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    • 4. 发明申请
    • GREEN LIFE MANAGEMENT METHOD AND SYSTEM
    • 绿色生活管理方法与系统
    • US20140164090A1
    • 2014-06-12
    • US14234113
    • 2012-05-17
    • Seung Joon YoonSung Sik Moon
    • Seung Joon YoonSung Sik Moon
    • G06Q30/02
    • G06Q30/0226G06Q10/06393G06Q90/00Y02P90/84
    • The present invention relates to a method and system for managing the green life of a user. The present invention provides a green life management system managing a green life of a user by using a card medium of the user, comprising: a card reader terminal (100) configured to read card medium information of the card medium, and a management server (200) configured to communicate with the card reader terminal and receive the card medium information, wherein the management server comprises: a first green life management unit (240) configured to receive energy consumption information of the user, calculate points based on the card medium information and the energy consumption information, and transmit the points to a point management unit (230), a second green life management unit (250) configured to receive a product purchase list of the user, extract a green product list from the product purchase list, calculate points based on the card medium information and the green product list, and transmit the points to the point management unit, and the point management unit (230) configured to accumulate the received points in an account of the user, classify the accumulated points based on the energy consumption information and the green product list, and transmit details about the classification to a user terminal of the user.
    • 本发明涉及一种管理用户绿色寿命的方法和系统。 本发明提供了一种通过使用用户的卡介质来管理用户的绿色生活的绿色生活管理系统,包括:读卡器终端(100),被配置为读取卡介质的卡介质信息,以及管理服务器 200),被配置为与所述读卡器终端通信并接收所述卡介质信息,其中所述管理服务器包括:第一绿色寿命管理单元(240),被配置为接收所述用户的能量消耗信息,基于所述卡介质信息来计算点 和能量消耗信息,并且将点传送到点管理单元(230),被配置为接收用户的产品购买列表的第二绿色生命管理单元(250),从产品购买列表中提取绿色产品列表, 基于卡介质信息和绿色产品列表计算点,并将点传送到点管理单元,点管理单元(230)confi 将用户的帐户中收到的积分积累,并根据能量消耗信息和绿色产品清单对累计分数进行分类,并将用于分类的细节发送到用户的终端。
    • 5. 发明授权
    • Analog baud rate clock and data recovery
    • 模拟波特率时钟和数据恢复
    • US08243866B2
    • 2012-08-14
    • US12116329
    • 2008-05-07
    • Dawei HuangZuxu QinDrew G. DoblarWaseem AhmadDong Joon YoonOsman Javed
    • Dawei HuangZuxu QinDrew G. DoblarWaseem AhmadDong Joon YoonOsman Javed
    • H04L7/00H04L27/06
    • H04L7/0062
    • An analog baud rate clock and data recovery apparatus includes a first track and hold circuit that delays a received signal by one unit interval to create an odd signal; a second track and hold circuit that delays the received signal by one unit interval to create an even signal; a first comparator circuit; and a second comparator circuit. The first track and hold circuit outputs the odd signal to the first comparator circuit and the second comparator circuit. The second track and hold circuit outputs the even signal to the first comparator circuit and the second comparator circuit. The first comparator adds the odd signal to the even signal and outputs a first potential timing error. The second comparator subtracts the odd signal and the even signal and outputs a second potential timing error signal. A desired timing error signal is derived from the first and second potential timing error signals. The desired timing error signal is used to determine whether signal sampling is early or late.
    • 模拟波特率时钟和数据恢复装置包括第一跟踪和保持电路,其将接收到的信号延迟一个单位间隔以产生奇数信号; 第二轨道和保持电路,其将接收到的信号延迟一个单位间隔以产生均匀信号; 第一比较器电路; 和第二比较器电路。 第一跟踪和保持电路将奇数信号输出到第一比较器电路和第二比较器电路。 第二跟踪和保持电路将偶信号输出到第一比较器电路和第二比较器电路。 第一个比较器将奇数信号加到偶数信号,并输出第一个电位定时误差。 第二比较器减去奇数信号和偶数信号,并输出第二电位定时误差信号。 从第一和第二电位定时误差信号导出期望的定时误差信号。 所需的定时误差信号用于确定信号采样是早还是晚。
    • 6. 发明授权
    • Integrated equalization and CDR adaptation engine with single error monitor circuit
    • 具有单错误监控电路的集成均衡和CDR适配引擎
    • US08229020B2
    • 2012-07-24
    • US12409236
    • 2009-03-23
    • Dawei HuangMuthukumar VairavanDong Joon YoonDrew G. Doblar
    • Dawei HuangMuthukumar VairavanDong Joon YoonDrew G. Doblar
    • H04B15/00H04B1/10H03K5/159
    • H04L25/03057H04L7/0337H04L2025/03503
    • A data communications system and methods are disclosed. The system includes a transmitter for conveying a data signal filtered by a finite impulse response (FIR) filter to a receiver via a channel. The receiver equalizes the received data signal using a decision feedback equalizer (DFE) and the FIR. The receiver samples the data signal to determine an error signal and uses the error signal to adapt settings of a pre-cursor tap coefficient of the FIR, one or more post-cursor tap coefficients of the FIR, a phase of the recovered clock, and a coefficient of the DFE. To adapt the settings, the receiver determines the error signal based on an error sample taken from the data signal in a single clock cycle. To determine an error signal, the receiver samples the data signal at a phase estimated to correspond to a peak amplitude of a pulse response of the channel.
    • 公开了一种数据通信系统和方法。 该系统包括一个发射器,用于通过一个通道将一个由有限脉冲响应(FIR)滤波器滤波的数据信号传送到一个接收器。 接收机使用判决反馈均衡器(DFE)和FIR来均衡接收到的数据信号。 接收机采样数据信号以确定误差信号,并使用误差信号来适应FIR的前置光标抽头系数,FIR的一个或多个后置标签抽头系数,恢复时钟的相位的设置,以及 DFE的系数。 为了适应设置,接收机根据在单个时钟周期内从数据信号中获取的错误样本来确定误差信号。 为了确定误差信号,接收机以被估计为对应于信道的脉冲响应的峰值幅度的相位对数据信号进行采样。
    • 7. 发明申请
    • CERAMIC INK FOR MANUFACTURING CERAMIC THICK FILM BY INKJET PRINTING
    • 陶瓷油墨通过喷墨打印制造陶瓷厚膜
    • US20110232524A1
    • 2011-09-29
    • US13121944
    • 2009-10-23
    • Ji Hoon KimYoung Joon YoonJong Hee KimHyo Tae KimEun Hae Koo
    • Ji Hoon KimYoung Joon YoonJong Hee KimHyo Tae KimEun Hae Koo
    • C09D11/02
    • H01G4/1209C09D1/00C09D11/30H01G4/33
    • The present invention discloses a ceramic ink having an improved refill rate, which enables the manufacture of a ceramic thick film having delicate and improved ceramic properties. To this end, the ceramic ink of the present invention contains a certain amount of a solvent in which ceramic powder is dispersed, and the particles of the ceramic powder have on average a ratio of less than 20% in difference value between the maximum vertical length Dv and the maximum horizontal length Dh with respect to the maximum horizontal length Dh of the cross section of the particle. Also, in case of the presence of a plurality of interior angles at the circumference of the cross section, the maximal angle can be less than 135° among the interior angles. In addition, the solvent can be one or more mixtures selected from the group consisting of a mixture of ethylene glycol monomethyl ether and dipropylene glycol monomethyl ether, a mixture of NN-dimethylformamide and formamide, a mixture of acetonitrile and butanol, a mixture of nitromethane and butanol, and a mixture of water and N,N-dimethylformamide.
    • 本发明公开了一种具有改进的再填充率的陶瓷油墨,其能够制造具有精细和改善的陶瓷性能的陶瓷厚膜。 为此,本发明的陶瓷油墨含有一定量的分散有陶瓷粉末的溶剂,陶瓷粉末的粒子的平均比例小于20%,最大垂直长度 Dv和最大水平长度Dh相对于颗粒截面的最大水平长度Dh。 此外,在横截面的圆周处存在多个内角的情况下,最大角度可以在内角之中小于135°。 此外,溶剂可以是一种或多种选自乙二醇单甲醚和二丙二醇单甲醚的混合物,硝基二甲基甲酰胺和甲酰胺的混合物,乙腈和丁醇的混合物,硝基甲烷的混合物 和丁醇,以及水和N,N-二甲基甲酰胺的混合物。