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    • 3. 发明申请
    • Window assembly-producing method and window plate
    • 窗组装生产方法和窗板
    • US20060157890A1
    • 2006-07-20
    • US10563374
    • 2004-06-14
    • Katsuyuki AmanoAkihiro SuzukiTatsuya TamuraHisao Kondo
    • Katsuyuki AmanoAkihiro SuzukiTatsuya TamuraHisao Kondo
    • B29C45/14
    • B29C45/14377B29C45/14311B29C45/14434B29C45/14778B29C2045/0093B29K2709/08B29L2031/7782B60J1/004
    • An adhesive agent is uniformly applied to a back surface of a window pane, the application made to an area where a covering member is planned to be adhered and to an area where a positioning fixture and a holding portion are planned to be adhered, the application is also made continuously such that adhesive agent layers of both planned adhesion areas being continuous with an adhesive agent continuous area in between. After that, the window pane and the positioning fixture are set in an injection mold and a polymer material is injected in the mold. This results that the covering member and the holding portion are formed into a shape where they are connected by a connection portion for material flow, which connection portion is formed at a position other than the adhesive agent continuous area. The forming results that the covering member and the holding portion are adhered and fixed to the back surface of the window pane with the adhesive agent layers in between. After the forming process above, the connection portion for material flow is removed.
    • 将粘合剂均匀地施加到窗玻璃的后表面上,将涂布物制成覆盖部件被计划粘附的区域和计划粘贴定位夹具和保持部分的区域,该应用 也使得两个计划的粘合区域的粘合剂层与其间的粘合剂连续区域连续地连续地制成。 之后,将窗玻璃和定位夹具放置在注射模具中,并将聚合物材料注入模具中。 因此,覆盖部件和保持部形成为通过用于材料流动的连接部连接的形状,该连接部形成在粘接剂连续区域以外的位置。 形成结果是,覆盖构件和保持部分粘合并固定到窗玻璃的后表面,其间具有粘合剂层。 在上述成形过程之后,物料流的连接部分被去除。
    • 4. 发明授权
    • Window assembly manufacturing method and window pane
    • 窗户装配制造方法和窗格
    • US07754128B2
    • 2010-07-13
    • US10563374
    • 2004-06-14
    • Katsuyuki AmanoAkihiro SuzukiTatsuya TamuraHisao Kondo
    • Katsuyuki AmanoAkihiro SuzukiTatsuya TamuraHisao Kondo
    • A61M25/00
    • B29C45/14377B29C45/14311B29C45/14434B29C45/14778B29C2045/0093B29K2709/08B29L2031/7782B60J1/004
    • An adhesive agent is uniformly applied to a back surface of a window pane, the application made to an area where a covering member is planned to be adhered and to an area where a positioning fixture and a holding portion are planned to be adhered, the application is also made continuously such that adhesive agent layers of both planned adhesion areas being continuous with an adhesive agent continuous area in between. After that, the window pane and the positioning fixture are set in an injection mold and a polymer material is injected in the mold. This results that the covering member and the holding portion are formed into a shape where they are connected by a connection portion for material flow, which connection portion is formed at a position other than the adhesive agent continuous area. The forming results that the covering member and the holding portion are adhered and fixed to the back surface of the window pane with the adhesive agent layers in between. After the forming process above, the connection portion for material flow is removed.
    • 将粘合剂均匀地施加到窗玻璃的后表面上,将涂布物制成覆盖部件被计划粘附的区域和计划粘贴定位夹具和保持部分的区域,该应用 也使得两个计划的粘合区域的粘合剂层与其间的粘合剂连续区域连续地连续地制成。 之后,将窗玻璃和定位夹具放置在注射模具中,并将聚合物材料注入模具中。 因此,覆盖部件和保持部形成为通过用于材料流动的连接部连接的形状,该连接部形成在粘接剂连续区域以外的位置。 形成结果是,覆盖构件和保持部分粘合并固定到窗玻璃的后表面,其间具有粘合剂层。 在上述成形过程之后,物料流的连接部分被去除。
    • 6. 发明授权
    • DC power supply apparatus
    • 直流电源装置
    • US08937821B2
    • 2015-01-20
    • US13021219
    • 2011-02-04
    • Katsuyuki AmanoDaisuke SuzukiKatsuhiko Saito
    • Katsuyuki AmanoDaisuke SuzukiKatsuhiko Saito
    • H02M1/12
    • H02M7/219Y02B70/1483
    • A DC power supply apparatus comprising: a rectifying circuit including, a first rectifying portion, a second rectifying portion, a third rectifying portion and a fourth rectifying portion; a current detection portion; a first switching portion; and a second switching portion; wherein each of the first rectifying portion cooperatively operating with the first switching portion and the second rectifying portion cooperatively operating with the second switching portion is a semiconductor element which is formed by using a Schottky junction formed between silicon carbide or gallium nitride and metal and has a withstanding voltage property with respect to a voltage of an AC power supply.
    • 一种直流电源装置,包括:整流电路,包括第一整流部分,第二整流部分,第三整流部分和第四整流部分; 电流检测部分; 第一切换部; 和第二切换部分; 其中与第一开关部分和第二整流部分协同工作的第一整流部分与第二开关部分协作地操作的是通过使用在碳化硅或氮化镓和金属之间形成的肖特基结而形成的半导体元件,并且具有 相对于交流电源的电压具有耐受电压特性。
    • 10. 发明授权
    • Refrigeration cycle apparatus and outdoor heat source unit
    • 制冷循环装置和室外热源单元
    • US09551515B2
    • 2017-01-24
    • US13803502
    • 2013-03-14
    • Katsuyuki Amano
    • Katsuyuki Amano
    • F25B29/00F24F1/24F25B31/00
    • F25B29/003F24F1/24F25B31/006F25B2600/021F25B2600/11F25B2600/111F25B2700/2103F25B2700/21153F25B2700/21154Y02B30/741Y02P80/152
    • There is provided a refrigeration cycle apparatus in which an outdoor heat source unit, an indoor unit, and a water heating unit are connected, and an air conditioning operation and a water heating operation can be performed separately, and an exhaust-heat recovery operation can be performed by simultaneously performing air cooling and water heating. The outdoor heat source unit includes a compressor for compressing refrigerant, a refrigerant air-heat exchanger that performs heat exchange between the refrigerant and outside air, a fan for cooling the refrigerant air-heat exchanger, a control device that includes an inverter device for driving the compressor, and a heat sink for dissipating heat of the inverter device, and a switching element in the inverter device is constituted by an element formed by a wide bandgap semiconductor.
    • 提供了一种制冷循环装置,其中连接有室外热源单元,室内单元和加热单元,并且可以单独执行空调操作和加热操作,并且排热恢复操作可以 通过同时执行空气冷却和水加热来执行。 室外热源单元包括用于压缩制冷剂的压缩机,在制冷剂和外部空气之间进行热交换的制冷剂空气热交换器,用于冷却制冷剂空气热交换器的风扇,包括用于驱动的​​逆变器装置的控制装置 压缩机和用于散热逆变器装置的散热片,逆变器装置中的开关元件由宽带隙半导体形成的元件构成。