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    • 1. 发明专利
    • Food/beverage dispenser
    • 食物/饮料分配器
    • JP2010043852A
    • 2010-02-25
    • JP2009198287
    • 2009-08-28
    • Lancer Partnership Ltdランサー・パートナーシップ・リミテッド
    • SUDOLCAN DAVID CCHADWELL THOMAS J
    • F25D29/00A47J20060101F25D13/00G06F13/00G07F13/06
    • G07F13/06
    • PROBLEM TO BE SOLVED: To maintain a method for manufacturing a food/beverage dispenser on the whole. SOLUTION: The food/beverage dispenser has a CPU module which is arranged in a housing to monitor or control the operation of the food/beverage dispenser, and a first component module which is arranged in the housing and coupled with the CUP module. The first component module is operated during the initialization of the food/beverage dispenser, the CPU module outputs the component identification signal to the first component module, and the first component module responds to the component identification signal output by the CPU module. After the CPU module receives the response to the component identification signal output, the address is allocated to the first component module, the communication is established thereby between the CPU module and the first component module, and the operation of the food/beverage dispenser is controlled in response to the command received by the first component module from the CPU module. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了维持整个食品/饮料分配器的制造方法。 解决方案:食品/饮料分配器具有CPU模块,其被布置在壳体中以监视或控制食品/饮料分配器的操作;以及第一部件模块,其布置在壳体中并与CUP模块 。 第一组件模块在食品/饮料分配器的初始化期间操作,CPU模块将组件识别信号输出到第一组件模块,第一组件模块响应由CPU模块输出的组件识别信号。 在CPU模块接收到对组件识别信号输出的响应之后,将地址分配给第一组件模块,由此在CPU模块和第一组件模块之间建立通信,并且控制食品/饮料分配器的操作 响应于第一组件模块从CPU模块接收到的命令。 版权所有(C)2010,JPO&INPIT
    • 2. 发明申请
    • SELF-CALIBRATING DIELECTRIC PROPERTY-BASED SWITCH
    • 自校准介质性能开关
    • WO2005001862A3
    • 2006-05-04
    • PCT/US2004016650
    • 2004-05-27
    • LANCER PARTNERSHIP LTD
    • CHADWELL THOMAS JSUDOLCAN DAVID C
    • H03K17/96H03M11/00G08C21/00
    • H03K17/962H03K2217/94026
    • A self-calibrating touch sensor generally includes a dielectric switch pad (11) in electrical communication with a controller (12). A forcing function waveform is delivered to the dielectric switch pad. The step response waveform of the dielectric switch pad is then monitored by the controller to detect changes in the dielectric properties of the dielectric switch pad. Upon startup of a system in which the self-calibrating touch sensor is embedded or upon detection of an event indicative of a persistent change in the dielectric environment about the touch pad the controller processes the step response waveform to determine the time constant of a circuit. The determined time constant is stored as baseline value by the controller. The controller then monitors the step response waveform or temporary changes from the stored value, indicative of a key press event.
    • 自校准触摸传感器通常包括与控制器(12)电连通的介质开关焊盘(11)。 强制功能波形传送到介质开关垫。 然后由控制器监测介质开关焊盘的阶跃响应波形,以检测介质开关焊盘的介电特性的变化。 在启动其中嵌入了自校准触摸传感器的系统时,或者当检测到指示关于触摸板的电介质环境的持续变化的事件时,控制器处理阶跃响应波形以确定电路的时间常数。 确定的时间常数由控制器存储为基准值。 然后,控制器监视阶跃响应波形或从存储值的临时变化,指示按键事件。