参数资料
型号: APA450-FG484A
厂商: Microsemi SoC
文件页数: 13/178页
文件大小: 0K
描述: IC FPGA PROASIC+ 450K 484-FBGA
标准包装: 40
系列: ProASICPLUS
RAM 位总计: 110592
输入/输出数: 344
门数: 450000
电源电压: 2.375 V ~ 2.625 V
安装类型: 表面贴装
工作温度: -40°C ~ 125°C
封装/外壳: 484-BGA
供应商设备封装: 484-FPBGA(23x23)
ProASICPLUS Flash Family FPGAs
v5.9
2-1
General Description
Routing Resources
The routing structure of ProASICPLUS devices is designed
to provide high performance through a flexible four-
level hierarchy of routing resources: ultra-fast local
resources, efficient long-line resources, high-speed, very
long-line
resources,
and
high
performance
global
networks.
The ultra-fast local resources are dedicated lines that
allow the output of each tile to connect directly to every
input of the eight surrounding tiles (Figure 2-1).
The efficient long-line resources provide routing for
longer distances and higher fanout connections. These
resources vary in length (spanning 1, 2, or 4 tiles), run
both vertically and horizontally, and cover the entire
ProASICPLUS device (Figure 2-2 on page 2-2). Each tile can
drive signals onto the efficient long-line resources, which
can in turn access every input of every tile. Active buffers
are inserted automatically by routing software to limit
the loading effects due to distance and fanout.
The high-speed, very long-line resources, which span the
entire device with minimal delay, are used to route very
long or very high fanout nets. (Figure 2-3 on page 2-3).
The high-performance global networks are low-skew,
high fanout nets that are accessible from external pins or
from internal logic (Figure 2-4 on page 2-4). These nets
are typically used to distribute clocks, resets, and other
high fanout nets requiring a minimum skew. The global
networks are implemented as clock trees, and signals can
be introduced at any junction. These can be employed
hierarchically with signals accessing every input on all
tiles.
Figure 2-1 Ultra-Fast Local Resources
L
Inputs
Output
Ultra-Fast
Local Lines
(connects a tile to the
adjacent tile, I/O buffer,
or memory block)
L
LL
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