XC5VLX50T-2FFG665I Xilinx Inc, XC5VLX50T-2FFG665I Datasheet - Page 205

IC FPGA VIRTEX-5 50K 665FCBGA

XC5VLX50T-2FFG665I

Manufacturer Part Number
XC5VLX50T-2FFG665I
Description
IC FPGA VIRTEX-5 50K 665FCBGA
Manufacturer
Xilinx Inc
Series
Virtex™-5 LXTr

Specifications of XC5VLX50T-2FFG665I

Number Of Logic Elements/cells
46080
Number Of Labs/clbs
3600
Total Ram Bits
2211840
Number Of I /o
360
Voltage - Supply
0.95 V ~ 1.05 V
Mounting Type
Surface Mount
Operating Temperature
-40°C ~ 100°C
Package / Case
665-BBGA, FCBGA
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-V5GBE-DK-UNI-G - KIT DEV V5 LXT GIGABIT ETHERNET122-1508 - EVALUATION PLATFORM VIRTEX-5
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Number Of Gates
-

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Table 5-8: Distributed RAM Timing Parameters
Virtex-5 FPGA User Guide
UG190 (v5.3) May 17, 2010
Sequential Delays for a Slice LUT Configured as RAM (Distributed RAM)
Setup and Hold Times for a Slice LUT Configured as RAM (Distributed RAM)
Clock CLK
Notes:
1. This parameters includes a LUT configured as a two-bit distributed RAM.
2. T
3. Parameter includes AI/BI/CI/DI configured as a data input (DI2).
T
T
T
T
T
T
T
ACK
SHCKO
DS
WS
WPH
WPL
WC
XXCK
/T
/T
/T
DH
WH
(1)
CKA
= Setup Time (before clock edge), and T
(3)
Parameter
Distributed RAM Timing Parameters
Table 5-8
of the paths in
shows the timing parameters for the distributed RAM in SLICEM for a majority
AX/BX/CX/DX configured as
data input (DI1)
A/B/C/D address inputs
WE input
CLK to A/B/C/D outputs
Figure
CKXX
Function
5-27.
= Hold Time (after clock edge).
www.xilinx.com
Time after the CLK of a write operation that the
data written to the distributed RAM is stable on
the A/B/C/D output of the slice.
Time before/after the clock that data must be
stable at the AX/BX/CX/DX input of the slice.
Time before/after the clock that address signals
must be stable at the A/B/C/D inputs of the slice
LUT (configured as RAM).
Time before/after the clock that the write enable
signal must be stable at the WE input of the slice
LUT (configured as RAM).
Minimum Pulse Width, High
Minimum Pulse Width, Low
Minimum clock period to meet address write
cycle time.
(2)
Description
CLB / Slice Timing Models
205

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