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    參數(shù)資料
    型號: LSN-2/16-W3
    廠商: MURATA POWER SOLUTIONS INC
    元件分類: 電源模塊
    英文描述: 1-OUTPUT DC-DC REG PWR SUPPLY MODULE
    封裝: SIP-11/10
    文件頁數(shù): 6/8頁
    文件大小: 991K
    代理商: LSN-2/16-W3
    MDC_LSN W3 Models.A01 Page 6 of 8
    Technical enquiries email: sales@murata-ps.com, tel: +1 508 339 3000
    www.murata-ps.com
    Single Output LSN-W3 Models
    Non-Isolated, 3-5.5Vin, 0.75-3.3Vout
    16 Amp DC/DC Converters
    Adjustment beyond the specified ±10% adjustment range is not recom-
    mended. When using trim in combination with Remote Sense, the maximum
    rated power must not be exceeded (see Remote Sense).
    “T” Model (LSN-T/16-W3)
    This version of the the LSN-W3 series offers a special output voltage trim-
    ming feature which is fully compatible with competitive units. The output
    voltage may be varied using a single trim resistor from the Trim Input to Power
    Common. The output voltage range is 0.75 Volts to 3.3 Volts.
    IMPORTANT: For outputs greater than 3 Volts up to 3.3 Volts maximum, the
    input supply must be 4.5 Volts minimum.
    As with other trim adjustments, be sure to use a precision low-tempco
    resistor (±100 ppm/°C) mounted close to the converter with short leads. Also
    be aware that the output voltage accuracy is ±2% (typical) therefore you may
    need to vary this resistance slightly to achieve your desired output setting.
    The trim equation is as follows for the LSN-T/16-W3:
    LSN-T/16-W3 fixed resistance values to set the output voltages are:
    Vout (Typ.) 0.75V
    1.0V
    1.2V
    1.5V
    1.8V
    2.5V
    3.3V
    Rtrim (kΩ) Open
    80.021 41.973 23.077 15.004 6.947
    3.16
    CAUTION: To retain proper regulation, do not exceed the 3.3V output
    Voltage Trim
    The LSN-T/16-W3 may also be trimmed using an external voltage applied
    between the Trim input and Output Common. Be aware that the internal “l(fā)oad”
    impedance looking into the Trim pin is approximately 5k
    . Therefore, you may
    have to compensate for this in the source resistance of your external voltage
    reference.
    The equation for this voltage adjustment is:
    VTRIM (in Volts) = 0.7 –(0.1698 x (Vo – 0.7525))
    The LSN-T/16-W3 fixed trim voltages to set the output voltage are:
    Vout (Typ.) 0.75V
    1.0V
    1.2V
    1.5V
    1.8V
    2.5V
    3.3V
    Vtrim
    Open 0.6928V 0.624V 0.5731V 0.5221V 0.4033V 0.267V
    Output Reverse Conduction
    Many DC/DC’s using synchronous rectification suffer from Output Reverse
    Conduction. If those devices have a voltage applied across their output before
    a voltage is applied to their input (this typically occurs when another power
    supply starts before them in a power-sequenced application), they will either
    fail to start or self destruct. In both cases, the cause is the “freewheeling” or
    “catch” FET biasing itself on and effectively becoming a short circuit.
    Trim
    Down
    LOAD
    +INPUT
    COMMON
    +OUTPUT
    TRIM
    COMMON
    Trim
    Up
    Note: Install either a fixed
    trim-up resistor or a fixed
    trim-down resistor depending
    on desired output voltage.
    RTRIM (
    ) = _____________ –5110
    VO – 0.7525
    21070
    Figure 7.trim Connections using Fixed resistors
    A trimpot can be used to determine the value of a single fixed resistor
    which can then be connected, as shown in Figure 7, 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.
    The equations below can be starting points for selecting specific trim-resistor
    values. Recall, untrimmed devices are guaranteed to be ±1% accurate.
    trim equations
    Note: Resistor values are in k
    . Accuracy of adjustment is subject to toler-
    ances of resistors and factory-adjusted, initial output accuracy. Vo = desired
    output voltage. Vonom = nominal output voltage.
    相關(guān)PDF資料
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