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    • 56. 发明授权
    • Plastic lens
    • 塑料镜片
    • US5130393A
    • 1992-07-14
    • US439369
    • 1989-11-08
    • Shigeo Nakamura
    • Shigeo Nakamura
    • G02B1/04
    • G02B1/041G02B1/043
    • The plastic lens of the present invention consists of a copolymer obtained by copolymerizing a monomer mixture consisting of given proportions of diethylene glycol bis(allyl carbonate), benzyl methacrylate, diallyl phthalate (these three monomers has been used as a monomer mixture for conventional plastic lenses) and, as an additional monomer, an alkyl methacrylate. This copolymer has excellent adhesion to upper and lower molds and, when immersed in, for example, a cleaning solution such as a methylene chloride-strong alkali mixed cleaning solution or the like, causes no separation from the molds; accordingly in the copolymer, there can be prevented the occurrence of surface roughening, cloudiness and striae which have been problems in conventional plastic lenses.
    • PCT No.PCT / JP89 / 00345 Sec。 371日期:一九八九年十一月八日 102(e)日期1989年11月8日PCT 1989年3月31日PCT公布。 出版物WO89 / 09418 本发明的塑料透镜由共聚合获得的共聚物,该共聚物由给定比例的二甘醇双(碳酸烯丙酯),甲基丙烯酸苄酯,邻苯二甲酸二烯丙酯(这三种单体已被用作 用于常规塑料透镜的单体混合物)和作为另外的单体的甲基丙烯酸烷基酯。 该共聚物对上下模具的粘附性优异,例如浸渍在例如二氯甲烷 - 强碱性混合清洗液等清洗液中时,不会与模具分离, 因此,在共聚物中,可以防止在常规塑料透镜中存在问题的表面粗糙化,浑浊和条纹的发生。
    • 60. 发明授权
    • Power source for control equipment
    • 控制设备电源
    • US4485423A
    • 1984-11-27
    • US394940
    • 1982-06-28
    • Masayuki HattoriShigeo Nakamura
    • Masayuki HattoriShigeo Nakamura
    • G05B9/02G05F1/577G06F1/30H02J1/00
    • G05B9/02G05F1/577G06F1/30
    • A power source for control equipment which is designed so that even if one or more independent power sources (700) are added to a main power source (600), the power source arrangement, as viewed from the control equipment supplied with power therefrom, can always be regarded as if one power source were connected thereto. The operative state of control circuit power sources (601, 701) provided in the main power source (600) and the additional power source (700) is detected by control circuit power source abnormality detecting circuits (603, 703), and the operative state of driving power sources (602, 702) provided in the main power source (600) and the additional power source (700) is detected by driving power source abnormality detecting circuits (604, 704). All the driving power sources (602, 702) are turned ON substantially concurrently after the outputs from all the control circuit power sources (601, 701) have reached their normal state, and they are turned OFF substantially concurrently when the output from any one of the control circuit power sources (601, 701) has become abnormal. An enable signal (EN), which is sent to the control equipment, is turned ON after all the control circuit power sources (601, 701) and driving power sources (602, 702) have reached their normal operative state, and is turned OFF when an abnormality has occurred in any one of the power sources.
    • PCT No.PCT / JP81 / 00306 Sec。 371日期1982年6月28日 102(e)日期1982年6月28日PCT提交1981年10月28日PCT公布。 出版物WO82 / 01625 日期:1982年5月13日。一种用于控制设备的电源,其设计成即使将一个或多个独立电源(700)添加到主电源(600)中,从控制设备 由此供电,总是可以看作是一个电源连接在一起。 设置在主电源(600)和附加电源(700)中的控制电路电源(601,701)的操作状态由控制电路电源异常检测电路(603,703)检测,操作状态 通过驱动电源异常检测电路(604,704)来检测设置在主电源(600)和附加电源(700)中的驱动电源(602,702)。 所有驱动电源(602,702)在所有控制电路电源(601,701)的输出已经达到其正常状态之后基本同时接通,并且当从任何一个 控制电路电源(601,701)变得异常。 在所有的控制电路电源(601,701)和驱动电源(602,702)已经达到其正常工作状态之后,发送到控制设备的使能信号(EN)被接通,并被断开 当任何一个电源发生异常时。