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    • 51. 发明授权
    • Storage apparatus
    • 储存装置
    • US07914366B2
    • 2011-03-29
    • US11437693
    • 2006-05-22
    • Kenichi MiyamotoYasuji Morishita
    • Kenichi MiyamotoYasuji Morishita
    • H05K5/00H05K7/20
    • G11B33/142H05K7/20736
    • Provided is a cooling method for realizing efficient cooling of a storage apparatus with an airflow separation structure. This storage apparatus has a plurality of cooling areas formed in the cabinet; an external air introduction/discharge device for directing external air to the respective cooling areas, and thereafter discharging the external air from a discharge area of the cabinet outside the cabinet; and an external air guidance area for guiding the external air that passed through each of the cooling areas to the discharge area; wherein the external air guidance area is configured so that the external air that passed through one cooling area will not get mixed with the external air that passed through another cooling area.
    • 提供一种用于实现具有气流分离结构的存储装置的有效冷却的冷却方法。 该存储装置具有形成在机壳中的多个冷却区域; 外部空气引入/排出装置,用于将外部空气引导到各个冷却区域,然后将外部空气从机柜外部的排放区域排出; 以及外部空气引导区域,用于将通过每个冷却区域的外部空气引导到排出区域; 其特征在于,所述外部空气引导区域被配置为使得通过一个冷却区域的外部空气不会与通过另一个冷却区域的外部空气混合。
    • 52. 发明授权
    • Amplifying circuit
    • 放大电路
    • US07724089B2
    • 2010-05-25
    • US12274015
    • 2008-11-19
    • Kenichi MiyamotoHiroaki Ishii
    • Kenichi MiyamotoHiroaki Ishii
    • H03F3/45
    • H03F3/303G09G3/3685H03F2200/297
    • First and second voltage buffers are added to an amplifying circuit including input and output amplifying stages in which a P-MOS transistor and an N-MOS transistor operate as a push-pull circuit. An input of the first voltage buffer is connected to an output of the amplifying circuit, and an output of the first voltage buffer is connected via a first phase compensating capacitor to a gate electrode of the P-MOS transistor, and is connected via a second phase compensating capacitor to a gate electrode of the N-MOS transistor. An input of the second voltage buffer is connected to the output of the amplifying circuit, and an output of the second voltage buffer is connected via a third phase compensating capacitor to the gate electrode of the P-MOS transistor, and is connected via a fourth phase compensating capacitor to the gate electrode of the N-MOS transistor.
    • 将第一和第二电压缓冲器加到包括P-MOS晶体管和N-MOS晶体管作为推挽电路工作的输入和输出放大级的放大电路中。 第一电压缓冲器的输入端连接到放大电路的输出,第一电压缓冲器的输出经由第一相位补偿电容器连接到P-MOS晶体管的栅电极,并经由第二电压缓冲器 相位补偿电容器到N-MOS晶体管的栅电极。 第二电压缓冲器的输入端连接到放大电路的输出端,第二电压缓冲器的输出经由第三相位补偿电容器连接到P-MOS晶体管的栅电极,并通过第四电压缓冲器 N相MOS晶体管的栅电极相位补偿电容。
    • 53. 发明授权
    • Switch device, storage control system and trace data obtaining method
    • 开关装置,存储控制系统和跟踪数据获取方法
    • US07624306B2
    • 2009-11-24
    • US11976530
    • 2007-10-25
    • Kenichi Miyamoto
    • Kenichi Miyamoto
    • G06F11/00
    • G06F11/0778G06F3/0601G06F11/0727G06F2003/0692H04L41/06H04L43/022H04L49/357H04L49/555H04L49/90
    • A fiber channel switch (hereinafter, FC-SW) connected to a plurality of communications devices is provided with a buffer for temporarily storing data received from servers via a first communications port, a trace data storage memory for storing trace data, and a microprocessor (MP) for sending data accumulated in the buffer to a storage control system. The MP stores the information about the data about the received data into the trace data storage memory as trace data, issues a write command to the storage control system if it is detected that trace data sending condition is satisfied, and reads out the trace data stored in the trace data storage memory and sends it to the storage control system.
    • 连接到多个通信设备的光纤通道交换机(以下称为FC-SW)具有用于临时存储经由第一通信端口从服务器接收的数据的缓冲器,用于存储跟踪数据的跟踪数据存储存储器和微处理器( MP),用于将存储在缓冲器中的数据发送到存储控制系统。 MP将关于接收到的数据的信息作为跟踪数据存储到跟踪数据存储存储器中,如果检测到满足跟踪数据发送条件,则向存储控制系统发出写入命令,并读出存储的跟踪数据 在跟踪数据存储存储器中,并将其发送到存储控制系统。
    • 55. 发明授权
    • Storage control device
    • 存储控制装置
    • US07411787B2
    • 2008-08-12
    • US11347311
    • 2006-02-06
    • Yasuyuki KatakuraKenichi Miyamoto
    • Yasuyuki KatakuraKenichi Miyamoto
    • H05K7/20
    • G11B33/14G11B33/12
    • A first section, a second section, and a third section are provided. A plurality of NAS head substrates are mounted in the first section, arranged along the height direction, and each oriented horizontally. A plurality of logical substrates are mounted in the second section, arranged along the width direction. And power supplies are mounted in the third section. First through third fans are provided respectively corresponding to the first through the third sections, and the flow conduit for the air blown by each of the fans is independent from the flow conduits for the air blown by other fans.
    • 提供了第一部分,第二部分和第三部分。 多个NAS头基板安装在沿着高度方向布置的第一部分中,并且每个都被水平定向。 多个逻辑基板安装在沿着宽度方向布置的第二部分中。 电源安装在第三部分。 分别对应于第一至第三部分提供第一至第三风扇,并且用于由每个风扇吹送的空气的流动管道与用于由其他风扇吹送的空气的流动管道独立。
    • 56. 发明申请
    • Storage system and communication bandwidth control method
    • 存储系统和通信带宽控制方法
    • US20080101236A1
    • 2008-05-01
    • US11636477
    • 2006-12-11
    • Kenichi Miyamoto
    • Kenichi Miyamoto
    • H04J1/16H04L12/56
    • H04L47/10G06F3/0601G06F2003/0697H04L45/22H04L47/125H04L47/30H04L49/25H04L49/357H04L49/505
    • An object of the present invention is to efficiently perform load balancing between Fibre Channel switches and storage apparatuses, avoiding communication congestion, and maintaining high system performance.The present invention provides a method for controlling a communication bandwidth between a network switch having a plurality of ports for forming a network, and a storage apparatus having ports respectively connected to at least two of the ports, the method including: transferring one or more data frames to the storage apparatus via a first port of the network switch connected to the storage apparatus; determining whether or not an overflow has occurred in a first buffer memory associated with the first port during the transfer of the one or more data frames; identifying, if an overflow has occurred in the first buffer memory, a second port of the network switch connected to the storage apparatus; and transferring the one or more data frames to the storage apparatus via the first port and the second port.
    • 本发明的目的在于有效地执行光纤通道交换机与存储装置之间的负载平衡,避免通信拥塞,保持高的系统性能。 本发明提供了一种用于控制具有用于形成网络的多个端口的网络交换机之间的通信带宽的方法和具有分别连接到至少两个端口的端口的存储装置,所述方法包括:传送一个或多个数据 经由连接到存储装置的网络交换机的第一端口向存储装置发送帧; 确定在所述一个或多个数据帧的传送期间在与所述第一端口相关联的第一缓冲存储器中是否已经发生溢出; 识别如果在所述第一缓冲存储器中发生溢出,则连接到所述存储装置的所述网络交换机的第二端口; 以及经由所述第一端口和所述第二端口将所述一个或多个数据帧传送到所述存储装置。
    • 59. 发明申请
    • Storage device, and storage part and dummy unit for storage device
    • 存储设备,存储设备和存储设备的虚拟单元
    • US20060120192A1
    • 2006-06-08
    • US11046434
    • 2005-01-27
    • Kenichi MiyamotoYoji Okabe
    • Kenichi MiyamotoYoji Okabe
    • G11C7/00
    • G11B33/12G11B33/142
    • The present invention provides a dummy canister which can cool canisters with good efficiency. Canisters 2A and dummy canisters 2B are attached in a mixed configuration to the storage part 1C of a storage device 1. Each dummy canister 2B is constructed so that this dummy canister can expand and contract in two stages in the attachment direction (which is also the direction in which the cooling air draft flows through). Among these dummy canisters 2B, the dummy canister 2B (1) that is adjacent to a canister 2A is set in a first shape, and has a shorter length. The other dummy canisters 2B (2) through 2B (5) are respectively set in a second shape, so that the length dimension of these dummy canisters is lengthened. As a result, the amount of the cooling air draft that flows around the dummy canister 2B (1) that is adjacent to the canister 2A (3) is relatively large, so that a large cooling air draft can be supplied to the canister 2A (3).
    • 本发明提供一种能够以高效率对罐进行冷却的虚拟罐。 罐2A和假罐2B以混合配置附接到存储装置1的存储部分1C。 每个假罐2B被构造成使得该假罐可以在附接方向(也是冷却空气通风流过的方向)上分两个阶段膨胀和收缩。 在这些虚拟罐2B中,与罐2A相邻的虚拟罐2B(1)被设定为第一形状,并且具有较短的长度。 另一个虚拟罐2B(2)〜2B(5)分别设定为第二形状,使得这些虚拟罐的长度尺寸变长。 结果,与罐2A(3)相邻的虚拟罐2B(1)周围流动的冷却风通风量相对较大,从而可以向罐提供大的冷却风通风 2 A(3)。