions of the reaction tubular walls in order from the inside, and the gas supply section and the gas discharge section are connected to the reaction passageway.
    • 一种三氯硅烷的制造装置,包括:供给含有四氯化硅和氢气的供给气体的反应容器,生成含有三氯硅烷和氯化氢的反应生成气体; 加热反应容器内部的加热机构; 气体供给部,其供给反应容器内的供给气体; 以及气体排出部,其将反应产物气体从反应容器排出到外部,其中反应通道形成在反应容器的内部,其中多个由多个反应管壁分隔的小空间,其具有 不同的内径并且基本上同心设置,由内部依次形成在反应管壁的下部和上部交替形成的流动穿透部分,气体供应部分和气体排出部分连接到反应通道。