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    參數(shù)資料
    型號: PSC366-7LIPC
    廠商: POWER-ONE INC
    元件分類: 電源模塊
    英文描述: 1-OUTPUT DC-DC REG PWR SUPPLY MODULE
    文件頁數(shù): 3/13頁
    文件大小: 223K
    代理商: PSC366-7LIPC
    PSC Series Extended Data Sheet
    Positive Switching Regulators (Rugged)
    REV. MAY 12, 2004
    Page 11 of 13
    C
    Crowbar
    This option is recommended to protect the load against
    power supply malfunction, but it is not designed to sink ex-
    ternal currents.
    A fixed-value monitoring circuit checks the output voltage
    Vo. When the trigger voltage Vo c is reached, the thyristor
    crowbar triggers and disables the output. It may be deacti-
    vated by removal of the input voltage. In case of a switching
    transistor defect, an internal fuse prevents excessive cur-
    rent.
    Note: As a central overvoltage protection device, the
    crowbar is usually connected to the external load via
    distributed inductance of the lines. For this reason, the
    overvoltage at the load can temporarily exceed the trig-
    ger voltage
    Voc. Depending on the application, further
    decentralized overvoltage protection elements may
    have to be used additionally. For further information see:
    Technical Information: Application Notes.
    Description of Options
    -9
    Extended Temperature Range
    The operational ambient temperature range is extended to
    TA = –40 to 71°C. (TC = –40 to 95°C, TS = –55 to 100°C.)
    P
    Potentiometer
    Option P excludes R function. The output voltage
    Vo can be
    adjusted with a screwdriver in the range from 0.92 - 1.08 of
    the nominal output voltage
    Vo nom.
    However, the minimum differential voltage
    DVio min between
    input and output voltages as specified in:
    Electrical Input
    Data should be maintained.
    L
    Input Filter
    Option L is recommended to reduce superimposed inter-
    ference voltages and to prevent oscillations, if input lines
    exceed approx. 5 m in total length. The fundamental wave
    (approx. 120 kHz) of the reduced interference voltage be-
    tween Vi+ and Gi– has, with an input line inductance of
    5 H, a maximum magnitude of 4 mV AC.
    The input impedance of the switching regulator at 120 kHz
    is about 3.5
    .The harmonics are small in comparison with
    the fundamental wave. See also:
    Electrical Input Data: RFI.
    With option L, the maximum permissible additionally su-
    perimposed ripple
    ui of the input voltage (rectifier mode) at
    a specified input frequency
    fi has the following values:
    ui max = 10 Vpp at 100 Hz or Vpp = 1000 Hz/fi 1V
    D
    Save Data Input Undervoltage Monitor
    Note: Output instead of input undervoltage monitor is
    available on request (Option D1).
    Terminal D and Go– are connected to a normally conduct-
    ing field effect transistor (JFET). The switching characteris-
    tics of the option D output are shown in fig. Definition of
    Vt
    and
    VH. A 0.5 W Zener diode provides protection against
    overvoltages.
    The voltage
    Vt can be externally adjusted with a trim poten-
    tiometer by means of a screwdriver. The hysteresis
    VH of Vt
    is <2%. Terminal D stays low for a minimum time
    tlow min, in
    order to prevent any oscillation.
    Vt can be set to a value
    between
    Vi min and Vi max. Please note that the JFET be-
    comes conductive when
    VD increases above 7 V approx.
    Table 10: Crowbar trigger levels
    Characteristics
    Conditions
    12 V
    15 V
    24 V
    36 V
    48 V
    Unit
    min
    max
    min
    max
    min
    max
    min
    max
    min
    max
    Vo c
    Trigger voltage
    Vi min - Vi max
    13.5
    16
    16.5
    19
    27
    31
    40
    45.5
    55
    60
    V
    Io = 0 - Io nom
    t s
    Delay time
    TC min - TC max
    1.5
    s
    Fig. 13
    Test circuit with definition of voltage VD and current ID
    Vi +
    Gi –
    Go –
    8.2 V
    D
    VD
    +5 V
    100 pF
    ID
    10 k
    JFET
    Vt
    11025
    Fig. 14
    Definition of Vt and VH
    VD
    VD high
    VD low
    Vt
    Vi
    VH
    11026
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