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    • 42. 发明申请
    • Virtual social group management system, virtual social group management method, and computer program
    • 虚拟社团管理系统,虚拟社团管理方法和计算机程序
    • US20090248882A1
    • 2009-10-01
    • US12314087
    • 2008-12-03
    • Tomohiro TakagiHitoshi Kamura
    • Tomohiro TakagiHitoshi Kamura
    • G06F15/16
    • G06Q30/02G06Q10/10
    • An SNS system is provided with: a user attribute storage unit that stores user attributes for each user; a community attribute storage unit that stores a community grade rank for each community; an access allowance/rejection determination unit that determines whether or not to allow a user to access a community based on the community grade rank of the community and the user attributes of the user; and a community viewing processing unit that executes a process for distributing the content uploaded in the community to the user in the case where the access allowance/rejection determination unit has determined to allow the user to access the social group, and does not execute the process for distributing the content uploaded in the community to the user in the case where the access allowance/rejection determination unit has determined to prohibit the user from accessing the social group.
    • SNS系统具有:存储每个用户的用户属性的用户属性存储单元; 社区属性存储单元,用于存储每个社区的社区等级; 访问允许/拒绝确定单元,其基于社区的社区等级等级和用户的用户属性来确定是否允许用户访问社区; 以及社区观看处理单元,其在访问许可/拒绝确定单元已经确定允许用户访问社交群组的情况下执行用于将在社区中上传的内容分发给用户的处理,并且不执行该处理 用于在访问允许/拒绝确定单元确定禁止用户访问社交群组的情况下将上传到社区中的内容分发给用户。
    • 45. 发明授权
    • Mechanism for performing water repellency processing on both sides simultaneously
    • 同时进行防水处理的机构
    • US06264751B1
    • 2001-07-24
    • US09214676
    • 1999-04-01
    • Hitoshi KamuraMasaaki YoshiharaHajime Kamiya
    • Hitoshi KamuraMasaaki YoshiharaHajime Kamiya
    • C23C1400
    • C23C14/044C23C16/04C23C16/458C23C16/4583
    • A substrate holder (22) on which a plurality of optical lens base materials (24) are arranged is installed to be rotatable in a vacuum atmosphere and a vacuum processing chamber (16) for forming water repellent films on the surfaces of the optical lens base materials, and further a both sides simultaneous water repellency processing mechanism is installed in this vacuum processing chamber. In regard to the substrate holder (22), an upper side water repellency processing unit (30) and a lower side water repellency processing unit (40) are provided, and the upper side water repellency processing unit forms the water repellent film on the upper side of the optical lens base material, while the lower side water repellency processing unit forms the water repellent film on the lower side of the optical lens base material. This configuration forms the water repellent films simultaneously onto the both sides of the optical lens base material. A film thickness correcting mechanism for the water repellency processing is composed of a film thickness correcting plate (51, 52) for correcting a film thickness difference, which is arranged between the water repellency processing unit and the optical lens base material.
    • 安装有多个光学透镜基材(24)的衬底保持器(22)能够在真空气氛中旋转,并且在光学透镜基底的表面上形成用于形成防水膜的真空处理室(16) 材料,并且在该真空处理室中安装有两面同时的防水处理机构。 关于衬底保持器(22),设置有上侧防水处理单元(30)和下侧防水处理单元(40),上侧防水处理单元在上部形成防水膜 而下侧防水处理单元在光学透镜基材的下侧形成防水膜。 该配置在光学透镜基材的两侧同时形成防水膜。 用于防水处理的膜厚校正机构由布置在防水处理单元和光学透镜基材之间的用于校正膜厚度差的膜厚校正板(51,52)组成。
    • 46. 发明授权
    • Plastic optical devices having antireflection film and mechanism for equalizing thickness of antireflection film
    • 具有防反射膜的塑料光学元件和均匀抗反射膜厚度的机构
    • US06250758B1
    • 2001-06-26
    • US09230031
    • 1999-04-01
    • Masaaki YoshiharaHitoshi KamuraHajime Kamiya
    • Masaaki YoshiharaHitoshi KamuraHajime Kamiya
    • G02C710
    • B32B15/08B32B27/08C23C14/044C23C14/3464C23C14/505G02B1/115
    • Plastic optical devices in which an antireflection film (13) is coated on the surface of a plastic base material (10). The antireflection film (13) is a multi-layered film which is formed by depositing a first layer (131) on the side of the plastic base material substantially by a high-refractive material and the next layer (132) by a low-refractive material, and by alternately laminating those high-refractive materials and low-refractive materials. The surface of the optical lens base material (10) has curvature and a plurality of the optical lens base materials (10) are disposed horizontally at the positions of concentric circles in a circular plate holder (26) which is placed horizontally and is rotatable. A sputtering film deposition system comprises targets (31) facing to the surfaces of the optical lens base materials (10). Thickness correcting plates function as mask members (51, 52) for regulating the difference of film thickness disposed in the direction connecting the peripheral part and the center part in the holder and between the targets (31) and the holder (26).
    • 在塑料基材(10)的表面上涂覆有防反射膜(13)的塑料光学装置。 防反射膜(13)是通过基本上由高折射材料沉积塑料基材侧的第一层(131)而形成的多层膜,下层(132)通过低折射率 材料,并且通过交替层压这些高折射材料和低折射材料。 光学透镜基材(10)的表面具有曲率,并且多个光学透镜基材(10)水平放置在水平放置并且是可旋转的圆板保持器(26)中的同心圆的位置。 溅射膜沉积系统包括面向光学透镜基材(10)的表面的靶(31)。 厚度校正板用作掩模构件(51,52),用于调节沿着连接保持器中的周边部分和中心部分的方向以及目标(31)和保持器(26)之间的膜厚度的差异。
    • 49. 发明授权
    • Fault diagnosis apparatus for a fuel evaporative emission supressing
system
    • 用于燃料蒸发排放抑制系统的故障诊断装置
    • US5651351A
    • 1997-07-29
    • US647966
    • 1996-08-01
    • Takuya MatsumotoToru HashimotoMitsuhiro MiyakeHitoshi KamuraYasuhisa Yoshida
    • Takuya MatsumotoToru HashimotoMitsuhiro MiyakeHitoshi KamuraYasuhisa Yoshida
    • F02M25/08
    • F02M25/0809
    • A fault diagnosis apparatus for detecting a fault in a fuel evaporative emission suppressing system, if it is concluded that an engine (1) is being operated in an operating state fulfilling fault diagnosis execution conditions, detects the current valve opening position of an idling speed control (ISC) valve (8) and then drives a purge control valve (46) to open the same. If a relatively high load is applied to the engine at this time, the threshold value determining the operating sensitivity of the ISC valve is so corrected as to be decreased. When a predetermined period of time has elapsed from the moment when the valve opening position of the ISC valve is detected, the valve opening position of the ISC valve is detected again. If the deviation between these valve opening positions is not larger than the threshold value, it is concluded that the purge air introduction by the drive of the purge control valve is not performed, that is, it is concluded that the valve is faulty. Since the operating sensitivity of the ISC valve increases as an engine load increases, erroneous diagnosis is prevented.
    • PCT No.PCT / JP95 / 01972 Sec。 371日期:1996年8月1日 102(e)日期1996年8月1日PCT 1995年9月28日PCT公布。 公开号WO96 / 10691 日期1996年4月11日用于检测燃料蒸发排放抑制系统中的故障的故障诊断装置,如果判断为在满足故障诊断执行条件的运行状态下运转发动机(1),则检测当前阀开度位置 的空转速度控制(ISC)阀(8),然后驱动清洗控制阀(46)打开它。 如果此时对发动机施加相当高的负荷,则确定ISC阀的操作灵敏度的阈值被校正为减少。 当从检测到ISC阀的开阀位置开始经过预定的时间段时,再次检测ISC阀的开阀位置。 如果这些阀打开位置之间的偏差不大于阈值,则得出结论,不执行通过清洗控制阀的驱动的吹扫空气引入,即判断为阀故障。 由于ISC阀的运行灵敏度随着发动机负荷的增加而增加,因此可以防止误诊。