XC2VP7-5FFG896I

Manufacturer Part NumberXC2VP7-5FFG896I
DescriptionIC FPGA VIRTEX-II PRO 896-FBGA
ManufacturerXilinx Inc
SeriesVirtex™-II Pro
XC2VP7-5FFG896I datasheet
 


Specifications of XC2VP7-5FFG896I

Number Of Logic Elements/cells11088Number Of Labs/clbs1232
Total Ram Bits811008Number Of I /o396
Voltage - Supply1.425 V ~ 1.575 VMounting TypeSurface Mount
Operating Temperature-40°C ~ 100°CPackage / Case896-BBGA, FCBGA
Lead Free Status / RoHS StatusLead free / RoHS CompliantNumber Of Gates-
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5
7
R
DS083 (v4.7) November 5, 2007
(1)
Virtex-II Pro
Electrical Characteristics
Virtex™-II Pro devices are provided in -7, -6, and -5 speed
grades, with -7 having the highest performance.
Virtex-II Pro DC and AC characteristics are specified for
both commercial and industrial grades. Except the operat-
ing temperature range or unless otherwise noted, all the DC
and AC electrical parameters are the same for a particular
speed grade (that is, the timing characteristics of a -6 speed
grade industrial device are the same as for a -6 speed grade
Virtex-II Pro DC Characteristics
Table 1: Absolute Maximum Ratings
Symbol
V
Internal supply voltage relative to GND
CCINT
V
Auxiliary supply voltage relative to GND
CCAUX
V
Output drivers supply voltage relative to GND
CCO
V
Key memory battery backup supply
BATT
V
Input reference voltage
REF
3.3V I/O input voltage relative to GND (user and dedicated I/Os)
V
IN
2.5V or below I/O input voltage relative to GND (user and dedicated I/Os)
Voltage applied to 3-state 3.3V output (user and dedicated I/Os)
V
TS
Voltage applied to 3-state 2.5V or below output (user and dedicated I/Os)
Receive auxilliary supply voltage relative to GNDA (analog ground)
AVCCAUXRX
AVCCAUXTX
Transmit auxilliary supply voltage relative to GNDA (analog ground)
V
Terminal receive supply voltage relative to GND
TRX
V
Terminal transmit supply voltage relative to GND
TTX
T
Storage temperature (ambient)
STG
Maximum soldering
T
(2)
SOL
temperature
T
Maximum junction temperature
J
Notes:
1. Stresses beyond those listed under Absolute Maximum Ratings might cause permanent damage to the device. These are stress
ratings only, and functional operation of the device at these or any other conditions beyond those listed under Operating Conditions
is not implied. Exposure to Absolute Maximum Ratings conditions for extended periods of time might affect device reliability.
2. For soldering guidelines and thermal considerations, see the
on the Xilinx website.
3. 3.3V I/O Absolute Maximum limit applied to DC and AC signals. Refer to
1. Unless otherwise noted, "Virtex-II Pro" refers to members of the Virtex-II Pro and/or Virtex-II Pro X families.
© 2002–2007 Xilinx, Inc. All rights reserved. XILINX, the Xilinx logo, the Brand Window, and other designated brands included herein are trademarks of Xilinx, Inc. PowerPC is
a trademark of IBM Corp. and is used under license. All other trademarks are the property of their respective owners.
DS083 (v4.7) November 5, 2007
Product Specification
Virtex-II Pro and Virtex-II Pro X Platform FPGAs:
DC and Switching Characteristics
commercial device). However, only selected speed grades
and/or devices might be available in the industrial range.
All supply voltage and junction temperature specifications
are representative of worst-case conditions. The parame-
ters included are common to popular designs and typical
applications. Contact Xilinx for design considerations
requiring more detailed information.
All specifications are subject to change without notice.
(1)
Description
All regular FG/FF flip-chip packages
Pb-free FGG256 wire-bond package
Pb-free FGG456 and FGG676
wire-bond packages
(2)
Device Packaging and Thermal Characteristics Guide
XAPP659
www.xilinx.com
Product Specification
Virtex-II Pro X
Virtex-II Pro
–0.5 to 1.6
–0.5 to 3.0
–0.5 to 3.75
–0.5 to 4.05
–0.3 to 3.75
(3)
–0.3 to 4.05
–0.5 to V
+ 0.5
CCO
(3)
–0.3 to 4.05
–0.5 to V
+ 0.5
CCO
–0.5 to 2.0
–0.5 to 3.0
–0.5 to 3.0
–0.5 to 3.0
–0.5 to 3.0
–0.5 to 3.0
–0.5 to 1.6
–0.5 to 3.0
–65 to +150
+220
N/A
+260
N/A
+250
+125
information
for more details.
Module 3 of 4
Units
V
V
V
V
V
V
V
V
V
V
V
V
V
°C
°C
°C
°C
°C
1