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CDC706PW датащи(PDF) 29 Page - Texas Instruments |
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CDC706PW датащи(HTML) 29 Page - Texas Instruments |
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29 / 41 page ![]() www.ti.com Performance Data: Output Skew, Jitter, Cross Coupling, Noise Rejection (Spur-Suppression), Output Skew Jitter Performance CDC706 SCAS829A – SEPTEMBER 2006 – REVISED MARCH 2007 and Phase Noise Skew is an important parameter for clock distribution circuits. It is defined as the time difference between outputs that are driven by the same input clock. Table 5 shows the output skew (tsk(o)) of the CDC706 for high-to-low and low-to-high transitions over the entire range of supply voltages, operating temperature and output voltage swing. Table 5. Output Skew PARAMETER Vccout TYP MAX UNIT 2.5 V 130 250 ps tsk(o) 3.3 V 130 200 ps Jitter is a major parameter for PLL-based clock driver circuits. This becomes important as speed increases and timing budget decreases. The PLL and internal circuits of CDC706 are designed for lowest jitter. The peak-to-peak period jitter is only 60 ps (typical). Table 6 gives the peak-to-peak and rms deviation of cycle-to-cycle jitter, period jitter and phase jitter as taken during characterization. Table 6. Jitter Performance of CDC706 PARAMETER fout TYP(1) MAX(1) UNIT Peak-Peak rms Peak-Peak rms (one sigma) (one sigma) tjit(cc) 50 MHz 55 – 75 – ps 133 MHz 50 – 85 – 245.76 MHz 45 – 60 – tjit(per) 50 MHz 60 4 76 7 ps 133 MHz 55 5 84 11 245.76 MHz 55 5 72 8 tjit(phase) 50 MHz 730 90 840 115 ps 133 MHz 930 130 1310 175 245.76 MHz 720 90 930 125 (1) All typical and maximum values are at VCC = 3.3 V, temperature = 25°C, Vccout = 3.3 V; one output is switching, data taken over several 10000 cycles. Figure 26, Figure 27, and Figure 28 show the relationship between cycle-to-cycle jitter, period jitter, and phase jitter over 10000 samples. The jitter varies with a smaller or wider sample window. The cycle-to-cycle jitter and period jitter show the measured value whereas the phase jitter is the accumulated period jitter. Cycle-to-Cycle jitter (tjit(cc)) is the variation in cycle time of a clock signal between adjacent cycles, over a random sample of adjacent cycle pairs. Cycle-to-cycle jitter will never be greater than the period jitter. It is also known as adjacent cycle jitter. 29 Submit Documentation Feedback |
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