AFS600-PQG208 Actel, AFS600-PQG208 Datasheet - Page 186

FPGA - Field Programmable Gate Array 600K System Gates

AFS600-PQG208

Manufacturer Part Number
AFS600-PQG208
Description
FPGA - Field Programmable Gate Array 600K System Gates
Manufacturer
Actel
Datasheet

Specifications of AFS600-PQG208

Processor Series
AFS600
Core
IP Core
Maximum Operating Frequency
1098.9 MHz
Number Of Programmable I/os
95
Data Ram Size
110592
Supply Voltage (max)
1.575 V
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Development Tools By Supplier
AFS-Eval-Kit, AFS-BRD600, FlashPro 3, FlashPro Lite, Silicon-Explorer II, Silicon-Sculptor 3, SI-EX-TCA
Mounting Style
SMD/SMT
Supply Voltage (min)
1.425 V
Number Of Gates
600 K
Package / Case
PQFP-208
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AFS600-PQG208
Manufacturer:
Actel
Quantity:
135
Part Number:
AFS600-PQG208
Manufacturer:
Microsemi SoC
Quantity:
10 000
Part Number:
AFS600-PQG208I
Manufacturer:
Microsemi SoC
Quantity:
10 000
Device Architecture
Table 2-90 • Summary of I/O Timing Characteristics – Software Default Settings
Table 2-91 • Summary of I/O Timing Characteristics – Software Default Settings
2- 17 0
I/O Standard
3.3 V LVTTL/
3.3 V LVCMOS
2.5 V LVCMOS
1.8 V LVCMOS
1.5 V LVCMOS
3.3 V PCI
3.3 V PCI-X
LVDS
LVPECL
Notes:
1. For specific junction temperature and voltage-supply levels, refer to
2. Resistance is used to measure I/O propagation delays as defined in PCI specifications. See
I/O Standard
3.3 V LVTTL/
3.3 V LVCMOS
2.5 V LVCMOS 8 mA
1.8 V LVCMOS 4 mA
1.5 V LVCMOS 2 mA
Note:
for connectivity. This resistor is not required during normal operation.
For specific junction temperature and voltage-supply levels, refer to
Commercial Temperature Range Conditions: T
Worst-Case VCCI = I/O Standard Dependent
Applicable to Advanced I/Os
Commercial Temperature Range Conditions: T
Worst-Case VCCI = I/O Standard Dependent
Applicable to Standard I/Os
Per PCI-X
Per PCI
8 mA
12 mA
12 mA
12 mA
12 mA
24 mA
24 mA
spec
spec
High
High
High
High
High 35 pF
High 35 pF
High 35 pF
High 35 pF
High 10 pF 25
High 10 pF 25
High
High
35 pF
35pF
35pF
35pF
2
2
0.49 2.64 0.03 0.90 0.32 2.69 2.11 2.40 2.68 4.36 3.78 ns
0.49 2.66 0.03 0.98 0.32 2.71 2.56 2.47 2.57 4.38 4.23 ns
0.49 2.64 0.03 0.91 0.32 2.69 2.27 2.76 3.05 4.36 3.94 ns
0.49 3.05 0.03 1.07 0.32 3.10 2.67 2.95 3.14 4.77 4.34 ns
0.49 2.00 0.03 0.65 0.32 2.04 1.46 2.40 2.68 3.71 3.13 ns
0.49 2.00 0.03 0.62 0.32 2.04 1.46 2.40 2.68 3.71 3.13 ns
0.49 1.37 0.03 1.20 N/A
0.49 1.34 0.03 1.05 N/A
0.49 3.29 0.03
0.49 3.56 0.03
0.49 4.74 0.03
0.49 5.71 0.03
R e visio n 1
J
J
= 70°C, Worst-Case VCC = 1.425 V,
= 70°C, Worst-Case VCC = 1.425 V,
Table 3-6 on page 3-7
0.75
0.96
0.90
1.06
Table 3-6 on page 3-7
0.32 3.36
0.32 3.40
0.32 4.02
0.32 4.71
N/A N/A N/A N/A N/A N/A ns
N/A N/A N/A N/A N/A N/A ns
for derating values.
2.80
3.56
4.74
5.71
Figure 2-121 on page 2-199
for derating values.
1.79
1.78
1.80
1.83
2.01
1.91
1.85
1.83
ns
ns
ns
ns

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