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  • 參數(shù)資料
    型號: MX536AJCWE+
    廠商: Maxim Integrated
    文件頁數(shù): 10/13頁
    文件大小: 134K
    描述: IC CONV TRUE RMS-DC 2MHZ 16SOIC
    標(biāo)準(zhǔn)包裝: 46
    電流 - 電源: 1.2mA
    電源電壓: ±18 V,36 V
    安裝類型: 表面貼裝
    封裝/外殼: 16-SOIC(0.295",7.50mm 寬)
    供應(yīng)商設(shè)備封裝: 16-SOIC W
    包裝: 管件
    ly proportional to the value of C
    AV
    . Waveforms with high
    crest factors, such as a pulse train with low duty cycle,
    should have an average time constant chosen to be at
    least ten times the signal period.
    Using a large value of C
    AV
    to remove the output ripple
    increases the settling time for a step change in the input
    signal level. Figure 3 shows the relationship between
    C
    AV
    and settling time, where 115ms settling equals 1礔
    of C
    AV
    . The settling time, or time for the RMS converter to
    settle to within a given percent of the change in RMS
    level, is set by the averaging time constant, which varies
    approximately 2:1 between increasing and decreasing
    input signals. For example, increasing input signals
    require 2.3 time constants to settle to within 1%, and 4.6
    time constants for decreasing signals levels.
    In addition, the settling time also varies with input signal
    levels, increasing as the input signal is reduced, and
    decreasing as the input is increased as shown in
    Figures 6a and 6b.
    Using Post Filters
    A post filter allows a smaller value of C
    AV
    , and reduces
    ripple and improves the overall settling time. The value
    of C
    AV
    should be just large enough to give the maxi-
    mum DC error at the lowest frequency of interest. The
    post filter is used to remove excess output ripple.
    Figures 7, 8, and 9 give recommended filter connec-
    tions and values for both the MX536A and MX636.
    Table 1 lists the number of time constants required for
    the RMS section to settle to within different percentages
    of the final value for a step change in the input signal.
    Decibel Output (dB)
    The dB output of the MX536A/MX636 originates in the
    squarer/divider section and works well over a 60dB
    range. The connection for dB measurements is shown
    in Figure 10. The dB output has a temperature drift of
    0.03dB/癈, and in some applications may need to be
    compensated. Figure 10 shows a compensation
    scheme. The amplifier can be used to scale the output
    for a particular application. The values used in Figure
    10 give an output of +100mV/dB.
    True RMS-to-DC Converters
    _______________________________________________________________________________________ 9
    10
    0
    1
    2.5
    1m
    100m
    10
    1
    5
    7.5
    RMS INPUT LEVEL (V)
    10m
    MX536A
    Figure 6a. MX536A Settling Time vs. Input Level
    10
    0
    1
    2.5
    1m
    100m
    1
    5
    7.5
    RMS INPUT LEVEL (V)
    10m
    MX636
    Figure 6b. MX636 Settling Time vs. Input Level
    Settling Time
    to Within
    Stated % of
    New RMS
    Level
    1%
    0.1%
    0.01%
    4.6?4.6?
    6.9?6.9?
    9.2?9.2?
    Table 1. Number of RC Time Constants
    (?/SPAN>) Required for MX536A/MX636 RMS
    Converters to Settle to Within Stated % of
    Final Value
    FOR
    DECREASING
    AMPLITUDES
    Basic Formulas
    PARAMETERS
    Note:(?/SPAN>) Settling Times for Linear RC Filter
    4.6?2.0?
    6.9?3.1?/DIV>
    9.2?4.2?
    FOR
    INCREASING
    AMPLITUDES
    V 1 - e
    -T/RC
    V e
    -T/RC
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    MX536AJCWE+ 功能描述:IC CONV TRUE RMS-DC 2MHZ 16SOIC RoHS:是 類別:集成電路 (IC) >> PMIC - RMS 至 DC 轉(zhuǎn)換器 系列:- 標(biāo)準(zhǔn)包裝:46 系列:- 電流 - 電源:1.2mA 電源電壓:±18 V,36 V 安裝類型:表面貼裝 封裝/外殼:16-SOIC(0.295",7.50mm 寬) 供應(yīng)商設(shè)備封裝:16-SOIC W 包裝:管件
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