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    • 1. 发明授权
    • Optical transceiver with custom logging mechanism
    • 具有定制记录机制的光收发器
    • US07653314B2
    • 2010-01-26
    • US11468246
    • 2006-08-29
    • Gerald L. DybsetterLuke M. EkkizogloyJayne C. Hahin
    • Gerald L. DybsetterLuke M. EkkizogloyJayne C. Hahin
    • H04B10/00H04B10/08
    • H04B10/40
    • An optical transceiver that custom logs information based on input from a host computing system (hereinafter referred to as a “host”). The optical transceiver receives input from the host concerning which operational information to log; the operational information may include statistical data about system operation, or measured parameters, or any other measurable system characteristic. The input from the host may also specify one or more storage locations corresponding to the identified operational information. If one or more storage locations are specified, the optical transceiver logs the information to the corresponding storage locations, which may be an on-transceiver persistent memory, the memory of the host or any other accessible logging location. Additionally, the input from the host may specify one or more actions to be performed when the identified information is logged. If one or more actions are specified, the optical transceiver performs the specified actions when the information is logged.
    • 基于来自主机计算系统(以下称为“主机”)的输入来定制记录信息的光收发器。 光收发器从主机接收关于要登录的操作信息的输入; 操作信息可以包括关于系统操作或测量参数或任何其它可测量的系统特性的统计数据。 来自主机的输入还可以指定与所识别的操作信息相对应的一个或多个存储位置。 如果指定了一个或多个存储位置,光收发器将信息记录到对应的存储位置,存储位置可以是收发器上的持久存储器,主机的存储器或任何其他可访问的记录位置。 此外,来自主机的输入可以指定当记录所识别的信息时要执行的一个或多个动作。 如果指定了一个或多个动作,当收发信息被记录时,光收发器执行指定的动作。
    • 2. 发明授权
    • Configurable input/output terminals
    • 可配置的输入/输出端子
    • US07426586B2
    • 2008-09-16
    • US10970530
    • 2004-10-21
    • Gerald L. DybsetterJayne C. Hahin
    • Gerald L. DybsetterJayne C. Hahin
    • G06F3/00G06F7/38
    • G06F13/4072
    • Configuring chip I/O terminals such that they may be input, output, or bi-directional terminals. Furthermore, the I/O terminals may be configured with different signal sources if they are output or bi-directional terminals. In addition, the terminals may be configured to be inverted when operating in either direction. A mechanism is provided to change this configuration as needed, for example, to correspond to different pins on the package as appropriate given the package configuration and other implementation needs. This configurability allows for tremendous flexibility and independent between the chip on which the integrated circuit is embedded and the package.
    • 配置芯片I / O端子,使其可以是输入,输出或双向端子。 此外,I / O端子可以被配置为具有不同的信号源,如果它们是输出或双向端子。 此外,端子可以被配置为在沿任一方向工作时被倒置。 提供了根据需要改变该配置的机制,例如,根据包装配置和其他实现需要,适当地对应于包上的不同引脚。 这种可配置性允许嵌入集成电路的芯片与封装之间的巨大的灵活性和独立性。
    • 3. 发明授权
    • Microcode driven adjustment of analog-to-digital converter
    • 模数转换器的微码驱动调整
    • US06999011B2
    • 2006-02-14
    • US10814440
    • 2004-03-31
    • Daniel CaseGerald L. DybsetterJayne C. Hahin
    • Daniel CaseGerald L. DybsetterJayne C. Hahin
    • H03M1/06
    • H03M1/183
    • Microcode driven adjustment of analog scaling of an analog signal prior to being provided to an analog-to-digital converter. The microcode also causes the system to read the resulting digital value, and determine whether the scaling value should be adjusted for that analog signal. Accordingly, the microcode may cause the analog signal to be dynamically adjusted to be within the input range of the analog-to-digital converter, thereby allowing for more accurate digital conversions with lower resolution analog-to-digital converters. The microcode rapidly adjusts for any fluctuations in the input voltage. Accordingly, the analog signal may fluctuate, or even be multiplexed from a wide variety of different analog signal sources.
    • 在将模拟信号提供给模数转换器之前,模拟量程缩放的微码驱动调整。 微码还使系统读取所得到的数字值,并确定是否应该为该模拟信号调整缩放值。 因此,微码可以使得模拟信号被动态地调整到模数转换器的输入范围内,从而允许用较低分辨率的模 - 数转换器进行更精确的数字转换。 微码可快速调整输入电压的任何波动。 因此,模拟信号可能波动,甚至可以从各种不同的模拟信号源复用。
    • 10. 发明授权
    • Microcode-initiated high speed comparator
    • 微码启动的高速比较器
    • US07468618B2
    • 2008-12-23
    • US11172295
    • 2005-06-30
    • Gerald L. DybsetterJayne C. Hahin
    • Gerald L. DybsetterJayne C. Hahin
    • H03K5/22
    • G01R31/31932H03K5/08
    • A microcode-initiated high speed comparator in an optical transceiver includes an initialization and control section consisting of various register sets, an analog section with comparator hardware, and an output retrieval section. The comparator hardware performs comparison on a wide-range of selectable input values, thereby avoiding the need for a dedicated comparator for each input value. The register sets are initialized by microcode with various comparison values, allowing multiplexed comparison to be much faster than it would be if the processor was controlling in real-time the multiplexed comparison. The comparison values may correspond to optimal operational parameters of the optical transceiver or may correspond to other desired comparison values. The analog section is driven by the registers and makes a comparison between the predetermined values and actual operational parameter values.
    • 光收发器中的微代码发起的高速比较器包括由各种寄存器组,具有比较器硬件的模拟部分和输出检索部分组成的初始化和控制部分。 比较器硬件在宽范围的可选输入值上执行比较,从而避免了对每个输入值的专用比较器的需要。 寄存器集由具有各种比较值的微代码初始化,允许复用比较比如果处理器实时多路复用比较控制的速度快得多。 比较值可以对应于光收发器的最佳操作参数,或者可以对应于其他期望的比较值。 模拟部分由寄存器驱动,并在预定值和实际操作参数值之间进行比较。