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  • 參數(shù)資料
    型號: L6919E
    廠商: STMICROELECTRONICS
    元件分類: 穩(wěn)壓器
    英文描述: SWITCHING CONTROLLER, PDSO28
    封裝: SO-28
    文件頁數(shù): 4/33頁
    文件大?。?/td> 644K
    代理商: L6919E
    Obsolete
    Product(s)
    - Obsolete
    Product(s)
    L6919E
    12/33
    1. TON Limited Output Voltage.
    This happens when the maximum ON time is reached before the current in each phase reaches IOCPx (IINFOx
    < 35
    A).
    Figure 5a shows the maximum output voltage that the device is able to regulate considering the TON limitation
    imposed by the previous relationship. If the desired output characteristic crosses the TON limited maximum output
    voltage, the output resulting voltage will start to drop after crossing. In this case, the device doesn't perform con-
    stant current limitation but only limits the maximum ON time following the previous relationship. The output volt-
    age follows the resulting characteristic (dotted in Figure 5b) until UVP is detected or anyway until IFB = 70A.
    Figure 5. TON Limited Operation
    2. Constant Current Operation
    This happens when ON time limitation is reached after the current in each phase reaches IOCPx (IINFOx>35A).
    The device enters in Quasi-Constant-Current operation: the low-side mosfets stays ON until the current read
    becomes lower than IOCPx (IINFOx < 35A) skipping clock cycles. The high side mosfets can be turned ON with
    a TON imposed by the control loop at the next available clock cycle and the device works in the usual way until
    another OCP event is detected.
    This means that the average current delivered can slightly increase also in Over Current condition since the cur-
    rent ripple increases. In fact, the ON time increases due to the OFF time rise because of the current has to reach
    the IOCPx bottom. The worst-case condition is when the ON time reaches its maximum value.
    When this happens, the device works in Constant Current and the output voltage decrease as the load increase.
    Crossing the UVP threshold causes the device to latch (FAULT pin is driven high).
    Figure 6 shows this working condition
    It can be observed that the peak current (Ipeak) is greater than the IOCPx but it can be determined as follow:
    Where VoutMIN is the minimum output voltage (VID-30% as follow).
    The device works in Constant-Current, and the output voltage decreases as the load increase, until the output
    voltage reaches the Under-Voltage threshold (VoutMIN). When this threshold is crossed, all mosfets are turned
    off, the FAULT pin is driven high and the device stops working. Cycle the power supply to restart operation. The
    maximum average current during the Constant-Current behavior results:
    a) Maximum output Voltage
    b) TON Limited Output Voltage
    0.80VIN
    0.40VIN
    VOUT
    I
    OUT
    IOCP=2IOCPx
    (I
    FB=70A)
    TON Limited Output
    characteristic
    0.80VIN
    0.40VIN
    VOUT
    IOUT
    IOCP=2IOCPx
    (IFB=70A)
    Desired Output
    characteristic and
    UVP threshold
    Resulting Output
    characteristic
    Ipea k
    I
    OCPx
    V
    IN
    Vo ut
    MIN
    L
    --------------------------------------- Ton
    MAX
    +
    I
    OCPx
    V
    IN
    Vo ut
    MIN
    L
    --------------------------------------- 0.40 T
    +
    ==
    I
    M AX,TOT
    2I
    MA X
    2I
    OCPx
    Ipe ak
    I
    OC P x
    2
    --------------------------------------
    +
    +
    =
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