參數(shù)資料
    型號(hào): ISO254
    英文描述: Precision, Powered, Three-Port Isolated PROGRAMMABLE GAIN AMPLIFIER
    中文描述: 精密,技術(shù)支持,三端口隔離可編程增益放大器
    文件頁(yè)數(shù): 7/9頁(yè)
    文件大小: 172K
    代理商: ISO254
    7
    ISO254
    INPUT PROTECTION
    The inputs of the programmable-gain amplifiers are indi-
    vidually protected for voltages up to
    ±
    40V. Internal circuitry
    on each input provides low series impedance under normal
    signal conditions. If the input is overloaded, the protection
    circuitry limits the input current to a safe value (approxi-
    mately 1.5mA). The inputs are protected even if no power
    supply is present.
    DC/DC CONVERTER
    ISO254 provides a reliable solution to the need for integral
    power. The high isolation rating being achieved by careful
    design and attention to the physical construction of the
    transformer. In addition to the high dielectric strength a low
    leakage coating increases the isolation voltage range. The
    soft start oscillator/driver design eliminates high inrush
    currents during turn-on. Input current sensing protects both
    the converter and the load from possible thermal damage
    during a fault condition. The DC/DC converter is synchro-
    nized to the amplifier and when multiple ISO254’s are used,
    each channel can be synchronized via the SYNC pin.
    The DC/DC converter consists of a free-running oscillator,
    control and switch driver circuitry, MOSFET switches, a
    transformer, rectifier diodes and filter capacitors all con-
    tained within the ISO254 package. The control circuitry
    consists of current limiting, soft start and synchronization
    features. In instances where several ISO254’s are used in a
    system, beat frequencies developed between the ISO254’s
    are a potential source of low frequency noise in the supply
    and ground paths. This noise may couple into the signal path
    and can be avoided by synchronizing the individual ISO254’s
    together by tying the SYNC pins together or using the circuit
    in Figure 2 to drive the SYNC pins from an external source.
    When connecting up to eight ISO254’s without a driver the
    unit with the highest natural frequency will determine the
    synchronized running frequency. The SYNC pin is sensitive
    to capacitive loading: 150pF or less is recommended. If
    unused, the SYNC pin should be left open. Avoid shorting
    the SYNC pin directly to ground or supply potentials;
    otherwise damage may result.
    Soft start circuitry protects the MOSFET switches during
    startup. This is accomplished by holding the gate-to-source
    voltage of both MOSFET switches low until the free-run-
    ning oscillator is fully operational. In addition, soft start
    circuitry and input current sensing also protects the switches.
    This current limiting keeps the MOSFET switches operating
    in their safe operating area under fault conditions or exces-
    sive loads. When either of these conditions occur, the peak
    input current exceeds a safe limit. The result is an approxi-
    mate 5% duty cycle, 300
    μ
    s drive period to the MOSFET
    switches. This protects the internal MOSFET switches as
    well as the external load from any thermal damage. When
    the fault or excessive load is removed, the converter resumes
    normal operation. A delay period of approximately 50
    μ
    s
    incorporated in the current sensing circuitry allows the
    output filter capacitors to fully charge after a fault is re-
    moved. This delay period corresponds to a filter capacitance
    of no more than 1
    μ
    f at either of the output pins. This
    provides full protection of the MOSFET switches and also
    sufficiently filters the output ripple voltage. The current
    sensing circuitry is designed to provide thermal protection
    for the MOSFET switches over the operating temperature
    range as well. When these conditions are exceeded, the unit
    will go into its shutdown mode.
    OUTPUT CURRENT RATINGS
    The total current which can be drawn from each output
    supply on the ISO254 is a function of the total power drawn
    from all outputs. For example if three outputs are not used
    then maximum current can be drawn from one output. In all
    cases, the total maximum current that can be drawn from any
    combination of outputs is:
    I
    1+
    +
    I
    1–
    +
    I
    2+
    +
    I
    2–
    50
    m
    Α
    +V
    S3
    , GND3
    The waveform of the ground return current is an 800kHz
    sawtooth. A capacitor between +V
    S3
    and GND3 provides a
    bypass for the AC portion of this current. The power should
    never be instantaneously interrupted to the ISO254 (i.e., a
    break in the line to +V
    S3
    either by accidental or switch
    means.) Normal power down of the +V
    S3
    supply is not
    considered instantaneous. Should a rapid break in input
    power occur the internal transformers voltage will rapidly
    rise to maintain current flow and may cause internal damage
    to the ISO254.
    FIGURE 2. External SYNC drive.
    15
    ISO254
    16
    17
    +15V
    15
    ISO254
    16
    17
    To Other
    ISO254’s
    2N3904
    2N3904
    TTL
    SYNC
    MC1472
    or Equivalent
    Peripheral
    Driver
    620
    100
    +5V
    330
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