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    • 9. 发明申请
    • Quality of Service Performance Scoring and Rating Display and Navigation System
    • 服务质量评分和评级显示和导航系统
    • US20120072267A1
    • 2012-03-22
    • US12887507
    • 2010-09-22
    • ALBERTO GUTIERREZ, JR.CLARENCE FREDRICK AMESJamil Husain
    • ALBERTO GUTIERREZ, JR.CLARENCE FREDRICK AMESJamil Husain
    • G06Q10/00
    • G06Q10/10G06Q10/063G06Q10/06393
    • A computer display device is configured to present a plurality of Quality of Service Ratings and link to selectable displays of the component data supporting said Quality of Service Rating. Each Quality of Service Rating is determined by comparing a total combined Quality of Service Score with at least one threshold for a type of service. A method for determining a total combined Quality of Service Score comprises adjusting by an aggregate numerical value for minor Key Performance Indicators from a gross score established among selected major Key Performance Indicators. In an embodiment a ceiling is determined by the lowest rating among the major Key Performance Indicators. A plurality of dimensions and limits determines subsets of wireless communications apparatus. Changes of Quality of Service between subsets are correlated with changes in the data recorded according to a collection profile at each wireless communication apparatus categorized into a subset.
    • 计算机显示设备被配置为呈现多个服务质量等级并链接到支持所述服务质量等级的组件数据的可选显示。 每个服务质量评级通过将总体服务质量得分与一种服务类型的至少一个阈值进行比较来确定。 用于确定总体服务质量得分的方法包括根据选定的主要关键绩效指标中确定的总分来调整次要关键绩效指标的总数值。 在一个实施例中,上限由主要关键绩效指标中的最低评级确定。 多个尺寸和限制确定无线通信装置的子集。 子集之间的服务质量的变化与根据分类为子集的每个无线通信装置处的收集简档记录的数据的变化相关。
    • 10. 发明授权
    • CMOS pseudo-NMOS programmable capacitance time vernier and method of
calibration
    • CMOS伪NMOS可编程电容时间游标和校准方法
    • US5214680A
    • 1993-05-25
    • US786447
    • 1991-11-01
    • Alberto Gutierrez, Jr.Christopher KoernerMasaharu GotoJames O. Barnes
    • Alberto Gutierrez, Jr.Christopher KoernerMasaharu GotoJames O. Barnes
    • G01R31/319H03K5/00H03K5/13H03M1/66H03M1/68H03M1/74
    • H03M1/687G01R31/31922H03K5/131H03K5/133H03M1/66H03K2005/00097H03M1/745H03M1/747
    • The present invention is a time vernier providing fine timing control of an input signal having coarse timing edges. The time vernier comprises a receiving means for receiving a value representing a desired time delay to be added to the coarse timing edge input. The desired time delay may have both fine and coarse delay aspects. The time vernier also comprises a first decoding means for decoding the fine delay aspect and generating fine delay control signals, as well as a second decoding means for decoding a coarse delay aspect and generating coarse delay control signals. A delay line is also included in the time vernier which has inputs to receive the input signal having coarse timing edges, the fine and coarse delay control signals, and a control voltage which automatically adjusts with temperature and power supply variations, so as to provide for temperature and power supply compensation. The delay line combines the fine and coarse delay signals to provide an output signal with fine timing edges. Furthermore, the architecture of the present invention enables an automated method of calibration in order to adjust fine and coarse delay elements for fabrication process variations and photolithography variations.
    • 本发明是提供具有粗定时边缘的输入信号的精确定时控制的时间游标。 时间游标包括接收装置,用于接收表示要添加到粗时序边缘输入的期望时间延迟的值。 期望的时间延迟可以具有精细和粗略的延迟方面。 时间游标还包括用于解码精细延迟方面并产生精细延迟控制信号的第一解码装置,以及用于解码粗略延迟方面并产生粗略延迟控制信号的第二解码装置。 延时线还包括在时间游标中,其具有用于接收具有粗定时边缘的输入信号的输入,精细和粗略的延迟控制信号以及根据温度和电源变化自动调整的控制电压,以便提供 温度和电源补偿。 延迟线组合精细和粗略的延迟信号,以提供具有精细时序边缘的输出信号。 此外,本发明的架构能够实现自动校准方法,以便调整用于制造工艺变化和光刻变化的精细和粗略的延迟元件。