XC5VLX110T-2FFG1738C Xilinx Inc, XC5VLX110T-2FFG1738C Datasheet - Page 89

FPGA Virtex®-5 Family 110592 Cells 65nm (CMOS) Technology 1V 1738-Pin FCBGA

XC5VLX110T-2FFG1738C

Manufacturer Part Number
XC5VLX110T-2FFG1738C
Description
FPGA Virtex®-5 Family 110592 Cells 65nm (CMOS) Technology 1V 1738-Pin FCBGA
Manufacturer
Xilinx Inc
Series
Virtex™-5 LXTr

Specifications of XC5VLX110T-2FFG1738C

Package
1738FCBGA
Family Name
Virtex®-5
Device Logic Units
110592
Typical Operating Supply Voltage
1 V
Maximum Number Of User I/os
680
Ram Bits
5455872
Number Of Logic Elements/cells
110592
Number Of Labs/clbs
8640
Total Ram Bits
5455872
Number Of I /o
680
Voltage - Supply
0.95 V ~ 1.05 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
1738-BBGA, FCBGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
HW-V5-ML523-FXT-UNI-G-J - BOARD EVAL FOR VIRTEX-5HW-V5-ML523-FXT-UNI-G - BOARD EVAL FOR VIRTEX-5HW-V5-ML523-UNI-G - EVALUATION PLATFORM VIRTEX-5
Number Of Gates
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
XC5VLX110T-2FFG1738C
Manufacturer:
Xilinx Inc
Quantity:
10 000
Part Number:
XC5VLX110T-2FFG1738C
Manufacturer:
XILINX
0
Phase-Locked Loops (PLLs)
Introduction
Virtex-5 FPGA User Guide
UG190 (v5.3) May 17, 2010
The clock management tile (CMT) in Virtex-5 FPGAs includes two DCMs and one PLL.
There are dedicated routes within a CMT to couple together various components. Each
block within the tile can be treated separately, however, there exists a dedicated routing
between blocks creating restrictions on certain connections. Using these dedicated routes
frees up global resources for other design elements. Additionally, the use of local routes
within the CMT provides an improved clock path because the route is handled locally,
reducing chances for noise coupling.
The CMT diagram
various clock input sources and the DCM-to-PLL and PLL-to-DCM dedicated routing. The
six (total) PLL output clocks are muxed into a single clock signal for use as a reference clock
to the DCMs. Two output clocks from the PLL can drive the DCMs. These two clocks are
100% independent. PLL output clock 0 could drive DCM1 while PLL output clock 1 could
drive DCM2. Each DCM output can be muxed into a single clock signal for use as a
reference clock to the PLL. Only one DCM can be used as the reference clock to the PLL at
any given time. A DCM can not be inserted in the feedback path of the PLL. Both the PLLs
or DCMs of a CMT can be used separately as stand-alone functions. The outputs from the
PLL are not spread spectrum.
(Figure
www.xilinx.com
3-1) shows a high-level view of the connection between the
Chapter 3
89

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