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    • 22. 发明授权
    • Graft copolymer, thermoplastic resin composition and molded product
    • 接枝共聚物,热塑性树脂组合物和成型品
    • US08569415B2
    • 2013-10-29
    • US12668204
    • 2008-07-10
    • Tsuneki WakitaToshihiro KasaiMasaki MaedaYasunobu Kaneko
    • Tsuneki WakitaToshihiro KasaiMasaki MaedaYasunobu Kaneko
    • C08L51/08
    • C08F285/00C08F265/04C08F283/12C08F291/00C08L51/04C08L51/085C08L53/005C23C14/20C08L2666/02
    • There is provided a resin which, in spite of having excellent impact resistance because of containing a rubber ingredient, can be molded into a haze-free and beautiful state across the entire surface of molded products even if the molded products are large-sized injection molded products, and is suitable for molded products on which a vapor deposition layer is formed by the direct vapor deposition method, and is suitable for molded products which are joined by the hot plate welding method, particularly molded products such as housing members of automotive lamps, which require weatherability. Also provided is a graft copolymer (B) obtained by polymerizing a (meth)acrylate monomer (b1) a homopolymer of which has a glass transition temperature exceeding 0° C. in the presence of a composite rubber (A) containing a polyorganosiloxane (A1) and a poly(meth)acrylate (A2), and then polymerizing an aromatic vinyl monomer (b2) and a cyanided vinyl monomer (b3).
    • 提供了一种树脂,尽管由于含有橡胶成分而具有优异的耐冲击性,但是即使成型产品是大型注射成型的,也可以在模制品的整个表面上模制成无雾和美丽的状态 产品,适用于通过直接蒸镀法形成蒸镀层的成型品,适用于通过热板焊接法连接的成型体,特别是模制品,例如汽车灯的外壳部件, 这需要耐候性。 还提供了在含有聚有机硅氧烷(A1)的复合橡胶(A)的存在下聚合(甲基)丙烯酸酯单体(b1)的玻璃化转变温度超过0℃的均聚物而获得的接枝共聚物(B) )和聚(甲基)丙烯酸酯(A2),然后使芳族乙烯基单体(b2)和氰化乙烯基单体(b3)聚合。
    • 25. 发明授权
    • Multi thread processor having dynamic reconfiguration logic circuit
    • 具有动态重构逻辑电路的多线程处理器
    • US07949860B2
    • 2011-05-24
    • US12093884
    • 2006-11-21
    • Masaki MaedaHideshi NishidaYorihiko Wakayama
    • Masaki MaedaHideshi NishidaYorihiko Wakayama
    • G06F7/38G06F15/00
    • G06F15/7867
    • A processor according to the present invention cyclically executes a plurality of threads, for each time period allocated thereto. The processor stores, for each thread, configuration information of operation cells. Each of the threads (i) causes the execution of a different predetermined number of operation cells in series, and successively reconfigures an operation cell that has completed a last operation thereof in the time period allocated to a current thread, based on a stored piece of configuration information of the operation cell that corresponds to a next thread, and (ii) causes concurrent execution of an operation cell having a configuration for the current thread and an operation cell having a configuration for the next thread.
    • 根据本发明的处理器在分配给它的每个时间段周期性地执行多个线程。 处理器为每个线程存储操作单元的配置信息。 每个线程(i)使得执行不同的预定数量的操作单元串联,并且在分配给当前线程的时间段内,基于存储的一段 与下一个线程对应的操作单元的配置信息,以及(ii)使具有当前线程的配置的操作单元和具有下一个线程的配置的操作单元的并发执行。
    • 29. 发明申请
    • Molding Material For Welding
    • 焊接成型材料
    • US20090312495A1
    • 2009-12-17
    • US12158818
    • 2006-12-20
    • Masaki MaedaGou Yamada
    • Masaki MaedaGou Yamada
    • C08L33/02
    • C08F265/06C08L25/12C08L51/04C08L2205/02C08L2205/03F21V15/01C08L2666/02
    • The objective of the present invention is to provide a molding material for welding, which is capable of inhibiting occurrences of a string-shaped burr, a stringing between a heated mold such as a heated plate, and the constituting material of a housing, and the like, and of improving a failure of the appearance when a welding method such as vibration welding and hot plate welding is applied for joining resin parts. The present molding material comprises a rubber-reinforced resin obtained by polymerizing a vinyl-based monomer containing an aromatic vinyl compound and a cyanidated vinyl compound in the presence of an acryl-based rubbery polymer whose toluene gel content is less than 70%, or a mixture consisting of the rubber-reinforced resin and a (co)polymer of a vinyl-based monomer, and has the acryl-based rubbery polymer in an amount from 5 to 40% by mass with respect to the total amount of the molding material.
    • 本发明的目的是提供一种焊接用成型材料,其能够抑制线状毛刺的发生,加热模具(例如加热板)与壳体的构成材料之间的拉丝,以及 并且当应用诸如振动焊接和热板焊接的焊接方法来连接树脂部件时,改善外观的故障。 本发明的成型材料包括通过在甲苯凝胶含量小于70%的丙烯酸类橡胶状聚合物存在下聚合含有芳族乙烯基化合物和氰化乙烯基化合物的乙烯基类单体而得到的橡胶增强树脂,或 混合物由橡胶增强树脂和乙烯基类单体的(共)聚合物组成,相对于成型材料的总量,丙烯酸系橡胶质聚合物的含量为5〜40质量%。
    • 30. 发明授权
    • Reconfigurable integrated circuit, circuit reconfiguration method and circuit reconfiguration apparatus
    • 可重构集成电路,电路重构方法和电路重构装置
    • US07533249B2
    • 2009-05-12
    • US11877244
    • 2007-10-23
    • Masaki Maeda
    • Masaki Maeda
    • G06F7/38G06F9/00G06F9/44
    • G06F15/7867
    • In order to reuse configuration information in a dynamic reconfiguration arithmetic circuit, data lines, address lines, a mask register and the like are required as hardware resources for rewriting only configuration information of dynamic reconfiguration arithmetic cells needed to be changed. However, this results in an increase in area of the arithmetic circuit. According to the present invention, a shift register is the only hardware resource in the dynamic reconfiguration arithmetic block for changing the configuration information. The shift register is structured by connecting in series storage units corresponding one-to-one with each arithmetic cell. An output from the end terminal of the shift register and an output of the configuration information storage unit are input to the configuration information selector, and an output of the configuration information selector is connected to the front of the shift register. The cell address counter counts up from 0 and increments one at a time. Only when the count value is equal to a cell address for configuration change, the configuration information selector selects the configuration information storage unit; otherwise, the configuration information selector reuses configuration information output from the end terminal of the shift register.
    • 为了在动态重配置运算电路中重用配置信息,需要数据线,地址线,掩码寄存器等用作仅重写需要改变的动态重配置运算单元的配置信息的硬件资源。 然而,这导致运算电路的面积增加。 根据本发明,移位寄存器是用于改变配置信息的动态重新配置运算块中唯一的硬件资源。 移位寄存器是通过连接与每个算术单元一一对应的串联存储单元构成的。 来自移位寄存器的结束端子的输出和配置信息存储单元的输出被输入到配置信息选择器,并且配置信息选择器的输出连接到移位寄存器的前面。 单元地址计数器从0计数,并逐次增加一个。 只有当计数值等于用于配置更改的单元地址时,配置信息选择器才选择配置信息存储单元; 否则,配置信息选择器重新使用从移位寄存器的结束端输出的配置信息。