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    • 5. 发明申请
    • HEATING PROCESS OF THE LIGHT IRRADIATION TYPE
    • 光照类型的加热过程
    • US20070071906A1
    • 2007-03-29
    • US11536057
    • 2006-09-28
    • Kyohei SEKIShinji SUZUKIYoichi MIZUKAWA
    • Kyohei SEKIShinji SUZUKIYoichi MIZUKAWA
    • C23C14/00
    • H01L21/67115
    • A light irradiation heating process in which, even in the case of an asymmetrical physical property of an article to be treated, uniform heating is possible, or in which heating can be performed such that the article acquires a desired physical property after heat treatment. Based on the measured value of the local physical property of the article to be treated, the emissivity distribution is obtained and the distribution pattern of the light intensity on the article to be treated is determined. According to this light intensity pattern, the individual intensity of the light emitted from respective light emitting parts of lamp units of the heating device are determined beforehand. According to this determined result, the intensity of the light emitted from the respective light emitting parts of the lamp units are controlled individually, and thus, the article to be treated is irradiated with light.
    • 即使在待处理物品的不对称物理性质的情况下也可以进行均匀加热,或者可以进行加热,使得制品在热处理后获得所需的物理性质的光照射加热过程。 根据待处理物品的局部物理性质的测定值,得到辐射率分布,并确定待处理物品上光强度的分布格局。 根据该光强度图案,预先确定从加热装置的灯单元的各个发光部分发射的光的单独强度。 根据该确定结果,单独控制从灯单元的各个发光部分发射的光的强度,从而照射待处理的物品。
    • 7. 发明申请
    • METHOD AND SYSTEM OF VIRTUAL MACHINE MIGRATION
    • 虚拟机移动的方法与系统
    • US20110246669A1
    • 2011-10-06
    • US13023908
    • 2011-02-09
    • Yasusi KANADAYasushi KASUGAIShinji SUZUKIToshiaki TARUI
    • Yasusi KANADAYasushi KASUGAIShinji SUZUKIToshiaki TARUI
    • G06F15/173
    • H04L45/00G06F9/4856G06F11/1484H04L12/4641H04L29/12028H04L29/12264H04L29/12367H04L49/557H04L49/70H04L61/103H04L61/2046H04L61/2514Y02D10/24Y02D10/32
    • In cooperation between each data center and a WAN, virtual machine migration is carried out without interruption in processing so as to enable effective power-saving implementation, load distribution, or fault countermeasure processing. Each node located at a boundary point between the WAN and another network is provided with a network address translation (NAT) function that can be set dynamically to avoid address duplication due to virtual machine migration. Alternatively, each node included in the WAN is provided with a network virtualization function; and there are implemented a virtual network connected to a data center for including a virtual machine before migration, and a virtual network connected to a data center for including the virtual machine after migration, thereby allowing coexistent provision of identical addresses. Thus, the need for changing network routing information at the time of virtual machine migration can be eliminated, and a setting change for migration accomplished quickly.
    • 在每个数据中心和WAN之间的合作中,虚拟机迁移在处理中不间断地执行,以便能够实现有效的省电实施,负载分配或故障对策处理。 位于WAN和另一个网络之间的边界点的每个节点都具有网络地址转换(NAT)功能,可以动态设置,以避免由于虚拟机迁移引起的地址重复。 或者,包括在WAN中的每个节点被提供有网络虚拟化功能; 并且实现了连接到数据中心的虚拟网络,用于在迁移之前包括虚拟机,以及连接到数据中心的虚拟网络,用于在迁移之后包括虚拟机,从而允许共同提供相同的地址。 因此,可以消除在虚拟机迁移时改变网络路由信息的需要,并且迁移的设置更改快速完成。
    • 9. 发明申请
    • LIGHT IRRADIATION TYPE HEAT TREATMENT DEVICE
    • 光照射式热处理装置
    • US20090116824A1
    • 2009-05-07
    • US12264746
    • 2008-11-04
    • Shinji SUZUKIKyohei SEKI
    • Shinji SUZUKIKyohei SEKI
    • F26B3/28
    • H05B3/0047H01L21/67115H05B2203/032
    • Light irradiation type heat treatment device composed of a plurality of lamps, including multi-filament lamps, the filaments of which can be independently supplied with power. The filaments are divided into a plurality of filament groups composed of filaments of one lamp put together with filaments of other lamps. Power control units are provided for each group, and drive units are provided corresponding to the power control units. The drive units adjust the electric power supplied from the power supply according to a command from the power control units to supply power to each filament belonging to the group. In a preferred arrangement, the plurality of lamps are arranged in parallel with at least one filament within each lamp having a length so as to form a concentric circle with filaments of other lamps arranged in parallel and the filaments forming the concentric circle are divided into a plurality of filament groups.
    • 光照射型热处理装置,由多根灯组成,包括多根灯丝,灯丝可独立供电。 长丝被分成多个由灯组成的灯丝组,灯丝与其他灯的细丝放在一起。 为每个组提供功率控制单元,并且相应于功率控制单元提供驱动单元。 驱动单元根据来自功率控制单元的命令来调节从电源提供的电力,以向属于该组的每个灯丝供电。 在优选的布置中,多个灯与每个灯内的至少一根灯丝平行布置,具有长度,以便形成同心圆,其中其他灯的细丝平行布置,并且形成同心圆的长丝被分成 多个长丝组。
    • 10. 发明申请
    • FILAMENT LAMP AND HEAT TREATMENT DEVICE OF THE LIGHT IRRADIATION TYPE
    • 光照射类型的灯泡和热处理装置
    • US20090103905A1
    • 2009-04-23
    • US12248420
    • 2008-10-09
    • Kenji TANINOYoichi MIZUKAWAShinji SUZUKI
    • Kenji TANINOYoichi MIZUKAWAShinji SUZUKI
    • F26B3/30H01K7/00
    • H01K1/14H01K9/00H01L21/67115
    • Filament lamps whose individual filament coils can be set to specific temperatures in filament lamps that are supplied with electric power independently and to provide a heat treatment device of the light irradiation type that uses said lamps. Inside of a light emitting tube of each lamp, which has the hermetically sealed portions at each end, are multiple filament modules which have been made by linking pairs of leads which supply electrical power to both ends of coiled filaments and individual filaments that are placed so that they extend along the axis of the light emitting tube. In the electrically connected filament lamps, whose individual leads are connected to the respective electrically conductive material placed in the hermetically sealed portions, at least one of the individual filaments is made up of a single wire and at least two are made up of bundled wires with the single wire being located between the bundled wires.
    • 单丝灯丝可以在单独供应电力的白炽灯中设定为特定温度,并提供使用所述灯的光照射型热处理装置。 在每个端部具有气密密封部分的每个灯的发光管的内部是多个灯丝模块,其通过将成对的引线连接成一列,这些引线将线圈的两端提供电力并且被放置为单个的丝线 它们沿着发光管的轴线延伸。 在电连接的白炽灯中,其单独的引线连接到放置在气密密封部分中的各个导电材料,单根丝线中的至少一根由单根线构成,并且至少两根丝线灯由具有 单线位于捆扎线之间。