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    • 3. 发明申请
    • DISTRIBUTED PROCESSING APPARATUS
    • 分布式处理设备
    • WO1995031796A1
    • 1995-11-23
    • PCT/JP1995000912
    • 1995-05-12
    • KABUSHIKI KAISHA NIPPON CONLUXISHIDA, TakeshiYOSHIZAWA, Genzo
    • KABUSHIKI KAISHA NIPPON CONLUX
    • G07D05/00
    • G07F11/002G07F5/18G07F5/22G07F9/00
    • A distributed processing apparatus capable of easily changing set data written in a memory (19) in a coin mechanism (1) to be processed, which has no special terminal. In order to change the set data written in the memory (19) in the coin mechanism (1), the coin mechanism (1) is disconnected at a connector (9) from a signal line (8) extending from an automatic vending machine controller (2), and it is connected with a computer (50) through this connector (9). A routine in a program for a CPU (11) in the coin mechanism (1) is then changed in accordance with a special command sent from the computer (50). As a result, the computer (50) is allowed to read the contents of the memory (19) in the coin mechanism (1), and drive the CPU (11) to rewrite the set data in the memory (19).
    • 一种分散处理装置,其能够容易地改变写入没有特殊终端的待处理的硬币机构(1)的存储器(19)中的设定数据。 为了改变写入硬币机构(1)中的存储器(19)中的设定数据,硬币机构(1)从连接器(9)与从自动售货机控制器(8)延伸的信号线(8)断开连接 (2),并且通过该连接器(9)与计算机(50)连接。 然后,根据从计算机(50)发送的特殊命令,改变硬币机构(1)中的CPU(11)的程序中的程序。 结果,允许计算机(50)读取硬币机构(1)中的存储器(19)的内容,并且驱动CPU(11)来重写存储器(19)中的设置数据。
    • 4. 发明申请
    • METHOD AND DEVICE FOR RECORDING DATA IN AN OPTICAL MEMORY CARD
    • 用于在光记忆卡中记录数据的方法和装置
    • WO1998021717A1
    • 1998-05-22
    • PCT/JP1997004081
    • 1997-11-10
    • KABUSHIKI KAISHA NIPPON CONLUXKIMURA, YasuyukiONODERA, Akira
    • KABUSHIKI KAISHA NIPPON CONLUX
    • G11B07/00
    • G11B20/1215G11B7/0033G11B7/013G11B19/04
    • A method and a device for recording data in an optical memory card which facilitate discrimination between an unrecorded area and a recorded area in the optical memory card and which prevent double over writing. Recording pits are formed so that data to be recorded on the optical memory card is recorded in the same way as when recorded in the MFM-RZ modulation system. Data that was recorded in the NRZI-RZ modulation system is reproduced and then recorded in the MFM-RZ modulation system. This method forms the recording pits at least every 2 recording intervals or less in the recorded area in the optical memory card, making it possible to discriminate the recorded area of the optical memory card from the unrecorded area according to the presence or absence of the recording pits and thereby prevent double writing.
    • 一种用于在光学存储卡中记录数据的方法和装置,其有助于辨别光存储卡中的未记录区域和记录区域,并且防止双重写入。 形成记录凹坑,使得记录在光存储卡上的数据以与记录在MFM-RZ调制系统中相同的方式被记录。 记录在NRZI-RZ调制系统中的数据被再现,然后记录在MFM-RZ调制系统中。 该方法在光存储卡的记录区域中至少每2个记录间隔至少形成记录凹坑,使得可以根据记录的存在或不存在来区分光存储卡的记录区域与未记录区域的记录区域 从而防止双重写入。
    • 5. 发明申请
    • IC CARD READER/WRITER AND ITS CONTROL METHOD
    • IC卡阅读器/写入器及其控制方法
    • WO1997048072A1
    • 1997-12-18
    • PCT/JP1997001947
    • 1997-06-09
    • KABUSHIKI KAISHA NIPPON CONLUXNTT DATA TSUSHIN KABUSHIKIKAISHAOHTA, MichihiroYOSHIDA, HiroakiOHKUMA, Yoshiyuki
    • KABUSHIKI KAISHA NIPPON CONLUXNTT DATA TSUSHIN KABUSHIKIKAISHA
    • G06K17/00
    • G06K7/0013
    • The contact error of a contact section which is brought into contact with an IC card is detected reliably. The level of a reset signal which is supplied to a reset terminal (RST) of an integrated circuit (21) mounted on the IC card (20) through a contact section (11) is controlled to be low and, also, the level of a clock signal which is supplied to a clock terminal (CLK) of the integrated circuit (21) through the contact section (11) is controlled to be low. After that, power for the integrated circuit (21) is supplied to a power supply terminal (Vcc) of the integrated circuit (21) through the contact section (11). At that time, the voltage which is outputted from an I/O terminal (I/O) of the integrated circuit (21) through the contact section (11) is compared with a predetermined reference level by a comparator (16). When the voltage is lower than the predetermined reference level, it is judged to be contact error of the contact section.
    • 可靠地检测与IC卡接触的接触部的接触误差。 通过接触部分(11)提供给安装在IC卡(20)上的集成电路(21)的复位端(RST)的复位信号的电平被控制得很低, 通过接触部分(11)提供给集成电路(21)的时钟端(CLK)的时钟信号被控制为低。 之后,集成电路(21)的电源通过接触部(11)供给到集成电路(21)的电源端子(Vcc)。 此时,通过比较器(16)将从集成电路(21)的I / O端子(I / O)经由接触部(11)输出的电压与规定的基准电平进行比较。 当电压低于预定参考电平时,判断为接触部分的接触误差。
    • 9. 发明专利
    • COIN PROCESSING APPARATUS
    • AU9013291A
    • 1992-12-17
    • AU9013291
    • 1991-12-31
    • KABUSHIKI KAISHA NIPPON CONLUX
    • YONEZO FURUYAICHIRO FUKUDAGENZO YOSHIZAWA
    • G07D3/14G07D5/08G07D11/00G07F1/04G07F9/00G07F9/04
    • A coin processing apparatus arranged to automatically execute a cancellation process for canceling acceptance of an inserted coin by detecting, on the basis of output levels of receiving coils (8a,8b) in a plurality of sets of coin selecting coils (7a,7b,8a,8b) disposed on a coin path (6), a fact that the inserted coin has been guided into a return path through the operation of a return lever, and also to judge the occurrence of coin jamming and coin counter-flow on the basis of the output levels of the receiving coils (8a,8b). The output level of the receiving coil (8a,8b) in each of the plurality of sets of coin selecting coils (7a,7b,8a,8b) is monitored so as to carry out the automatic cancellation process in case the output levels of the respective receiving coils (8a,8b) concurrently exceed a predetermined threshold level and persist longer than a predetermined period of time. In case the output level of the receiving coil (8a,8b) in at least one of the plurality of sets of coin selecting coils (7a,7b,8a,8b) exceeds the predetermined threshold level and persists longer than a second predetermined period of time, it is judged that the coin jamming has occurred. Further, in case the output level of the receiving coil (8a,8b) of the most downstream one of the plurality of sets of coin selecting coils (7a,7b,8a,8b) exceeds the predetermined threshold level and the detection output occurs again after the lapse of a third predetermined period of time from the time point when the detection output has once ceased, then the coin judged as a true coin is treated as a false coin.