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    • 4. 发明授权
    • Information processing apparatus that can hold internal information
    • 可以保存内部信息的信息处理装置
    • US06438708B1
    • 2002-08-20
    • US09188246
    • 1998-11-09
    • Sawamura ShinichiNobuhiko HaraJun KitaharaMasaya UmemuraMasato IshiiKenichi Saitou
    • Sawamura ShinichiNobuhiko HaraJun KitaharaMasaya UmemuraMasato IshiiKenichi Saitou
    • G06F1132
    • G06F1/1616G06F1/1677G06F1/3203G06F9/4418
    • An information processing apparatus includes a volatile storage unit and a nonvolatile storage device for storing at least algorithm information for processings executed by the processing unit, processed data inclusive of display-destined data generated in the storage unit and circuit state information concerning individual circuits incorporated in the information processing apparatus during operation of the information processing apparatus, and a control unit for setting a predetermined operation-mode state in accordance with predetermined rules of state transition so as to store selectively the algorithm information, the processed data and the circuit state information in the volatile storage unit and nonvolatile storage device in dependence on the conditions imposed externally through manipulation of the apparatus, whereby the time required for activating or resuming the information processing apparatus is reduced.
    • 信息处理装置包括易失性存储单元和用于至少存储用于由处理单元执行的处理的算法信息的非易失性存储装置,包括在存储单元中生成的显示目的地数据的处理数据以及包含在其中的各个电路的电路状态信息 信息处理装置的操作期间的信息处理装置,以及用于根据预定的状态转换规则设定预定的操作模式状态的控制单元,以选择性地存储算法信息,处理数据和电路状态信息 易失性存储单元和非易失性存储设备,这取决于通过操纵设备而外部施加的条件,从而减少了激活或恢复信息处理设备所需的时间。
    • 7. 发明申请
    • METHOD FOR PRODUCING SEAMLESS TUBE/PIPE
    • 生产无缝管/管的方法
    • US20130255342A1
    • 2013-10-03
    • US13991635
    • 2011-12-06
    • Kenichi SaitouKazuhiro ShimodaTomio Yamakawa
    • Kenichi SaitouKazuhiro ShimodaTomio Yamakawa
    • B21B21/02
    • B21B21/02B21B19/04B21B25/00B21B2261/08B21B2261/10
    • By using a piercing mill that includes a pusher on the entrance side, a plug on the exit side along a pass line, and a plurality of angled rolls as being provided around the plug so as face to each other, in the case where the maximum diameter of an unsound region consisting of center segregation and porosity in a cross section of a billet is d [mm], piercing-rolling is performed under the condition that the plug nose rolling reduction ratio (TDF) expressed by Formula (1) satisfies Formula (2). TDF=(Bd−D1)/Bd  (1) TDF≦−0.50×(d/Bd)+0.06  (6) In Formulae (1) and (2), Bd is the billet diameter [mm], and D1 is the opening [mm] between the angled rolls at the plug nose position. Thereby, when piercing-rolling is performed, the occurrence of an inner surface flaw attributable to the center segregation and porosity in the billet can be prevented reliably.
    • 通过使用包括在入口侧的推动器的穿孔机,沿着通行线的出口侧的塞子和在插头周围设置成彼此面对的多个成角度的辊,在最大值 在坯料的横截面中由中心偏析和孔隙率组成的不固定区域的直径为d [mm],在由式(1)表示的塞子前端滚动压下率(TDF)满足公式的条件下进行穿孔轧制 (2)。 TDF =(Bd-D1)/ Bd(1)TDF@-0.50×(d / Bd)+0.06(6)在公式(1)和(2)中,Bd是坯料直径[mm],D1是 在插头前端位置的成角度的卷轴之间打开[mm]。 因此,当进行穿孔轧制时,可以可靠地防止由于中心偏析引起的内表面缺陷的发生和坯料中的孔隙率的发生。
    • 8. 发明授权
    • Absorption refrigerator
    • 吸收式冰箱
    • US06536229B1
    • 2003-03-25
    • US09763628
    • 2001-03-06
    • Syuzo TakabatakeKunihiko NakajimaOsamu OhishiKenichi SaitouMasuomi Ohta
    • Syuzo TakabatakeKunihiko NakajimaOsamu OhishiKenichi SaitouMasuomi Ohta
    • F25B1500
    • F25B27/02F25B15/008F25B2333/003F25B2333/007Y02A30/274Y02B30/625
    • A steam type absorption refrigerator which circulates absorption fluid from an absorber (1), through a low-temperature heat exchanger (3), a low-temperature regenerator (4), a high-temperature heat exchanger (6), a steam heating type high-temperature regenerator (7), the high-temperature heat exchanger (6) and the low-temperature heat exchanger (3) in order, back to the absorber (1) comprising, a fluid concentrating boiler (10) which is disposed between the high-temperature regenerator (7) and the high-temperature heat exchanger (6) concentrating the absorption fluid under heat, and a pump (13) which extracts a part or all of the concentrated absorption fluid from the high-temperature regenerator (7) and feeds it to the fluid concentrating boiler (10), wherein the fluid concentrating boiler is connected to the high-temperature heat exchanger (6) so that the absorption fluid concentrated under heat is returned to the heating side of the high-temperature heat exchanger (6) and is also connected to the high-temperature regenerator (7) so that refrigerant steam generated from the absorption fluid at the fluid concentrating boiler is fed as a heating source to the high-temperature regenerator (7).
    • 一种蒸汽式吸收式制冷机,其通过低温热交换器(3),低温再生器(4),高温热交换器(6),蒸汽加热型(6),吸收器 高温再生器(7),高温热交换器(6)和低温热交换器(3),依次返回到吸收器(1),包括:流体浓缩锅炉(10) 在高温再生器(7)和高温热交换器(6)中聚集吸收流体的加热的高温再生器(7)和从高温再生器(7)中提取部分或全部浓缩吸收流体的泵 )并将其供给到流体浓缩锅炉(10),其中流体浓缩锅炉连接到高温热交换器(6),使得在热量下集中的吸收流体返回到高温热的加热侧 交换器(6),也是 连接到高温再生器(7),使得从流体浓缩锅炉的吸收流体产生的制冷剂蒸汽作为加热源被供给到高温再生器(7)。
    • 9. 发明授权
    • Increasing data transfer efficiency for a read operation in a non-split
transaction bus environment by substituting a write operation for the
read operation
    • 通过将读取操作替换为读取操作,在非分割事务总线环境中提高数据传输效率
    • US5754802A
    • 1998-05-19
    • US648424
    • 1996-05-15
    • Koichi OkazawaHideki OsakaKenichi Saitou
    • Koichi OkazawaHideki OsakaKenichi Saitou
    • G06F13/36G06F13/12G06F13/40G06F13/42G06F13/00
    • G06F13/423G06F13/126G06F13/4027G06F13/4036
    • A method and apparatus for increasing data transfer efficiency for a read operation in a non-split transaction bus environment by substituting a write operation for the read operation. The data transfer efficiency is increased and deadlocking is reduced by substituting two write operations (one from an I/O device to a bus controller and the other from the bus controller to the I/O device) for one read operation. Further, the present invention improves the efficiency of data transfer by maintaining the compatibility of a bus specification when DMA of an I/O bus having no split transfer function, such as a PCI bus or inter-I/O transfer, is executed. A processor instructs a data transfer operation to an I/O device or bus conversion adapter. The I/O device or bus conversion adapter connected to a bus outputs a write access, and a bus connection controller connected to the bus receives the write access and reads data in a main memory. The bus connection controller then transfers read data to the I/O device or the bus conversion adapter. Such an operation may also be performed between two I/O devices or bus conversion adapters.
    • 一种用于通过将写入操作替换为读取操作来增加在非分割事务总线环境中的读取操作的数据传输效率的方法和装置。 通过将两个写入操作(一个从I / O设备到总线控制器,另一个从总线控制器到I / O设备)替换为一次读取操作,数据传输效率提高并且死锁降低。 此外,本发明通过在不执行诸如PCI总线或I / O转移之类的分离传递功能的I / O总线的DMA执行时,通过维持总线规格的兼容性来提高数据传输的效率。 处理器指示对I / O设备或总线转换适配器的数据传输操作。 连接到总线的I / O设备或总线转换适配器输出写访问,连接到总线的总线连接控制器接收写入访问并读取主存储器中的数据。 总线连接控制器然后将读取的数据传送到I / O设备或总线转换适配器。 这样的操作也可以在两个I / O设备或总线转换适配器之间执行。
    • 10. 发明授权
    • Method for producing seamless tube/pipe
    • 生产无缝管/管的方法
    • US09254511B2
    • 2016-02-09
    • US13991635
    • 2011-12-06
    • Kenichi SaitouKazuhiro ShimodaTomio Yamakawa
    • Kenichi SaitouKazuhiro ShimodaTomio Yamakawa
    • B21B21/02B21B19/04B21B25/00
    • B21B21/02B21B19/04B21B25/00B21B2261/08B21B2261/10
    • By using a piercing mill that includes a pusher on the entrance side, a plug on the exit side along a pass line, and a plurality of angled rolls as being provided around the plug so as face to each other, in the case where the maximum diameter of an unsound region consisting of center segregation and porosity in a cross section of a billet is d [mm], piercing-rolling is performed under the condition that the plug nose rolling reduction ratio (TDF) expressed by Formula (1) satisfies Formula (2). TDF=(Bd−D1)/Bd  (1) TDF≦−0.50×(d/Bd)+0.06  (2) In Formulae (1) and (2), Bd is the billet diameter [mm], and D1 is the opening [mm] between the angled rolls at the plug nose position. Thereby, when piercing-rolling is performed, the occurrence of an inner surface flaw attributable to the center segregation and porosity in the billet can be prevented reliably.
    • 通过使用包括在入口侧的推动器的穿孔机,沿着通行线的出口侧的塞子和在插头周围设置成彼此面对的多个成角度的辊,在最大值 在坯料的横截面中由中心偏析和孔隙率组成的不固定区域的直径为d [mm],在由式(1)表示的塞子前端滚动压下率(TDF)满足公式的条件下进行穿孔轧制 (2)。 TDF =(Bd-D1)/ Bd(1)TDF≦̸ -0.50×(d / Bd)+0.06(2)在式(1)和(2)中,Bd是坯料直径[mm],D1是 在插头前端位置的成角度的卷轴之间打开[mm]。 因此,当进行穿孔轧制时,可以可靠地防止由于中心偏析引起的内表面缺陷的发生和坯料中的孔隙率的发生。