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    參數(shù)資料
    型號: LT3092MPST#PBF
    廠商: LINEAR TECHNOLOGY CORP
    元件分類: 模擬信號調(diào)理
    英文描述: SPECIALTY ANALOG CIRCUIT, PDSO3
    封裝: LEAD FREE, PLASTIC, SOT-223, 4 PIN
    文件頁數(shù): 4/22頁
    文件大?。?/td> 245K
    代理商: LT3092MPST#PBF
    LT3092
    12
    3092fb
    APPLICATIONS INFORMATION
    Quieting the Noise
    When a reduction in the noise of the current source is
    desired, a small capacitor can be placed across RSET (CSET
    in Figure 7). Normally, the 10μA reference current source
    generates noise current levels of 2.7pA/√Hz (0.7nARMS
    over the 10Hz to 100kHz bandwidth). The SET pin resistor
    generates a spot noise equal to in =√4kT/R(k = Boltzmann’s
    constant, 1.38 10–23J/°K, and T is absolute temperature)
    which is RMS-summed with the noise generated by the
    10μA reference current source. Placing a CSET capacitor
    across RSET (as shown in Figure 7) bypasses this noise
    current. Note that this noise reduction capacitor increases
    start-up time as a factor of the time constant formed by
    RSET CSET. When using a capacitor across the SET pin
    resistor, the external pole introduced usually requires
    compensation to maintain stability. See the Stability and
    Frequency Compensation section for detailed descriptions
    on compensating LT3092 circuits.
    A curve in the Typical Performance Characteristics section
    depicts noise spectral density for the reference current
    over a 10Hz to 100kHz bandwidth.
    Paralleling Devices
    Obtain higher output current by paralleling multiple
    LT3092’s together. The simplest application is to run
    two current sources side by side and tie their inputs
    together and their outputs together, as shown in Figure
    8. This allows the sum of the current sources to deliver
    more output current than a single device is capable of
    delivering.
    Another method of paralleling devices requires fewer
    components and helps to share power between devices.
    Tie the individual SET pins together and tie the individual
    IN pins together. Connect the outputs in common using
    small pieces of PC trace as ballast resistors to promote
    equal current sharing. PC trace resistance in milliohms/
    inch is shown in Table 1. Ballasting requires only a tiny
    area on the PCB.
    Table 1. PC Board Trace Resistance
    WEIGHT (oz)
    10mil WIDTH
    20mil WIDTH
    1
    54.3
    27.1
    2
    27.1
    13.6
    Trace resistance is measured in mΩ/in
    The worst-case room temperature offset, only ±2mV be-
    tween the SET pin and the OUT pin, allows the use of very
    small ballast resistors.
    As shown in Figure 9, each LT3092 has a small 40mΩ
    ballast resistor, which at full output current gives better
    than 80% equalized sharing of the current. The external
    resistance of 40mΩ (20mΩ for the two devices in paral-
    lel) only adds about 8mV of output voltage compliance at
    an output of 0.4A. Of course, paralleling more than two
    LT3092’s yields even higher output current. Spreading the
    device on the PC board also spreads the heat. Series input
    resistors can further spread the heat if the input-to-output
    difference is high.
    Thermal Considerations
    The LT3092’s internal power and thermal limiting circuitry
    protects itself under overload conditions. For continuous
    normal load conditions, do not exceed the 125°C maximum
    junction temperature. Carefully consider all sources of
    thermal resistance from junction-to-ambient. This includes
    (but is not limited to) junction-to-case, case-to-heat sink
    Figure 7. Adding CSET Lowers Current Noise
    3092 F07
    IN
    SET
    OUT
    +
    LT3092
    10μA
    CCOMP OR
    RSET
    ROUT
    RCOMP
    CCOMP
    CSET
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