A1460A-1PQ208C Actel, A1460A-1PQ208C Datasheet - Page 9

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A1460A-1PQ208C

Manufacturer Part Number
A1460A-1PQ208C
Description
FPGA ACT 3 Family 6K Gates 848 Cells 125MHz 0.8um (CMOS) Technology 5V 208-Pin PQFP
Manufacturer
Actel
Datasheet

Specifications of A1460A-1PQ208C

Package
208PQFP
Family Name
ACT 3
Device Logic Gates
6000
Device Logic Units
848
Device System Gates
15000
Number Of Registers
768
Maximum Internal Frequency
125 MHz
Typical Operating Supply Voltage
5 V
Maximum Number Of User I/os
167
Maximum Propagation Delay Time
2.6 ns

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Figure 4 • Functional Diagram for I/O Module
I/O Pad Drivers
All pad drivers are capable of being tristate. Each buffer
connects to an associated I/O module with four signals: OE
(Output Enable), IE (Input Enable), DataOut, and DataIn.
Certain special signals used only during programming and
test also connect to the pad drivers: OUTEN (global output
enable), INEN (global input enable), and SLEW (individual
slew selection). See Figure 5.
Special I/Os
The special I/Os are of two types: temporary and permanent.
Temporary special I/Os are used during programming and
testing. They function as normal I/Os when the MODE pin is
inactive. Permanent special I/Os are user programmed as
either normal I/Os or special I/Os. Their function does not
change once the device has been programmed. The
permanent special I/Os consist of the array clock input
buffers (CLKA and CLKB), the hard-wired array clock input
buffer (HCLK), the hard-wired I/O clock input buffer
(IOCLK), and the hard-wired I/O register preset/clear input
ODE
D
Y
S1
MUX
S0
0
1
0
1
2
3
MUX
CLR/PRE
CLR/PRE
D
Q
Q
D
buffer (IOPCL). Their function is determined by the I/O
macros selected.
Clock Networks
The ACT 3 architecture contains four clock networks: two
high-performance dedicated clock networks and two general
purpose routed networks. The high-performance networks
function up to 200 MHz, while the general purpose routed
networks function up to 150 MHz.
Dedicated Clocks
Dedicated clock networks support high performance by
providing
performance. Dedicated clock networks contain no
programming elements in the path from the I/O Pad Driver to
the input of S-modules or I/O modules. There are two
dedicated clock networks: one for the array registers (HCLK),
and one for the I/O registers (IOCLK). The clock networks
are accessed by special I/Os.
MUX
A cceler ator Se rie s FP GAs – A CT
0
1
1
0
MUX
sub-nanosecond
IOCLK
IOPCL
skew
DATAOUT
DATAIN
and
guaranteed
3 Fami ly
1-183

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