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    參數(shù)資料
    型號: L5986ATR
    廠商: STMICROELECTRONICS
    元件分類: 穩(wěn)壓器
    英文描述: 3.9 A SWITCHING REGULATOR, 1000 kHz SWITCHING FREQ-MAX, PDSO8
    封裝: ROHS COMPLIANT, HSOP-8
    文件頁數(shù): 37/38頁
    文件大?。?/td> 1067K
    代理商: L5986ATR
    Functional description
    L5986
    8/38
    Doc ID 14971 Rev 3
    5.1
    Oscillator and synchronization
    Figure 4 shows the block diagram of the oscillator circuit. The internal oscillator provides a
    constant frequency clock. Its frequency depends on the resistor externally connect to FSW
    pin. In case the FSW pin is left floating the frequency is 250 kHz; it can be increased as
    shown in Figure 6 by external resistor connected to ground.
    To improve the line transient performance, keeping the PWM gain constant versus the input
    voltage, the voltage feed forward is implemented by changing the slope of the sawtooth
    according to the input voltage change (see Figure 5.a).
    The slope of the sawtooth also changes if the oscillator frequency is increased by the
    external resistor. In this way a frequency feed forward is implemented (Figure 5.b) in order to
    keep the PWM gain constant versus the switching frequency (see Section 6.4 for PWM gain
    expression).
    On the SYNCH pin the synchronization signal is generated. This signal has a phase shift of
    180° with respect to the clock. This delay is useful when two devices are synchronized
    connecting the SYNCH pin together. When SYNCH pins are connected, the device with
    higher oscillator frequency works as master, so the Slave device switches at the frequency
    of the master but with a delay of half a period. This minimizes the RMS current flowing
    through the input capacitor [see L5988D data sheet].
    Figure 4.
    Oscillator circuit block diagram
    The device can be synchronized to work at higher frequency feeding an external clock
    signal. The synchronization changes the sawtooth amplitude, changing the PWM gain
    (Figure 5.c). This changing has to be taken into account when the loop stability is studied.
    To minimize the change of the PWM gain, the free running frequency should be set (with a
    resistor on FSW pin) only slightly lower than the external clock frequency. This pre-adjusting
    of the frequency will change the sawtooth slope in order to get negligible the truncation of
    sawtooth, due to the external synchronization.
    Clock
    Generator
    Ramp
    Generator
    FSW
    Sawtooth
    Clock
    Synchronization
    SYNCH
    Clock
    Generator
    Ramp
    Generator
    FSW
    Sawtooth
    Clock
    Synchronization
    SYNCH
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