agln060v2-zvqg100i Actel Corporation, agln060v2-zvqg100i Datasheet - Page 20
agln060v2-zvqg100i
Manufacturer Part Number
agln060v2-zvqg100i
Description
Igloo Nano Low-power Flash Fpgas With Flash*freeze Technology
Manufacturer
Actel Corporation
Datasheet
1.AGLN060V2-ZVQG100I.pdf
(132 pages)
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IGLOO nano DC and Switching Characteristics
Table 2-5 •
Table 2-6 •
2 -6
Package Type
Chip Scale Package (CSP)
Quad Flat No Lead (QFN)
Very Thin Quad Flat Pack (VQFP)
Array Voltage
V
1.425
1.5
1.575
CC
Maximum Power Allowed
(V)
Thermal Characteristics
Introduction
The temperature variable in the Actel Designer software refers to the junction temperature, not
the ambient temperature. This is an important distinction because dynamic and static power
consumption cause the chip junction temperature to be higher than the ambient temperature.
EQ 2-1
where:
T
ΔT = Temperature gradient between junction (silicon) and ambient ΔT = θ
θ
P = Power dissipation
Package Thermal Characteristics
The device junction-to-case thermal resistivity is θ
resistivity is θ
operating junction temperature is 100°C.
operating power dissipation allowed for a 484-pin FBGA package at commercial temperature and
in still air.
Temperature and Voltage Derating Factors
Package Thermal Resistivities
Temperature and Voltage Derating Factors for Timing Delays (normalized to T
V
For IGLOO nano V2 or V5 Devices, 1.5 V DC Core Supply Voltage
A
ja
CC
= Ambient temperature
= Junction-to-ambient of the package. θ
T
J
= 1.425 V)
= Junction Temperature = ΔT + T
can be used to calculate junction temperature.
–40°C
0.966
0.877
0.815
ja
. The thermal characteristics for θ
=
Max. junction temp. (°C) Max. ambient temp. (°C)
-------------------------------------------------------------------------------------------------------------------------------------- -
–20°C
0.972
0.882
0.820
Count
100
100
Pin
36
81
48
68
0.977
0.888
0.824
A
0°C
A dv a n c e v 0. 3
Junction Temperature (°C)
θ
ja
(°C/W)
–
ja
EQ 2-2
TBD
TBD
TBD
TBD
TBD
10.0
θ
numbers are located in
jc
ja
0.991
0.899
0.835
25°C
are shown for two air flow rates. The maximum
shows a sample calculation of the maximum
jc
Still Air
35.3
TBD
TBD
TBD
TBD
TBD
and the junction-to-ambient air thermal
1.000
0.907
0.843
70°C
200 ft./
=
min.
TBD
TBD
TBD
TBD
TBD
29.4
Figure
θ
ja
100°C 70°C
------------------------------------
20.5°C/W
ja
* P
2-5.
1.006
0.913
0.848
–
85°C
J
500 ft./
= 70°C,
min.
27.1
TBD
TBD
TBD
TBD
TBD
=
1.46 W
125°C
1.013
0.919
0.854
Units
C/W
C/W
C/W
C/W
C/W
C/W
EQ 2-1
EQ 2-2
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