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    • 12. 发明申请
    • Trench gate field effect devices
    • 沟槽门场效应器件
    • US20070114598A1
    • 2007-05-24
    • US10581664
    • 2004-12-03
    • Koji HottaSachiko KawajiTakahide SugiyamaMasanori Usui
    • Koji HottaSachiko KawajiTakahide SugiyamaMasanori Usui
    • H01L29/94H01L21/336
    • H01L29/7397H01L29/0619H01L29/0634H01L29/1095H01L29/7813
    • The present invention relates to a technique for reducing the on-voltage of the semiconductor device by increasing the concentration of minority carriers in the deep region (26) and the intermediate region (28). A semiconductor device according to the invention comprises an electrode, a top region (36) of a second conductivity type connected to the electrode, a deep region of the second conductivity type, and an intermediate region of a first conductivity type connected to the electrode. A portion of the intermediate region isolates the top region and the deep region. The semiconductor device further comprises a gate electrode (32) facing the portion of the intermediate region via an insulating layer. The portion facing the gate electrode isolates the top region and the deep region. The semiconductor device according to the invention further comprises a barrier region (40) that is formed within the intermediate region and/or the top region.
    • 本发明涉及通过增加深区域(26)和中间区域(28)中的少数载流子的浓度来降低半导体器件的导通电压的技术。 根据本发明的半导体器件包括电极,连接到电极的第二导电类型的顶部区域(36),第二导电类型的深区域和连接到电极的第一导电类型的中间区域。 中间区域的一部分隔离顶部区域和深部区域。 半导体器件还包括经由绝缘层面对中间区域的部分的栅电极(32)。 面对栅电极的部分隔离顶部区域和深部区域。 根据本发明的半导体器件还包括形成在中间区域和/或顶部区域内的阻挡区域(40)。
    • 13. 发明申请
    • Absorption chiller-heater
    • 吸收式冷水机
    • US20050188707A1
    • 2005-09-01
    • US10772465
    • 2004-02-06
    • Mitsuru KodamaTakahide SugiyamaKazuhide Ishida
    • Mitsuru KodamaTakahide SugiyamaKazuhide Ishida
    • F25B15/00F25B27/02F25B27/00F25B33/00
    • F25B27/02F25B15/00F25B2333/003Y02A30/274Y02P80/152
    • There is constructed a constitution including an exhaust heat fired regenerator constituting a heat source by exhaust heat from external machine generating the exhaust heat, a heat fluid flow path for making a fluid having the exhaust heat constituting the heat source or a fluid recovering the exhaust heat flow to the exhaust heat fired regenerator, flow path open/close device provided at the heat fluid flow path for controlling to make the heat fluid flow to the exhaust heat fired regenerator 1 and cut off the fluid therefrom by opening and closing the exhaust fluid flow path, first regenerator temperature detector for detecting temperature of the exhaust heat fired regenerator, a directly fired regenerator constituting a heat source by combustion heat of a burner, second regenerator temperature detector for detecting temperature of the directly fired regenerator, heat medium temperature detector for detecting temperature of a heat medium cooled or heated by an evaporator and controller for controlling to operate the flow path open/close device and the burner, in which a combustion amount of the burner can be increased and reduced and the controller controls to open and close the flow path open/close device and increase and reduce the combustion amount of the burner in accordance with the temperature of the heat medium detected by the heat medium temperature detector and a higher one of temperature of the temperature of the exhaust heat fired regenerator detected by the first regenerator temperature detector and the temperature of the directly fired regenerator detected by the second regenerator temperature detector.
    • 构成了包括由产生废热的外部机器排出的热量构成热源的废热再生器,构成具有构成热源的排气热的流体的流体流路,或回收排气热的流体 流到排气热再生器,流路开闭装置,其设置在热流体流路处,用于控制热流体流向废热再生器1,并通过打开和关闭排出流体流来切断流体 路径第一再生器温度检测器,用于检测排气热再生器的温度,通过燃烧器的燃烧热构成热源的直接燃烧的再生器,用于检测直接燃烧的再生器的温度的第二再生器温度检测器,用于检测的热介质温度检测器 通过蒸发器冷却或加热的热介质的温度和控制 用于控制操作流路打开/关闭装置和燃烧器,其中可以增加和减少燃烧器的燃烧量,并且控制器控制打开和关闭流路打开/关闭装置并增加和减少燃烧 根据由热介质温度检测器检测到的热介质的温度的燃烧器的量以及由第一再生器温度检测器检测的排气热再生器的温度的温度和直接燃烧的再生器的温度 由第二再生器温度检测器检测。
    • 14. 发明授权
    • Fuel tank
    • 油箱
    • US07891344B2
    • 2011-02-22
    • US12108241
    • 2008-04-23
    • Akihiro MiyazakiTakahide SugiyamaShinichi Kajiya
    • Akihiro MiyazakiTakahide SugiyamaShinichi Kajiya
    • F02M37/20F02M37/00
    • F02M37/0082F02B63/04F02M25/0854Y10T137/86348
    • A fuel tank has a tank body and a fuel inlet projecting upwardly from the tank body. The fuel tank includes a cylindrical member extending into the tank body, a canister, and a discharging passage in communication with the canister housing an adsorbent for absorbing fuel vapor from the fuel tank. A space between an outer circumferential surface of the cylindrical member and an inner circumferential surface of the fuel inlet is hermetically sealed by a seal. The cylindrical member has a passage for communicating an inside of the cylindrical member with a portion of an outside of the cylindrical member that is lower than the hermetically sealed space. The passage allows air in the tank body to enter the fuel inlet when fuel overflows from the fuel inlet, thereby inhibiting flow of fuel into the canister through the discharging passage.
    • 燃料箱具有罐体和从罐体向上突出的燃料入口。 燃料箱包括延伸到罐体中的圆柱形构件,罐和与罐连通的排放通道,其容纳用于从燃料箱吸收燃料蒸气的吸附剂。 圆柱形构件的外圆周表面和燃料入口的内圆周表面之间的空间由密封件密封。 圆柱形构件具有用于使圆柱形构件的内部与圆柱形构件的比密封空间低的部分的外部连通的通道。 当燃料从燃料入口溢出时,通道允许罐体中的空气进入燃料入口,从而通过排放通道阻止燃料流入罐中。
    • 15. 发明授权
    • Trench gate field effect devices
    • 沟槽门场效应器件
    • US07598566B2
    • 2009-10-06
    • US10579228
    • 2004-11-05
    • Koji HottaSachiko KawajiMasanori UsuiTakahide Sugiyama
    • Koji HottaSachiko KawajiMasanori UsuiTakahide Sugiyama
    • H01L29/76H01L29/94
    • H01L29/7813H01L29/0696H01L29/1095H01L29/4236H01L29/4238H01L29/7397H01L2924/0002H01L2924/00
    • The present invention provides a technique for accumulating minority carriers in the body region, that is, the intermediate region interposed between the top region and the deep region, and thus increasing the concentration of minority carriers in the intermediate region. A semiconductor device has a top region (34) of a second conductivity type, a deep region (26) of the second conductivity type, and an intermediate region (28) of a first conductivity type for isolating the top region and the deep region. The semiconductor device further has a trench gate (32) facing a portion of the intermediate region via an insulating layer (33). The portion facing the trench gate isolates the top region and the deep region. The trench gate extends along a longitudinal direction. The width of the trench gate is not uniform along the longitudinal direction; instead the width of the trench gate varies along the longitudinal direction.
    • 本发明提供一种用于在身体区域中累积少数载流子的技术,即介于顶部区域和深部区域之间的中间区域,从而增加中间区域中的少数载流子的浓度。 半导体器件具有第二导电类型的顶部区域(34),第二导电类型的深度区域(26)和用于隔离顶部区域和深度区域的第一导电类型的中间区域(28)。 半导体器件还具有通过绝缘层(33)与中间区域的一部分相对的沟槽栅极(32)。 面向沟槽栅的部分隔离了顶部区域和深部区域。 沟槽门沿纵向方向延伸。 沟槽栅的宽度沿纵向不均匀; 相反,沟槽栅的宽度沿着纵向方向变化。
    • 16. 发明申请
    • CANISTER ARRANGEMENT IN POWER GENERATING APPARATUS
    • 发电设备中的CANISTER布置
    • US20080264391A1
    • 2008-10-30
    • US12109933
    • 2008-04-25
    • Masanobu YamamotoTakahide Sugiyama
    • Masanobu YamamotoTakahide Sugiyama
    • F02M33/02
    • F02D29/06F02M25/089
    • A power generating apparatus includes an engine for driving a generator, a muffler cover for covering a muffler for exhaust supplied from the engine from an external side of the muffler, a fuel tank for storing fuel to be supplied to the engine, and a canister containing an adsorbent for adsorbing thereonto fuel that evaporates from the fuel tank. The canister includes a communicating tube, which places the canister in communication with the atmosphere. The canister is also in communication with an intake system of the engine. The communicating tube of the canister has its opening at a position near to the muffler as well as to an inner surface, on the side of the muffler, of the muffler cover, to improve the purge characteristics of the adsorbent so that the usable live of the adsorbent is increased.
    • 发电装置包括用于驱动发电机的发动机,用于覆盖从消声器的外侧向发动机供应的排气的消声器的消声器盖,用于储存供给到发动机的燃料的燃料箱,以及容纳 用于吸附在其上从燃料箱蒸发的燃料的吸附剂。 所述罐包括连通管,所述连通管将所述罐与大气连通。 罐也与发动机的进气系统连通。 罐的连通管在靠近消音器的位置以及消声器侧面上的内表面上具有开口,以改善吸附剂的吹扫特性,使得可使用的活 吸附剂增加。
    • 18. 发明授权
    • Absorption chiller-heater
    • 吸收式冷水机
    • US07143592B2
    • 2006-12-05
    • US10772465
    • 2004-02-06
    • Mitsuru KodamaTakahide SugiyamaKazuhide Ishida
    • Mitsuru KodamaTakahide SugiyamaKazuhide Ishida
    • F25B15/00
    • F25B27/02F25B15/00F25B2333/003Y02A30/274Y02P80/152
    • There is constructed a constitution including an exhaust heat fired regenerator constituting a heat source by exhaust heat from external machine generating the exhaust heat, a heat fluid flow path for making a fluid having the exhaust heat constituting the heat source or a fluid recovering the exhaust heat flow to the exhaust heat fired regenerator, flow path open/close device provided at the heat fluid flow path for controlling to make the heat fluid flow to the exhaust heat fired regenerator 1 and cut off the fluid therefrom by opening and closing the exhaust fluid flow path, first regenerator temperature detector for detecting temperature of the exhaust heat fired regenerator, a directly fired regenerator constituting a heat source by combustion heat of a burner, second regenerator temperature detector for detecting temperature of the directly fired regenerator, heat medium temperature detector for detecting temperature of a heat medium cooled or heated by an evaporator and controller for controlling to operate the flow path open/close device and the burner, in which a combustion amount of the burner can be increased and reduced and the controller controls to open and close the flow path open/close device and increase and reduce the combustion amount of the burner in accordance with the temperature of the heat medium detected by the heat medium temperature detector and a higher one of temperature of the temperature of the exhaust heat fired regenerator detected by the first regenerator temperature detector and the temperature of the directly fired regenerator detected by the second regenerator temperature detector.
    • 构成了包括由产生废热的外部机器排出的热量构成热源的废热再生器,构成具有构成热源的排气热的流体的流体流路,或回收排气热的流体 流到排气热再生器,流路开闭装置,其设置在热流体流路处,用于控制热流体流向废热再生器1,并通过打开和关闭排出流体流来切断流体 路径第一再生器温度检测器,用于检测排气热再生器的温度,通过燃烧器的燃烧热构成热源的直接燃烧的再生器,用于检测直接燃烧的再生器的温度的第二再生器温度检测器,用于检测的热介质温度检测器 通过蒸发器冷却或加热的热介质的温度和控制 用于控制操作流路打开/关闭装置和燃烧器,其中可以增加和减少燃烧器的燃烧量,并且控制器控制打开和关闭流路打开/关闭装置并增加和减少燃烧 根据由热介质温度检测器检测到的热介质的温度的燃烧器的量和由第一再生器温度检测器检测的排气热再生器的温度的温度和直接燃烧的再生器的温度 由第二再生器温度检测器检测。
    • 19. 发明授权
    • Absorption type heat pump
    • 吸收式热泵
    • US5557946A
    • 1996-09-24
    • US412453
    • 1995-03-29
    • Takahide SugiyamaHisashi TakahashiNakahiro Inagaki
    • Takahide SugiyamaHisashi TakahashiNakahiro Inagaki
    • F25B15/04F25B15/02F25B33/00F25B15/00F25B37/00
    • F25B15/02F25B2315/002Y02B30/62
    • An invert rectifier is provided in which: cooling medium vapor sent from the evaporator is contacted with a weak solution sent from the regeneration unit, and the temperature of cooling medium vapor and the vapor component of absorbent are increased by the action of invert rectification, so that the enthalpy of cooling medium vapor supplied to the vapor-liquid mixer is enhanced. In this invert rectifier, cooling medium vapor is introduced to a lower portion of the container and a residual portion of the weak solution or all weak solution is introduced to an upper portion of the vapor-liquid mixer 16, so that the introduced cooling medium vapor and weak solution are subjected to vapor-liquid contact by the action of an opposed flow. Due to the foregoing, cooling medium vapor is generated, the temperature of which is high, and the amount of the vapor component of absorbent of which is large, so that the enthalpy of cooling medium vapor is enhanced. Even when the thus obtained cooling medium vapor is mixed with a weak solution in the vapor-liquid mixer 16, the temperature is seldom lowered in the mixing process, and an amount of heat exchange in the absorption regeneration heat exchanging section is increased, and the result coefficient is enhanced.
    • 提供了一种逆变整流器,其中:从蒸发器发送的冷却介质蒸汽与从再生单元发送的弱溶液接触,冷却介质蒸气的温度和吸收剂的蒸汽成分通过反向整流的作用而增加,因此 提供给蒸气 - 液体混合器的冷却介质蒸气的焓增强。 在这种倒置整流器中,将冷却介质蒸气引入到容器的下部,并且将弱溶液或所有弱溶液的残留部分引入气液混合器16的上部,使得引入的冷却介质蒸气 并且弱溶液通过相对流动的作用进行气 - 液接触。 由于上述原因,产生冷却介质蒸汽,其温度高,吸收剂的蒸汽成分量大,从而提高冷却介质蒸气的焓。 即使当这样获得的冷却介质蒸气与气液混合器16中的弱溶液混合时,混合过程中的温度很少降低,吸收再生热交换部的热交换量增加, 结果系数提高。