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EP1C12F324C7N 数据手册 - Altera(阿尔特拉)
制造商:
Altera(阿尔特拉)
分类:
FPGA芯片
封装:
FBGA-324
Pictures:
3D模型
符号图
焊盘图
引脚图
产品图
页面导航:
引脚图在P162P314P317P377Hot
典型应用电路图在P25P27P29P31P255P273
原理图在P22P141P341
封装尺寸在P12P117P377P383P384
型号编码规则在P11P117
功能描述在P21P148P149P150P152P336P338P340
技术参数、封装参数在P85P86P87P88P89P90P94P113P114P142P224P225
应用领域在P102P203P228
电气规格在P225
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EP1C12F324C7N数据手册
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Altera Corporation 2–9
May 2008 Preliminary
Logic Elements
Dynamic Arithmetic Mode
The dynamic arithmetic mode is ideal for implementing adders, counters,
accumulators, wide parity functions, and comparators. An LE in dynamic
arithmetic mode uses four 2-input LUTs configurable as a dynamic
adder/subtractor. The first two 2-input LUTs compute two summations
based on a possible carry-in of 1 or 0; the other two LUTs generate carry
outputs for the two chains of the carry select circuitry. As shown in
Figure 2–7, the LAB carry-in signal selects either the carry-in0 or
carry-in1 chain. The selected chain's logic level in turn determines
which parallel sum is generated as a combinatorial or registered output.
For example, when implementing an adder, the sum output is the
selection of two possible calculated sums:
data1 + data2 + carry-in0
or
data1 + data2 + carry-in1
The other two LUTs use the data1 and data2 signals to generate two
possible carry-out signals⎯one for a carry of 1 and the other for a carry of
0. The carry-in0 signal acts as the carry select for the carry-out0
output and carry-in1 acts as the carry select for the carry-out1
output. LEs in arithmetic mode can drive out registered and unregistered
versions of the LUT output.
The dynamic arithmetic mode also offers clock enable, counter enable,
synchronous up/down control, synchronous clear, synchronous load,
and dynamic adder/subtractor options. The LAB local interconnect data
inputs generate the counter enable and synchronous up/down control
signals. The synchronous clear and synchronous load options are
LAB-wide signals that affect all registers in the LAB. The Quartus II
software automatically places any registers that are not used by the
counter into other LABs. The addnsub LAB-wide signal controls
whether the LE acts as an adder or subtractor.
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