参数资料
型号: EPF6024AQC240-2N
厂商: Altera
文件页数: 42/52页
文件大小: 0K
描述: IC FLEX 6000 FPGA 24K 240-PQFP
产品培训模块: Three Reasons to Use FPGA's in Industrial Designs
标准包装: 96
系列: FLEX 6000
LAB/CLB数: 196
逻辑元件/单元数: 1960
输入/输出数: 199
门数: 24000
电源电压: 3 V ~ 3.6 V
安装类型: 表面贴装
工作温度: 0°C ~ 85°C
封装/外壳: 240-BFQFP
供应商设备封装: 240-PQFP(32x32)
Altera Corporation
47
FLEX 6000 Programmable Logic Device Family Data Sheet
Notes:
(1)
Setup times are longer when the Increase Input Delay option is turned on. The setup time values are shown with the
Increase Input Delay option turned off.
(2)
Hold time is zero when the Increase Input Delay option is turned on.
Power
Consumption
The supply power (P) for FLEX 6000 devices can be calculated with the
following equations:
P= PINT + PIO
P= (ICCSTANDBY + ICCACTIVE) × VCC + PIO
Typical ICCSTANDBY values are shown as ICC0 in the “FLEX 6000 Device
DC Operating Conditions” table on pages 31 and 33 of this data sheet. The
ICCACTIVE value depends on the switching frequency and the application
logic. This value is based on the amount of current that each LE typically
consumes. The PIO value, which depends on the device output load
characteristics and switching frequency, can be calculated using the
The ICCACTIVE value can be calculated with the following equation:
ICCACTIVE = K × fMAX × N × togLC ×
Where:
fMAX =
Maximum operating frequency in MHz
N
=
Total number of LEs used in a FLEX 6000 device
togLC =
Average percentage of LEs toggling at each clock
(typically 12.5
%)
K
=
Constant, shown in Table 39
Table 38. External Timing Parameters for EPF6024A Devices
Parameter
Speed Grade
Unit
-1
-2
-3
Min
Max
Min
Max
Min
Max
tINSU
2.0 (1)
2.2 (1)
2.6 (1)
ns
tINH
0.2 (2)
0.3 (2)
ns
tOUTCO
2.0
7.4
2.0
8.2
2.0
9.9
ns
A
MHz
LE
×
-----------------------------
Table 39. K Constant Values
Device
K Value
EPF6010A
14
EPF6016
88
EPF6016A
14
EPF6024A
14
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