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    • 83. 发明授权
    • Multiprocessor system and its operational method
    • 多处理器系统及其操作方法
    • US07904665B2
    • 2011-03-08
    • US11657045
    • 2007-01-24
    • Yoshiaki Watanabe
    • Yoshiaki Watanabe
    • G06F12/00
    • G06F12/0828
    • The multiprocessor system includes multiple cells having identical functions, and each of the multiple cells has a processor, a cache memory, and a main memory. The multiple cells include the first cell as a request cell, the second cell as a home cell, and the third cell as an owner cell. The latest version of the target data stored in the main memory of the second cell is stored in the cache memory of the third cell. When the first cell issues a read request for the target data to the second cell, the second cell issues a snoop request to the third cell in response to the read request. The third cell directly transmits the target data to the first cell in response to the snoop request. Also, the third cell issues the reply write back to the second cell in response to the snoop request. The first cell issues a request write back to the same address as that of the target data in the second cell. The second cell discards the reply write back when the reply write back from the third cell is received later than the request write back from the first cell.
    • 多处理器系统包括具有相同功能的多个单元,并且多个单元中的每一个具有处理器,高速缓冲存储器和主存储器。 多个小区包括作为请求小区的第一小区,作为家庭小区的第二小区,以及作为所有者小区的第三小区。 存储在第二单元的主存储器中的最新版本的目标数据被存储在第三单元的高速缓冲存储器中。 当第一小区向第二小区发出对目标数据的读请求时,第二小区响应于读请求向第三小区发出窥探请求。 响应于窥探请求,第三小区直接将目标数据发送到第一小区。 而且,响应于窥探请求,第三单元将回复发回到第二单元。 第一个单元将请求写回与第二个单元格中的目标数据相同的地址。 当从第三个单元写入回复的第二个单元接收晚于从第一个单元写入的请求时,第二个单元丢弃该回复。
    • 85. 发明授权
    • Image-printing system using peer-to-peer network
    • 使用点对点网络的图像打印系统
    • US07617279B2
    • 2009-11-10
    • US10373703
    • 2003-02-27
    • Nobuyoshi NakajimaYoshiaki WatanabeYasuhiko Nagaoka
    • Nobuyoshi NakajimaYoshiaki WatanabeYasuhiko Nagaoka
    • G06F15/16
    • G06F21/608H04N1/00132H04N1/00145H04N2201/3276
    • An entertainment is provided in which a limited number of persons can share images through a peer-to-peer network, and a device is provided for allowing anyone to easily get a print having a desired finish quality at the nearest lab store with no uploading procedure. A peer-to-peer server enters a closed user group (CUG) and issues a password necessary for login to the CUG. It is possible to share an image between client terminals having the same password through peer-to-peer connection. It is possible to directly transmit the shared image to an order-accepting server of the nearest lab store through peer-to-peer connection and print the image. Moreover, when a user designates an image-processing condition on a client terminal, the information on the condition is sent to and managed by a client-managing server. The lab that receives a print order extracts the favorite information of the client concerned from the client-managing server and provides a print having the desired finish quality.
    • 提供了一种娱乐,其中有限数量的人可以通过对等网络共享图像,并且提供了一种设备,用于允许任何人在最近的实验室存储处容易地获得具有期望完成质量的打印,而无需上传过程 。 对等服务器进入一个封闭的用户组(CUG),并发出登录CUG所需的密码。 可以通过对等连接在具有相同密码的客户终端之间共享图像。 可以通过点对点连接将共享图像直接发送到最近实验室存储的订单接受服务器并打印图像。 此外,当用户在客户终端上指定图像处理条件时,将该条件的信息发送给客户管理服务器并由其管理。 接收打印命令的实验室从客户管理服务器中提取有关客户的喜好信息,并提供具有所需完成质量的打印。
    • 89. 发明申请
    • Thermoacoustic Device
    • 热声装置
    • US20080060364A1
    • 2008-03-13
    • US11662253
    • 2005-04-22
    • Yoshiaki WatanabeShinichi Sakamoto
    • Yoshiaki WatanabeShinichi Sakamoto
    • F25B9/00
    • F25B9/145F02G2243/52F02G2243/54F25B2309/1402F25B2309/1403F25B2309/1404F25B2309/1405F25B2309/1416
    • A thermoacoustic device 1 is provided which has in a loop tube 2, a first stack 3a provided between a first high-temperature side heat exchanger 4 and a first low-temperature side heat exchanger 5, and a second stack 3b provided between a second high-temperature side heat exchanger 6 and a second low-temperature side heat exchanger 7, so that heat at the first stack side is prevented from being transported to the second stack side even when a large acoustic wave is generated in the tube. In the above device, self-excited standing and traveling waves are generated by heating the first high-temperature side heat exchanger 4, and by the standing and traveling waves, the second low-temperature side heat exchanger 7 is cooled. As a heat transportation suppression means 80 which suppresses heat transportation from the first stack 3a to the second stack 3b side, a piezoelectric film 81, an acoustic wave generator 82, or a Helmholtz resonator 83 is provided to suppress an acoustic streaming and/or a direct-current type flow, such as convection, of a working fluid.
    • 提供一种热声装置1,其在环管2中,设置在第一高温侧热交换器4和第一低温侧热交换器5之间的第一堆叠3a和设置在第一高温侧热交换器4之间的第二堆叠3b 第二高温侧热交换器6和第二低温侧热交换器7,从而即使在管内产生大的声波也能够防止第一堆叠侧的热被输送到第二堆叠侧。 在上述装置中,通过加热第一高温侧热交换器4产生自激站立和行波,并且通过立起和行波,第二低温侧热交换器7被冷却。 作为抑制从第一堆叠体3a向第二堆叠体3b侧的热传递的传热抑制机构80,设置压电膜81,声波发生器82或亥姆霍兹共振器83,以抑制声流和/ 或工作流体的直流型流(例如对流)。
    • 90. 发明申请
    • Thermoacoustic apparatus and thermoacoustic system
    • 热声设备和热声系统
    • US20070193281A1
    • 2007-08-23
    • US10594278
    • 2005-03-23
    • Yoshiaki WatanabeShinichi Sakamoto
    • Yoshiaki WatanabeShinichi Sakamoto
    • F25B9/00
    • F25B9/14F25B2309/003F25B2309/1403F25B2309/1404F25B2309/1405F25B2309/1415F25B2309/1416Y10T137/0391
    • In a thermoacoustic apparatus including a loop tube, a standing wave and a traveling wave are generated rapidly and, thereby, heat exchange is performed rapidly and efficiently. The thermoacoustic apparatus includes a first stack 3a sandwiched between a first high-temperature-side heat exchanger 4 and a first low-temperature-side heat exchanger 5 and a second stack 3b sandwiched between a second high-temperature-side heat exchanger 6 and a second low-temperature-side heat exchanger 7 in the inside of a loop tube 2. An acoustic wave is generated through self excitation by heating the first high-temperature-side heat exchanger 4, and the second low-temperature-side heat exchanger 7 is cooled by a standing wave and a traveling wave. The loop tube is configured to include a plurality of linear tube portions 2a along the vertical direction and connection tube portions 2b shorter than the linear tube portions 2a, and the first stack 3a is disposed in the longest linear tube portion 2a.
    • 在包括环管的热声装置中,快速地产生驻波和行波,从而快速有效地进行热交换。 热声装置包括夹在第一高温侧热交换器4和第一低温侧热交换器5之间的第一叠层3和夹在第二高温侧热交换器6之间的第二叠层3b 和环管2的内部的第二低温侧热交换器7。 通过加热第一高温侧热交换器4,通过自激发生声波,第二低温侧热交换器7被驻波和行波冷却。 环管被配置为沿着垂直方向包括多个线性管部分2a和比直线管部分2a短的连接管部分2b,并且第一堆叠体3a设置在最长的直管部分2a中 。