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MC-ACT-RSENC-NET bảng dữ liệu(PDF) 3 Page - Actel Corporation

tên linh kiện MC-ACT-RSENC-NET
Giải thích chi tiết về linh kiện  Reed-Solomon Encoder
PDF  5 Pages
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nhà sản xuất  ACTEL [Actel Corporation]
Trang chủ  http://www.actel.com
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MC-ACT-RSENC-NET bảng dữ liệu(HTML) 3 Page - Actel Corporation

  MC-ACT-RSENC-NET Datasheet HTML 1Page - Actel Corporation MC-ACT-RSENC-NET Datasheet HTML 2Page - Actel Corporation MC-ACT-RSENC-NET Datasheet HTML 3Page - Actel Corporation MC-ACT-RSENC-NET Datasheet HTML 4Page - Actel Corporation MC-ACT-RSENC-NET Datasheet HTML 5Page - Actel Corporation  
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Reed-Solomon Encoder
Memec Design
April 24, 2003
3
Optimized for
MDS1029
FF
ADD
FF
MULT
FF
ADD
FF
MULT
FF
ADD
FF
MULT
FF
ADD
FF
ADD
FF
MULT
FF
MULT
IN_RS
RS_CALC
OUT_RS
0
1
REG
REG
REG
REG
REG
REG
REG
Figure 2: Block Diagram
Functional Description
The Reed-Solomon encoder core is partitioned into modules as shown in Figure 2, and described below.
All registers are driven by common clock (CLK), clock enable (CLKEN), and asynchronous reset (RST) signals. This
provides ultimate flexibility in integration of the core into larger systems. The registers are clocked on the rising
edge of CLK, enabled by a high on CLKEN, and asynchronously reset by a high on RST.
The RS_CALC signal controls whether the core is calculating the parity (high) or shifting out the calculated parity
(low). Logic external to the core is required to generate this control signal. This allows the user to vary the message
block length as desired for shortened codes. The RS_CALC pin must be held at a low for 2t enabled clock cycles to
ensure all parity register values are shifted out and the registers are cleared.
FFADD Blocks perform modulo 2 addition of the input symbols.
FFMULT Blocks perform a finite field multiplication, over the Galois field, of a constant and the input symbol.
Timing
Figure 3 shows a simple timing diagram of the RSENC interfaces for a Reed-Solomon block code of RS(204,188).
MDS1030
IN_RS[7:0]
RS_CALC
CLK
CLKEN
OUT_RS[7:0]
M187
M186
M0
M187
M186
P0
P1
M185
M184
P14
P15
M0
M1
M2
M3
M0
M1
Figure 3: RSENC Timing



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