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    • 2. 发明授权
    • Transacting device
    • 交易设备
    • US4820909A
    • 1989-04-11
    • US57253
    • 1987-06-03
    • Masataka KawauchiMitsuyoshi SatoTamio InnamiTakeshi Katoh
    • Masataka KawauchiMitsuyoshi SatoTamio InnamiTakeshi Katoh
    • G07D11/00G06F15/30
    • G07D11/0081
    • A transacting device performs its transacting operations in response to a customer's request for a deposit or payment transaction. Upon the request for the deposit transaction, paper currencies deposited through a money receiving/paying port are transferred en bloc by paper currency transferring means to an accumulation unit close to a separating unit. The currencies are individually separated by the separating unit and then identified by an identifying unit with respect to authenticity, monetary classification and the number of currencies. Thereafter, the currencies are accumulated in a plurality of accumulation units according to the monetary classification. When making the request for the payment transaction, a plurality of the currencies accumulated in the accumulation units are transferred en bloc by the transferring means to the accumulation unit vicinal to the separating unit. The currencies are separated piece by piece by the separating unit and identified by the identifying unit with respect to the authenticity monetary classification and the number of currencies. The identified currencies are accumulated in another accumulation unit. After the currencies whose species and number are specified by the customer have been accumulated in this accumulation unit, the currencies are transferred en bloc by the transferring means to the money receiving/paying port, whereby the currencies are handed over to the customer.
    • 交易设备根据客户的存款或支付交易请求执行交易操作。 根据存款交易要求,通过货币接收/付款港口存入的纸币通过纸币转移装置整体转移到靠近分离单元的累积单元。 这些货币由分离单位分开分开,然后由识别单元根据真实性,货币分类和货币数量进行识别。 此后,货币根据货币分类积累在多个累积单元中。 当进行支付交易请求时,累积单元中累积的多个货币由传送装置整体转移到分离单元附近的累积单元。 这些货币由分离单元分开,并由识别单元根据真实性货币分类和货币数量确定。 所识别的货币在另一累积单元中累积。 在客户指定的物种和数量的货币已经累积在该累计单位之后,货币由转移手段一并转移到接收/付款港口,由此将货币交给客户。
    • 3. 发明授权
    • Electric defroster heater mounting arrangement for stacked finned
refrigeration evaporator
    • 电除霜器加热器安装布置用于堆叠翅片制冷蒸发器
    • US4369350A
    • 1983-01-18
    • US131172
    • 1980-03-17
    • Nobuyuki KobayashiTaisei HosodaHideo UzuhashiTamio InnamiHumito Uzuhasi
    • Nobuyuki KobayashiTaisei HosodaHideo UzuhashiTamio InnamiHumito Uzuhasi
    • F25B47/02F25D21/08F28F9/013H05B3/50H05B3/02
    • H05B3/50F25D21/08F28F9/013F25D2500/02
    • A refrigeration evaporator includes a serpentine refrigerant tube having a plurality of finned straight portions connected by unfinned U-shaped connecting portions to form a stacked assembly of side-by-side finned tube arrays. The fins are rectangular and are provided with a J-shaped cut-out at each corner. The J-shaped cut-outs at confronting corners of the fins of each immediately adjacent pair of finned tube arrays define a U-shaped heater receiving space extending the length of the arrays and which clampingly receives an elongated straight portion of a serpentine electric defroster heater in good heat conductive contact with each fin of the immediately adjacent pair of finned tube arrays. Each fin of the stacked assembly has at least two corners in engagement with the heater. The stacked assembly is disposed transversely in a duct having an air inlet and air outlet. The fins nearest the inlet are spaced at a larger interval than those nearest the air outlet to preclude air flow restriction due to greater frost formation on the fins immediately adjacent the inlet.
    • 制冷蒸发器包括蛇形制冷剂管,其具有通过未焊接的U形连接部分连接的多个翅片直的部分,以形成并排翅片管阵列的堆叠组件。 翅片是矩形的,并且在每个角落设置有J形切口。 每个立即相邻的翅片管阵列的翅片的相对角处的J形切口限定了延伸阵列长度的U形加热器接收空间,并夹紧地接收蛇形电除霜器加热器的细长直线部分 与紧邻的一对翅片管阵列的每个翅片具有良好的导热接触。 堆叠组件的每个翅片具有与加热器接合的至少两个角部。 堆叠的组件横向设置在具有空气入口和空气出口的管道中。 最靠近入口的翅片间隔比距离空气出口最近的间隔较大的间隔,以排除紧邻入口的翅片上更大的霜冻形成的气流限制。