EP20K400EFC672-2X Altera, EP20K400EFC672-2X Datasheet - Page 23

IC APEX 20KE FPGA 400K 672-FBGA

EP20K400EFC672-2X

Manufacturer Part Number
EP20K400EFC672-2X
Description
IC APEX 20KE FPGA 400K 672-FBGA
Manufacturer
Altera
Series
APEX-20K®r
Datasheet

Specifications of EP20K400EFC672-2X

Number Of Logic Elements/cells
16640
Number Of Labs/clbs
1664
Total Ram Bits
212992
Number Of I /o
488
Number Of Gates
1052000
Voltage - Supply
1.71 V ~ 1.89 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
672-FBGA
Family Name
APEX 20K
Number Of Usable Gates
400000
Number Of Logic Blocks/elements
16640
# Registers
104
# I/os (max)
488
Frequency (max)
223MHz
Process Technology
SRAM
Operating Supply Voltage (typ)
1.8V
Logic Cells
16640
Ram Bits
212992
Device System Gates
1052000
Operating Supply Voltage (min)
1.71V
Operating Supply Voltage (max)
1.89V
Operating Temp Range
0C to 85C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
672
Package Type
FC-FBGA
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
544-2095

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Altera Corporation
Figure 11
how these forms of interconnects and LEs drive each other.
Figure 11. Driving the FastTrack Interconnect
APEX 20KE devices include an enhanced interconnect structure for faster
routing of input signals with high fan-out. Column I/O pins can drive the
FastRow
interconnect without having to drive through the MegaLAB interconnect.
FastRow lines traverse two MegaLAB structures. Also, these pins can
drive the local interconnect directly for fast setup times. On EP20K300E
and larger devices, the FastRow interconnect drives the two MegaLABs in
the top left corner, the two MegaLABs in the top right corner, the two
MegaLABS in the bottom left corner, and the two MegaLABs in the
bottom right corner. On EP20K200E and smaller devices, FastRow
interconnect drives the two MegaLABs on the top and the two MegaLABs
on the bottom of the device. On all devices, the FastRow interconnect
drives all local interconnect in the appropriate MegaLABs except the local
interconnect on the side of the MegaLAB opposite the ESB. Pins using the
FastRow interconnect achieve a faster set-up time, as the signal does not
need to use a MegaLAB interconnect line to reach the destination LE.
Figure 12
shows the intersection of a row and column interconnect, and
shows the FastRow interconnect.
interconnect, which routes signals directly into the local
MegaLAB Interconnect
Row Interconnect
APEX 20K Programmable Logic Device Family Data Sheet
Interconnect
Local
LE
Column
Interconnect
23

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