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    • 3. 发明授权
    • Distributed processing type control system
    • 分布式加工型控制系统
    • US6067612A
    • 2000-05-23
    • US111763
    • 1998-07-08
    • Akihiro SasakiYasushi KandaKazunori SakaiAkihiro Tanaka
    • Akihiro SasakiYasushi KandaKazunori SakaiAkihiro Tanaka
    • B60G17/015B60R16/02B62D6/00F02D45/00G05B15/02G05B19/042G05B19/05G06F15/17G06F15/167
    • G05B19/0421G06F15/17G05B2219/2221G05B2219/25032G05B2219/25265
    • A relaying controller communicates with an external tool through a first communication path based on a first communication protocol and communicates with sub-controllers through a second communication path based on a second communication protocol, thus relaying communications between the external tool and the sub-controllers. The relaying controller includes a rewritable non-volatile memory having predetermined storage areas divided in correspondence with the sub-controllers. The relaying controller transmits, in response to a memory reading request from the sub-controller, a stored data in the corresponding storage area to the sub-controller through the second communication path, and writes, in response to a memory writing request from the sub-controller, a writing data received through the second communication path in the corresponding storage area. That is, the relaying controller executes accesses of the sub-controllers to the non-volatile memory.
    • 中继控制器基于第一通信协议通过第一通信路径与外部工具进行通信,并且基于第二通信协议通过第二通信路径与子控制器通信,从而中继外部工具和子控制器之间的通信。 中继控制器包括具有与子控制器相对应地划分的预定存储区域的可重写非易失性存储器。 中继控制器响应于来自子控制器的存储器读取请求,通过第二通信路径将对应存储区域中的存储数据发送到子控制器,并且响应于来自子存储器的存储器写入请求 控制器,通过相应存储区域中的第二通信路径接收的写入数据。 也就是说,中继控制器执行子控制器对非易失性存储器的访问。
    • 8. 发明授权
    • Seat arm rest capable of housing television receiver therein
    • 能够在其中容纳电视接收机的座椅扶手
    • US5316369A
    • 1994-05-31
    • US58809
    • 1993-05-10
    • Yasushi Kanda
    • Yasushi Kanda
    • A47C7/72B64D11/00B64D11/06A47C7/68
    • B64D11/00153A47C7/72B64D11/0015B64D11/06B64D11/0636
    • An armrest (1) comprising an armrest body provided with a cavity (2) under a cocktail tray to house a television set (4), and a hinge mechanism (6) provided with a turning unit (10) and attached to the upper front end of the armrest body so that the turning unit (10) can be turned into and out of the cavity (2). A television set is mounted on the extremity of the turning unit (10). The television set (4) is held in an operating position by the turning unit (10). When not used, the television set (4) is housed in the cavity (2). The armrest (1) capable of housing the television set (4) is applied to seats to be installed on aircraft, railway rolling stocks and vehicles including buses.
    • 一种扶手(1),其包括扶手本体,所述扶手本体设置有用于容纳电视机(4)的鸡尾酒托盘下方的空腔(2),以及铰链机构(6),设置有转动单元(10)并附接到所述上部前部 使得转动单元(10)能够转入和离开空腔(2)。 电视机安装在转动单元(10)的末端。 电视机(4)由转动单元(10)保持在操作位置。 当不使用时,电视机(4)被容纳在空腔(2)中。 能够容纳电视机(4)的扶手(1)被施加到要安装在飞机,铁路车辆和包括公共汽车的车辆的座椅上。
    • 9. 发明授权
    • Vehicle condition monitoring system
    • 车辆状况监控系统
    • US07321814B2
    • 2008-01-22
    • US11142476
    • 2005-06-02
    • Yasushi KandaNoriaki TerashimaTatsuya Katou
    • Yasushi KandaNoriaki TerashimaTatsuya Katou
    • G01C21/00
    • B60R16/0232B60R25/1004B60R25/102B60R2325/205G07C5/008G07C5/085
    • A vehicle condition monitoring system for an unattended vehicle includes an initial setting storage means, an actual state detection means, a comparison means, and a reporting means. The initial setting storage means memorizes a predetermined initial setting of a vehicle, that is, a window setting, a light setting, a door lock setting and the like. The actual state detection means detects an actual state of the vehicle. The comparison means compares the initial setting and the actual state of the vehicle. The reporting means issues a report that identifies the existence of a difference between the actual state of the vehicle and the initial setting based on a result of a comparison. A portable device receives the report through a wireless communication system.
    • 无人值班车辆的车辆状态监视系统包括初始设定存储单元,实际状态检测单元,比较单元以及报告单元。 初始设置存储装置存储车辆的预定初始设置,即窗口设置,光设置,门锁设置等。 实际状态检测装置检测车辆的实际状态。 比较装置比较车辆的初始设定和实际状态。 报告装置根据比较结果发出一个报告,指出车辆的实际状态与初始设置之间存在差异。 便携式设备通过无线通信系统接收报告。