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    • 1. 发明授权
    • Multiprocessor system
    • 多处理器系统
    • US4979096A
    • 1990-12-18
    • US015380
    • 1987-02-17
    • Hirotada UedaKanji KatoHitoshi Matsushima
    • Hirotada UedaKanji KatoHitoshi Matsushima
    • G06F15/173G06F13/16G06F15/80G06T1/00G06T1/20
    • G06F15/8015G06T1/20
    • A multiprocessor system includes processor units connected physically in one-dimensional fashion along a ring bus located at the node of each processor element and associated local memory, so that various system operating modes are possible. The ring bus is used for inter-processor data transfer, with the address and read/write signals to each local memory being supplied from the processor element (by the program). Sychronization between the data flow on the ring bus and the processor operation is made automatic by the innovated method of inter-processor connection, which includes flag latches in the ring bus, whereby the system accomplishes extremely high-speed processing.
    • 多处理器系统包括沿着位于每个处理器元件的节点处的环形总线和相关联的本地存储器以一维方式物理连接的处理器单元,使得各种系统操作模式是可能的。 环形总线用于处理器间数据传输,每个本地存储器的地址和读/写信号由处理器元件(由程序)提供。 环形总线上的数据流与处理器之间的同步通过采用创新的处理器间连接方式自动进行,其中包括环形总线中的标志锁存器,从而系统实现极高速处理。
    • 4. 发明授权
    • Process for cooling water and cooling tower
    • 冷却水和冷却塔的过程
    • US5468426A
    • 1995-11-21
    • US311735
    • 1994-09-23
    • Kanji Kato
    • Kanji Kato
    • F28F27/00F28C1/14F28C1/16F28F25/02F28F25/04B01F3/04
    • F28F25/02F28C1/14F28C2001/145Y10S261/11Y10S261/77
    • Water to be cooled is sprayed through water spray ports at a bottom of an upper water vessel into a filler unit having a plurality of heat exchange surface members extending in parallel with each other to define flow passages between them and concurrently ambient air is sucked transversely into the flow passages. Thus, the water flowing down over the heat exchange surface members is cooled by the ambient air in a cross flow manner. In such cooling of water, some of the flow passages are sectioned so as to supply the water in the upper water vessel to some of flow passages so that in a normal condition with no fear of white smoke being generated, the water is sprayed over all of the heat exchange surface members and direct cooling is effected in every flow passage by the ambient air. In a condition with a possibility of the white smoke being generated, spray of the water into some of the flow passages is interrupted so that the direct cooling by the ambient air of the water in the flow passages into which the water is sprayed is effected simultaneously with dry heating of the ambient air flowing through the flow passages into which no water is sprayed and wet air resulting from the direct cooling is mixed with dry air resulting from the dry heating. As a result, the white smoke is prevented from being generated.
    • 要冷却的水通过上部水槽底部的喷水口喷射到具有彼此平行延伸的多个热交换表面构件的填充单元中,以限定它们之间的流动通道,同时环境空气被横向吸入 流动通道。 因此,流过热交换表面构件的水以交叉流方式被环境空气冷却。 在这种冷却水中,一些流动通道被分段以便将上部水容器中的水供应到一些流动通道,使得在正常状态下,不会产生白烟,水被喷洒在所有 的热交换表面构件,并且通过环境空气在每个流动通道中进行直接冷却。 在产生白烟的可能性的情况下,中断某些流通道中的水的喷雾被中断,使得被水喷射的流动通道中的水的环境空气直接冷却同时进行 通过干燥加热流过其中没有喷水的流动通道的环境空气和由直接冷却产生的湿空气与干燥加热产生的干燥空气混合。 结果,防止产生白烟。
    • 7. 发明授权
    • Associative memory device
    • 关联存储器件
    • US5036486A
    • 1991-07-30
    • US550156
    • 1990-07-09
    • Kouki NoguchiMitsuru AkizawaKanji Kato
    • Kouki NoguchiMitsuru AkizawaKanji Kato
    • G06F15/78G06F17/30G11C15/04
    • G06F17/30982G11C15/04
    • In associative memory device, a search key is stored in the first storage element and a storage key is stored in the second storage elements, respectively via a first data bus. The search key is supplied to the comparator via a second data bus, and the storage key stored in the second storage element is supplied to the comparator. The comparator compares the search key with the storage key. When the storage key is consistent with the search key, the comparator delivers as the associative operation results a comparison consistency output signal to a priority encoder circuit which outputs code information having a limited bit length. This code information is transferred to CPU via a selector circuit. If the comparator delivers a comparison inconsistency output signal, this signal is directly passed to CPU via the priority encoder circuit, so that the contents of the first storage element is rewritten. The first and second storage elements are designated by an address signal and data is read or written via the first data bus, so that they are used as a usual memory device.
    • 在联想存储装置中,搜索关键字被存储在第一存储元件中,并且存储键分别通过第一数据总线存储在第二存储元件中。 搜索键通过第二数据总线提供给比较器,存储在第二存储元件中的存储键提供给比较器。 比较器将搜索键与存储键进行比较。 当存储密钥与搜索关键字一致时,比较器输出,因为相关操作将比较一致性输出信号结果输出到输出具有有限位长度的代码信息的优先编码器电路。 该代码信息通过选择电路传送到CPU。 如果比较器提供比较不一致输出信号,则该信号通过优先编码器电路直接传递给CPU,从而重写第一存储元件的内容。 第一和第二存储元件由地址信号指定,并且经由第一数据总线读取或写入数据,使得它们被用作通常的存储器件。
    • 9. 发明授权
    • Process for cooling water and cooling tower
    • US5505882A
    • 1996-04-09
    • US462890
    • 1995-06-05
    • Kanji Kato
    • Kanji Kato
    • F28F27/00F28C1/14F28C1/16F28F25/02F28F25/04B01F3/04
    • F28F25/02F28C1/14F28C2001/145Y10S261/11Y10S261/77
    • Water to be cooled is sprayed through water spray ports at a bottom of an upper water vessel into a filler unit having a plurality of heat exchange surface members extending in parallel with each other to define flow passages between them and concurrently ambient air is sucked transversely into the flow passages. Thus, the water flowing down over the heat exchange surface members is cooled by the ambient air in a cross flow manner. In such cooling of water, some of the flow passages are sectioned so as to supply the water in the upper water vessel to some of flow passages so that in a normal condition with no fear of white smoke being generated, the water is sprayed over all of the heat exchange surface members and direct cooling is effected in every flow passage by the ambient air. In a condition with a possibility of the white smoke being generated, spray of the water into some of the flow passages is interrupted so that the direct cooling by the ambient air of the water in the flow passages into which the water is sprayed is effected simultaneously with dry heating of the ambient air flowing through the flow passages into which no water is sprayed and wet air resulting from the direct cooling is mixed with dry air resulting from the dry heating. As a result, the white smoke is prevented from being generated.