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    • 1. 发明专利
    • Movable mirror device
    • 可移动镜像器件
    • JP2003043229A
    • 2003-02-13
    • JP2001226579
    • 2001-07-26
    • Denso CorpFurukawa Electric Co Ltd:The古河電気工業株式会社株式会社デンソー
    • OGAWA KOJISHINODA YOSHIO
    • G02B5/08B60R1/06B60R1/072B60R1/074B60S1/60G02B7/182H05B6/10
    • PROBLEM TO BE SOLVED: To provide a movable mirror device in which electric power can be supplied from a supporting part of a unit to a mirror unit without using mechanical contact parts such as a spiral cord, etc., and a slip ring, etc., and dew condensation on the mirror plane can be removed, and whose assembly and maintenance can be carried out in a short time.
      SOLUTION: The movable mirror consisting of the supporting part of the unit and the mirror unit is provided with a separation transformer consisting of a power receiving coil built into the mirror unit, and a power supplying coil electromagnetically coupled to the power receiving coil and built into the unit supporting part, a power source part which drives the power supplying coil by an AC and supplies the power to the power receiving coil, a heating element arranged in a rear surface of a mirror body in the mirror unit, and a heating means which is built into the mirror unit and makes the heating element generate heat with the eddy current using the AC power transmitted by the power supplying coil. Then, the dew condensation on the mirror plane can be removed.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种可移动镜装置,其中可以将电力从单元的支撑部分供应到镜子单元,而不使用诸如螺旋线等的机械接触部件和滑环等。 并且可以去除镜面上的结露,并且其组装和维护可以在短时间内进行。 解决方案:由单元的支撑部分和反射镜单元组成的可移动反射镜设置有由内置于反射镜单元中的受电线圈组成的分离变压器和与受电线圈电磁耦合的内置的 单元支撑部,通过AC驱动供电线圈并将电力供给到受电线圈的电源部,布置在反射镜单元中的镜体的后表面中的加热元件和加热装置, 内置于反光镜单元中,使加热元件利用由供电线圈传递的交流电力,以涡流产生热量。 然后,可以去除镜面上的结露。
    • 5. 发明专利
    • ENGINE CONTROL SYSTEM
    • JP2000230454A
    • 2000-08-22
    • JP3282999
    • 1999-02-10
    • DENSO CORP
    • KANO TAKAHIROKATO KOJIOGAWA KOJI
    • F02D45/00
    • PROBLEM TO BE SOLVED: To shorten the time it takes backup RAM data to be updated in an engine control system provided with a CPU and FPU. SOLUTION: An FPU resets a total sum to 1 (S41), reads a learned value (S42), and performs a total sum operation according to a floating-point product- sum operation for its master data and mirror data (S43). If the total sum is not 1 (S45: NO) when the total sum operation is performed for all learned values (S44: YES), it follows that either the master data or mirror data stored in memory is wrong and the learned values are all rewritten to initial values (S46). The total sum operation (S43) takes a short time since it is executed by a floating-point product-sum operation command, (i.e., single command) Further, data is evaluated to be wrong or correct by checking to see if the total sum is 1 or not, which means that only a single command is necessary for the evaluation.