EP4SE530H40I3 Altera, EP4SE530H40I3 Datasheet - Page 243
EP4SE530H40I3
Manufacturer Part Number
EP4SE530H40I3
Description
IC STRATIX IV FPGA 530K 1517HBGA
Manufacturer
Altera
Series
STRATIX® IV Er
Datasheets
1.EP4SGX110DF29C3N.pdf
(80 pages)
2.EP4SGX110DF29C3N.pdf
(1154 pages)
3.EP4SGX110DF29C3N.pdf
(432 pages)
4.EP4SGX110DF29C3N.pdf
(22 pages)
5.EP4SGX110DF29C3N.pdf
(72 pages)
6.EP4SE230F29C3N.pdf
(12 pages)
Specifications of EP4SE530H40I3
Number Of Logic Elements/cells
531200
Number Of Labs/clbs
21248
Total Ram Bits
27376
Number Of I /o
976
Voltage - Supply
0.87 V ~ 0.93 V
Mounting Type
Surface Mount
Operating Temperature
-40°C ~ 100°C
Package / Case
1517-HBGA
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Number Of Gates
-
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- EP4SGX110DF29C3N PDF datasheet
- EP4SGX110DF29C3N PDF datasheet #2
- EP4SGX110DF29C3N PDF datasheet #3
- EP4SGX110DF29C3N PDF datasheet #4
- EP4SGX110DF29C3N PDF datasheet #5
- EP4SE230F29C3N PDF datasheet #6
- Current page: 243 of 1154
- Download datasheet (32Mb)
Chapter 7: External Memory Interfaces in Stratix IV Devices
Memory Interfaces Pin Support
Figure 7–18. Number of DQS/DQ Groups per Bank in EP4SGX290, EP4SGX360, and EP4SGX530 Devices in the 1932-Pin
FineLine BGA Package
Notes to
(1) These numbers are preliminary until the devices are available.
(2) You can also use DQS/DQSn pins in some of the ×4 groups as R
(3) All I/O pin counts include dedicated clock inputs and dedicated corner PLL clock inputs that you can use for data inputs.
(4) You can also use some of the DQS/DQ pins in I/O Bank 1C as configuration pins. You cannot use a ×4 DQS/DQ group with any of its pin members
February 2011 Altera Corporation
of the ×4 group are used as R
can use the ×16/×18 or ×32/×36 groups that include that ×4 group, however there are restrictions on using ×8/×9 groups that include that ×4
group.
used for configuration purposes. Ensure that the DQS/DQ groups that you have chosen are not also used for configuration because you may lose
up to four ×4 DQS/DQ groups, depending on your configuration scheme.
Figure
42 User I/Os
I/O Bank 2B
I/O Bank 1C
I/O Bank 2C
20 User I/Os
I/O Bank 1A
42 User I/Os
I/O Bank 2A
7–18:
50 User I/Os
x16/x18=1
x32/x36=0
x16/x18=0
x32/x36=0
50 User I/Os
x16/x18=1
x32/x36=0
x16/x18=1
x32/x36=0
x8/x9=3
x16/x18=1
x32/x36=0
x8/x9=1
x8/x9=3
x8/x9=3
DLL0
x8/x9=3
x4=6
DLL1
x4=3
x4=6
x4=7
x4=7
(Note
I/O Bank 8A
I/O Bank 3A
48 User I/Os
48 User I/Os
x16/x18=2
x32/x36=1
x16/x18=2
x32/x36=1
x8/x9=4
x8/x9=4
UP
x4=8
x4=8
and R
1), (2), (3),
DN
pins for OCT calibration. If two pins of a ×4 group are used as R
I/O Bank 8B
I/O Bank 3B
48 User I/Os
48 User I/Os
x16/x18=2
x32/x36=1
x16/x18=2
x32/x36=1
x8/x9=4
x8/x9=4
x4=8
x4=8
(4)
EP4SGX290, EP4SGX360, and EP4SGX530 Devices
I/O Bank 3C
I/O Bank 8C
32 User I/Os
32 User I/Os
x16/x18=0
x32/x36=0
x16/x18=0
x32/x36=0
in the 1932-Pin FineLine BGA
x8/x9=1
x8/x9=1
x4=3
x4=3
UP
and R
DN
I/O Bank 7C
32 User I/Os
I/O Bank 4C
32 User I/Os
x16/x18=0
x32/x36=0
x16/x18=0
x32/x36=0
x8/x9=1
x8/x9=1
pins, but you cannot use a ×4 group for memory interfaces if two pins
x4=3
x4=3
I/O Bank 7B
I/O Bank 4B
48 User I/Os
48 User I/Os
x16/x18=2
x32/x36=1
x16/x18=2
x32/x36=1
x8/x9=4
x8/x9=4
x4=8
x4=8
I/O Bank 7A
I/O Bank 4A
48 User I/Os
48 User I/Os
x16/x18=2
x32/x36=1
x16/x18=2
x32/x36=1
x8/x9=4
x8/x9=4
UP
x4=8
x4=8
Stratix IV Device Handbook Volume 1
and R
DN
pins for OCT calibration, you
I/O Bank 6C
42 User I/Os
42 User I/Os
I/O Bank 6A
I/O Bank 5C
20 User I/Os
x16/x18=1
x32/x36=0
I/O Bank 5A
50 User I/Os
I/O Bank 5B
x16/x18=1
x32/x36=0
50 User I/Os
x16/x18=0
x32/x36=0
x16/x18=1
x32/x36=0
x8/x9=3
x16/x18=1
x32/x36=0
x8/x9=3
DLL3
x8/x9=1
x8/x9=3
x8/x9=3
x4=6
x4=6
x4=3
x4=7
DLL2
x4=7
7–23
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