AGL250V5-FGG144 Actel, AGL250V5-FGG144 Datasheet - Page 21

FPGA - Field Programmable Gate Array 250K System Gates

AGL250V5-FGG144

Manufacturer Part Number
AGL250V5-FGG144
Description
FPGA - Field Programmable Gate Array 250K System Gates
Manufacturer
Actel
Datasheet

Specifications of AGL250V5-FGG144

Processor Series
AGL250
Core
IP Core
Maximum Operating Frequency
892.86 MHz
Number Of Programmable I/os
97
Data Ram Size
36864
Supply Voltage (max)
1.575 V
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Development Tools By Supplier
AGL-Icicle-Kit, AGL-Dev-Kit-SCS, Silicon-Explorer II, Silicon-Sculptor 3, SI-EX-TCA, FlashPro 4, FlashPro 3, FlashPro Lite
Mounting Style
SMD/SMT
Supply Voltage (min)
1.425 V
Number Of Gates
250 K
Package / Case
FPBGA-144
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AGL250V5-FGG144
Manufacturer:
Microsemi SoC
Quantity:
10 000
Table 2-6 •
Table 2-7 •
Calculating Power Dissipation
Table 2-8 •
Array Voltage
VCC (V)
1.425
1.500
1.575
Array
Voltage VCC
(V)
1.14
1.20
1.26
Typical
(25°C)
Note:
I
(PDC6 and PDC7).
DD
Voltage
includes VCC, VPUMP, VCCI, VJTAG, and VCCPLL currents. Values do not include I/O static contribution
1.2 V
1.5 V
Core
Temperature and Voltage Derating Factors
Quiescent Supply Current
Quiescent supply current (I
(VCC, VCCI, and VJTAG), operating temperature, system clock frequency, and power modes usage.
Actel recommends using the PowerCalculator and SmartPower software estimation tools to evaluate the
projected static and active power based on the user design, power mode usage, operating voltage, and
temperature
Temperature and Voltage Derating Factors for Timing Delays (normalized to T
VCC = 1.425 V)
For IGLOO V2 or V5 devices, 1.5 V DC Core Supply Voltage
Temperature and Voltage Derating Factors for Timing Delays (normalized to T
VCC = 1.14 V)
For IGLOO V2, 1.2 V DC Core Supply Voltage
Quiescent Supply Current (IDD) Characteristics, IGLOO Flash*Freeze Mode*
–40°C
0.967
0.864
0.794
–40°C
0.934
0.855
0.799
AGL015 AGL030 AGL060 AGL125 AGL250
6
4
–20°C
0.973
0.869
0.799
–20°C
0.953
0.874
0.816
4
6
DD
) calculation depends on multiple factors, including operating voltages
10
8
0.978
0.874
0.803
0°C
0.971
0.891
0.832
0°C
Junction Temperature (°C)
Junction Temperature (°C)
13
18
R ev i si o n 1 8
0.991
0.885
0.814
25°C
1.000
0.917
0.857
25°C
20
34
AGL400
1.000
0.894
0.821
27
51
70°C
1.007
0.924
0.864
70°C
AGL600
IGLOO Low Power Flash FPGAs
30
72
1.006
0.899
0.827
85°C
1.013
0.929
0.868
85°C
AGL1000
J
J
= 70°C,
= 70°C,
127
44
100°C
100°C
1.010
0.902
0.830
1.425
1.500
1.575
Units
µA
µA
2 -7

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