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    參數(shù)資料
    型號(hào): LMZ1501-7EPD0AHFU
    元件分類: 電源模塊
    英文描述: 1-OUTPUT AC-DC REG PWR SUPPLY MODULE
    封裝: 168.50 X 111.20 MM, 38.70 MM HEIGHT, METAL, CASE M02, MODULE
    文件頁數(shù): 23/24頁
    文件大?。?/td> 536K
    代理商: LMZ1501-7EPD0AHFU
    Rugged Environment
    DC-DC Converters <100 W
    M-Family
    Edition 2/96 - Melcher AG
    7 - 9
    MELCHER
    The Power Partners.
    7.1
    Electrical Output Data
    General conditions
    TA = 25 °C, unless TC is specified.
    – Connector pins 2 and 23 interconnected,
    Uo = Uo nom (option P), R input not connected.
    Table 7: Output data
    Output
    Uo nom
    5.1 V
    12 V
    15 V
    24 V
    48 V
    Characteristics
    Conditions
    min typ max
    Unit
    Uo
    Output voltage
    Ui nom, Io nom 1
    5.07
    5.13 11.93
    12.07 14.91
    15.09 23.86
    24.14 47.72
    48.28
    V
    Uo L
    Overvoltage prot.
    I o nom
    7.5
    21
    25
    41
    85
    Io nom Output current
    Ui min...Ui max
    see tables 1 and 2
    Io L
    Output current
    TC min...TC max
    see fig. 4
    limitation response
    uo1/2/3 Output voltage noise Ui nom, Io nom 1
    2
    4
    36
    48
    mVrms
    uo1
    Bandwidth =
    15
    30
    25
    50
    35
    70
    40
    80
    50 100
    mVpp
    uo2/3
    20 MHz
    60 120
    40
    80
    40
    80
    40
    80
    -
    Uo U Static line regulation Ui min...Ui nom
    ±10 ±30
    ±12 ±50
    ±15 ±60
    mV
    Ui nom...Ui max
    Io nom 1
    U
    o I
    Static load regulation
    Ui nom
    6
    25
    1350
    1760
    3080
    60 150
    Io = Io nom...0 2
    Uo Ic Static cross load
    Ui nom
    0
    ±15
    0
    ±20
    0
    ±30
    0
    ±40
    -
    regulation 4
    Io = Io nom...0 3
    uo d
    Dynamic load
    Ui nom,
    ±220
    ±110
    ±150
    ±130
    ±150
    regulation
    I o =
    td
    Dynamic load regu-
    1/ 0.33/1
    I o nom 2
    0.6
    0.5
    1
    2
    ms
    lation time constant
    fig. 5
    uo dc
    Dynamic cross load
    Ui nom,
    +10
    +20
    -
    mV
    regulation 4
    Io =
    -100
    -75
    -140
    -200
    -
    tdc
    Dynamic cross load
    1/ 0.33/1
    I o nom 3
    0.05
    0.2
    0.5
    1
    -
    ms
    reg. time constant 4
    fig. 5
    0.5
    0.3
    0.7
    2
    -
    αUo
    Output voltage
    TC min...TC max
    ±0.02
    %/K
    deviation versus
    case temperature
    ±1.0
    ±2.4
    ±3.0
    ±4.8
    ±9.6
    mV/K
    1 With multiple output modules, the same condition for each output applies.
    2 Condition for specified output. With multiple output modules, other output(s) loaded with constant current Io = Io nom.
    3 Condition for non-specified output, individually tested, other output(s) loaded with constant current Io = Io nom.
    4 Multiple output modules.
    Output Protection
    Each output is protected against overvoltages which could
    occur due to a failure of the internal control circuit. Voltage
    suppressor diodes (which under worst case condition may
    become a short circuit) provide the required protection. The
    suppressor diodes are not designed to withstand externally
    applied overvoltages. Overload at any of the outputs will
    cause a shut-down of all outputs. A red LED indicates the
    overload condition of the respective output.
    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 module is forced to supply a minimum cur-
    rent of 0.1 A to enable correct operation of its own auxiliary
    outputs.
    In parallel operation, one or more of the main outputs may
    operate continuously in current limit which will cause an in-
    crease in case temperature. Consequently, a reduction of
    the max. ambient temperature by 10 K is recommended.
    Main or auxiliary outputs can be connected in series with
    any other output of the same or another module. 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 possi-
    ble.
    If output terminals are connected together in order to estab-
    lish 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 to avoid exces-
    sive output ripple voltages.
    Auxiliary outputs should never be connected in parallel!
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