XC3S1600E-5FG320C Xilinx Inc, XC3S1600E-5FG320C Datasheet - Page 52

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XC3S1600E-5FG320C

Manufacturer Part Number
XC3S1600E-5FG320C
Description
PROGRAMMABLE MICROCHIP
Manufacturer
Xilinx Inc
Datasheet

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0
ponent is enabled by setting the attribute to either the
FIXED or VARIABLE values, which select the Fixed Phase
Table 29: PS Attributes
Determining the Fine Phase Shift
The user controls the phase shift of CLKFB relative to
CLKIN by setting and/or adjusting the value of the
PHASE_SHIFT attribute. This value must be an integer
ranging from –255 to +255. This corresponds to a phase
shift range of –180 to +180 degrees, which is different from
the original Spartan-3 DCM. The PS component uses this
value to calculate the desired fine phase shift (T
fraction of the CLKIN period (T
PHASE_SHIFT and T
as follows:
Both the Fixed Phase and Variable Phase operating modes
employ this calculation. If the PHASE_SHIFT value is zero,
then CLKFB and CLKIN are in phase, the same as when the
PS component is disabled. When the PHASE_SHIFT value
is positive, the CLKFB signal is shifted later in time with
respect to CLKIN. If the attribute value is negative, the
CLKFB signal is shifted earlier in time with respect to
CLKIN.
DS312-2 (v1.1) March 21, 2005
Advance Product Specification
CLKOUT_PHASE_SHIFT
PHASE_SHIFT
T
PS
= (PHASE_SHIFT/512) * T
Attribute
R
CLKIN
, it is possible to calculate T
CLKIN
Disables the PS component or chooses between
Fixed Phase and Variable Phase modes.
Determines size and direction of initial fine phase
shift.
CLKIN
). Given values for
(4)
PS
) as a
Description
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PS
mode and the Variable Phase mode, respectively. These
two modes are described in the sections that follow.
The Fixed Phase Mode
This mode fixes the desired fine phase shift to a fraction of
the T
user-selected PHASE_SHIFT value P. The set of wave-
forms in
CLKFB and CLKIN in the Fixed Phase mode. In the Fixed
Phase mode, the PSEN, PSCLK, and PSINCDEC inputs
are not used and must be tied to GND.
In
Figure
P represents the integer value ranging from –255 to
+255 to which the PHASE_SHIFT attribute is assigned.
(P = approximately -90 as shown)
N is an integer value ranging from (P – 255) to
(+255 – P) that represents the net phase shift effect
from a series of increment and/or decrement
operations.
N = {Total number of increments} – {Total number of
decrements} provided the user does not try to
increment past + 255 or decrement past -255. A
positive value for N indicates a net increment; a
negative value indicates a net decrement.
CLKIN
41:
Figure 41b
, as determined by Equation (4) and its
illustrates the relationship between
NONE, FIXED, VARIABLE
Integers from –255 to +255
Functional Description
Values
45

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