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MPC9653 Datasheet(PDF) 8 Page - Motorola, Inc

Part # MPC9653
Description  3.3V 1:8 LVCMOS PLL CLOCK GENERATOR
PDF  12 Pages
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Manufacturer  MOTOROLA [Motorola, Inc]
Direct Link  http://www.freescale.com
Logo MOTOROLA - Motorola, Inc

MPC9653 Datasheet(HTML) 8 Page - Motorola, Inc

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MPC9653
MOTOROLA
TIMING SOLUTIONS
8
Figure 6. Single versus Dual Transmission Lines
14
IN
MPC9653
OUTPUT
BUFFER
RS = 36Ω
ZO = 50Ω
OutA
14
IN
MPC9653
OUTPUT
BUFFER
RS = 36Ω
ZO = 50Ω
OutB0
RS = 36Ω
ZO = 50Ω
OutB1
The waveform plots in Figure 7. “Single versus Dual Line
Termination Waveforms” show the simulation results of an
output driving a single line versus two lines. In both cases the
drive capability of the MPC9653 output buffer is more than
sufficient to drive 50
Ω transmission lines on the incident
edge. Note from the delay measurements in the simulations a
delta of only 43ps exists between the two differently loaded
outputs. This suggests that the dual line driving need not be
used exclusively to maintain the tight output-to-output skew
of the MPC9653. The output waveform in Figure 7. “Single
versus Dual Line Termination Waveforms” shows a step in
the waveform, this step is caused by the impedance
mismatch seen looking into the driver. The parallel
combination of the 36
Ω series resistor plus the output
impedance does not match the parallel combination of the
line impedances. The voltage wave launched down the two
lines will equal:
VL = VS ( Z0 ÷ (RS+R0 +Z0))
Z0 = 50Ω || 50Ω
RS = 36Ω || 36Ω
R0 = 14Ω
VL = 3.0 ( 25 ÷ (18+14+25)
= 1.31V
At the load end the voltage will double, due to the near
unity reflection coefficient, to 2.6V. It will then increment
towards the quiescent 3.0V in steps separated by one round
trip delay (in this case 4.0ns).
Figure 7. Single versus Dual Waveforms
TIME (nS)
3.0
2.5
2.0
1.5
1.0
0.5
0
2
4
6
8
10
12
14
OutB
tD = 3.9386
OutA
tD = 3.8956
In
Since this step is well above the threshold region it will not
cause any false clock triggering, however designers may be
uncomfortable with unwanted reflections on the line. To better
match the impedances when driving multiple lines the
situation in Figure 8.
“Optimized Dual Line Termination”
should be used. In this case the series terminating resistors
are reduced such that when the parallel combination is added
to the output buffer impedance the line impedance is perfectly
matched.
Figure 8. Optimized Dual Line Termination
14
MPC9653
OUTPUT
BUFFER
RS = 22Ω
ZO = 50Ω
RS = 22Ω
ZO = 50Ω
14
Ω + 22Ω k 22Ω = 50Ω k 50Ω
25
Ω = 25Ω
Freescale Semiconductor, Inc.
For More Information On This Product,
Go to: www.freescale.com



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