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  • 參數(shù)資料
    型號: PC107AVZFU100LC
    廠商: ATMEL CORP
    元件分類: 外設(shè)及接口
    英文描述: PCI Bridge Memory Controller
    中文描述: MULTIFUNCTION PERIPHERAL, PBGA503
    封裝: 33 X 33 MM, 1.27 MM PITCH, PLASTIC, FLIP CHIP, BGA-503
    文件頁數(shù): 42/50頁
    文件大小: 453K
    代理商: PC107AVZFU100LC
    42
    PC107A [Preliminary]
    2137C–HIREL–03/04
    System Design
    Information
    PLL Power Supply
    Filtering
    The AV
    DD
    and LAV
    DD
    power signals are provided on the PC107A to provide power to the
    peripheral logic/memory bus PLL and the SDRAM clock delay-locked loop (DLL),
    respectively. To ensure stability of the internal clocks, the power supplied to the AV
    DD
    and LAV
    DD
    input signals should be filtered of any noise in the 500 kHz to 10 MHz reso-
    nant frequency range of the PLLs. A separate circuit similar to the one shown in Figure
    30 using surface mount capacitors with minimum effective series inductance (ESL) is
    recommended for each of the AV
    DD
    and LAV
    DD
    power signal pins. Consistent with the
    recommendations of Dr. Howard Johnson in
    High Speed Digital Design: A Handbook of
    Black Magic
    (Prentice Hall, 1993), multiple small capacitors of equal value are recom-
    mended over using multiple values.
    The circuits should be placed as close as possible to the respective input signal pins to
    minimize noise coupled from nearby circuits. Routing directly as possible from the
    capacitors to the input signal pins with minimal inductance of vias is important but pro-
    portionately less critical for the LAV
    DD
    pin.
    Figure 30.
    PLL Power Supply Filter Circuit
    Power Supply Voltage
    Sequencing
    The notes in Table 3 on page 12 contain cautions illustrated in Figure 3 on page 13
    about the sequencing of the external bus voltages and internal voltages of the PC107A.
    These cautions are necessary for the long term reliability of the part. If they are violated,
    the electrostatic discharge (ESD) protection diodes will be forward biased and excessive
    current can flow through these diodes. Figure 3 shows a typical ramping voltage
    sequence where the DC power sources (voltage regulators and/or power supplies) are
    connected as shown in Figure 31. The voltage regulator delay shown in Figure 3 can be
    zero if the various DC voltage levels are all applied to the target board at the same time.
    The ramping voltage sequence shows a scenario in which the V
    DD
    /AV
    DD
    /LAV
    DD
    power
    plane is not loaded as much as the OV
    DD
    /GV
    DD
    power plane and thus V
    DD
    /AV
    DD
    /LAV
    DD
    ramps at a faster rate than OV
    DD
    /GV
    DD
    .
    If the system power supply design does not control the voltage sequencing, the circuit of
    Figure 31 can be added to meet these requirements. The MUR420 diodes of Figure 31
    control the maximum potential difference between the 3.3 bus and internal voltages on
    power-up and the 1N5820 Schottky diodes regulate the maximum potential difference
    on power-down.
    Vdd
    AVdd or LAVdd
    10
    2.2
    μ
    F
    2.2
    μ
    F
    GND
    Low ESL surface mount capacitors
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