EP1SGX25DF672I6 Altera, EP1SGX25DF672I6 Datasheet - Page 68

IC STRATIX GX FPGA 25K 672-FBGA

EP1SGX25DF672I6

Manufacturer Part Number
EP1SGX25DF672I6
Description
IC STRATIX GX FPGA 25K 672-FBGA
Manufacturer
Altera
Series
Stratix® GXr
Datasheet

Specifications of EP1SGX25DF672I6

Number Of Logic Elements/cells
25660
Number Of Labs/clbs
2566
Total Ram Bits
1944576
Number Of I /o
455
Voltage - Supply
1.425 V ~ 1.575 V
Mounting Type
Surface Mount
Operating Temperature
-40°C ~ 100°C
Package / Case
672-FBGA
Family Name
Stratix GX
Number Of Logic Blocks/elements
25660
# I/os (max)
455
Frequency (max)
5GHz
Process Technology
SRAM
Operating Supply Voltage (typ)
1.5V
Logic Cells
25660
Ram Bits
1944576
Operating Supply Voltage (min)
1.425V
Operating Supply Voltage (max)
1.575V
Operating Temp Range
-40C to 100C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
672
Package Type
FC-FBGA
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Number Of Gates
-
Lead Free Status / Rohs Status
Not Compliant

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Logic Array Blocks
Figure 4–2. Direct Link Connection
4–2
Stratix GX Device Handbook, Volume 1
block, DSP block, or IOE output
Direct link interconnect from
left LAB, TriMatrix memory
interconnect
Direct link
to left
Interconnect
M4K RAM blocks, or DSP blocks from the left and right can also drive an
LAB’s local interconnect through the direct link connection. The direct
link connection feature minimizes the use of row and column
interconnects, providing higher performance and flexibility. Each LE can
drive 30 other LEs through fast local and direct link interconnects.
Figure 4–2
LAB Control Signals
Each LAB contains dedicated logic for driving control signals to its LEs.
The control signals include two clocks, two clock enables, two
asynchronous clears, synchronous clear, asynchronous preset/load,
synchronous load, and add/subtract control signals. This gives a
maximum of 10 control signals at a time. Although synchronous load and
clear signals are generally used when implementing counters, they can
also be used with other functions.
Each LAB can use two clocks and two clock enable signals. Each LAB’s
clock and clock enable signals are linked. For example, any LE in a
particular LAB using the labclk1 signal also uses labclkena1. If the
LAB uses both the rising and falling edges of a clock, it also uses both
LAB-wide clock signals. De-asserting the clock enable signal turns off the
LAB-wide clock.
Local
shows the direct link connection.
LAB
Direct link
interconnect
to right
Direct link interconnect from
right LAB, TriMatrix memory
block, DSP block, or IOE output
Altera Corporation
February 2005

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