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    • 2. 发明授权
    • Drive force transmitting device for ice-making tray of automatic
ice-making machine
    • 自动制冰机制冰盘驱动力传递装置
    • US4332146A
    • 1982-06-01
    • US209660
    • 1980-11-24
    • Susumu YamazakiYoshinari NagoyaMasajiro Shimizu
    • Susumu YamazakiYoshinari NagoyaMasajiro Shimizu
    • F25C1/04F25C5/06
    • F25C1/04F25C2305/022Y10T74/1824
    • A device for transmitting drive force to an ice-making tray of an ice making machine includes a slider interposed between a drive motor gear and a gear directly connected to the ice-making tray, and a cam gear meshing with the drive motor gear. The slider is formed with a gear portion meshing with the gear directly connected to the ice-making tray for rotating same both clockwise and counterclockwise, and a guide groove receiving therein an actuating pin formed in the cam gear for moving the slider in pivotal movement in a predetermined range of angles. Rotational movement of a drive motor can be converted into clockwise and counterclockwise rotational movements of the ice-making tray by the guide groove cooperating with the actuating pin, and a twisting movement and a countertwisting movement can be imparted to the ice-making tray by the conjoint actions of the slider, cam gear having the actuating pin, gear directly connected to the ice-making tray and bent rise portions formed in a frame, so that the ice cubes formed in the ice-making tray can be automatically released therefrom.
    • 用于将驱动力传递到制冰机的制冰盘的装置包括:插入在驱动马达齿轮和直接连接到制冰托盘的齿轮之间的滑块以及与驱动马达齿轮啮合的凸轮齿轮。 滑块形成有与直接连接到制冰托盘的齿轮啮合的齿轮部分,用于同时顺时针和逆时针旋转,以及引导槽,其中容纳有形成在凸轮齿轮中的致动销,用于使滑块在枢转运动中移动 预定的角度范围。 驱动马达的旋转运动可以通过与致动销协作的引导槽转换成制冰托盘的顺时针和逆时针的旋转运动,并且扭转运动和逆转运动可以通过 滑块,具有致动销的凸轮齿轮,直接连接到制冰托盘的齿轮和形成在框架中的弯曲上升部分的联动作用,使得制冰托盘中形成的冰块可以自动地从其中释放。
    • 4. 发明授权
    • Semiconductor optical amplifier
    • 半导体光放大器
    • US07859746B2
    • 2010-12-28
    • US12191418
    • 2008-08-14
    • Ken MoritoSusumu YamazakiShinsuke Tanaka
    • Ken MoritoSusumu YamazakiShinsuke Tanaka
    • H01S5/343
    • H01S5/1082H01S5/1014H01S5/1085H01S5/32366H01S5/50H01S5/5009H01S2301/02
    • A polarization-independent SOA is provided which uses an InP substrate (11) as a semiconductor substrate and uses GaInNAs having introduced tensile strain as an active layer (14). With this configuration, the polarization independence is achieved by introducing the tensile strain, and high saturation optical output power is realized by reducing the film thickness of the active layer (14) as well as the gain peak wavelength is increased by reducing the band gap of the active layer (14) through use of GaInNAs made by adding nitrogen (N) to GaInAs as a material of the active layer (14) so as to achieve high gain especially in C-band and L-band even when band filling exits at the time of injecting a high current into the active layer (14).
    • 提供了使用InP衬底(11)作为半导体衬底并且使用具有引入的拉伸应变的GaInNA作为有源层(14)的偏振无关的SOA。 通过这种结构,通过引入拉伸应变来实现极化独立性,并且通过降低有源层(14)的膜厚度来实现高饱和光输出功率,并且通过降低有源层(14)的带隙来增加增益峰值波长 通过使用通过将氮(N)添加到GaInAs作为有源层(14)的材料而制成的GaInNA,以便即使在带填充离开时也实现高增益,特别是在C带和L带中,有源层(14) 将高电流注入有源层(14)的时间。
    • 5. 发明申请
    • IMAGE PROCESSING APPARATUS, DISPLAY DEVICE, AND IMAGE PROCESSING METHOD
    • 图像处理装置,显示装置和图像处理方法
    • US20100290670A1
    • 2010-11-18
    • US12692324
    • 2010-01-22
    • Susumu Yamazaki
    • Susumu Yamazaki
    • G06K9/00
    • H04N5/217G06T1/00H04N5/23229H04N5/2628H04N2101/00
    • According to one embodiment, an image processing apparatus includes an extracted coordinates setting module, an image generator, and an output module. The extracted coordinates setting module sets extracted coordinates in a captured image along a direction in which a viewpoint moves with respect to an object in the captured image. The image generator sequentially extracts partial areas from the captured image in which perspective deformation of the object has been corrected based on the extracted coordinates, and generates a plurality of partial area images from the partial areas. The partial areas are in a size corresponding to the viewing angle of the human eye calculated according to an angle of view of the captured image. The output module outputs a moving image including the partial area images as frames.
    • 根据一个实施例,图像处理装置包括提取的坐标设置模块,图像生成器和输出模块。 所提取的坐标设定模块沿着拍摄图像中的视点相对于物体移动的方向,在拍摄图像中设置提取的坐标。 图像生成器基于所提取的坐标从拍摄图像中顺序地提取部分区域,其中对象的透视变形被校正,并且从部分区域生成多个部分区域图像。 部分区域的尺寸对应于根据拍摄图像的视角计算的人眼的视角。 输出模块将包括部分区域图像的运动图像输出为帧。
    • 9. 发明授权
    • Catalyst support structure
    • 催化剂支撑结构
    • US07993597B2
    • 2011-08-09
    • US11837411
    • 2007-08-10
    • Naoki KinomotoSusumu Yamazaki
    • Naoki KinomotoSusumu Yamazaki
    • B01D53/88B01D53/94F01N3/035
    • F01N3/2875F01N13/004
    • A catalyst for purifying an exhaust gas can include a carrier having a honeycomb structure, an outer pipe for covering a part of the carrier, and a brazing foil for joining the outer peripheral surface of the carrier and the inner peripheral surface of the outer pipe on the downstream side of the catalyst. The catalyst can be fixed to a support flange such that an axial direction of the catalyst coincides with the direction in which an exhaust gas flows through an exhaust pipe. An upstream end of the brazing foil can be aligned with the upstream end of a catalyst fixing part of the support flange. An upstream end of the catalyst fixing part can be positioned upstream of the axial middle of the carrier. The brazing foil can be provided in a portion from the upstream end of the catalyst fixing part to the downstream side of the carrier. The catalyst can be supported at its generally middle part by the support flange. An upstream end of the outer pipe can be aligned with the upstream end of the catalyst fixing part.
    • 用于净化排气的催化剂可以包括具有蜂窝结构的载体,用于覆盖载体的一部分的外管和用于将载体的外周表面和外管的内周表面接合的钎焊箔, 催化剂的下游侧。 催化剂可以固定到支撑凸缘,使得催化剂的轴向方向与废气流过排气管的方向一致。 钎焊箔的上游端可以与支撑凸缘的催化剂固定部分的上游端对齐。 催化剂固定部分的上游端可以位于载体的轴向中间的上游。 钎焊箔可以从催化剂固定部分的上游端到载体的下游侧的部分中提供。 催化剂可以通过支撑凸缘在其大致中间部分支撑。 外管的上游端可与催化剂固定部的上游端对准。
    • 10. 发明申请
    • CATALYST SUPPORT STRUCTURE
    • 催化支撑结构
    • US20080089814A1
    • 2008-04-17
    • US11837411
    • 2007-08-10
    • Naoki KinomotoSusumu Yamazaki
    • Naoki KinomotoSusumu Yamazaki
    • B01D53/94F01N3/035
    • F01N3/2875F01N13/004
    • A catalyst for purifying an exhaust gas can include a carrier having a honeycomb structure, an outer pipe for covering a part of the carrier, and a brazing foil for joining the outer peripheral surface of the carrier and the inner peripheral surface of the outer pipe on the downstream side of the catalyst. The catalyst can be fixed to a support flange such that an axial direction of the catalyst coincides with the direction in which an exhaust gas flows through an exhaust pipe. An upstream end of the brazing foil can be aligned with the upstream end of a catalyst fixing part of the support flange. An upstream end of the catalyst fixing part can be positioned upstream of the axial middle of the carrier. The brazing foil can be provided in a portion from the upstream end of the catalyst fixing part to the downstream side of the carrier. The catalyst can be supported at its generally middle part by the support flange. An upstream end of the outer pipe can be aligned with the upstream end of the catalyst fixing part.
    • 用于净化排气的催化剂可以包括具有蜂窝结构的载体,用于覆盖载体的一部分的外管和用于将载体的外周表面和外管的内周表面接合的钎焊箔, 催化剂的下游侧。 催化剂可以固定到支撑凸缘,使得催化剂的轴向方向与废气流过排气管的方向一致。 钎焊箔的上游端可以与支撑凸缘的催化剂固定部分的上游端对齐。 催化剂固定部分的上游端可以位于载体的轴向中间的上游。 钎焊箔可以从催化剂固定部分的上游端到载体的下游侧的部分中提供。 催化剂可以通过支撑凸缘在其大致中间部分支撑。 外管的上游端可与催化剂固定部的上游端对准。