參數(shù)資料
型號: MC92602ZTA
廠商: FREESCALE SEMICONDUCTOR INC
元件分類: 微控制器/微處理器
英文描述: SPECIALTY MICROPROCESSOR CIRCUIT, PBGA196
封裝: 15 X 15 MM, 1.60 MM HEIGHT, 1 MM PITCH, MAPBGA-196
文件頁數(shù): 85/102頁
文件大?。?/td> 1581K
代理商: MC92602ZTA
MOTOROLA
Appendix B. 8B/10B Coding Scheme
B-3
Data Tables
4. At the time the character is expanded into 10 bits, it is also encoded into the proper
running disparity, either positive (RD+) or negative (RD–) depending on certain
transmitter assumes negative running disparity.
5. The positive or negative disparity transmission character (see Figure B-3) is passed
to the transmit driver, available for differentialization (see Section 2.3.3, “Transmit
Figure B-3. Character Transmission
B.1.3
Calculating Running Disparity
Running disparity improves error detection and recovery. The rules for calculating the
running disparity for sub-blocks are as follows (reference Fibre Channel, Gigabit
Communications and I/O for Computer Networks):
Running disparity at the end of any sub-block is positive if (1) the encoded
sub-block contains more 1s than 0s, (2) if the 6-bit sub-block is 6’b00 0111, or (3)
if the 4-bit sub-block is 4’b0011.
Running disparity at the end of any sub-block is negative if (1) the encoded
sub-block contains more 0 than 1 bits, (2) if the 6-bit sub-block is 6’b11 1000, or (3)
if the 4-bit sub-block is 4’b1100.
Otherwise, running disparity at the end of the sub-block is the same as at the
beginning of the sub-block.
B.2
Data Tables
Table B-2 displays the full valid data character 8B/10B codes. The values in the ‘Data
Value HGFE DCBA’ column are the possible bit values of the unencoded transmission
characters. The current RD values are the possible positive and negative running disparity
values.
Direction of Transmission
JH
G
F
I
E
D
C
B
A
F
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Freescale Semiconductor, Inc.
For More Information On This Product,
Go to: www.freescale.com
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