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MPC990 データシートの表示(PDF) - Motorola => Freescale

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MPC990
Motorola
Motorola => Freescale Motorola
MPC990 Datasheet PDF : 9 Pages
1 2 3 4 5 6 7 8 9
MPC990 MPC991
should be designed to target this range. The key parameter
that needs to be met in the final filter design is the DC voltage
drop that will be seen between the VCC supply and the VCCA
pin of the MPC990/991. From the data sheet the IVCCA
current (the current sourced through the VCCA pin) is
typically 15mA (20mA maximum), assuming that a minimum
of 3.0V must be maintained on the VCCA pin very little DC
voltage drop can be tolerated when a 3.3V VCC supply is
used. The resistor shown in Figure 4 must have a resistance
of 5–15to meet the voltage drop criteria. The RC filter
pictured will provide a broadband filter with approximately
100:1 attenuation for noise whose spectral content is above
20KHz. As the noise frequency crosses the series resonant
point of an individual capacitor it’s overall impedance begins
to look inductive and thus increases with increasing
frequency. The parallel capacitor combination shown
ensures that a low impedance path to ground exists for
frequencies well above the bandwidth of the PLL.
Although the MPC990/991 has several design features to
minimize the susceptibility to power supply noise (isolated
power and grounds and fully differential PLL) there still may
be applications in which overall performance is being
degraded due to system power supply noise. The power
supply filter schemes discussed in this section should be
adequate to eliminate power supply noise related problems
in most designs.
3.3V
RS=5–15
VCCA
MPC990/991
0.01µF
22µF
VCC
0.01µF
Figure 4. Power Supply Filter
TIMING SOLUTIONS
7
BR1333 — Rev 6
MOTOROLA

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