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AD9549 bảng dữ liệu(PDF) 35 Page - Analog Devices

tên linh kiện AD9549
Giải thích chi tiết về linh kiện  Dual Input Network Clock Generator/Synchronizer
PDF  78 Pages
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nhà sản xuất  AD [Analog Devices]
Trang chủ  http://www.analog.com
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AD9549 bảng dữ liệu(HTML) 35 Page - Analog Devices

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Preliminary Technical Data
AD9549
Rev. PrA | Page 35 of 78
State
Machine
REF SEL
Derived RefSel State
Derived Holdover State
HOLDOVER
AutoHold
AutoRefSel
0
1
0
1
0
1
Override RefPin
RefAB
0
1
Override HldPin
Hldovr
Active RefSel State
Active Holdover State
To
Reference
Switching
Control
Logic
To
Holdover
Control
Logic
Figure 19: Reference Switchover and Holdover Logic
In manual mode, the active reference is determined by an
externally applied logic level to the REFSELECT pin. In
automatic mode, an internal state machine determines which
reference is active, and the REFSELECT pin becomes an output
indicating which reference the state machine is using.
The user may override the active reference chosen by the
internal state machine via the "Enable Ref Input Override " bit
in the I/O Register Map. The "Ref_AB" bit in the I/O Register
Map is then used to select the desired reference. When in
override, it is important to note that the REFSELECT pin does
not indicate the physical reference selected by the "Ref_AB" bit.
Instead, it indicates the reference that the internal state machine
would select if the device were not in the override mode. This
allows the user to force a reference switchover by means of the
programming registers while monitoring the response of the
state machine via the REFSELECT pin.
The same type of operation (manual/automatic and override)
also applies to the holdover function, as shown in the Reference
Switchover Logic diagram. The dashed arrows in the diagram
indicate that the state machine output is available to the
REFSELECT and HOLDOVER pins when in override mode.
Use of Line Card Mode to Eliminate Runt Pulses
When two references are not in exact phase alignment and a
transition is made from one to the other, it is possible that an
extra pulse can be generated. This depends on the relative edge
placement of the two references and the point in time that a
switch over is initiated. To eliminate the "extra pulse" problem,
an "Enable Line Card Mode" bit is provided in the I/O Register
map. The Line Card Mode logic is shown in Figure 20 below.
When Enable Line Card bit is 0, reference switch over occurs on
command without consideration to the relative edge placement
of the references. This means that there is the possibility of an
extra pulse. However, when this bit is set to 1, the timing of the
reference switch over is executed conditionally as shown in
Figure 21 on Page 36.
0
1
0
1
0
1
QD
From
Reference
Selection
Logic
REFA In
REFB In
REF In
selected reference
Enable
Line-Card
Mode
Figure 20: Reference Switchover Control Logic
Note that when the line card mode is enabled, the rising edges
of the alternate reference are used to clock a latch. The latch
holds off the actual transition until the next rising edge of the
alternate reference.
Shown in Figure 21 is a timing diagram that demonstrates the
difference between reference switchover with the line card
mode enabled and disabled. If enabled, when the reference
switchover logic is given the command to switch to the alternate
reference, an actual transition does not occur until the next
rising edge of the alternate reference. This action eliminates the
spurious pulse that can occur when the line card mode is
disabled.



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