XC5VLX50-1FFG324C Xilinx Inc, XC5VLX50-1FFG324C Datasheet - Page 368

FPGA, VIRTEX-5 LX, 50K, 324FBGA

XC5VLX50-1FFG324C

Manufacturer Part Number
XC5VLX50-1FFG324C
Description
FPGA, VIRTEX-5 LX, 50K, 324FBGA
Manufacturer
Xilinx Inc
Series
Virtex™-5 LXr

Specifications of XC5VLX50-1FFG324C

No. Of Logic Blocks
7200
Family Type
Virtex-5
No. Of Speed Grades
1
Total Ram Bits
1769472
No. Of I/o's
220
Clock Management
DCM, PLL
I/o Supply Voltage
3.3V
Operating Frequency Max
550MHz
Number Of Logic Elements/cells
46080
Number Of Labs/clbs
3600
Number Of I /o
220
Voltage - Supply
0.95 V ~ 1.05 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
324-BBGA, FCBGA
Core Supply Voltage Range
1V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
HW-V5-ML561-UNI-G - EVALUATION PLATFORM VIRTEX-5HW-V5-ML550-UNI-G - EVALUATION PLATFORM VIRTEX-5HW-V5-ML521-UNI-G - EVALUATION PLATFORM VIRTEX-5HW-AFX-FF324-500-G - BOARD DEV VIRTEX 5 FF324HW-V5GBE-DK-UNI-G - KIT DEV V5 LXT GIGABIT ETHERNET122-1508 - EVALUATION PLATFORM VIRTEX-5
Number Of Gates
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
122-1562

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Chapter 8: Advanced SelectIO Logic Resources
368
Bitslip Timing Model and Parameters
This section discusses the timing models associated with the Bitslip controller in a 1:4 DDR
configuration. Data (D) is a repeating, 4-bit training pattern ABCD. ABCD could appear at
the parallel outputs Q1–Q4 of the ISERDES in four possible ways: ABCD, BCDA, CDAB,
and DABC. Only one of these four alignments of the parallel word makes sense to the
user's downstream logic that reads the data from the Q1–Q4 outputs of the ISERDES. In
this case, ABCD is assumed to be the word alignment that makes sense. Asserting Bitslip
allows the user to see all possible configurations of ABCD and then choose the expected
alignment (ABCD).
corresponding re-alignments of the ISERDES parallel outputs Q1–Q4.
X-Ref Target - Figure 8-12
Clock Event 1
The entire first word CDAB has been sampled into the input side registers of the ISERDES.
The Bitslip pin is not asserted; the word propagates through the ISERDES without any
realignment.
Clock Event 2
The second word CDAB has been sampled into the input side registers of the ISERDES.
The Bitslip pin is asserted, which causes the Bitslip controller to shift all bits internally by
one bit to the right.
Clock Event 3
The third word CDAB has been sampled into the input side registers of the ISERDES. The
Bitslip pin is asserted for a second time, which causes the Bitslip controller to shift all bits
internally by three bits to the left.
On this same edge of CLKDIV, the first word sampled is presented to Q1–Q4 without any
realignment. The actual bits from the input stream that appear at the Q1–Q4 outputs
during this cycle are shown in A of
BITSLIP
CLKDIV
Q4–Q1
CLK
D
Figure 8-12
C D A B C D
Figure 8-12: Bitslip Timing Diagram
www.xilinx.com
shows the timing of two Bitslip operations and the
1
Figure
Bitslip1
A B C D A B
8-13.
2
Bitslip2
CDAB
C D
3
BCDA
Virtex-5 FPGA User Guide
UG190 (v5.3) May 17, 2010
4
ug190_8_12_100307
ABCD
5

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