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    • 2. 发明专利
    • System and method for controlling dynamic waveform resource
    • 用于控制动态波形资源的系统和方法
    • JP2005233962A
    • 2005-09-02
    • JP2005042094
    • 2005-02-18
    • Agilent Technol Incアジレント・テクノロジーズ・インクAgilent Technologies, Inc.
    • KOLMAN ROBERT SHAYHOW REIDSEPTON DAVEN W
    • G01R31/3183G06F11/26G06F19/00G06G7/26
    • G06G7/26
    • PROBLEM TO BE SOLVED: To provide a method and a system for increasing the number of waveforms which a device characterized by its own limited waveform memory capacity can generate.
      SOLUTION: This system is provided with a processor 2; an application program 4 executable by the processor 2 requiring the use of the 1st number of waveforms; a waveform table 5 containing the waveform table entry of the 2nd number smaller than the 1st number, which stores a waveform used by the application program 4 an application policy 7 containing waveform sequencing information specific to the application program 4; and a dynamic waveform manager 6 which monitors execution of the application program 4, accesses the application policy 7, to determine the waveform nextly-needed by the application program 4 among the 1st number of waveforms and then load one or more waveforms among those of the 1st number on one or more associated entries among the 2nd number of waveform table entries in the waveform table 5.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种用于增加以其自身有限的波形存储器容量为特征的装置可以产生的波形数量的方法和系统。 解决方案:该系统配有处理器2; 可由处理器2执行的应用程序4,其需要使用第一数量的波形; 波形表5包含小于第1号的第2个数字的波形表项,其存储应用程序4使用的波形,该应用策略7包含应用程序4特有的波形排序信息; 以及动态波形管理器6,其监视应用程序4的执行,访问应用策略7,以确定应用程序4在第一数量波形中随后需要的波形,然后加载一个或多个波形 波形表5中第二个波形表项中的一个或多个相关条目上的第一个数字。

      版权所有(C)2005,JPO&NCIPI

    • 9. 发明专利
    • NON-MONOTONE FUNCTION GENERATION CIRCUIT
    • JPH0744641A
    • 1995-02-14
    • JP20368193
    • 1993-07-26
    • NIPPON TELEGRAPH & TELEPHONE
    • MORIE TAKASHI
    • G06G7/26G06G7/60
    • PURPOSE:To easily constitute a circuit approximately generating a function by generating a non-monotone function by more than two circuits of a differential amplifier, a multiplier and a square circuit and a level shift circuit. CONSTITUTION:The multiplier provided between an input and a differential amplifier is a circuit widening the width of the peak of the monotone bounded function obtained by the differential amplifier (monotone bounded function generation circuit) provided on the second stage from the input. The multiplier provided on the lower stage of Fig. (1) is a circuit widening the width of the peak of a unimodal function to be generated in a square circuit (unimodal function generation circuit). The multiplier provided on the back stage of the differential amplifier of Fig. (2) is a circuit controlling the level of the unimodal function. In this case, by two differential amplifiers and the multifiler multiplying the outputs of these differential amplifiers with each other, a function having the same form as the approximate function of the secondary derived function of the monotone bounded function where the level of an input is not 0 in + or -infinity can be generated.