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    • 12. 发明申请
    • VIDEO AND AUDIO REPRODUCTION SYSTEM, DISTRIBUTION DEVICE, AND SYNCHRONIZATION ADJUSTMENT METHOD
    • 视频和音频再现系统,分发设备和同步调整方法
    • US20100166382A1
    • 2010-07-01
    • US12630032
    • 2009-12-03
    • Masahiro Ogawa
    • Masahiro Ogawa
    • H04N5/91
    • H04H20/18H04N21/4307
    • A distribution device includes a video data distributing section which distributes video reproducing video data to an external video display device, and an audio data distributing section for distributing audio reproducing audio data to an external audio output device. The audio data distributing section includes an audio distribution delay unit for delaying the distribution of the audio data. The distribution device is configured to be able to distribute the audio data of a determination audio and the video data of a determination video. The determination video is a video with which a viewer can visually judge a timing the determination audio is to be output from the audio output device. The determination audio and the determination video are contained in synchronization adjustment test content.
    • 分配装置包括将视频再现视频数据分配给外部视频显示装置的视频数据分配部分和用于将音频再现音频数据分配到外部音频输出装置的音频数据分配部分。 音频数据分配部分包括用于延迟音频数据分布的音频分发延迟单元。 配置装置被配置为能够分配确定音频的音频数据和确定视频的视频数据。 确定视频是观看者可以通过视频判断从音频输出装置输出确定音频的定时的视频。 确定音频和确定视频包含在同步调整测试内容中。
    • 13. 发明申请
    • EVAPORATING APPARATUS
    • 蒸气装置
    • US20100071623A1
    • 2010-03-25
    • US12441934
    • 2007-10-01
    • Shingo WatanabeYuji OnoKoyu HasegawaMasahiro OgawaKouichi Honda
    • Shingo WatanabeYuji OnoKoyu HasegawaMasahiro OgawaKouichi Honda
    • C23C16/00
    • C23C14/12C23C14/243
    • Disclosed is an evaporating apparatus for performing a film forming process on a target object to be processed by vapor deposition, wherein a processing chamber and a vapor generating chamber are disposed adjacent to each other, gas exhaust mechanisms for depressurizing an inside of the processing chamber and an inside of the vapor generating chamber are installed, a vapor discharge opening for discharging a vapor of the film forming material is disposed in the processing chamber, vapor generating units for vaporizing the film forming material and control valves for controlling a supply of the vapor of the film forming material are disposed in the vapor generating chamber, and flow paths, which are not exposed to an outside of the processing chamber and the vapor generating chamber, for supplying the vapor of the film forming material generated in the vapor generating units to the vapor discharge opening are installed.
    • 本发明公开了一种用于对通过气相沉积处理的目标物体进行成膜处理的蒸发装置,其中处理室和蒸汽发生室彼此相邻设置,用于对处理室内部进行减压的排气机构, 蒸汽发生室内部安装有用于排出成膜材料的蒸汽的蒸汽排放口,用于蒸发成膜材料的蒸汽发生单元和用于控制成膜材料供应的控制阀 成膜材料设置在蒸汽发生室中,并且没有暴露于处理室和蒸气发生室的外部的流路用于将在蒸汽发生单元中产生的成膜材料的蒸汽供应到 安装蒸汽排放口。
    • 16. 发明申请
    • Brayton Cycle Device And Exhaust Heat Energy Recovery Device For Internal Combustion Engine
    • 用于内燃机的布雷顿循环装置和排气热能回收装置
    • US20070277522A1
    • 2007-12-06
    • US10589333
    • 2005-01-25
    • Masahiro OgawaShinichi MitaniAiko Sugiura
    • Masahiro OgawaShinichi MitaniAiko Sugiura
    • F01C13/04F01C1/02
    • F01C1/0223F01C11/004F01C11/008F04C18/0207
    • An exhaust heat energy recovery apparatus for an internal combustion engine that efficiently recovers exhaust heat energy without increasing engine exhaust back pressure, and a Brayton cycle apparatus applicable to the exhaust heat energy recovery apparatus. A Brayton cycle apparatus 1 using a scroll compressor 4 and a scroll expander 6 has a simplified and downsized structure. A working fluid is compressed inside a scroll compressor 4 and expanded inside a scroll expander 6 in spaces partitioned and sealed by combinations of fixed scrolls and orbital scrolls. The conversion efficiency from heat energy to kinetic energy is high. Heat is transferred from the exhaust to the working fluid through a pipe wall of a flow passage 30a and an expander case 12 of the scroll expander 6. This further downsizes the Brayton cycle apparatus 1. The back pressure of the energy source including the exhaust is unaffected.
    • 一种用于在不增加发动机排气背压的同时有效地回收排气热能的内燃机的排气热能回收装置,以及适用于排气热能回收装置的布雷顿循环装置。 使用涡旋压缩机4和涡旋式膨胀机6的布雷顿循环装置1具有简化且小型化的结构。 工作流体被压缩在涡旋压缩机4内部,并在涡卷膨胀器6内膨胀,在由固定涡卷和轨道涡卷的组合分隔和密封的空间中。 从热能到动能的转换效率高。 热量通过流路30a的管壁和涡卷膨胀机6的膨胀机壳体12从排气口传递到工作流体。 这进一步缩小了布雷顿循环设备1。 包括排气的能量源的背压不受影响。
    • 19. 发明授权
    • Air-conditioning system and operation control method thereof
    • 空调系统及其运行控制方法
    • US06314744B1
    • 2001-11-13
    • US09296627
    • 1999-04-23
    • Masahiro Ogawa
    • Masahiro Ogawa
    • F25B700
    • F25B25/02
    • A hybrid air-conditioner comprises a vapor adsorption cycle air-conditioner, a vapor compression refrigerating cycle air-conditioner, an external heat source circuit and the like. In the case where the external heat source temperature is in a high temperature range, the cooling operation is performed using only the vapor adsorption cycle air-conditioner. In the case where the external heat source temperature is in a low temperature range, the cooling operation is performed using only the vapor compression refrigerating cycle air-conditioner. In the case where the external heat source temperature is in an intermediate temperature range, the cooling operation is performed using both the vapor adsorption cycle air-conditioner and the vapor compression refrigerating cycle air-conditioner. As a result, the temperature restrictions on the vapor adsorption cycle air-conditioner can be removed and the range of operation allowance can be widened.
    • 混合空调包括蒸汽吸附循环空调,蒸气压缩制冷循环空调,外部热源电路等。 在外部热源温度处于高温范围的情况下,仅使用蒸气吸附循环空调机进行冷却运转。 在外部热源温度处于低温范围的情况下,仅使用蒸气压缩式制冷循环空调机进行制冷运转。 在外部热源温度处于中间温度范围的情况下,使用蒸气吸附循环空调机和蒸气压缩式制冷循环空调机进行冷却运转。 结果,可以消除对蒸汽吸附循环空调的温度限制,并且可以扩大操作余量的范围。