Semiconductor device using complementary clock and signal input state detection circuit used for the same

    公开(公告)号:US06333660B2

    公开(公告)日:2001-12-25

    申请号:US09780475

    申请日:2001-02-12

    IPC分类号: H03K3013

    摘要: A semiconductor device for generating first and second internal clocks complementary with each other from an external clock and usable for both a system of a type using a complementary clock and a system of a type generating a 180° phase clock internally, is disclosed. A first clock input circuit (buffer) is supplied with a first external clock and outputs a first internal clock. A second clock input circuit (buffer) is supplied with a second external clock complementary with the first external clock and outputs a second clock. A ½ phase clock generating circuit generates a ½ phase shift signal 180° out of phase with the first internal clock. A second external clock state detection circuit judges whether the second external clock is input to the second clock input buffer. A switch is operated to produce the second clock as the second internal clock when the second external clock is input and to produce the ½ phase shift signal as the second internal clock when the second external clock is not input, in accordance with the judgement at the second external clock state detection circuit.

    Semiconductor memory device for operating in synchronization with edge of clock signal
    6.
    发明授权
    Semiconductor memory device for operating in synchronization with edge of clock signal 有权
    用于与时钟信号的边沿同步操作的半导体存储器件

    公开(公告)号:US06510095B1

    公开(公告)日:2003-01-21

    申请号:US10073231

    申请日:2002-02-13

    IPC分类号: G11C700

    摘要: A command receiver circuit receives a command signal in synchronization with either a rising edge or a falling edge of a clock signal. A data input/output circuit starts an output of read data and an input of write data in synchronization with the edges of the clock signal which are set in response to reception timing of the command signal. Since the command signal can be received in synchronization with both edges of the clock signal, it is possible to halve a clock cycle when a reception rate is the same as that of the conventional art. As a result of this, in a system on which the semiconductor memory device is mounted, it is possible to halve the frequency of a system clock and to reduce power consumption of a clock synchronization circuit in the system, without reducing a data input/output rate for the semiconductor memory device.

    摘要翻译: 命令接收器电路与时钟信号的上升沿或下降沿同步地接收命令信号。 数据输入/输出电路与响应命令信号的接收定时而设置的时钟信号的边沿同步地开始读取数据的输出和写入数据的输入。 由于可以与时钟信号的两个边沿同步地接收命令信号,所以当接收速率与传统技术的接收速率相同时,可以将时钟周期减半。 结果,在安装了半导体存储器件的系统中,可以将系统时钟的频率减半,并且可以降低系统中时钟同步电路的功耗,而不减少数据输入/输出 速率为半导体存储器件。

    LSI device with memory and logics mounted thereon

    公开(公告)号:US06272069B1

    公开(公告)日:2001-08-07

    申请号:US09764446

    申请日:2001-01-19

    IPC分类号: G11C800

    摘要: A data signal is output from an output circuit of a first chip and sent to a data input terminal in the second chip via a data lead line based on an output clock in first chip, which is sent to the second chip. And an input circuit in a second chip receives the data signal and transfers it inside in response to a transfer clock that has been generated from the output clock in the first chip. In synchronism with a single reference clock in the first chip, therefore, a data signal can be transferred to the second chip from the first chip at a high speed.