AFS250-PQG208 Actel, AFS250-PQG208 Datasheet - Page 254

FPGA - Field Programmable Gate Array 250K System Gates

AFS250-PQG208

Manufacturer Part Number
AFS250-PQG208
Description
FPGA - Field Programmable Gate Array 250K System Gates
Manufacturer
Actel
Datasheet

Specifications of AFS250-PQG208

Processor Series
AFS250
Core
IP Core
Maximum Operating Frequency
1098.9 MHz
Number Of Programmable I/os
93
Data Ram Size
36864
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
250 K
Package / Case
PQFP-208
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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DC and Power Characteristics
Table 3-3 • Input Resistance of Analog Pads
Table 3-4 • Overshoot and Undershoot Limits
3 - 4
Pads
AV, AC
AT
VCCI
Notes:
1. Based on reliability requirements at a junction temperature of 85°C.
2. The duration is allowed at one cycle out of six clock cycle. If the overshoot/undershoot occurs at one out of two cycles,
2.7 V or less
3.0 V
3.3 V
3.6 V
the maximum overshoot/undershoot has to be reduced by 0.15 V.
Analog Input (direct input to ADC)
Analog Input (positive prescaler)
Analog Input (negative prescaler)
Digital input
Current monitor
Analog Input (direct input to ADC)
Analog Input (positive prescaler)
Digital input
Temperature monitor
Pad Configuration
Average VCCI–GND Overshoot or Undershoot
Duration as a Percentage of Clock Cycle
1
10%
10%
10%
10%
5%
5%
5%
5%
Prescaler Range
R e vi s i o n 1
+1 V to +0.125 V
+1 V to +0.125 V
–1 V to –0.125 V
+16 V to +2 V
+16 V to +2 V
–16 V to –2 V
+16 V to +2 V
+16 V to +2 V
–16 V to –2 V
+16 V, +4 V
+16 V, +4 V
+16 V, +4 V
+16 V, +4 V
2
Input Resistance to Ground
Maximum Overshoot/
1 MΩ (typical)
1 MΩ (typical)
1 MΩ (typical)
1 MΩ (typical)
1 MΩ (typical)
1 MΩ (typical)
1 MΩ (typical)
1 MΩ (typical)
1 MΩ (typical)
Undershoot
> 10 MΩ
> 10 MΩ
> 10 MΩ
> 10 MΩ
1.49 V
1.19 V
0.79 V
0.88 V
0.45 V
0.54 V
1.4 V
1.1 V
2

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