参数资料
型号: EP1K50QC208-3
厂商: Altera
文件页数: 8/86页
文件大小: 0K
描述: IC ACEX 1K FPGA 50K 208-PQFP
产品培训模块: Three Reasons to Use FPGA's in Industrial Designs
标准包装: 144
系列: ACEX-1K®
LAB/CLB数: 360
逻辑元件/单元数: 2880
RAM 位总计: 40960
输入/输出数: 147
门数: 199000
电源电压: 2.375 V ~ 2.625 V
安装类型: 表面贴装
工作温度: 0°C ~ 70°C
封装/外壳: 208-BFQFP
供应商设备封装: 208-PQFP(28x28)
其它名称: 544-1009
16
Altera Corporation
ACEX 1K Programmable Logic Device Family Data Sheet
Figure 8. ACEX 1K Logic Element
The programmable flipflop in the LE can be configured for D, T, JK, or SR
operation. The clock, clear, and preset control signals on the flipflop can
be driven by global signals, general-purpose I/O pins, or any internal
logic. For combinatorial functions, the flipflop is bypassed and the LUT’s
output drives the LE’s output.
The LE has two outputs that drive the interconnect: one drives the local
interconnect, and the other drives either the row or column FastTrack
Interconnect routing structure. The two outputs can be controlled
independently. For example, the LUT can drive one output while the
register drives the other output. This feature, called register packing, can
improve LE utilization because the register and the LUT can be used for
unrelated functions.
The ACEX 1K architecture provides two types of dedicated high-speed
data paths that connect adjacent LEs without using local interconnect
paths: carry chains and cascade chains. The carry chain supports high-
speed counters and adders, and the cascade chain implements wide-input
functions with minimum delay. Carry and cascade chains connect all LEs
in a LAB and all LABs in the same row. Intensive use of carry and cascade
chains can reduce routing flexibility. Therefore, the use of these chains
should be limited to speed-critical portions of a design.
To LAB Local
Interconnect
Carry-In
Clock
Select
Carry-Out
Look-Up
Table
(LUT)
Clear/
Preset
Logic
Carry
Chain
Cascade
Chain
Cascade-In
Cascade-Out
To FastTrack
Interconnect
Programmable
Register
PRN
CLRN
DQ
ENA
Register Bypass
data1
data2
data3
data4
labctrl1
labctrl2
labctrl4
labctrl3
Chip-Wide
Reset
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