XC5VLX220-1FFG1760C Xilinx Inc, XC5VLX220-1FFG1760C Datasheet - Page 215

IC FPGA VIRTEX-5 220K 1760FBGA

XC5VLX220-1FFG1760C

Manufacturer Part Number
XC5VLX220-1FFG1760C
Description
IC FPGA VIRTEX-5 220K 1760FBGA
Manufacturer
Xilinx Inc
Series
Virtex™-5 LXr

Specifications of XC5VLX220-1FFG1760C

Total Ram Bits
7077888
Number Of Logic Elements/cells
221184
Number Of Labs/clbs
17280
Number Of I /o
800
Voltage - Supply
0.95 V ~ 1.05 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
1760-BBGA, FCBGA
No. Of Logic Blocks
17280
No. Of Macrocells
220000
Family Type
Virtex-5
No. Of Speed Grades
1
No. Of I/o's
800
Clock Management
DCM, PLL
Core Supply
RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
HW-AFX-FF1760-500-G - BOARD DEV VIRTEX 5 FF1760
Number Of Gates
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
XC5VLX220-1FFG1760C
Manufacturer:
Xilinx Inc
Quantity:
10 000
Part Number:
XC5VLX220-1FFG1760C
Manufacturer:
XILINX
0
Virtex-5 FPGA User Guide
UG190 (v5.3) May 17, 2010
Multiplexer Primitives
Carry Chain Primitive
Port Signals
X-Ref Target - Figure 5-35
Two primitives (MUXF7 and MUXF8) are available for access to the dedicated F7AMUX,
F7BMUX and F8MUX in each slice. Combined with LUTs, these multiplexer primitives are
also used to build larger width multiplexers (from 8:1 to 16:1). The
Multiplexers
Data In – I0, I1
The data input provides the data to be selected by the select signal (S).
Control In – S
The select input signal determines the data input signal to be connected to the output O.
Logic 0 selects the I0 input, while logic 1 selects the I1 input.
Data Out – O
The data output O provides the data value (one bit) selected by the control inputs.
The CARRY4 primitive represents the fast carry logic for a slice in the Virtex-5 architecture.
This primitive works in conjunction with LUTs in order to build adders and multipliers.
This primitive is generally inferred by synthesis tools from standard RTL code. The
synthesis tool can identify the arithmetic and/or logic functionality that best maps to this
00111
D
5
D
D
D
A[4:0]
SRLC32G
SRLC32G
SRLC32G
section provides more information on building larger multiplexers.
LUT
LUT
LUT
Figure 5-35: Example Static-Length Shift Register
Q31
Q31
Q31
Q
www.xilinx.com
OUT
(72-bit SRL)
00110
D
5
D
SRLC32G
D
SRLC32G
D
A[4:0]
SRLC32G
LUT
LUT
LUT
Q31
Q31
Q31
Q
D
Designing Large
FF
Q
CLB Primitives
UG190_5_35_050506
OUT
(72-bit SRL)
215

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