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PL612-05-XXXMIR Datasheet(PDF) 4 Page - PhaseLink Corporation

Part # PL612-05-XXXMIR
Description  1.8V-3.3V PicoPLL, 2-PLL, 200MHz, 5 Output Clock IC
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Manufacturer  PLL [PhaseLink Corporation]
Direct Link  http://www.phaselink.com
Logo PLL - PhaseLink Corporation

PL612-05-XXXMIR Datasheet(HTML) 4 Page - PhaseLink Corporation

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(Preliminary)
1.8V-3.3V PicoPLL, 2-PLL, 200MHz, 5 Output Clock IC
47745 Fremont Blvd., Fremont, California 94538 Tel (510) 492-0990 Fax (510) 492-0991 www.phaselink.com Rev 9/4/07 Page 4
On-The-Fly Configuration Switching (CSEL)
The PL612-05 can be programmed to allow switching
between 2 different configurations, allowing for
changes in the output frequency and other feature
changes. Many applications (i.e. video/audio) can
use the same design footprint, but allow for
configuration switching, adhering to various
standards. CSEL is used to make the switching
selection. This pin incorporates a 60kΩ pull up
resistor for normal operating condition. The logic for
configuration switching of the programmed parts is
shown below:
CSEL
Programmed
Configuration
0
0
1
1(Default)
Note: Typical enable time is 100µs
.
LAYOUT RECOMMENDATIONS
The following guidelines are to assist you with a performance optimized PCB design:
Signal Integrity and Termination
Considerations
- Keep traces short!
- Trace = Inductor. With a capacitive load this
equals ringing!
- Long trace = Transmission Line. Without proper
termination this will cause reflections ( looks like
ringing ).
- Design long traces (> 1 inch) as “striplines” or
“microstrips” with defined impedance.
- Match trace at one side to avoid reflections
bouncing back and forth.
Decoupling and Power Supply
Considerations
- Place decoupling capacitors as close as possible to
the VDD pin(s) to limit noise from the power supply
- Multiple VDD pins should be decoupled separately
for best performance.
- Addition of a ferrite bead in series with VDD can
help prevent noise from other board sources
- Value of decoupling capacitor is frequency
dependant. Typical values to use are 0.1
F for
designs using frequencies < 50MHz and 0.01
F for
designs using frequencies > 50MHz.


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