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    參數(shù)資料
    型號(hào): LSN-1/10-D12J
    廠商: CD TECHNOLOGIES INC
    元件分類: 電源模塊
    英文描述: 1-OUTPUT 10 W DC-DC REG PWR SUPPLY MODULE
    封裝: SIP-10
    文件頁(yè)數(shù): 8/12頁(yè)
    文件大小: 753K
    代理商: LSN-1/10-D12J
    LSN-10A D12 Models
    N O N - I S O L A T E D , 1 0 - 5 0 W S I P D C / D C C O N V E R T E R S
    Output Voltage Trimming
    Allowable trim ranges for each model in the LSN D12 SIP Series are ±10%.
    Trimming is accomplished with either a trimpot or a single xed resistor. The
    trimpot should be connected between +Output and Common with its wiper
    connected to the Trim pin as shown in Figure 3 below.
    A trimpot can be used to determine the value of a single xed resistor
    which can then be connected, as shown in Figure 4, between the Trim pin
    and +Output to trim down the output voltage, or between the Trim pin and
    Common to trim up the output voltage. Fixed resistors should have absolute
    TCR’s less than 100ppm/
    °C to ensure stability.
    Figure 4.Trim Connections Using Fixed Resistors
    Note:
    Install either a xed
    trim-up resistor
    or a xed trim-down
    resistor depending upon
    desired output voltage.
    Output Overvoltage Protection
    LSN D12 SIP Series DC/DC converters do not incorporate output overvolt-
    age protection. In the extremely rare situation in which the device’s feedback
    loop is broken, the output voltage may run to excessively high levels (VOUT =
    VIN). If it is absolutely imperative that you protect your load against any and
    all possible overvoltage situations, voltage limiting circuitry must be provided
    external to the power converter.
    Output Overcurrent Detection
    Overloading the output of a power converter for an extended period of
    time will invariably cause internal component temperatures to exceed their
    maximum ratings and eventually lead to component failure. High-current-
    carrying components such as inductors, FET's and diodes are at the highest
    risk. LSN D12 SIP Series DC/DC converters incorporate an output overcur-
    rent detection and shutdown function that serves to protect both the power
    converter and its load.
    If the output current exceeds it maximum rating by typically 70% (17 Amps) or
    if the output voltage drops to less than 98% of it original value, the LSN D12's
    internal overcurrent-detection circuitry immediately turns off the converter,
    which then goes into a "hiccup" mode. While hiccupping, the converter will
    continuously attempt to restart itself, go into overcurrent, and then shut down.
    Under these conditions, the average output current will be approximately
    400mA, and the average input current will be approximately 40mA. Once the
    output short is removed, the converter will automatically restart itself.
    Figure 3.Trim Connections Using a Trimpot
    Trim Equations
    Note: Resistor values are in k
    . Accuracy of adjustment is subject to
    tolerances of resistors and factory-adjusted, initial output accuracy.
    VO = desired output voltage. VO
    NOM = nominal output voltage.
    5
    The equations below can be used as starting points for selecting specic trim-
    resistor values. Recall, untrimmed devices are guaranteed to be
    ±1% accurate.
    Adjustment beyond the specied ±10% adjustment range is not recommended.
    UP
    VO VO NOM
    RT (k
    ) =
    1.46
    DOWN
    VO NOM VO
    RT
    (k
    ) =
    X
    1.82(VO 0.8)
    UP
    VO VO NOM
    RT (k
    ) =
    3.72
    DOWN
    VO NOM VO
    RT
    (k
    ) =
    X
    4.64(VO 0.8)
    UP
    VO VO NOM
    RT (k
    ) =
    6
    DOWN
    VO NOM VO
    RT
    (k
    ) =
    X
    7.5(VO 0.8)
    LSN-1/10-D12:
    X = 0.909
    LSN-1.1/10-D12: X = 2.49
    LSN-1.2/10-D12: X = 3.09
    LSN-1.3/10-D12: X = 4.12
    LSN-1.5/10-D12: X = 13.3
    LSN-1.8/10-D12: X = 16.9
    LSN-2/10-D12:
    X = 15.4
    LSN-2.5/10-D12: X = 20
    LSN-3.3/10-D12: X = 15
    LSN-5/10-D12:
    X = 10
    The on/off control function, however, can be externally inverted so that the
    converter will be disabled while the input voltage is ramping up and then
    "released" once the input has stabilized.
    For a controlled start-up of one or more LSN-D12's, or if several output
    voltages need to be powered-up in a given sequence, the On/Off Control pin
    can be pulled high (external pull-up resistor, converter disabled) and then
    driven low with an external open collector device to enable the converter.
    Figure 2a. Inverting On/Off Control Pin Signal and Power-Up Sequencing
    +INPUT
    COMMON
    10k
    4.12k
    5.6k
    1.62k
    ON/OFF
    CONTROL
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