会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Reduced cross-talk signaling circuit and method
    • 减少串扰信号电路和方法
    • US20070046389A1
    • 2007-03-01
    • US11209549
    • 2005-08-23
    • Daniel DrepsAnand HaridassBao TruongJoel Ziegelbein
    • Daniel DrepsAnand HaridassBao TruongJoel Ziegelbein
    • H01P5/00
    • H04L25/0272H04B3/32
    • Signaling between two or more ICs use a signaling scheme wherein a reference signal is generated at the driver side and the receiver side. The driver side reference signal is coupled to the receiver side reference signal with a transmission line channel forming a reference channel. Data signal channels are paired with a reference channel between each two adjacent data channels. Adjacent pairs of data signal channels are each separated with an empty wiring channel. The paired data signals are received in one input of a differential receiver. The reference signal of the reference channel between the two paired data channels is coupled to the other input of the two differential receivers. Coupling from the paired data channels to the reference channel appears a common mode noise and is rejected by the differential receivers. The number of channels is reduced from a full differential signaling scheme.
    • 两个或多个IC之间的信令使用信令方案,其中在驱动器侧和接收机侧产生参考信号。 驱动器侧参考信号通过形成参考通道的传输线路通道耦合到接收机侧参考信号。 数据信号通道与每两个相邻数据通道之间的参考通道配对。 相邻的数据信号通道对都分开一个空的布线通道。 成对的数据信号在差分接收机的一个输入端被接收。 两个成对数据信道之间的参考信道的参考信号耦合到两个差分接收机的另一个输入端。 从配对数据通道耦合到参考通道出现共模噪声,并被差分接收器拒绝。 信道数量从全差分信令方案中减少。
    • 7. 发明申请
    • Apparatus and Method for Selectively Monitoring Multiple Voltages in an IC or other Electronic Chip
    • 用于选择性监测IC或其他电子芯片中的多个电压的装置和方法
    • US20070239387A1
    • 2007-10-11
    • US11278848
    • 2006-04-06
    • Daniel DourietAnand HaridassAndreas HuberColm O'ReillyBao TruongRoger Weekly
    • Daniel DourietAnand HaridassAndreas HuberColm O'ReillyBao TruongRoger Weekly
    • G06F19/00
    • G01R19/16552
    • An apparatus and method are provided for monitoring the voltage available in each domain of multiple voltage domains of a partitioned electronic chip. In embodiments of the invention, only a single pair of C4 pins is required for all voltage monitoring activity. One useful embodiment is directed to apparatus for monitoring the level of voltage associated with each domain in a partitioned chip. The apparatus comprises a single conductive link coupled to the chip, and further comprises a domain selection network having a single output and a plurality of switchable inputs, the output being connected to the single conductive link, and two inputs being connected to monitor respective voltage levels of two of the plurality of voltage domains. A control mechanism is disposed to operate the selection network, in order to selectively connect one of the inputs to the single conductive link, and a sensor device external to the electronic chip is connected to measure the monitored respective voltage levels of two of the plurality of voltage domains using the single conductive link.
    • 提供了一种用于监视分区电子芯片的多个电压域的每个域中可用电压的装置和方法。 在本发明的实施例中,对于所有电压监视活动,仅需要一对C4引脚。 一个有用的实施例涉及用于监视与分区芯片中的每个域相关联的电压电平的装置。 该装置包括耦合到芯片的单个导电链路,并且还包括具有单个输出和多个可切换输入的域选择网络,该输出连接到单个导电链路,并且两个输入端被连接以监视相应的电压电平 的多个电压域中的两个。 设置控制机构以操作选择网络,以便选择性地将输入中的一个连接到单个导电链路,并且电子芯片外部的传感器装置被连接以测量所监视的相应的多个 电压域使用单个导电链路。
    • 9. 发明申请
    • Programmable driver delay
    • 可编程驱动器延时
    • US20070046335A1
    • 2007-03-01
    • US11211955
    • 2005-08-25
    • Wiren BeckerAnand HaridassBao Truong
    • Wiren BeckerAnand HaridassBao Truong
    • H03K19/00
    • H03K5/00H03K5/135H04L25/0276
    • Data busses are configured as N differential channels driven by a data signal and its complement through two off-chip drivers (OCDs). Each OCD is preceded by a programmable delay element and a two way MUX. The two data channels either transmit the data signals or a common clock signal as determined by a select signal from a skew controller. The differential signals are received in a differential receiver and a phase detector. The output of the phase detector in each differential channel is routed through an Nx1 MUX. The Nx1 MUX is controlled by the skew controller. The output of the Nx1 MUX is fed back as a phase error feedback signal to the skew controller. Each differential data channel is sequentially selected and the programmable delays are adjusted until the phase error feedback signal from the selected phase detector reaches a predetermined minimum allowable value. Periodic adjustment may be implemented for calibration.
    • 数据总线被配置为由数据信号驱动的N个差分信道及其通过两个片外驱动器(OCD)的补码。 每个OCD之前都有可编程延迟元件和双向MUX。 两个数据通道传输数据信号或由偏斜控制器的选择信号确定的公共时钟信号。 差分信号在差分接收机和相位检测器中被接收。 每个差分信道中的相位检测器的输出通过Nx1 MUX进行路由。 Nx1 MUX由偏斜控制器控制。 Nx1 MUX的输出作为相位误差反馈信号反馈到歪斜控制器。 顺序地选择每个差分数据通道,并且调整可编程延迟,直到来自所选相位检测器的相位误差反馈信号达到预定的最小允许值。 可以进行定期调整以进行校准。