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    參數(shù)資料
    型號(hào): LH1501-2RD7
    廠商: POWER-ONE INC
    元件分類: 電源模塊
    英文描述: 1-OUTPUT 67.5 W AC-DC REG PWR SUPPLY MODULE
    封裝: ROHS COMPLIANT PACKAGE-32/11
    文件頁(yè)數(shù): 20/21頁(yè)
    文件大?。?/td> 984K
    代理商: LH1501-2RD7
    H Series Data Sheet
    70 Watt AC-DC Converters
    BCD20019 Rev AA
    Page 8 of 21
    www.power-one.com
    0
    0.2
    0.4
    0.6
    0.8
    40
    60
    70
    80
    I
    o/Io nom
    T
    A [°C]
    1.0
    Forced cooling
    05142a
    T
    C max
    50
    Convection cooling
    LH2000
    LH3000
    LH1000
    Fig. 9
    Output current derating versus temperature
    Thermal Considerations and Protection
    If a converter is located in free, quasi-stationary air (convection
    cooling) at the indicated maximum ambient temperature TA max
    (see table Temperature specifications) and is operated at its
    nominal input voltage and output power, the temperature
    measured at the measuring point of case temperature TC (see
    Mechanical Data
    ) will approach the indicated value TC max after
    the warm-up phase. However, the relationship between TA and
    TC depends heavily on the conditions of operation and
    integration into a system. The thermal conditions are
    influenced by input voltage, output current, airflow, and
    temperature of surrounding components and surfaces. TA max
    is therefore, contrary to TC max, an indicative value only.
    Caution:
    The installer must ensure that under all operating
    conditions TC remains within the limits stated in the table
    Temperature specifications.
    Notes:
    Sufficient forced cooling or an additional heat sink allow TA
    to pass over 50 °C, if TC max is not exceeded.
    At an ambient temperature TA of 65 °C with only convection
    cooling, the maximum permissible current for each output is
    approx. 50% of its nominal value; see fig. 9 .
    A temperature sensor generates an internal inhibit signal
    disabling the outputs, when the case temperature exceeds
    TC max.
    The outputs automatically recover, when the
    temperature drops below this limit.
    Parallel and Series Connection
    Main outputs of equal nominal voltage can be connected in
    parallel. It is important to assure that the main output of a
    multiple-output converter is forced to supply a minimum
    current of 10% of Io nom to enable correct operation of its own
    auxiliary outputs.
    In parallel operation, one or more of the main outputs may
    operate continuously in current limitation, causing an increase
    of the case temperature TC. Consequently, a reduction of the
    max. ambient temperature by 10 K is recommended.
    Both outputs of a double-output converter may be connected
    in parallel without any restriction.
    Note:
    If output 2 of a double-output converter is not used, we
    recommend to connect it in parallel with the main output.
    Output 2 and output 3 of a triple-output converter may be
    connected in parallel without any restriction.
    Note:
    If the output 2 or 3 of a triple-output converter is not used, we
    recommend to connect it in parallel with the other auxiliary output.
    Main or auxiliary outputs can be connected in series with any
    other output of the same or another converter. In series
    connection, the maximum output current is limited by the
    lowest current limit. Output ripple and regulation values are
    added. Connection wiring should be kept as short as possible.
    If output terminals are connected together in order to establish
    multi-voltage configurations, e.g., +5.1 V, ±12 V etc., the
    common-ground connecting point should be as close as
    possible to the connector of the converter in order to avoid
    excessive output ripple voltages.
    Auxiliary outputs of different converters should not be
    connected in parallel!
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