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AD9544/PCBZ 数据表(PDF) 31 Page - Analog Devices

部件名 AD9544/PCBZ
功能描述  Quad Input, 10-Output, Dual DPLL, 1 pps Synchronizer and Jitter Cleaner
PDF  62 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

AD9544/PCBZ 数据表(HTML) 31 Page - Analog Devices

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Data Sheet
AD9544
Rev. 0 | Page 31 of 62
2× FREQUENCY MULTIPLIER
The system clock PLL provides the user with the option of
doubling the reference frequency via the enable SYSCLK
doubler bit. Doubling the input reference frequency potentially
reduces the PLL in-band noise. The reference frequency must be
less than 150 MHz when using the 2× frequency multiplier to
satisfy the 300 MHz maximum PFD rate. Furthermore, the 2×
frequency multiplier requires the reference input signal to have
very near to 50% duty cycle; otherwise, the resulting spurious
content may prevent the system clock PLL from locking.
PRESCALE DIVIDER
The system clock PLL includes an input prescale divider
programmable for divide ratios of 1 (default), 2, 4, or 8. The
purpose of the divider is to provide flexible frequency planning
for mitigating potential spurs in the output clock signals of the
AD9544. The user selects the divide ratio via the 2-bit SYSCLK
input divider ratio bit field in Register 0x0201. The corresponding
divide value is 2J, where J is the decimal value of the 2-bit number
in the SYSCLK input divider ratio bit field.
For example, given that the SYSCLK input divider ratio bit field is
10 (binary), J = 2 (decimal), yielding a divide ratio of 2J = 22 = 4.
FEEDBACK DIVIDER
The output of the system clock PLL constitutes the system clock
frequency, fS. The system clock frequency depends on the value
of the feedback divider. The feedback divide ratio has a range of
4 to 255, which the user programs via the 8-bit feedback divider
ratio register (the register value is the divide ratio). For example,
a programmed value of 100 (0x64 hexadecimal) yields a divide
ratio of 100.
SYSTEM CLOCK PLL OUTPUT FREQUENCY
Calculate the system clock frequency as follows:
J
K
f
f
SYSIN
S
×
=
where:
fSYSIN
is the input frequency.
K is the feedback divide ratio.
J is the input divide ratio. J = ½ when using the 2× frequency
multiplier.
The user must choose fSYSIN, K, and J such that fS satisfies the
VCO range of 2250 MHz to 2415 MHz.
SYSTEM CLOCK PLL LOCK DETECTOR
The system clock PLL features a simple lock detector that
compares the time difference between the reference and
feedback clock edges. The user can check the status of the lock
detector via the SYSCLK locked bit in the status readback
registers (Address 0x3000 to Address 0x300A) of the register
map, where Logic 1 indicates locked and Logic 0 unlocked. The
most common reason the system clock PLL fails to lock is due
to the user employing the 2× frequency multiplier with a
reference input clock that deviates from the 50% duty cycle.
SYSTEM CLOCK STABILITY TIMER
Because time processing blocks within the AD9544 depend on
the system clock generating a stable frequency, the system clock
PLL provides an indication of its status. The status of the system
clock PLL is available to the user as well as directly to certain
internal time keeping blocks.
At initial power-up, the system clock status is unknown and
reported as being unstable. However, after the user programs
the system clock registers and the system clock PLL VCO
calibrates, the system clock PLL locks shortly thereafter.
SYSTEM CLOCK INPUT TERMINATION
RECOMMENDATIONS
To connect a crystal resonator to the system clock PLL XOA
and XOB inputs, refer to Figure 23. Be sure to program the
enable maintaining amplifier bit = 1 to select the crystal path.
The 15 pF shunt capacitors shown relate to the CLOAD and CSTRAY
associated with the crystal as follows:
CSHUNT = 2 × (CLOAD − CSTRAY)
For CLOAD = 10 pF and CSTRAY = 2 pF to 5 pF, the value of CSHUNT
is approximately 15 pF.
To connect a TCXO or OCXO with a 3.3 V output, refer to
Figure 24. Be sure to program the enable maintaining amplifier
bit = 0 to select the direct path.



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