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  • 參數(shù)資料
    型號: ISL6531
    廠商: Intersil Corporation
    英文描述: Dual Low-Noise High-Drive Operational Amplifier 8-SO 0 to 70
    中文描述: 雙同步降壓5V的脈寬調(diào)制(PWM)控制器,用于數(shù)據(jù)存儲器內(nèi)存VDDQ和VTT終端
    文件頁數(shù): 9/17頁
    文件大?。?/td> 461K
    代理商: ISL6531
    9
    One method that may be employed to bypass the internal
    V
    TT
    reference generation is to supply an external reference
    directly to the VREF_IN pin. When doing this the SENSE1
    pin must remain unconnected. Caution must be exercised
    when using this method as the V
    TT
    regulator does not
    employ a soft start of its own.
    A second method would be to overdrive the internal
    resistors. Figure 3 shows how to implement this method. The
    external resistors used to overdrive the internal resistors
    should be less than 2k
    and have a tolerance of 1% or
    better. This method still supplies a buffer between the
    resistor network and any loading on the VREF pin. If there is
    no loading on the VREF pin, then no buffering is necessary
    and the reference voltage created by the resistor network
    can be tied directly to VREF.
    Converter Shutdown
    Pulling and holding the OCSET/SD pin below 0.8V will
    shutdown both regulators. During this state, PGOOD will be
    held LOW. Upon release of the OCSET/SD pin, the IC enters
    into a soft start cycle which brings both outputs back into
    regulation.
    Voltage Monitoring
    The ISL6531 offers a PGOOD signal that will communicate
    whether the regulation of both V
    DDQ
    and V
    TT
    are within
    ±15% of regulation, the V2_SD pin is held low and the bias
    voltage of the IC is above the POR level. If all the criteria
    above are true, the PGOOD pin will be at a high impedence
    level. When one or more of the criteria listed above are false,
    the PGOOD pin will be held low.
    Overcurrent Protection
    The overcurrent function protects the converter from a shorted
    output by using the upper MOSFET on-resistance, r
    DS(ON)
    , of
    V
    DDQ
    to monitor the current. This method enhances the
    converter’s efficiency and reduces cost by eliminating a
    current sensing resistor.
    The overcurrent function cycles the soft-start function in a
    hiccup mode to provide fault protection. A resistor (R
    OCSET
    )
    programs the overcurrent trip level (see Figure 1). An internal
    40
    μ
    A (typical) current sink develops a voltage across R
    OCSET
    that is referenced to V
    IN
    . When the voltage across the upper
    MOSFET of V
    DDQ
    (also referenced to V
    IN
    ) exceeds the
    voltage across R
    OCSET
    , the overcurrent function initiates a
    soft-start sequence.
    Figure 5 illustrates the protection feature responding to an
    overcurrent event on V
    DDQ
    . At time t0, an overcurrent
    condition is sensed across the upper MOSFET of the V
    DDQ
    regulator. As a result, both regulators are quickly shutdown
    and the internal soft-start function begins producing soft-
    start ramps. The delay interval seen by the output is
    equivalent to three soft-start cycles. The fourth internal soft-
    start cycle initiates a normal soft-start ramp of the output, at
    time t1. Both outputs are brought back into regulation by time
    t2, as long as the overcurrent event has cleared.
    Had the cause of the overcurrent still been present after the
    delay interval, the overcurrent condition would be sensed
    and both regulators would be shut down again for another
    delay interval of three soft start cycles. The resulting hiccup
    mode style of protection would continue to repeat
    indefinitely.
    The overcurrent function will trip at a peak inductor current
    (I
    PEAK)
    determined by:
    I
    x R
    DS ON
    )
    where I
    OCSET
    is the internal OCSET current source (40
    μ
    A
    typical). The OC trip point varies mainly due to the MOSFET
    r
    DS(ON)
    variations. To avoid overcurrent tripping in the
    FIGURE 4. V
    TT
    REFERENCE OVERDRIVE
    VREF
    +
    -
    VREF_IN
    SENSE1
    TO ERROR
    AMPLIFIER
    ISL6531
    V
    DDQ
    R
    A
    R
    B
    FIGURE 5. OVERCURRENT PROTECTION RESPONSE
    0V
    TIME
    V
    DDQ
    (2.5V)
    T1
    T0
    T2
    V
    TT
    (1.25V)
    INTERNAL SOFT-START FUNCTION
    DELAY INTERVAL
    I
    PEAK
    ----------------------------------------------------
    =
    ISL6531
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