WRITE-LEVELING IMPLEMENTATION IN PROGRAMMABLE LOGIC DEVICES
    1.
    发明申请
    WRITE-LEVELING IMPLEMENTATION IN PROGRAMMABLE LOGIC DEVICES 有权
    可编程逻辑器件中的写层次实现

    公开(公告)号:US20120106264A1

    公开(公告)日:2012-05-03

    申请号:US13349228

    申请日:2012-01-12

    IPC分类号: G11C7/10 H03L7/00 G11C7/22

    CPC分类号: G11C7/22 G11C7/1066 G11C7/222

    摘要: Circuits, methods, and apparatus for memory interfaces that compensate for skew between a clock signal and DQ/DQS signals that may be caused by a fly-by routing topology. The skew is compensated by clocking the DQ/DQS signals with a phase delayed clock signal, where the phase delay has been calibrated. In one example calibration routine, a clock signal is provided to a receiving device. A DQ/DQS signal is also provided and the timing of their reception compared. A delay of the DQ/DQS signal is changed incrementally until the DQ/DQS signal is aligned with the clock signal at the receiving device. This delay is then used during device operation to delay a signal that clocks registers providing the DQ/DQS signals. Each DQ/DQS group can be aligned to the clock, or the DQS and DQ signals in a group may be independently aligned to the clock at the receiving device.

    摘要翻译: 用于存储器接口的电路,方法和装置,其补偿可能由飞越路由拓扑引起的时钟信号和DQ / DQS信号之间的偏差。 通过使用相位延迟时钟信号对DQ / DQS信号进行时钟补偿,其中相位延迟已校准。 在一个示例性校准例程中,向接收设备提供时钟信号。 还提供了DQ / DQS信号,并将其接收的定时进行比较。 DQ / DQS信号的延迟逐渐改变,直到DQ / DQS信号与接收设备的时钟信号对齐。 然后在器件操作期间使用该延迟来延迟提供DQ / DQS信号的寄存器的信号。 每个DQ / DQS组可以与时钟对齐,或者组中的DQS和DQ信号可以独立地对准接收器件上的时钟。

    WRITE-LEVELING IMPLEMENTATION IN PROGRAMMABLE LOGIC DEVICES
    2.
    发明申请
    WRITE-LEVELING IMPLEMENTATION IN PROGRAMMABLE LOGIC DEVICES 有权
    可编程逻辑器件中的写层次实现

    公开(公告)号:US20080201597A1

    公开(公告)日:2008-08-21

    申请号:US11843123

    申请日:2007-08-22

    IPC分类号: G06F1/12 H04L7/00

    CPC分类号: G11C7/22 G11C7/1066 G11C7/222

    摘要: Circuits, methods, and apparatus for memory interfaces that compensate for skew between a clock signal and DQ/DQS signals that may be caused by a fly-by routing topology. The skew is compensated by clocking the DQ/DQS signals with a phase delayed clock signal, where the phase delay has been calibrated. In one example calibration routine, a clock signal is provided to a receiving device. A DQ/DQS signal is also provided and the timing of their reception compared. A delay of the DQ/DQS signal is changed incrementally until the DQ/DQS signal is aligned with the clock signal at the receiving device. This delay is then used during device operation to delay a signal that clocks registers providing the DQ/DQS signals. Each DQ/DQS group can be aligned to the clock, or the DQS and DQ signals in a group may be independently aligned to the clock at the receiving device.

    摘要翻译: 用于存储器接口的电路,方法和装置,其补偿可能由飞越路由拓扑引起的时钟信号和DQ / DQS信号之间的偏差。 通过使用相位延迟时钟信号对DQ / DQS信号进行时钟补偿,其中相位延迟已校准。 在一个示例性校准例程中,向接收设备提供时钟信号。 还提供了DQ / DQS信号,并将其接收的定时进行比较。 DQ / DQS信号的延迟逐渐改变,直到DQ / DQS信号与接收设备的时钟信号对齐。 然后在器件操作期间使用该延迟来延迟提供DQ / DQS信号的寄存器的信号。 每个DQ / DQS组可以与时钟对齐,或者组中的DQS和DQ信号可以独立地对准接收器件上的时钟。

    READ-LEVELING IMPLEMENTATIONS FOR DDR3 APPLICATIONS ON AN FPGA
    3.
    发明申请
    READ-LEVELING IMPLEMENTATIONS FOR DDR3 APPLICATIONS ON AN FPGA 有权
    DDR3应用于FPGA的阅读实施

    公开(公告)号:US20080291758A1

    公开(公告)日:2008-11-27

    申请号:US11935310

    申请日:2007-11-05

    IPC分类号: G11C7/10

    摘要: Circuits, methods, and apparatus for transferring data from a device's input clock domain to a core clock domain. One example achieves this by using a retiming element between input and core circuits. The retiming element is calibrated by incrementally sweeping a delay and receiving data at each increment. Minimum and maximum delays where data is received without errors are averaged. This average can then be used to adjust the timing of a circuit element inserted in an input path between an input register clocked by an input strobe signal and an output register clocked by a core clock signal. In one example, an input signal may be delayed by an amount corresponding to the delay setting. In other examples, each input signal is registered using an intermediate register between the input register and the output register, where a clock signal is delayed by an amount corresponding to the delay setting.

    摘要翻译: 用于将数据从设备的输入时钟域传送到核心时钟域的电路,方法和装置。 一个例子是通过在输入和电路之间使用重新定时元件实现这一点。 重新定时元素通过逐渐扫描延迟并在每个增量处接收数据进行校准。 平均接收无差错数据的最小和最大延迟。 然后可以使用该平均值来调整插入由输入选通信号计时的输入寄存器和由核心时钟信号计时的输出寄存器之间的输入路径中的电路元件的定时。 在一个示例中,输入信号可以被延迟与延迟设置相对应的量。 在其他示例中,使用输入寄存器和输出寄存器之间的中间寄存器来注册每个输入信号,其中时钟信号被延迟与延迟设置相对应的量。

    READ-LEVELING IMPLEMENTATIONS FOR DDR3 APPLICATIONS ON AN FPGA
    4.
    发明申请
    READ-LEVELING IMPLEMENTATIONS FOR DDR3 APPLICATIONS ON AN FPGA 有权
    DDR3应用于FPGA的阅读实施

    公开(公告)号:US20090296503A1

    公开(公告)日:2009-12-03

    申请号:US12539582

    申请日:2009-08-11

    IPC分类号: G11C7/00 G11C7/10

    摘要: Circuits, methods, and apparatus for transferring data from a device's input clock domain to a core clock domain. One example achieves this by using a retiming element between input and core circuits. The retiming element is calibrated by incrementally sweeping a delay and receiving data at each increment. Minimum and maximum delays where data is received without errors are averaged. This average can then be used to adjust the timing of a circuit element inserted in an input path between an input register clocked by an input strobe signal and an output register clocked by a core clock signal. In one example, an input signal may be delayed by an amount corresponding to the delay setting. In other examples, each input signal is registered using an intermediate register between the input register and the output register, where a clock signal is delayed by an amount corresponding to the delay setting.

    摘要翻译: 用于将数据从设备的输入时钟域传送到核心时钟域的电路,方法和装置。 一个例子是通过在输入和电路之间使用重新定时元件实现这一点。 重新定时元素通过逐渐扫描延迟并在每个增量处接收数据进行校准。 平均接收无差错数据的最小和最大延迟。 然后可以使用该平均值来调整插入由输入选通信号计时的输入寄存器和由核心时钟信号计时的输出寄存器之间的输入路径中的电路元件的定时。 在一个示例中,输入信号可以被延迟与延迟设置相对应的量。 在其他示例中,使用输入寄存器和输出寄存器之间的中间寄存器来注册每个输入信号,其中时钟信号被延迟与延迟设置相对应的量。

    Read-Side Calibration for Data Interface
    5.
    发明申请
    Read-Side Calibration for Data Interface 有权
    数据接口的读侧校准

    公开(公告)号:US20070282555A1

    公开(公告)日:2007-12-06

    申请号:US11735386

    申请日:2007-04-13

    IPC分类号: G01R35/00

    摘要: Circuits, methods and apparatus are provided to reduce skew among signals being received by a data interface. Signal path delays are varied such that data and strobe signals received at a memory interface are calibrated or aligned with each other along a rising and/or falling edge. For example, self-calibration circuitry provides skew adjustment of each data signal path by determining one or more delays in each data signal path and strobe signal path based on relative timings of test signals. The rising or falling edges may be used for this alignment.

    摘要翻译: 提供电路,方法和装置以减少由数据接口接收的信号之间的偏差。 变化信号路径延迟使得在存储器接口处接收的数据和选通信号沿着上升沿和/或下降沿彼此校准或对齐。 例如,自校准电路通过基于测试信号的相对定时确定每个数据信号路径和选通信号路径中的一个或多个延迟来提供每个数据信号路径的偏移调整。 上升或下降沿可用于此对齐。

    Write-Side Calibration for Data Interface
    6.
    发明申请
    Write-Side Calibration for Data Interface 失效
    数据接口的写入校准

    公开(公告)号:US20070277071A1

    公开(公告)日:2007-11-29

    申请号:US11735394

    申请日:2007-04-13

    IPC分类号: G01R31/28 G06F11/00

    CPC分类号: G06F13/4213

    摘要: Circuits, methods and apparatus are provided to reduce skew among signals being provided or transmitted by a data interface. Signal path delays are varied such that signals transmitted by a memory interface are calibrated or aligned with each other along a rising and/or falling edge. For example, self-calibration, external circuitry, or design tools can provide skew adjustment of each output channel by determining one or more delays for each output channel path. When aligning multiple edges, the edges of the output signals may be aligned independently, e.g., using edge specific delay elements.

    摘要翻译: 提供电路,方法和装置以减少由数据接口提供或发送的信号之间的偏差。 信号路径延迟是变化的,使得由存储器接口发送的信号沿着上升沿和/或下降沿彼此校准或对齐。 例如,自校准,外部电路或设计工具可以通过确定每个输出通道路径的一个或多个延迟来提供每个输出通道的偏移调整。 当对准多个边缘时,输出信号的边缘可以独立对准,例如使用边缘特定的延迟元件。

    DQS postamble filtering
    7.
    发明授权
    DQS postamble filtering 有权
    DQS后同步码过滤

    公开(公告)号:US07324405B1

    公开(公告)日:2008-01-29

    申请号:US11368369

    申请日:2006-03-03

    IPC分类号: G11C8/00

    摘要: Circuits, methods, and apparatus for filtering signals at a high-speed data interface. One exemplary embodiment is particularly configured to filter a clock signal at the end of a data burst received by a double-data rate memory interface. A clock input port is either connected or disconnected to an input cell. When a data burst is to be received, the clock input port is connected to the input cell. When the data burst concludes, the clock input port is disconnected from the input cell. In a specific embodiment, a signal is received indicating that a data burst is about to begin and the clock input port is connected to the input cell. The signal later changes state indicating that the last data bit is being received. When the last clock edge corresponding to the last data bit is received, the clock input port is disconnected from the input cell.

    摘要翻译: 用于在高速数据接口处过滤信号的电路,方法和装置。 一个示例性实施例被特别地配置为在由双数据速率存储器接口接收的数据突发结束时对时钟信号进行滤波。 时钟输入端口与输入单元连接或断开。 当接收到数据脉冲串时,时钟输入端口连接到输入单元。 当数据突发结束时,时钟输入端口与输入单元断开连接。 在具体实施例中,接收到指示数据脉冲串即将开始并且时钟输入端口连接到输入单元的信号。 该信号随后改变指示正在接收最后一个数据位的状态。 当接收到与最后一个数据位相对应的最后一个时钟沿时,时钟输入端口与输入单元断开。

    Self-compensating delay chain for multiple-date-rate interfaces
    8.
    发明授权
    Self-compensating delay chain for multiple-date-rate interfaces 有权
    多速率接口的自补偿延迟链

    公开(公告)号:US07200769B1

    公开(公告)日:2007-04-03

    申请号:US10037861

    申请日:2002-01-02

    IPC分类号: G06F1/04

    摘要: Methods and apparatus for delaying a clock signal for a multiple-data-rate interface. An apparatus provides an integrated circuit including a frequency divider configured to receive a first clock signal and a first variable-delay block configured to receive an output from the frequency divider. Also included is a phase detector configured to receive the first clock signal and an output from the first variable-delay block, and an up/down counter configured to receive an output from the phase detector. A second variable-delay block is configured to receive a second clock signal and a plurality of flip-flops are configured to receive an output from the second variable-delay block. The first variable-delay block and the second variable-delay block are configured to receive an output from the up/down counter.

    摘要翻译: 用于延迟多数据速率接口的时钟信号的方法和装置。 一种装置提供一种集成电路,其包括配置成接收第一时钟信号的分频器和被配置为接收来自分频器的输出的第一可变延迟块。 还包括相位检测器,被配置为接收第一时钟信号和来自第一可变延迟块的输出,以及配置为接收来自相位检测器的输出的上/下计数器。 第二可变延迟块被配置为接收第二时钟信号,并且多个触发器被配置为从第二可变延迟块接收输出。 第一可变延迟块和第二可变延迟块被配置为从加/减计数器接收输出。

    MULTIPLE DATA RATE INTERFACE ARCHITECTURE
    9.
    发明申请
    MULTIPLE DATA RATE INTERFACE ARCHITECTURE 有权
    多种数据速率接口架构

    公开(公告)号:US20120146700A1

    公开(公告)日:2012-06-14

    申请号:US13324354

    申请日:2011-12-13

    IPC分类号: H03K5/06

    摘要: Method and circuitry for implementing high speed multiple-data-rate interface architectures for programmable logic devices. The invention partitions I/O pins and their corresponding registers into independent multiple-data rate I/O modules each having at least one pin dedicated to the strobe signal DQS and others to DQ data signals. The modular architecture facilitates pin migration from one generation of PLDs to the next larger generation.

    摘要翻译: 用于实现可编程逻辑器件的高速多数据速率接口架构的方法和电路。 本发明将I / O引脚及其对应的寄存器分为独立的多数据速率I / O模块,每个I / O引脚具有至少一个专用于选通信号DQS的引脚和其他引脚用于DQ数据信号。 模块化架构便于引脚从一代PLD迁移到下一代。

    Multiple data rate interface architecture
    10.
    发明授权
    Multiple data rate interface architecture 有权
    多数据速率接口架构

    公开(公告)号:US07167023B1

    公开(公告)日:2007-01-23

    申请号:US11059299

    申请日:2005-02-15

    IPC分类号: H01L25/00 H03K19/177

    摘要: Method and circuitry for implementing high speed multiple-data-rate interface architectures for programmable logic devices. The invention partitions I/O pins and their corresponding registers into independent multiple-data rate I/O modules each having at least one pin dedicated to the strobe signal DQS and others to DQ data signals. The modular architecture facilitates pin migration from one generation of PLDs to the next larger generation.

    摘要翻译: 用于实现可编程逻辑器件的高速多数据速率接口架构的方法和电路。 本发明将I / O引脚及其对应的寄存器分为独立的多数据速率I / O模块,每个I / O引脚具有至少一个专用于选通信号DQS的引脚和其他引脚用于DQ数据信号。 模块化架构便于引脚从一代PLD迁移到下一代。