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    參數(shù)資料
    型號(hào): AD9300KQ
    廠商: ANALOG DEVICES INC
    元件分類: 運(yùn)動(dòng)控制電子
    英文描述: 4 x 1 Wideband Video Multiplexer
    中文描述: 4-CHANNEL, VIDEO MULTIPLEXER, CDIP16
    封裝: CERDIP-16
    文件頁數(shù): 5/8頁
    文件大小: 158K
    代理商: AD9300KQ
    AD9300
    –5–
    REV. A
    T HE ORY OF OPE RAT ION
    Refer to the functional block diagram of the AD9300.
    As shown in the drawing, this diagram is based on the pinouts of
    the DIP packaging of the models AD9300K Q and AD9300T Q.
    T he AD9300K P and AD9300T E are packaged in 20-pin surface
    mount packages. T he extra pins are used for ground connections;
    the theory of operation remains the same.
    T he AD9300 Video Multiplexer allows the user to connect any
    one of four analog input channels (IN
    1
    –IN
    4
    ) to the output of the
    device and to switch between channels at megahertz rates.
    T he input channel, which is connected to the output is deter-
    mined by a 2-bit T T L digital code applied to A
    0
    and A
    1
    . T he se-
    lected input will not appear at the output unless a digital “1” is
    also applied to the ENABLE input pin; unless the output is
    enabled, it is a high impedance. Necessary combinations to ac-
    complish channel selection are shown in the Logic T ruth T able.
    Figure 1. Input and Output Equivalent Circuits
    Bipolar construction used in the AD9300 ensures that the input
    impedance of the device remains high and will not vary with
    power supply voltages. T his characteristic makes the AD9300,
    in effect, a switchable-input buffer. An onboard bias network
    makes the performance of the AD9300 independent of applied
    supply voltages, which can have any nominal value from
    ±
    10 V dc to
    ±
    15 V dc.
    Although the primary application for the AD9300 is the routing
    of video signals, the harmonic and dynamic attributes of the
    device make it appropriate for other applications. T he AD9300
    has exceptional performance when switching video signals and
    can also be used for switching other analog signals requiring
    greater dynamic range and/or precision than those in video.
    As shown in Figure 1, each analog input is connected to the
    base of a bipolar transistor. If Channel 1 is selected, a current
    switch is closed and routes current through the input transistor
    for Channel 1.
    If Channel 2 is then selected by the digital inputs, the current
    switch for Channel 1 is opened and the current switch for Chan-
    nel 2 is closed. T his causes current to be routed away from the
    Channel 1 transistor and into the Channel 2 input transistor.
    Whenever a channel’s input device is carrying current, the ana-
    log input applied to that channel is passed to the output stage.
    T he operation of the output stage is similar to that of the input
    stages. Whenever the output stage is enabled with a HIGH digi-
    tal “1” signal at the ENABLE pin, the output transistor will
    carry current and pass the selected analog input.
    When the output stage is disabled (by virtue of the ENABLE
    pin being driven LOW with a digital “0”), the output current
    switch is opened. T his routes the current to other circuits within
    the AD9300 that keep the output transistor biased “off.” T hese
    circuits require approximately 1
    μ
    A of bias current from the load
    connected to the output of the multiplexer. In the absence of a
    terminating load and the resulting dc bias, the output of the
    AD9300 “floats” at –2.5 V.
    In summary, when the AD9300 is enabled by the ENABLE pin
    being driven HIGH with a digital “1,” the selected analog input
    channel acts as a buffer for the input and the output of the mul-
    tiplexer is a low impedance. When the AD9300 is disabled with
    a digital “0” LOW signal, the selected channel acts as an open
    switch for the input, and the output of the unit becomes a high
    impedance. T his characteristic allows the user to wire-or several
    AD9300 Analog Multiplexers together to form switch matrices.
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