参数资料
型号: EPM3064ALI44-10
厂商: Altera
文件页数: 33/46页
文件大小: 0K
描述: IC MAX 3000A CPLD 64 44-PLCC
标准包装: 130
系列: MAX® 3000A
可编程类型: 系统内可编程
最大延迟时间 tpd(1): 10.0ns
电压电源 - 内部: 3 V ~ 3.6 V
逻辑元件/逻辑块数目: 4
宏单元数: 64
门数: 1250
输入/输出数: 34
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 44-LCC(J 形引线)
供应商设备封装: 44-PLCC(16.58x16.58)
包装: 管件
Altera Corporation
39
MAX 3000A Programmable Logic Device Family Data Sheet
Power
Consumption
Supply power (P) versus frequency (fMAX, in MHz) for MAX 3000A
devices is calculated with the following equation:
P = PINT + PIO = ICCINT × VCC + PIO
The PIO value, which depends on the device output load characteristics
and switching frequency, can be calculated using the guidelines given in
The ICCINT value depends on the switching frequency and the application
logic. The ICCINT value is calculated with the following equation:
ICCINT =
(A
× MCTON) + [B × (MCDEV – MCTON)] + (C × MCUSED × fMAX × togLC)
The parameters in the ICCINT equation are:
MCTON
= Number of macrocells with the Turbo BitTM option turned
on, as reported in the Quartus II or MAX+PLUS II Report
File (.rpt)
MCDEV
= Number of macrocells in the device
MCUSED = Total number of macrocells in the design, as reported in
the RPT File
fMAX
= Highest clock frequency to the device
togLC
= Average percentage of logic cells toggling at each clock
(typically 12.5%)
A, B, C
= Constants (shown in Table 26)
The ICCINT calculation provides an ICC estimate based on typical
conditions using a pattern of a 16–bit, loadable, enabled, up/down
counter in each LAB with no output load. Actual ICC should be verified
during operation because this measurement is sensitive to the actual
pattern in the device and the environmental operating conditions.
Figures 12 and 13 show the typical supply current versus frequency for
MAX 3000A devices.
Table 26. MAX 3000A ICC Equation Constants
Device
ABC
EPM3032A
0.71
0.30
0.014
EPM3064A
0.71
0.30
0.014
EPM3128A
0.71
0.30
0.014
EPM3256A
0.71
0.30
0.014
EPM3512A
0.71
0.30
0.014
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