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  • 參數(shù)資料
    型號: AD9631AN
    廠商: ANALOG DEVICES INC
    元件分類: 音頻/視頻放大
    英文描述: Ultralow Distortion, Wide Bandwidth Voltage Feedback Op Amps
    中文描述: VIDEO AMPLIFIER, PDIP8
    封裝: PLASTIC, DIP-8
    文件頁數(shù): 14/20頁
    文件大小: 528K
    代理商: AD9631AN
    AD9631/AD9632
    REV. A
    –14–
    For general voltage gain applications, the amplifier bandwidth
    can be closely estimated as:
    f
    3
    dB
    ω
    O
    2
    π
    1
    +
    R
    F
    R
    G
    This estimation loses accuracy for gains of +2/–1 or lower due
    to the amplifier’s damping factor. For these “l(fā)ow gain” cases,
    the bandwidth will actually extend beyond the calculated value
    (see Closed-Loop BW plots, Figures 15 and 27).
    As a rule of thumb, capacitor C
    F
    will not be required if:
    (
    R
    F
    i
    R
    G
    )
    ×
    C
    I
    NG
    4
    ω
    O
    where
    NG
    is the Noise Gain (1 + R
    F
    /R
    G
    ) of the circuit. For
    most voltage gain applications, this should be the case.
    Pulse Response
    Unlike a traditional voltage feedback amplifier, where the slew
    speed is dictated by its front end dc quiescent current and gain
    bandwidth product, the AD9631 and AD9632 provide “on de-
    mand” current that increases proportionally to the input “step”
    signal amplitude. This results in slew rates (1300 V/
    μ
    s) compa-
    rable to wideband current feedback designs. This, combined
    with relatively low input noise current (2.0 pA/
    Hz
    ), gives the
    AD9631 and AD9632 the best attributes of both voltage and
    current feedback amplifiers.
    Large Signal Performance
    The outstanding large signal operation of the AD9631 and
    AD9632 is due to a unique, proprietary design architecture.
    In order to maintain this level of performance, the maximum
    550 V-MHz product must be observed, (e.g., @ 100 MHz,
    V
    O
    5.5 V p-p).
    Power Supply Bypassing
    Adequate power supply bypassing can be critical when optimiz-
    ing the performance of a high frequency circuit. Inductance in
    the power supply leads can form resonant circuits that produce
    peaking in the amplifier’s response. In addition, if large current
    transients must be delivered to the load, then bypass capacitors
    (typically greater than 1
    μ
    F) will be required to provide the best
    settling time and lowest distortion. A parallel combination of at
    least 4.7
    μ
    F, and between 0.1
    μ
    F and 0.01
    μ
    F, is recommended.
    Some brands of electrolytic capacitors will require a small series
    damping resistor
    4.7
    for optimum results.
    Driving Capacitive Loads
    The AD9631 and AD9632 were designed primarily to drive
    nonreactive loads. If driving loads with a capacitive component
    is desired, the best frequency response is obtained by the addi-
    tion of a small series resistance as shown in Figure 60. The ac-
    companying graph shows the optimum value for R
    SERIES
    vs.
    capacitive load. It is worth noting that the frequency response of
    the circuit when driving large capacitive loads will be dominated
    by the passive roll-off of R
    SERIES
    and C
    L
    .
    R
    F
    R
    SERIES
    R
    L
    1k
    C
    L
    R
    IN
    AD9631/32
    R
    IN
    Figure 60. Driving Capacitive Loads
    40
    0
    25
    30
    10
    5
    20
    15
    20
    10
    R
    S
    C
    L
    – pF
    Figure 61. Recommended R
    SERIES
    vs. Capacitive Load
    相關(guān)PDF資料
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    AD9632AN Ultralow Distortion, Wide Bandwidth Voltage Feedback Op Amps
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