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    參數(shù)資料
    型號: LK1001-7EPDDB1
    元件分類: 電源模塊
    英文描述: 1-OUTPUT 150 W AC-DC REG PWR SUPPLY MODULE
    封裝: METAL, CASE K02, MODULE
    文件頁數(shù): 6/27頁
    文件大小: 640K
    代理商: LK1001-7EPDDB1
    Rugged Environment
    DC-DC Converters >100 W
    K-Family
    Edition 2/96 - Melcher AG
    8 - 15
    MELCHER
    The Power Partners.
    8.1
    Test Sockets (Main output only 1)
    Test sockets for measuring the output voltage
    Uo1 are lo-
    cated at the front of the module. The positive test socket is
    protected by a series resistor (see Functional Description,
    block diagrams). The voltage measured at the test sockets
    is approximately 30 mV lower than the value measured at
    the output terminals.
    1 In case of double output units externally connected in series for
    Uo = 24 V, 30 V or 48 V the monitored output voltage is 12 V,
    15 V or 24 V respectively.
    Output Protection
    Each output is protected against overvoltage which could
    occur due to a failure of the control circuit by means of a
    voltage suppressor diode which, under worst case condi-
    tions, may become a short circuit. The suppressor diode
    are not designed to withstand externally applied over-
    voltages. Overload at any of the two outputs will cause a
    shut-down of both outputs. A red LED indicates the over-
    load condition.
    Inhibit Function
    The outputs of a module may be enabled or disabled by
    means of a logic signal (TTL, CMOS etc.) applied to the in-
    hibit input. If the inhibit function is not required, connect the
    inhibit pin 18 to pin 14 to enable the outputs (active low
    logic, fail safe).
    Fig. 10
    Typical output response as a function of inhibit control
    Table 9: Inhibit characteristics
    Characteristic
    Conditions
    min
    typ
    max Unit
    Uinh Inhibit
    Uo = on Ui min…Ui max
    –50
    0.8
    V
    voltage
    Uo = off
    2.4
    50
    Iinh
    Inhibit current
    Uinh = 0
    –400
    A
    tr
    Rise time
    30
    ms
    tf
    Fall time
    depending on
    Io
    0
    t
    0
    Inhibit
    1
    0.1
    Uo nom
    Output
    tr
    tf
    Note:
    – Parallel connection of double output units should always
    include both, main and second output to maintain good
    regulation of both outputs.
    – Series connection of second outputs without involving
    their main outputs should be avoided as regulation may
    be poor.
    – The maximum output current is limited by the output with
    the lowest current limitation if several outputs are con-
    nected in series.
    – Not more than 5 units should be connected in parallel.
    Parallel or Series Connection of Units
    Single or double output units with equal nominal output volt-
    age can be connected in parallel without any precautions
    using option T.
    With option T (current sharing), all units share the current
    approximately equally.
    Single output units and/or main and second outputs of dou-
    ble output units can be connected in series with any other
    (similar) output.
    Sense Lines
    (Only for single output units 5.1 V, 12 V, 15 V, 24 V)
    This feature enables compensation for voltage drops
    across the connector contacts and if necessary, across the
    load lines. If the sense lines are connected at the load
    rather than directly at the connector, the user should ensure
    that
    Uo max (between Vo1+ and Vo1–) is not exceeded. We
    recommend connecting the sense lines directly at the fe-
    male connector.
    For further information, please refer to "Application Notes ".
    To ensure correct operation, both sense lines should be
    connected to their respective power outputs and the volt-
    age difference between any sense line and its respective
    power output pin (as measured on the connector) should
    not exceed the following values:
    Table 10: Voltage compensation allowed using sense
    lines
    Output
    Total voltage difference
    Voltage difference
    voltage
    between sense lines and
    between
    their respective outputs
    Vo– and S–
    5.1 V
    < 0.5 V
    < 0.25 V
    12 V, 15 V
    < 1.0 V
    < 0.25 V
    If the output voltages are increased above
    Uo nom via R-in-
    put control, option P setting, remote sensing or option T, the
    output currents must be reduced accordingly so that
    Po nom is not exceeded.
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