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    • 1. 发明申请
    • FAULT-TOLERANT COMPUTER SYSTEM
    • 容错计算机系统
    • WO1998015899A1
    • 1998-04-16
    • PCT/JP1996002908
    • 1996-10-07
    • HITACHI, LTD.MATSUDA, KojiMIYAZAKI, YoshihiroTAKAYA, Soichi
    • HITACHI, LTD.
    • G06F15/16
    • G06F11/16
    • A clock-synchronized fault-tolerant computer system comprising a plurality of processors, a plurality of main memory devices, a plurality of I/O devices, buses connecting them, a separation/coupling unit for separating/coupling at least one processor, at least one main memory device and at least one I/O device as one computer system, an instruction unit for giving a separation/coupling instruction to the separation/coupling unit, and a status memory for storing at least two states, that is, the same operation and an independent operation. At least one processor, at least one memory device and at least one I/O device are combined to form one independent computer system, in which a software replacement is executed. This computer system is then operated in synchronism with other computer systems, thus permitting software to be replaced without stopping the system.
    • 一种时钟同步的容错计算机系统,包括多个处理器,多个主存储器装置,多个I / O装置,连接它们的总线,用于分离/耦合至少一个处理器的分离/耦合单元,至少 一个主存储器装置和至少一个作为一个计算机系统的I / O装置,用于向分离/耦合单元提供分离/耦合指令的指令单元以及用于存储至少两个状态的状态存储器,即相同 操作和独立操作。 至少一个处理器,至少一个存储器设备和至少一个I / O设备被组合以形成其中执行软件替换的一个独立的计算机系统。 然后,该计算机系统与其他计算机系统同步操作,从而允许在不停止系统的情况下更换软件。
    • 6. 发明专利
    • WATER QUALITY IMPROVING MASS AND PRODUCTION OF WATER QUALITY IMPROVING MASS
    • JPH11319815A
    • 1999-11-24
    • JP13871498
    • 1998-05-20
    • MIYAZAKI YOSHIHIROARAKI TOSHIYOSHI
    • MIYAZAKI YOSHIHIRO
    • C02F3/10C02F1/28
    • PROBLEM TO BE SOLVED: To provide fired and crushed shells which are effectual in purification for a long period without being flushed away by water flow or sea flow by mixing the fired and crushed shells 1 which are formed by pulverizing and firing the shells with a concrete body and solidifying the mixture. SOLUTION: The fired and crushed shells 1 which are fired are mixed at a prescribed ratio with cement, sand, water, etc., by a concrete mixer or mixing machine and the mixture is poured into a form. When the cement solidifies, the water quality improving mass 2 is formed. The setting retarder of the concrete is applied on the inside wall of the form before pouring. The setting rate of the concrete 4 varies from the inside and front surface of the water quality improving mass 2 and the front surface does not solidify and the solidification is retarded, although the inside of the water quality improving mass 2 is already solidified. When the surface of such water quality improving mass 2 is flushed away, only the concrete-component of the surface of the water quality improving mass 2 is removed. As a result, the fired and crushed shells 1 are more exposed on the front surface of the water quality improving mass 2. Consequently, a water quality improving effect is improved.