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    • 32. 发明授权
    • Compact electric motor
    • 紧凑型电动机
    • US06819020B2
    • 2004-11-16
    • US10415721
    • 2003-08-28
    • Kazuo ToyaShozo SakonKenichi Maeda
    • Kazuo ToyaShozo SakonKenichi Maeda
    • H02K500
    • F04B17/03B60T8/4022F04B1/0443H02K5/10H02K5/148H02K5/15H02K5/161H02K5/1732
    • The present invention provides for its object a compact electric motor effective to provide a high reliability against the leakage of grease from a bearing on one side adjacent the output shaft or the ingress of oil from a counterpart machine. The compact electric motor 1 has a wall 14 having a predetermined gap around an output shaft 3 between a commutator 7 and a bearing 6, wherefore in the event of leakage of grease from the bearing 6 on an output side or ingress of oil from the counterpart machine, it is possible to prevent deposition on the commutator 3 and the brush 5 and, hence, to avoid an abnormal wear of the brush 5 and reduction in performance of the compact electric motor 1.
    • 本发明的目的是提供一种紧凑型电动机,其有效地提供高的可靠性,以防止润滑脂从邻近输出轴的一侧的轴承或来自对应机器的油的进入泄漏。紧凑型电动机1具有壁 14在换向器7和轴承6之间具有围绕输出轴3的预定间隙,因此在输出侧的轴承6或来自对应机器的油的入口处的润滑脂泄漏的情况下,可以防止沉积 在换向器3和电刷5上,从而避免了电刷5的异常磨损和小型电动机1的性能下降。
    • 37. 发明授权
    • Memory management and protection system for virtual memory in computer
system
    • 计算机系统虚拟内存的内存管理和保护系统
    • US5627987A
    • 1997-05-06
    • US21098
    • 1993-02-23
    • Hiroshi NozueMitsuo SaitoKenichi MaedaShigehiro AsanoToshio OkamotoShin SunghoHideo Segawa
    • Hiroshi NozueMitsuo SaitoKenichi MaedaShigehiro AsanoToshio OkamotoShin SunghoHideo Segawa
    • G06F12/10G06F12/14G06F12/00
    • G06F12/1458G06F12/109G06F12/1483G06F12/1491G06F2212/656
    • A memory management and protection system for realizing a high speed execution and a proper and flexible memory access control for multiple programs sharing an identical logical address space. In the system, the memory access is permitted according to a segment identifier identifying a segment in the logical address space, and a memory protection information for a region in each segment including a target right permission to indicate assigned rights to make a memory access from the region to each of the segments, and an execution permission to indicate a type of the memory access permitted by the right permission. Alternatively, a memory access can be permitted by using an access control list to be attached to each address table entry, which stores a plurality of program numbers identifying programs which are permitted to make accesses to the logical address stored in each address table entry, among which one that matches with the current program number is to be searched. Also, it is preferable to allocate a plurality of programs within a limit of available memory protection capacity to an identical logical address space, without any overlap between adjacently allocated address regions.
    • 一种用于实现高速执行的存储器管理和保护系统,以及用于共享相同逻辑地址空间的多个程序的适当且灵活的存储器访问控制。 在系统中,根据标识逻辑地址空间中的段的段标识符,允许存储器访问,以及每个区段中的区域的存储器保护信息,包括目标权限,以指示从存储器访问的指定的权限 区域,以及用于指示由权限许可允许的存储器访问的类型的执行许可。 或者,可以通过使用附加到每个地址表条目的访问控制列表来允许存储器访问,每个地址表条目存储多个程序号,标识被允许访问存储在每个地址表条目中的逻辑地址的程序, 将搜索与当前节目号匹配的那个。 此外,优选地,在可用存储器保护容量的限制内将多个程序分配给相同的逻辑地址空间,而不会在相邻分配的地址区域之间发生任何重叠。
    • 38. 发明授权
    • Evaporative fuel-processing system for internal combustion engines
    • 内燃机蒸发燃料处理系统
    • US5396873A
    • 1995-03-14
    • US168383
    • 1993-12-17
    • Masayoshi YamanakaHiroshi MaruyamaMasataka ChikamatsuYasunari SekiKenichi MaedaKazutomo Sawamura
    • Masayoshi YamanakaHiroshi MaruyamaMasataka ChikamatsuYasunari SekiKenichi MaedaKazutomo Sawamura
    • F02D41/00F02M25/08F02M33/02
    • F02M25/0809
    • An evaporative fuel-processing system includes a first control valve arranged in a charging passage connecting between a fuel tank and a canister for adsorbing evaporative fuel generated from the fuel tank, a second control valve arranged in a purging passage connecting between the canister and an intake passage of the engine, a third control valve arranged in an air inlet port of the canister, and a system internal pressure sensor for detecting pressure within the system. The system is checked for a leak by monitoring a value of the pressure detected by the sensor after the system is negatively pressurized by closing the third control valve and opening the second control valve. The sensor is provided at a location upstream of the first control valve, and the first control valve is closed to detect a value of the pressure or a change thereof. Abnormality determination is carried out based on the detected value of the pressure. Alternatively, all of the above valves are closed in the negatively-pressurized state of the system to detect a first amount of change in the pressure, and then the first control valve alone is opened to detect a second amount of change in the pressure. Abnormality determination can be carried out based on the first and second amounts of change in the pressure, or by comparing a value of the pressure detected when the first and second valves are closed after negative pressurization with a value of the pressure detected after the first control valve is opened.
    • 蒸发燃料处理系统包括:第一控制阀,其布置在连接在燃料箱和用于吸附从燃料箱产生的蒸发燃料的罐之间的充电通道中的第二控制阀;布置在连接在罐和进气口之间的清洗通道中的第二控制阀 发动机通过,布置在罐的进气口中的第三控制阀,以及用于检测系统内的压力的系统内部压力传感器。 通过关闭第三控制阀并打开第二控制阀,通过监视系统负压后由传感器检测到的压力值,来检查系统的泄漏。 传感器设置在第一控制阀的上游位置,第一控制阀关闭以检测压力值或其变化。 基于检测到的压力值进行异常判定。 或者,所有上述阀在系统的负压状态下关闭,以检测第一压力变化量,然后单独打开第一控制阀以检测第二压力变化量。 可以基于第一和第二压力变化量进行异常判定,或者通过将在第一和第二控制之后检测到的压力值与负压之后的第一和第二阀关闭时的压力值进行比较 阀打开。