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    • 61. 发明授权
    • Steam-cooling type gas turbine
    • 蒸汽式燃气轮机
    • US06224327B1
    • 2001-05-01
    • US09250733
    • 1999-02-16
    • Sunao AokiKatsunori TanakaKazuharu HirokawaRintaro Chikami
    • Sunao AokiKatsunori TanakaKazuharu HirokawaRintaro Chikami
    • F04D2958
    • F01D5/085F02C7/16F05D2260/2322
    • A steam-cooling gas turbine in which cooling steam is fed from a center portion of a rotating shaft and recovered through passages disposed at the outer side of the center portion with steam leaking through a seal portion from a feeding steam being effectively recovered. Feed steam (30) serving as coolant is supplied to a cavity (27) from a inner cylinder (10) and hence fed to moving blades (11, 12) through recesses (40) formed in a coupling portion (26) interposed between a final-stage disk (24) and a turbine shaft (1), steam feeding pipes (15) and steam feeding passages (11a, 12a). After cooling of the moving blades, steam (31) is recovered through steam recovering passages (11b, 12b), steam recovering pipes (16), radial steam-recovering passages (17), axial steam-recovering passages (18) and outlet openings (5a). The coupling portion (26) is forced to hermetically close under thermal stress, whereby leakage of the feed steam (30) is prevented. Steam leaking through a seal portion constituted by stationary and rotatable seal fin assemblies (4a, 4b) can be effectively recovered. The inner cylinder (10) can move in the axial direction through cooperation of piston rings (43) and a centering piece (6) adapted for absorbing thermal stress induced in the inner cylinder (10). Upstream tip end portions of steam feeding pipes (15) and steam recovering pipes (16) are secured onto a side surface of the first-stage disk (21) through sleeves removably fitted thereto.
    • 一种蒸汽冷却燃气轮机,其中冷却蒸汽从旋转轴的中心部分进给并通过设置在中心部分的外侧的通道被回收,蒸汽通过密封部分从进料蒸汽泄漏得到有效回收。 作为冷却剂的进料蒸汽(30)从内筒(10)供给到空腔(27),从而通过形成在连接部分(26)中的连接部分(26)的凹部(40)供给到活动叶片(11,12) 末级盘(24)和涡轮轴(1),蒸汽供给管(15)和蒸汽供给通道(11a,12a)。 在运动叶片冷却后,蒸汽(31)通过蒸汽回收通道(11b,12b),蒸汽回收管(16),径向蒸汽回收通道(17),轴向蒸汽回收通道(18)和出口 (5a)。 耦合部分(26)在热应力下被迫气密地闭合,从而防止进料蒸汽(30)的泄漏。 可以有效地回收通过由固定和可旋转的密封翅片组件(4a,4b)构成的密封部分泄漏的蒸汽。 内筒(10)可以通过活塞环(43)和适于吸收在内筒(10)中感应的热应力的定心件(6)的配合而沿轴向移动。 蒸汽供给管(15)和蒸汽回收管(16)的上游末端部分通过可移除地装配在其上的套筒固定在第一级盘(21)的侧表面上。
    • 62. 发明授权
    • Ink cartridge and ink jet recording apparatus
    • 墨盒和喷墨记录装置
    • US6142602A
    • 2000-11-07
    • US48586
    • 1998-03-27
    • Katsunori Tanaka
    • Katsunori Tanaka
    • B41J2/165B41J2/175
    • B41J2/1754B41J2/16505
    • An ink cartridge has a cover that is in intimate contact with an ink tank around the ink injection port and having an opening portion at a position corresponding to the ink injection port, and the protection cap held slidably between the cover and the ink tank for opening/closing the opening portion. When the protection cap is closed, the ink injection port is tightly closed. Also, the protection cap of the ink cartridge has a lever projecting from the opening portion of the cover. An ink cartridge holder fixed to the recording apparatus for loading the ink cartridge thereon has claws engaged with a lever of the ink cartridge in the loading condition. When the ink cartridge is loaded, the protection cap is opened by the claws.
    • 墨盒具有与墨水注入口周围的墨水盒紧密接触并且在与墨水注入口相对应的位置处具有开口部分的盖子,并且保护盖可滑动地保持在盖子和墨水罐之间用于打开 /关闭开口部分。 当保护盖关闭时,墨水注入口密闭。 此外,墨盒的保护帽具有从盖的开口部分突出的杆。 固定在记录装置上的用于在其上装载墨盒的墨盒保持器具有在装载状态下与墨盒的杆接合的爪。 当墨盒被装载时,保护盖由爪打开。
    • 66. 发明授权
    • Circuit design device, circuit design method, and circuit design program
    • 电路设计器件,电路设计方法和电路设计程序
    • US08341575B2
    • 2012-12-25
    • US12595828
    • 2008-04-15
    • Katsunori Tanaka
    • Katsunori Tanaka
    • G06F9/455G06F17/50
    • G06F17/505G06F2217/10
    • A circuit design device comprises a logic synthesis unit that generates a circuit with reference to a circuit design description, a statistical timing analysis unit that obtains a probability distribution of delay times of a path in a circuit, a relative delay restriction fulfillment rate calculation unit that obtains a fulfillment rate of the relative delay restriction according to the probability distribution of the delay time from the same starting point at each restricted path subjected to the relative delay restriction, a path delay probability distribution changing unit that changes the probability distribution of delay times of the restricted path to changed probability distribution when the fulfillment rate does not reach a predetermined rate, and a logic circuit structure changing unit that changes the structure of the circuit so as to follow the changed probability distribution.
    • 电路设计装置包括参考电路设计描述生成电路的逻辑合成单元,获得电路中的路径的延迟时间的概率分布的统计时序分析单元,相对延迟限制执行率计算单元, 根据延迟时间从经过相对延迟限制的每个受限路径的相同起始点的概率分布获得相对延迟限制的履行率;路径延迟概率分布改变单元,其改变延迟时间的概率分布 当满足率未达到预定速率时变化概率分布的限制路径;以及逻辑电路结构改变单元,其改变电路的结构以便遵循改变的概率分布。
    • 68. 发明申请
    • DATA TRANSFER APPARATUS, AND METHOD, AND SEMICONDUCTOR CIRCUIT
    • 数据传输设备,方法和半导体电路
    • US20100315886A1
    • 2010-12-16
    • US12866225
    • 2009-03-06
    • Katsunori Tanaka
    • Katsunori Tanaka
    • G11C7/00G11C7/10
    • G06F13/4286
    • Provided is a data transfer apparatus and method that enables fast data transfer, and has a simple circuit configuration and a small area; and a semiconductor circuit. The data transfer apparatus includes: a data pair generation circuit (301) that transfers a generated data pair during one cycle of a handshake signal communication; a multiplexer (302) that outputs one of the data pair in accordance with a handshake signal; a memory (305) that stores the data output from the multiplexer (302) in response to bi-directional transition of the memory control input signal; a memory control circuit (303) that performs a handshake signal communication and outputs the memory control signal; a request signal waiting circuit (306) that waits until one of the data pair is stored in the memory (305) and the other data is output from the multiplexer (302); and a data pair receiving circuit (307) that receives the data pair in response to a signal from the request signal waiting circuit (306) and outputs the data pair to the transfer destination.
    • 提供了能够进行快速数据传送的数据传送装置和方法,并且具有简单的电路配置和小的面积; 和半导体电路。 数据传送装置包括:在握手信号通信的一个周期期间传送生成的数据对的数据对生成电路(301); 多路复用器(302),其根据握手信号输出所述数据对中的一个; 存储器(305),其响应于所述存储器控制输入信号的双向转换而存储从所述多路复用器(302)输出的数据; 存储控制电路(303),其执行握手信号通信并输出存储器控制信号; 等待直到所述数据对中的一个存储在所述存储器中的请求信号等待电路(306),并且从所述多路复用器(302)输出其他数据; 以及响应于来自请求信号等待电路(306)的信号接收数据对的数据对接收电路(307),并将该数据对输出到传送目的地。
    • 69. 发明授权
    • Power supply system with multiphase motor and multiphase inverter
    • 电源系统配有多相电机和多相逆变器
    • US07816805B2
    • 2010-10-19
    • US12274445
    • 2008-11-20
    • Katsunori TanakaYukari Tanaka, legal representativeMakoto Taniguchi
    • Katsunori TanakaMakoto Taniguchi
    • B60L1/08
    • B62D5/046H02J7/1423Y10T307/352
    • In a power supply system, a controller is electrically connected with a plurality of switching elements of a multiphase inverter. The controller switches the plurality of switching elements on and off during a multiphase motor being activated. This converts a voltage of a first power storage device into a multiphase AC voltage so as to supply the multiphase AC voltage to the multiphase motor. This also boosts a voltage of a second power storage device to charge the first power storage device by the boosted voltage via multiphase windings of the motor. The controller switches the plurality of switching elements on and off during the multiphase motor being inactivated to thereby boost the voltage of the second power storage device to charge the first power storage device by the boosted voltage.
    • 在电源系统中,控制器与多相逆变器的多个开关元件电连接。 控制器在多相电动机被激活期间打开和关闭多个开关元件。 这将第一蓄电装置的电压转换成多相交流电压,以将多相交流电压提供给多相电动机。 这还提高了第二蓄电装置的电压,以通过电动机的多相绕组通过升高的电压对第一蓄电装置充电。 所述控制器在所述多相电机处于非激活状态期间将所述多个开关元件接通和断开,从而提高所述第二蓄电装置的电压,以通过所述升压电压对所述第一蓄电装置充电。