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    • 55. 发明授权
    • Apparatus for minimization of data line coupling in a semiconductor memory device
    • 用于使半导体存储器件中的数据线耦合最小化的装置
    • US06320781B1
    • 2001-11-20
    • US09824363
    • 2001-04-02
    • Wen LiManny K. Ma
    • Wen LiManny K. Ma
    • G11C506
    • G11C7/18G11C5/063G11C7/1048
    • The present disclosure includes a twist architecture useful for the data lines in a memory device. The architecture involves the twisting of four data lines to create four portions such that each data line occupies a different position in each of the four portions. Specifically, in the first portion, the first data line is adjacent to the second data line, the second data line is adjacent to the third data line, and the third data line is adjacent to the fourth data line; in the second portion, the third data line is adjacent to the first data line, the first data line is adjacent to the fourth data line, and the fourth data line is adjacent to the second data line; in the third portion, the fourth data line is adjacent to the third data line, the third data line is adjacent to the second data line, and the second data line is adjacent to the first data line; and in the fourth portion, the second data line is adjacent to the fourth data line, the fourth data line is adjacent to the first data line, and the first data line is adjacent to the third data line. Such an architecture reduces unwanted parasitic capacitive coupling between the data lines and hence improves speed.
    • 本公开包括对存储器设备中的数据线有用的扭曲架构。 该体系结构涉及四条数据线的扭转以产生四个部分,使得每个数据线在四个部分的每一个中占据不同的位置。 具体地说,在第一部分中,第一数据线与第二数据线相邻,第二数据线与第三数据线相邻,第三数据线与第四数据线相邻; 在第二部分中,第三数据线与第一数据线相邻,第一数据线与第四数据线相邻,第四数据线与第二数据线相邻; 在第三部分中,第四数据线与第三数据线相邻,第三数据线与第二数据线相邻,第二数据线与第一数据线相邻; 并且在第四部分中,第二数据线与第四数据线相邻,第四数据线与第一数据线相邻,并且第一数据线与第三数据线相邻。 这种架构减少了数据线之间的不必要的寄生电容耦合,从而提高了速度。
    • 56. 发明授权
    • Method and apparatus for minimization of data line coupling in a semiconductor memory device
    • 用于最小化半导体存储器件中的数据线耦合的方法和装置
    • US06259621B1
    • 2001-07-10
    • US09610760
    • 2000-07-06
    • Wen LiManny K. Ma
    • Wen LiManny K. Ma
    • G11C506
    • G11C7/18G11C5/063G11C7/1048
    • The present disclosure includes a twist architecture useful for the data lines in a memory device. The architecture involves the twisting of four data lines to create four portions such that each data line occupies a different position in each of the four portions. Specifically, in the first portion, the first data line is adjacent to the second data line, the second data line is adjacent to the third data line, and the third data line is adjacent to the fourth data line; in the second portion, the third data line is adjacent to the first data line, the first data line is adjacent to the fourth data line, and the fourth data line is adjacent to the second data line; in the third portion, the fourth data line is adjacent to the third data line, the third data line is adjacent to the second data line, and the second data line is adjacent to the first data line; and in the fourth portion, the second data line is adjacent to the fourth data line, the fourth data line is adjacent to the first data line, and the first data line is adjacent to the third data line. Such an architecture reduces unwanted parasitic capacitive coupling between the data lines and hence improves speed.
    • 本公开包括对存储器设备中的数据线有用的扭曲架构。 该体系结构涉及四条数据线的扭转以产生四个部分,使得每个数据线在四个部分的每一个中占据不同的位置。 具体地说,在第一部分中,第一数据线与第二数据线相邻,第二数据线与第三数据线相邻,第三数据线与第四数据线相邻; 在第二部分中,第三数据线与第一数据线相邻,第一数据线与第四数据线相邻,第四数据线与第二数据线相邻; 在第三部分中,第四数据线与第三数据线相邻,第三数据线与第二数据线相邻,第二数据线与第一数据线相邻; 并且在第四部分中,第二数据线与第四数据线相邻,第四数据线与第一数据线相邻,并且第一数据线与第三数据线相邻。 这种架构减少了数据线之间的不必要的寄生电容耦合,从而提高了速度。
    • 60. 发明授权
    • Smart optical transceiver having integrated optical dying gasp function
    • 智能光收发器具有集成光学垂直功能
    • US09246590B2
    • 2016-01-26
    • US12390484
    • 2009-02-22
    • Wen LiFulin PanJianhui Zhou
    • Wen LiFulin PanJianhui Zhou
    • H04B10/40
    • H04B10/40
    • An optical transceiver includes an electric terminal that can receive power from a host equipment and provide a power supply voltage to the optical transceiver, and a power failure monitor circuit that can detect an imminent loss of the power supply voltage. The power failure monitor circuit can produce a dying-gasp control signal when such imminent loss of power supply voltage is detected or when a disabling control signal is received from the host equipment. A driver can receive the dying-gasp control signal. An optical transmitter is powered by the power supply voltage and can emit a first optical signal under the control of the driver. The driver can modulate an envelope of the first optical signal in response to the dying-gasp control signal to produce a modulated envelope comprising a first dying gasp signal.
    • 光收发器包括能够从主机设备接收电力并向光收发器提供电源电压的电端子,以及能够检测即将发生的电源电压损失的电源故障监视电路。 当检测到电源电压即将发生或当从主机设备接收到禁用控制信号时,电源故障监控电路可以产生一个垂死的喘气控制信号。 驾驶员可以接收垂直喘气控制信号。 光发射机由电源电压供电,并可在驱动器的控制下发出第一光信号。 驱动器可以响应于垂直气体控制信号来调制第一光信号的包络,以产生包括第一垂直气体信号的调制包络。