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    • 1. 发明申请
    • ELECTRONIC DEVICE HAVING SIGNAL-EQUALIZING SYSTEM AND METHOD FOR SETTING THE SIGNAL-EQUALIZING SYSTEM
    • 具有信号均衡系统的电子设备和用于设置信号均衡系统的方法
    • US20130163646A1
    • 2013-06-27
    • US13548223
    • 2012-07-13
    • YING-TSO LAIHSIAO-YUN SUDAN-CHEN WUSHIN-TING YEN
    • YING-TSO LAIHSIAO-YUN SUDAN-CHEN WUSHIN-TING YEN
    • H04L27/01
    • H04L25/03878
    • A method for setting a signal-equalizing system for use in an electronic device includes the following steps. Outputting a connection status of each channel and a number of misconnect options respectively associated with each channel to a display unit of the electronic device. Then, detecting whether at least one misconnect option is selected. If yes, determining a misconnected channel and adjusting the receiving setting for the receiving port of the misconnected channel to match with the transmitting setting for the transmitting port of the misconnected channel according to settings for each channel stored in the electronic device. The stored settings for each channel include a transmitting setting for the transmitting port of the channel and a receiving setting for the receiving port of the channel that matches the transmitting setting.
    • 一种用于设置用于电子设备的信号均衡系统的方法包括以下步骤。 将每个通道的连接状态和与每个通道分别相关联的多个错误连接选项输出到电子设备的显示单元。 然后,检测是否选择了至少一个错误连接选项。 如果是,则根据存储在电子设备中的每个通道的设置,确定错误连接的信道并且调整误连接信道的接收端口的接收设置以与错连接信道的发送端口的发送设置相匹配。 每个通道的存储设置包括通道发送端口的发送设置和与发送设置匹配的通道接收端口的接收设置。
    • 6. 发明申请
    • METHOD OF OPTIMIZING PARAMETERS OF ELECTRONIC COMPONENTS ON PRINTED CIRCUIT BOARDS
    • 电子元器件在印刷电路板上优化参数的方法
    • US20120110540A1
    • 2012-05-03
    • US13094807
    • 2011-04-26
    • HSIAO-YUN SUYING-TSO LAICHENG-HSIEN LEE
    • HSIAO-YUN SUYING-TSO LAICHENG-HSIEN LEE
    • G06F17/50
    • G06F17/505G06F17/5036G06F17/5068G06F2217/08
    • In a method of optimizing parameters of electronic components on printed circuit boards (PCBs), a first experiment table for m variables of one type of parameter of P electronic components on a PCB is designed using n values of each variable and the RSM. P EHs of each first experiment are obtained by simulating, and P EH empirical formulas are computed according to the P EHs. A second experiment table for the m variables is designed using n′ values of each variable and the full factorial design, and P EHs of each second experiment are computed using the P EH empirical formulas. Experiments, all the P EHs of which are greater than 1, are filtered from the second experiment tables, and an average EH of each filtered experiment is computed to pick an experiment the average EH of which is the greatest. The values of the m variables in the picked experiment are considered as optimized.
    • 在印刷电路板(PCB)上优化电子部件参数的方法中,使用每个变量和RSM的n个值设计PCB上P电子部件的一种类型参数的m个变量的第一个实验表。 通过模拟获得每个第一个实验的P EH,并且根据P EH计算P EH经验公式。 使用每个变量的n'值和全因子设计设计m个变量的第二个实验表,并且使用P EH经验公式计算每个第二个实验的P EH。 从第二个实验表中筛选出所有P EH大于1的实验,并计算每个滤波实验的平均EH,以选择其平均EH最大的实验。 所选实验中的m个变量的值被认为是优化的。
    • 7. 发明申请
    • DIFFERENTIAL SIGNAL TRANSMISSION DEVICE
    • 差分信号传输装置
    • US20110038427A1
    • 2011-02-17
    • US12560445
    • 2009-09-16
    • SHOU-KUO HSUCHENG-HSIEN LEEYING-TSO LAIHSIAO-YUN SUJIA-CHI CHEN
    • SHOU-KUO HSUCHENG-HSIEN LEEYING-TSO LAIHSIAO-YUN SUJIA-CHI CHEN
    • H04L27/00
    • H04L25/0272
    • A differential signal transmission device transmits N differential signal pairs from a differential signal generator to a number of receiving terminals. The N differential signal pairs include N positive signals and N negative signals. The N positive signals are clustered at a first positive clustering point. The first positive clustering point is connected to a second positive clustering point via a first matching resistor. The second positive clustering point is grounded via a first grounding resistor, and outputs a number of positive signals to the number of receiving terminals respectively. The N negative signals are clustered at a first negative clustering point. The first negative clustering point is connected to a second negative clustering point via a second matching resistor. The second negative signal clustering point is grounded via a second grounding resistor, and outputs a number of negative signals to the number of receiving terminals respectively.
    • 差分信号传输装置将差分信号发生器的N个差分信号对发送到多个接收终端。 N个差分信号对包括N个正信号和N个负信号。 N个正信号聚集在第一个正聚类点。 第一正聚集点通过第一匹配电阻连接到第二正聚集点。 第二个正聚集点通过第一接地电阻接地,并分别输出多个正信号到接收端的数量。 N个负信号聚集在第一个负聚类点。 第一负聚集点通过第二匹配电阻器连接到第二负聚集点。 第二负信号聚簇点通过第二接地电阻接地,并分别输出多个负信号至接收端数。