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    • 11. 发明专利
    • Laser ignition device and laser ignition type engine equipped with the same
    • 具有相同功能的激光点火装置和激光点火式发动机
    • JP2006057474A
    • 2006-03-02
    • JP2004237879
    • 2004-08-18
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KURODA MASAHIROAKAGAWA HIROKAZUISHIDA HIROYUKI
    • F02P23/04
    • PROBLEM TO BE SOLVED: To provide a laser ignition device improving durability of optical fiber by preventing damage of a vicinity of a laser input part of the optical fiber by laser with keeping laser transmission performance by optic fiber good in a laser ignition system transmitting laser to each cylinder through optical fiber, and a laser ignition type engine equipped with the same.
      SOLUTION: In the laser ignition device making laser from laser generating device distributed to a plurality of optical fibers by a distributing device and enter into optical fiber from the input part of the optical fiber, generating plasma by irradiating laser on a target from an output part through the optical fiber and burning a body to be burnt by the plasma, each optical fiber has the output part of larger diameter than diameter of the input part.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:提供一种激光点火装置,其通过防止光纤的激光输入部分附近的激光损伤光纤的光纤的耐久性,同时保持光纤的激光传输性能在激光点火系统中良好 通过光纤将激光发射到每个气缸,以及配备该激光点火式发动机的发动机。 解决方案:在激光点火装置中,从激光发生装置制造激光,通过分配装置分配到多个光纤,并从光纤的输入部分进入光纤,通过将激光照射在靶上产生等离子体 输出部分通过光纤并燃烧被等离子体燃烧的物体,每个光纤的输出部分的直径大于输入部分的直径。 版权所有(C)2006,JPO&NCIPI
    • 12. 发明专利
    • Laser ignition type engine including laser focus adjusting device in changing ignition timing
    • 激光点火型发动机,包括激光焦点调整装置,改变点火时刻
    • JP2005240782A
    • 2005-09-08
    • JP2004055208
    • 2004-02-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • AKAGAWA HIROKAZUTAKAISHI TATSUOKURODA MASAHIROINANAGA NORIYASU
    • F02P23/04
    • PROBLEM TO BE SOLVED: To provide a laser ignition engine including a laser optical guide, changing the focus position of laser light projected on a target member fixed to the surface of a piston when it is necessary to change the ignition timing in a fixed target system laser ignition type engine.
      SOLUTION: In this laser ignition type engine, the target member is provided on the surface of the piston, and mixed air in a combustion chamber is ignited by plasma generated by applying laser light on the target member. The laser light guide for projecting laser light guided from a laser emitting device into the combustion chamber includes: one condenser lens or a condenser lens system formed by combination of two condenser lenses; and an airtight quartz glass transmitting the converged laser light, wherein the position of the condenser lens or one of the condenser lens system is varied along the optical path of the laser light.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种激光点火发动机,其包括激光光导,当需要改变点火正时时,改变投射在固定到活塞表面上的目标构件上的激光的聚焦位置 固定目标系统激光点火式发动机。 解决方案:在该激光点火型发动机中,目标构件设置在活塞的表面上,并且通过在目标构件上施加激光而产生的等离子体在燃烧室中的混合空气被点燃。 用于将从激光发射装置引导的激光投射到燃烧室中的激光导向器包括:一个聚光透镜或由两个聚光透镜组合形成的聚光透镜系统; 以及透射会聚激光的气密石英玻璃,其中聚光透镜或聚光透镜系统中的一个的位置沿激光的光路变化。 版权所有(C)2005,JPO&NCIPI
    • 13. 发明专利
    • Integrated tandem junction solar cell and its manufacturing method
    • 集成串联太阳能电池及其制造方法
    • JP2005033006A
    • 2005-02-03
    • JP2003196615
    • 2003-07-14
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKANO GIYOUMINISHIMIYA TATSUYUKISONOBE HIROYUKIKURODA MASAHIROUDA KAZUTAKAKONDO KATSUHIKOYAMAGUCHI KENGOTAKEUCHI YOSHIAKI
    • H01L31/04
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To provide an integrated tandem junction solar cell capable of preventing the side leak and improving the module efficiency of the solar cell, and to provide its manufacturing method. SOLUTION: The integrated tandem solar cell has a substrate 2 and a plurality of generating cells 8 connected in series on the substrate 2 and. The cell 8 is provided on the substrate 2 by laminating a first electrode layer 4, a first generating layer 11, a second generating layer 21, and a second electrode layer 6 in this order. The layer 21 includes a first semiconductor layer 22, a second semiconductor layer 24, and a third semiconductor layer 26; and has an electrode groove 31, a first groove 32, a second groove 34, and a third groove 36. The groove 31 extends from the surface of the layer 4 to the substrate 2, the groove 32 from the layer 22 to the layer 4, the groove 34 from the layer 26 to the layer 4, and the groove 36 from the layer 6 to the layer 4, respectively. The layer 6 is connected to the layer 4 through the groove 34. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够防止侧面泄漏并提高太阳能电池的模块效率的集成串联结太阳能电池,并提供其制造方法。 解决方案:集成串联太阳能电池具有基板2和在基板2上串联连接的多个发电单元8。 电池8通过依次层叠第一电极层4,第一生成层11,第二生成层21和第二电极层6而设置在基板2上。 层21包括第一半导体层22,第二半导体层24和第三半导体层26; 并且具有电极槽31,第一槽32,第二槽34和第三槽36.槽31从层4的表面延伸到基板2,槽32从层22延伸到层4 ,从层26到层4的凹槽34,以及从层6到层4的凹槽36。 层6通过凹槽34连接到层4.版权所有:(C)2005,JPO&NCIPI
    • 16. 发明专利
    • Device for measuring thickness of transmissive film and film producing apparatus employing the same
    • 用于测量传输薄膜厚度的装置和使用其的制造装置
    • JP2003065727A
    • 2003-03-05
    • JP2001257886
    • 2001-08-28
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SASAGAWA EISHIROMIYAZONO NAOYUKIUENO MOICHIKURODA MASAHIRO
    • G01B11/06C23C14/54C23C16/52H01L21/205H01L21/66H01L31/04
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To provide a device for measuring thickness of transmissive film, which can automatically, rapidly and easily measure the thickness of a film formed on a substrate, rapidly find a defective substrate and produce a substrate such as a solar cell or the like with high quality, and to provide a film producing apparatus employing the device.
      SOLUTION: A light source and photo receiving elements are arranged opposite to each other on the straddling sides of the face of a substrate X being an object to be measured, and a light source unit 2 composed of a fluorescent light is used as the light source, and a plurality of photo transistors are used as the photo receiving elements. The substrate X is moved along a conveyor line 6 while being detected its movement by each substrate position sensor 7,8, and the measurement of the formed film Xf is carried out when it passes through a measuring section 5.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了提供一种可以自动,快速且容易地测量形成在基板上的膜的厚度的透射膜的厚度测量装置,快速找到有缺陷的基板并制造诸如太阳能电池或基板 像高品质一样,并且提供一种使用该装置的薄膜制造装置。 解决方案:将光源和光接收元件彼此相对布置在作为待测物体的基板X的表面的跨接侧上,并且使用由荧光灯构成的光源单元2作为光源 ,并且使用多个光电晶体管作为光接收元件。 基板X沿着输送线6移动,同时被每个基板位置传感器7,8检测到其移动,并且当其形成的薄膜Xf通过测量部分5时进行测量。
    • 17. 发明专利
    • Laser ignition type engine equipped with laser device with concave mirror
    • 带激光装置的激光点火式发动机
    • JP2005273622A
    • 2005-10-06
    • JP2004092201
    • 2004-03-26
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • AKAGAWA HIROKAZUTAKAISHI TATSUOKURODA MASAHIROINANAGA NORIYASU
    • F02P23/04
    • PROBLEM TO BE SOLVED: To provide a laser ignition type engine, suppressing deviation of laser beam due to tilting of laser beam or the position between pulses at the time of pulsating a plurality of pulses of laser beam, avoiding increase in a device cost caused by enlarging a laser beam supplying system by reducing a laser energy loss due to the deviation, precisely distributing the laser beam to a multiple cylinders by one laser oscillating device, and freely adjusting ignition timing at the time of starting and in all the operating area.
      SOLUTION: The laser ignition type engine comprises the same number of reflecting mirrors as cylinders attached on an outer peripheral portion of a mirror supporting disc driven to rotate interlockingly with a rotation shaft of the engine in a circumferential direction, at a predetermined angle, and reflecting the laser beams from the laser oscillating device according to rotations of the mirror supporting disc; and a plurality of concave mirrors provided corresponding to the reflecting mirrors, and reflecting the laser beams from the reflecting mirrors to condense at one point about each reflecting mirror. An entrance of a laser transmitting passage of each cylinder is disposed at a light condensing portion of each concave mirror.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种激光点火式发动机,抑制激光束的倾斜引起的激光束的偏离或脉冲多个激光束脉冲之间的脉冲之间的位置,避免了装置的增加 通过减少由于偏差导致的激光能量损失而放大激光束供给系统造成的成本,通过一个激光振荡装置将激光束精确地分配到多个气缸,以及在启动时和在所有操作中自由调节点火正时 区。 解决方案:激光点火式发动机包括与安装在反射镜支撑盘的外周部分上的气缸相同数量的反射镜,该反射镜被驱动以与发动机的旋转轴在圆周方向上以预定角度互锁地旋转 并且根据反射镜支撑盘的旋转反射来自激光振荡装置的激光束; 以及对应于反射镜设置的多个凹面镜,并且反射来自反射镜的激光束,以围绕每个反射镜在一点凝结。 每个圆筒的激光传输通道的入口设置在每个凹面镜的聚光部分。 版权所有(C)2006,JPO&NCIPI
    • 18. 发明专利
    • Laser ignition type engine including laser supply system with mirror
    • 激光点火型发动机,包括带镜子的激光供应系统
    • JP2005240780A
    • 2005-09-08
    • JP2004055206
    • 2004-02-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • AKAGAWA HIROKAZUTAKAISHI TATSUOKURODA MASAHIROINANAGA NORIYASU
    • F02P23/04
    • PROBLEM TO BE SOLVED: To provide a laser ignition type engine including a laser supply system, accurately distributing laser light to multi-cylinder with one laser oscillator and freely adjusting the ignition timing in all operation regions in starting the engine.
      SOLUTION: In this laser ignition type engine, laser light oscillated from a laser oscillator is transmitted to the respective cylinders and applied into the cylinder to generate plasma, and the gas is ignited by the plasma. The engine includes partial mirrors driven to rotate and provided with a gradient at a plurality of different angles along the circumferential direction of a rotating shaft to reflect the laser light from the laser oscillator, wherein the laser transmission passage of the same number as that of the mirrors are provided, and the respective light entering parts are disposed in positions allowing the laser light reflected by the respective mirrors to enter the parts.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种包括激光供给系统的激光点火式发动机,通过一个激光振荡器将激光精确地分配到多气缸,并且在启动发动机时在所有操作区域中自由调节点火正时。 解决方案:在这种激光点火式发动机中,从激光振荡器振荡的激光传输到各个气缸并施加到气缸中以产生等离子体,并且气体被等离子体点燃。 发动机包括驱动旋转的部分反射镜,沿着旋转轴的圆周方向以多个不同的角度设置梯度以反射来自激光振荡器的激光,其中激光传输通道的数量与 设置反射镜,并且将各个光进入部件设置在允许由各个反射镜反射的激光进入部件的位置。 版权所有(C)2005,JPO&NCIPI
    • 19. 发明专利
    • Integrated tandem connection solar cell and manufacturing method of integrated tandem connection solar cell
    • 一体化连接连接太阳能电池和集成连接太阳能电池的制造方法
    • JP2005093939A
    • 2005-04-07
    • JP2003328867
    • 2003-09-19
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKANO GIYOUMINISHIMIYA TATSUYUKISONOBE HIROYUKIUDA KAZUTAKAKURODA MASAHIROKONDO KATSUHIKOYAMAGUCHI KENGOTAKEUCHI YOSHIAKI
    • H01L31/04
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To provide an integrated tandem connection solar cell which prevents a side leak of the solar cell and improves module efficiency, and a manufacturing method of the integrated tandem connection solar cell. SOLUTION: The integrated tandem connection solar cell to be used includes a plurality of power generation cells 8 connected in series with a substrate 2. The power generation cells 8 include a first electrode layer 4 provided on the substrate 2, a first power generation layer 11 provided on the above, a second power generation layer 21 provided on the above, and a second electrode layer 6 provided on the above. The cells also include an electrode slot 31 extended to the substrate 2 from a surface of the first electrode layer 4, a first slot 34 extended to the first electrode layer 4 from a surface of the second power generation layer 21, and a second slot 36 extended to the first electrode layer 4 from a surface of the second electrode layer 6. The second electrode layer 6 is connected to the first electrode layer 4 through the first slot 34 just as connected in series with other adjoining power generation cells 8. A portion from a top of the electrode slot 31 to the first slot 34 in the first power generation layer 11 and the second power generation layer 21 has resistance higher than predetermined resistance. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种防止太阳能电池侧面泄漏并提高模块效率的集成串联连接太阳能电池,以及集成串联连接太阳能电池的制造方法。 解决方案:所使用的集成串联太阳能电池包括与基板2串联连接的多个发电单元8.发电单元8包括设置在基板2上的第一电极层4,第一电力 上述设置的发电层11,设置在其上的第二发电层21和设置在其上的第二电极层6。 电池还包括从第一电极层4的表面延伸到基板2的电极槽31,从第二发电层21的表面延伸到第一电极层4的第一槽34和第二槽36 从第二电极层6的表面延伸到第一电极层4.第二电极层6通过第一槽34连接到第一电极层4,正如与其他相邻的发电单元8串联连接。部分 从电极槽31的顶部到第一发电层11中的第一槽34,第二发电层21具有高于预定电阻的电阻。 版权所有(C)2005,JPO&NCIPI
    • 20. 发明专利
    • Thin film processing apparatus and processing method
    • 薄膜加工设备和加工方法
    • JP2005019818A
    • 2005-01-20
    • JP2003184577
    • 2003-06-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KURODA MASAHIROUDA KAZUTAKAKOKAJI SOJI
    • G01B11/06B23K26/00B23K101/36H01L31/04
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To provide a thin film processing apparatus capable of adjusting the intensity of a laser beam in matching with the film thickness of a part of a film from which the film part is removed. SOLUTION: The thin film processing apparatus includes: a film thickness measurement section for measuring the thickness of a film (13) formed on a substrate (10); a laser (1) for outputting the laser beam (50) for removing part of the film (13); and laser adjustment sections (2, 7) for adjusting the intensity of the laser beam (50) on the basis of the thickness of the film (13) measured by the film thickness measurement section. The film thickness measurement section includes: an irradiation section (5) for irradiating the film with an electromagnetic wave; and a measurement section (6) for measuring the electromagnetic wave transmitted through the film (13). The film thickness measurement section measures the film thickness of the part of the film to be removed and can properly adjust the intensity of the laser beam (50). COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种薄膜处理设备,其能够根据去除了膜部分的膜的一部分的膜厚来调节激光束的强度。 解决方案:薄膜处理设备包括:用于测量形成在基板(10)上的薄膜(13)的厚度的薄膜厚度测量部分; 用于输出用于去除胶片(13)的一部分的激光束(50)的激光器(1); 以及用于基于由膜厚测量部测量的膜(13)的厚度来调节激光束(50)的强度的激光调节部(2,7)。 膜厚测量部分包括:用电磁波照射该膜的照射部分(5); 以及用于测量透过薄膜(13)的电磁波的测量部分(6)。 膜厚测量部分测量要去除的膜的部分的膜厚度并且可以适当地调节激光束(50)的强度。 版权所有(C)2005,JPO&NCIPI